RPS-BLAST 2.2.26 [Sep-21-2011]

Database: CDD.v3.10 
           44,354 sequences; 10,937,602 total letters

Searching..................................................done

Query= psy7310
         (561 letters)



>gnl|CDD|173736 cd07832, STKc_CCRK, Catalytic domain of the Serine/Threonine
           Kinase, Cell Cycle-Related Kinase.  Serine/Threonine
           Kinases (STKs), Cell Cycle-Related Kinase (CCRK) p42
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           CCRK subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. CCRK was previously called p42. It is a
           Cyclin-Dependent Kinase (CDK)-Activating Kinase (CAK)
           which is essential for the activation of CDK2. It is
           indispensable for cell growth and has been implicated in
           the progression of glioblastoma multiforme. In the
           heart, a splice variant of CCRK with a different
           C-terminal half is expressed, this variant promotes
           cardiac cell growth and survival and is significantly
           down-regulated during the development of heart failure.
          Length = 286

 Score =  339 bits (871), Expect = e-114
 Identities = 140/253 (55%), Positives = 168/253 (66%), Gaps = 15/253 (5%)

Query: 318 KKIHLT-----IPH-----IKTYTYLSDVFSFLPQIVKLLDFFPDQDTVCLVFEHMDSGL 367
           KK+ L      IP+     IK    L       P +VKLLD FP      LV E+M S L
Sbjct: 31  KKVALRRLEGGIPNQALREIKA---LQACQH--PYVVKLLDVFPHGSGFVLVMEYMPSDL 85

Query: 368 WELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGL 427
            E+L D++  L    VK+YM+MLLKGV+Y+H   IMHRDLKPANLLI   G+LKIADFGL
Sbjct: 86  SEVLRDEERPLPEAQVKSYMRMLLKGVAYMHANGIMHRDLKPANLLISADGVLKIADFGL 145

Query: 428 ARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGES 487
           AR F  E    Y+ +VA+RWYRAPELLY +R YD  VDLWAVGCI  E+   +PLFPGE+
Sbjct: 146 ARLFSEEEPRLYSHQVATRWYRAPELLYGARKYDPGVDLWAVGCIFAELLNGSPLFPGEN 205

Query: 488 DIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKL 547
           DIEQLA+V   LGTP E++WPGL  LPDYNKITF  S P+P   + P+ASP+ LDL+  L
Sbjct: 206 DIEQLAIVFRTLGTPNEETWPGLTSLPDYNKITFPESKPIPLEEIFPDASPEALDLLKGL 265

Query: 548 LLYDGQKRLPANE 560
           L+YD  KRL A E
Sbjct: 266 LVYDPSKRLSAAE 278



 Score = 56.5 bits (137), Expect = 1e-08
 Identities = 18/52 (34%), Positives = 31/52 (59%), Gaps = 1/52 (1%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSDRY 52
          +GAHG V +A+++ T + VA+K++ +RR     +    +REIK L +    Y
Sbjct: 10 EGAHGIVFKAKDRETGETVALKKVALRRLE-GGIPNQALREIKALQACQHPY 60


>gnl|CDD|143346 cd07841, STKc_CDK7, Catalytic domain of the Serine/Threonine
           Kinase, Cyclin-Dependent protein Kinase 7.
           Serine/Threonine Kinases (STKs), Cyclin-Dependent
           protein Kinase 7 (CDK7) subfamily, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The CDK7 subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. CDKs belong to a large family
           of STKs that are regulated by their cognate cyclins.
           Together, they are involved in the control of cell-cycle
           progression, transcription, and neuronal function. CDK7
           plays essential roles in the cell cycle and in
           transcription. It associates with cyclin H and MAT1 and
           acts as a CDK-Activating Kinase (CAK) by phosphorylating
           and activating cell cycle CDKs (CDK1/2/4/6). In the
           brain, it activates CDK5. CDK7 is also a component of
           the general transcription factor TFIIH, which
           phosphorylates the C-terminal domain (CTD) of RNA
           polymerase II when it is bound with unphosphorylated
           DNA, as present in the pre-initiation complex. Following
           phosphorylation, the CTD dissociates from the DNA which
           allows transcription initiation.
          Length = 298

 Score =  287 bits (738), Expect = 1e-93
 Identities = 108/221 (48%), Positives = 145/221 (65%), Gaps = 5/221 (2%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P I+ LLD F  +  + LVFE M++ L +++ DK I LT   +K+YM M L+G+ YLH  
Sbjct: 62  PNIIGLLDVFGHKSNINLVFEFMETDLEKVIKDKSIVLTPADIKSYMLMTLRGLEYLHSN 121

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSF-DVERWGQYTPEVASRWYRAPELLYASRC 459
           +I+HRDLKP NLLI   G+LK+ADFGLARSF    R  + T +V +RWYRAPELL+ +R 
Sbjct: 122 WILHRDLKPNNLLIASDGVLKLADFGLARSFGSPNR--KMTHQVVTRWYRAPELLFGARH 179

Query: 460 YDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKI 519
           Y   VD+W+VGCI  E+    P  PG+SDI+QL  +   LGTPTE++WPG+  LPDY  +
Sbjct: 180 YGVGVDMWSVGCIFAELLLRVPFLPGDSDIDQLGKIFEALGTPTEENWPGVTSLPDY--V 237

Query: 520 TFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
            F P  P P   + P AS D LDL+ +LL  +  KR+ A +
Sbjct: 238 EFKPFPPTPLKQIFPAASDDALDLLQRLLTLNPNKRITARQ 278



 Score = 36.4 bits (85), Expect = 0.033
 Identities = 19/47 (40%), Positives = 28/47 (59%), Gaps = 2/47 (4%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRI-LIRRRHTS-SVKTDVMREIKTL 45
          +G +  V +AR+K T +IVAIK+I L  R+     +    +REIK L
Sbjct: 10 EGTYAVVYKARDKETGRIVAIKKIKLGERKEAKDGINFTALREIKLL 56


>gnl|CDD|173733 cd07829, STKc_CDK_like, Catalytic domain of Cyclin-Dependent
           protein Kinase-like Serine/Threonine Kinases.
           Serine/Threonine Kinases (STKs), Cyclin-Dependent
           protein Kinase (CDK)-like subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The CDK-like subfamily
           is part of a larger superfamily that includes the
           catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. CDKs belong to a large family of STKs that are
           regulated by their cognate cyclins. Together, they are
           involved in the control of cell-cycle progression,
           transcription, and neuronal function. CDKs are partly
           regulated by their subcellular localization, which
           defines substrate phosphorylation and the resulting
           specific function. CDK1, CDK2, CDK4, and CDK6 have
           well-defined functions in the cell cycle, such as the
           regulation of the early G1 phase by CDK4 or CDK6, the
           G1/S phase transition by CDK2, or the entry of mitosis
           by CDK1. They also exhibit overlapping cyclin
           specificity and functions in certain conditions.
           Knockout mice with a single CDK deleted remain viable
           with specific phenotypes, showing that some CDKs can
           compensate for each other. For example, CDK4 can
           compensate for the loss of CDK6, however, double
           knockout mice with both CDK4 and CDK6 deleted die in
           utero. CDK8 and CDK9 are mainly involved in
           transcription while CDK5 is implicated in neuronal
           function. CDK7 plays essential roles in both the cell
           cycle as a CDK-Activating Kinase (CAK) and in
           transcription as a component of the general
           transcription factor TFIIH.
          Length = 282

 Score =  278 bits (715), Expect = 2e-90
 Identities = 106/221 (47%), Positives = 144/221 (65%), Gaps = 4/221 (1%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P IVKLLD    +  + LVFE+ D  L + L  +   L+   +K+ M  LL+G++Y H  
Sbjct: 58  PNIVKLLDVIHTERKLYLVFEYCDMDLKKYLDKRPGPLSPNLIKSIMYQLLRGLAYCHSH 117

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVE-RWGQYTPEVASRWYRAPELLYASRC 459
            I+HRDLKP N+LI++ G+LK+ADFGLAR+F +  R   YT EV + WYRAPE+L  S+ 
Sbjct: 118 RILHRDLKPQNILINRDGVLKLADFGLARAFGIPLR--TYTHEVVTLWYRAPEILLGSKH 175

Query: 460 YDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKI 519
           Y  +VD+W+VGCI  EM T  PLFPG+S+I+QL  +   LGTPTE+SWPG+  LPDY   
Sbjct: 176 YSTAVDIWSVGCIFAEMITGKPLFPGDSEIDQLFKIFQILGTPTEESWPGVTKLPDYKP- 234

Query: 520 TFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
           TF    P     +LP   P+ +DL+SK+L Y+  KR+ A E
Sbjct: 235 TFPKFPPKDLEKVLPRLDPEGIDLLSKMLQYNPAKRISAKE 275



 Score = 40.5 bits (96), Expect = 0.001
 Identities = 16/46 (34%), Positives = 27/46 (58%), Gaps = 1/46 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLL 46
          +G +G V +AR+K T +IVA+K+I +       + +  +REI  L 
Sbjct: 9  EGTYGVVYKARDKKTGEIVALKKIRLDNEEE-GIPSTALREISLLK 53


>gnl|CDD|143333 cd05118, STKc_CMGC, Catalytic domain of CMGC family
           Serine/Threonine Kinases.  Serine/Threonine Kinases
           (STKs), CMGC family, catalytic (c) domain. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           CMGC family is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. The CMGC family consists of Cyclin-Dependent
           protein Kinases (CDKs), Mitogen-activated protein
           kinases (MAPKs) such as Extracellular signal-regulated
           kinase (ERKs), c-Jun N-terminal kinases (JNKs), and p38,
           and similar proteins. CDKs belong to a large subfamily
           of STKs that are regulated by their cognate cyclins.
           Together, they are involved in the control of cell-cycle
           progression, transcription, and neuronal function. MAPKs
           serve as important mediators of cellular responses to
           extracellular signals. They control critical cellular
           functions including differentiation, proliferation,
           migration, and apoptosis. They are also implicated in
           the pathogenesis of many diseases including multiple
           types of cancer, stroke, diabetes, and chronic
           inflammation.
          Length = 283

 Score =  274 bits (702), Expect = 2e-88
 Identities = 101/218 (46%), Positives = 139/218 (63%), Gaps = 1/218 (0%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P I+KLLD F  +  + LVFE MD+ L++L+ D++  L    +K+Y+  LL+G+++ H  
Sbjct: 58  PNIIKLLDVFRHKGDLYLVFEFMDTDLYKLIKDRQRGLPESLIKSYLYQLLQGLAFCHSH 117

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCY 460
            I+HRDLKP NLLI+  G+LK+ADFGLARSF       YT  V +RWYRAPELL   + Y
Sbjct: 118 GILHRDLKPENLLINTEGVLKLADFGLARSFGSPV-RPYTHYVVTRWYRAPELLLGDKGY 176

Query: 461 DQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKIT 520
              VD+W+VGCI  E+ +  PLFPG+S+I+QL  +   LGTP  + WP    L    K +
Sbjct: 177 STPVDIWSVGCIFAELLSRRPLFPGKSEIDQLFKIFRTLGTPDPEVWPKFTSLARNYKFS 236

Query: 521 FAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPA 558
           F     +P   + PNASP  LDL+S++L YD  KR+ A
Sbjct: 237 FPKKAGMPLPKLFPNASPQALDLLSQMLHYDPHKRITA 274



 Score = 46.9 bits (112), Expect = 1e-05
 Identities = 19/49 (38%), Positives = 30/49 (61%), Gaps = 1/49 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVS 49
          +G +G V +AR+K T +IVAIK+I   R  +  +    +REIK L  ++
Sbjct: 9  EGTYGVVYKARDKLTGEIVAIKKIK-LRFESEGIPKTALREIKLLKELN 56


>gnl|CDD|143345 cd07840, STKc_CDK9_like, Catalytic domain of Cyclin-Dependent
           protein Kinase 9-like Serine/Threonine Kinases.
           Serine/Threonine Kinases (STKs), Cyclin-Dependent
           protein Kinase 9 (CDK9)-like subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The CDK9-like subfamily
           is part of a larger superfamily that includes the
           catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. CDKs belong to a large family of STKs that are
           regulated by their cognate cyclins. Together, they are
           involved in the control of cell-cycle progression,
           transcription, and neuronal function. This subfamily is
           composed of CDK9 and CDK12 from higher eukaryotes, yeast
           BUR1, C-type plant CDKs (CdkC), and similar proteins.
           CDK9, BUR1, and CdkC are functionally equivalent. They
           act as a kinase for the C-terminal domain of RNA
           polymerase II and participate in regulating mutliple
           steps of gene expression including transcription
           elongation and RNA processing. CDK9 and CdkC associate
           with T-type cyclins while BUR1 associates with the
           cyclin BUR2. CDK12 is a unique CDK that contains an
           arginine/serine-rich (RS) domain, which is predominantly
           found in splicing factors. CDK12 interacts with cyclins
           L1 and L2, and participates in regulating transcription
           and alternative splicing.
          Length = 287

 Score =  247 bits (633), Expect = 4e-78
 Identities = 85/223 (38%), Positives = 130/223 (58%), Gaps = 3/223 (1%)

Query: 341 PQIVKLLD--FFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLH 398
           P IV+L +      + ++ +VFE+MD  L  LL   ++  T   +K YM+ LL+G+ YLH
Sbjct: 58  PNIVRLKEIVTSKGKGSIYMVFEYMDHDLTGLLDSPEVKFTESQIKCYMKQLLEGLQYLH 117

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR 458
              I+HRD+K +N+LI+  G+LK+ADFGLAR +       YT  V + WYR PELL  + 
Sbjct: 118 SNGILHRDIKGSNILINNDGVLKLADFGLARPYTKRNSADYTNRVITLWYRPPELLLGAT 177

Query: 459 CYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNK 518
            Y   VD+W+VGCIL E++   P+F G +++EQL  +    G+PT+++WPG+  LP +  
Sbjct: 178 RYGPEVDMWSVGCILAELFLGKPIFQGSTELEQLEKIFELCGSPTDENWPGVSKLPWFEN 237

Query: 519 ITFAPSDPVPWSTMLPNA-SPDTLDLISKLLLYDGQKRLPANE 560
           +               +   P  LDL+ KLL  D +KR+ A++
Sbjct: 238 LKPKKPYKRRLREFFKHLIDPSALDLLDKLLTLDPKKRISADQ 280



 Score = 42.9 bits (102), Expect = 3e-04
 Identities = 18/45 (40%), Positives = 27/45 (60%), Gaps = 1/45 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
          +G +G V +ARNK T ++VA+K+I +         T  +REIK L
Sbjct: 9  EGTYGQVYKARNKKTGELVALKKIRMENEKEGFPIT-AIREIKLL 52


>gnl|CDD|173738 cd07835, STKc_CDK1_like, Catalytic domain of Cyclin-Dependent
           protein Kinase 1-like Serine/Threonine Kinases.
           Serine/Threonine Kinases (STKs), Cyclin-Dependent
           protein Kinase 1 (CDK1)-like subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The CDK1 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. CDKs belong to a
           large family of STKs that are regulated by their cognate
           cyclins. Together, they are involved in the control of
           cell-cycle progression, transcription, and neuronal
           function. This subfamily is composed of CDK1 from higher
           eukaryotes, plants, and yeasts, as well as CDK2 and
           CDK3. CDK1 is also called Cell division control protein
           2 (Cdc2) or p34 protein kinase, and is regulated by
           cyclins A, B, and E. The CDK1/cyclin A complex controls
           G2 phase entry and progression while the CDK1/cyclin B
           complex is critical for G2 to M phase transition. CDK2
           is regulated by cyclin E or cyclin A. Upon activation by
           cyclin E, it phosphorylates the retinoblastoma (pRb)
           protein which activates E2F mediated transcription and
           allows cells to move into S phase. The CDK2/cyclin A
           complex plays a role in regulating DNA replication.
           Studies in knockout mice revealed that CDK1 can
           compensate for the loss of the cdk2 gene as it can also
           bind cyclin E and drive G1 to S phase transition. CDK3
           is regulated by cyclin C and it phosphorylates pRB
           specifically during the G0/G1 transition. This
           phosphorylation is required for cells to exit G0
           efficiently and enter the G1 phase.
          Length = 283

 Score =  231 bits (591), Expect = 5e-72
 Identities = 108/228 (47%), Positives = 141/228 (61%), Gaps = 17/228 (7%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPH-------VKTYMQMLLKG 393
           P IV+LLD    ++ + LVFE +D  L      KK   + P        +K+Y+  LL+G
Sbjct: 58  PNIVRLLDVVHSENKLYLVFEFLDLDL------KKYMDSSPLTGLDPPLIKSYLYQLLQG 111

Query: 394 VSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVE-RWGQYTPEVASRWYRAPE 452
           ++Y H   ++HRDLKP NLLID+ G LK+ADFGLAR+F V  R   YT EV + WYRAPE
Sbjct: 112 IAYCHSHRVLHRDLKPQNLLIDREGALKLADFGLARAFGVPVR--TYTHEVVTLWYRAPE 169

Query: 453 LLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKD 512
           +L  SR Y   VD+W++GCI  EM    PLFPG+S+I+QL  +   LGTP ED WPG+  
Sbjct: 170 ILLGSRQYSTPVDIWSIGCIFAEMVNRRPLFPGDSEIDQLFRIFRTLGTPDEDVWPGVTS 229

Query: 513 LPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
           LPDY K TF        S ++PN   D LDL+SK+L+YD  KR+ A  
Sbjct: 230 LPDY-KPTFPKWARQDLSKVVPNLDEDGLDLLSKMLVYDPAKRISAKA 276



 Score = 34.2 bits (79), Expect = 0.15
 Identities = 17/50 (34%), Positives = 29/50 (58%), Gaps = 1/50 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSD 50
          +G +G V +AR+K T +IVA+K+I +       V +  +REI  L  ++ 
Sbjct: 9  EGTYGVVYKARDKLTGEIVALKKIRL-ETEDEGVPSTAIREISLLKELNH 57


>gnl|CDD|173734 cd07830, STKc_MAK_like, Catalytic domain of Male germ
           cell-Associated Kinase-like Serine/Threonine Kinases.
           Serine/Threonine Kinases (STKs), Male germ
           cell-Associated Kinase (MAK)-like subfamily, catalytic
           (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The MAK-like subfamily
           is part of a larger superfamily that includes the
           catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. This subfamily is composed of human MAK and
           MAK-related kinase (MRK), Saccharomyces cerevisiae
           Ime2p, Schizosaccharomyces pombe Mei4-dependent protein
           3 (Mde3) and Pit1, Caenorhabditis elegans dyf-5,
           Arabidopsis thaliana MHK, and similar proteins. These
           proteins play important roles during meiosis. MAK is
           highly expressed in testicular cells specifically in the
           meiotic phase, but is not essential for spermatogenesis
           and fertility. It functions as a coactivator of the
           androgen receptor in prostate cells. MRK, also called
           Intestinal Cell Kinase (ICK), is expressed ubiquitously,
           with highest expression in the ovary and uterus. A
           missense mutation in MRK causes
           endocrine-cerebro-osteodysplasia (ECO), suggesting that
           this protein plays an important role in the development
           of many organs. MAK and MRK may be involved in
           regulating cell cycle and cell fate. Ime2p is a
           meiosis-specific kinase that is important during meiotic
           initiation and during the later stages of meiosis. Mde3
           functions downstream of the transcription factor Mei-4
           which is essential for meiotic prophase I.
          Length = 283

 Score =  228 bits (584), Expect = 7e-71
 Identities = 90/222 (40%), Positives = 133/222 (59%), Gaps = 3/222 (1%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELL-HDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P IVKL + F + D +  VFE+M+  L++L+   K    +   +++ +  +L+G++++H 
Sbjct: 58  PNIVKLKEVFRENDELYFVFEYMEGNLYQLMKDRKGKPFSESVIRSIIYQILQGLAHIHK 117

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRC 459
               HRDLKP NLL+    ++KIADFGLAR   +     YT  V++RWYRAPE+L  S  
Sbjct: 118 HGFFHRDLKPENLLVSGPEVVKIADFGLARE--IRSRPPYTDYVSTRWYRAPEILLRSTS 175

Query: 460 YDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKI 519
           Y   VD+WA+GCI+ E+YT  PLFPG S+I+QL  +   LGTPT+  WP    L      
Sbjct: 176 YSSPVDIWALGCIMAELYTLRPLFPGSSEIDQLYKICSVLGTPTKQDWPEGYKLASKLGF 235

Query: 520 TFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANEI 561
            F    P     ++PNASP+ +DLI  +L +D +KR  A++ 
Sbjct: 236 RFPQFAPTSLHQLIPNASPEAIDLIKDMLRWDPKKRPTASQA 277



 Score = 40.6 bits (96), Expect = 0.001
 Identities = 18/50 (36%), Positives = 30/50 (60%), Gaps = 6/50 (12%)

Query: 2  GAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVM--REIKTLLSVS 49
          G  G V  ARNK T ++VAIK+  ++++  S    + M  RE+K+L  ++
Sbjct: 10 GTFGSVYLARNKETGELVAIKK--MKKKFYS--WEECMNLREVKSLRKLN 55


>gnl|CDD|143371 cd07866, STKc_BUR1, Catalytic domain of the Serine/Threonine
           Kinase, Fungal Cyclin-Dependent protein Kinase Bypass
           UAS Requirement 1 and similar proteins.
           Serine/Threonine Kinases (STKs), Bypass UAS Requirement
           1 (BUR1) subfamily, catalytic (c) domain. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           BUR1 subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. CDKs belong to a large family of STKs that are
           regulated by their cognate cyclins. Together, they are
           involved in the control of cell-cycle progression,
           transcription, and neuronal function. BUR1, also called
           SGV1, is a yeast Cyclin-Dependent protein Kinase (CDK)
           that is functionally equivalent to mammalian CDK9. It
           associates with the cyclin BUR2. BUR genes were
           orginally identified in a genetic screen as factors
           involved in general transcription. The BUR1/BUR2 complex
           phosphorylates the C-terminal domain of RNA polymerase
           II. In addition, this complex regulates histone
           modification by phosporylating Rad6 and mediating the
           association of the Paf1 complex with chromatin.
          Length = 311

 Score =  227 bits (581), Expect = 5e-70
 Identities = 99/236 (41%), Positives = 133/236 (56%), Gaps = 18/236 (7%)

Query: 341 PQIVKLLDFF---PDQDT-----VCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLK 392
           P +V L+D     PD+       V +V  +MD  L  LL +  + LT   +K YM  LL+
Sbjct: 67  PNVVPLIDMAVERPDKSKRKRGSVYMVTPYMDHDLSGLLENPSVKLTESQIKCYMLQLLE 126

Query: 393 GVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVE--RWG--------QYTPE 442
           G++YLH   I+HRD+K AN+LID  GILKIADFGLAR +D               +YT  
Sbjct: 127 GINYLHENHILHRDIKAANILIDNQGILKIADFGLARPYDGPPPNPKGGGGGGTRKYTNL 186

Query: 443 VASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTP 502
           V +RWYR PELL   R Y  +VD+W +GC+  EM+T  P+  G+SDI+QL ++    GTP
Sbjct: 187 VVTRWYRPPELLLGERRYTTAVDIWGIGCVFAEMFTRRPILQGKSDIDQLHLIFKLCGTP 246

Query: 503 TEDSWPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPA 558
           TE++WPG + LP    +    + P           P+ LDL+SKLL  D  KRL A
Sbjct: 247 TEETWPGWRSLPGCEGVHSFTNYPRTLEERFGKLGPEGLDLLSKLLSLDPYKRLTA 302



 Score = 33.4 bits (77), Expect = 0.23
 Identities = 17/47 (36%), Positives = 25/47 (53%), Gaps = 5/47 (10%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSS--VKTDVMREIKTL 45
          +G  G V +AR   T ++VA+K+IL+   H          +REIK L
Sbjct: 18 EGTFGEVYKARQIKTGRVVALKKILM---HNEKDGFPITALREIKIL 61


>gnl|CDD|240233 PTZ00024, PTZ00024, cyclin-dependent protein kinase; Provisional.
          Length = 335

 Score =  221 bits (565), Expect = 2e-67
 Identities = 98/233 (42%), Positives = 138/233 (59%), Gaps = 16/233 (6%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
             I+ L+D + + D + LV + M S L +++ D+KI LT   VK  +  +L G++ LH  
Sbjct: 80  ENIMGLVDVYVEGDFINLVMDIMASDLKKVV-DRKIRLTESQVKCILLQILNGLNVLHKW 138

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSF-------------DVERWGQYTPEVASRW 447
           + MHRDL PAN+ I+  GI KIADFGLAR +              ++R  + T +V + W
Sbjct: 139 YFMHRDLSPANIFINSKGICKIADFGLARRYGYPPYSDTLSKDETMQRREEMTSKVVTLW 198

Query: 448 YRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSW 507
           YRAPELL  +  Y  +VD+W+VGCI  E+ T  PLFPGE++I+QL  +   LGTP ED+W
Sbjct: 199 YRAPELLMGAEKYHFAVDMWSVGCIFAELLTGKPLFPGENEIDQLGRIFELLGTPNEDNW 258

Query: 508 PGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
           P  K LP Y +  F P  P    T+ PNAS D +DL+  LL  +  +R+ A E
Sbjct: 259 PQAKKLPLYTE--FTPRKPKDLKTIFPNASDDAIDLLQSLLKLNPLERISAKE 309


>gnl|CDD|173741 cd07843, STKc_CDC2L1, Catalytic domain of the Serine/Threonine
           Kinase, Cell Division Cycle 2-like 1.  Serine/Threonine
           Kinases (STKs), Cell Division Cycle 2-like 1 (CDC2L1)
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           CDC2L1 subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. CDKs belong to a large family of STKs that are
           regulated by their cognate cyclins. Together, they are
           involved in the control of cell-cycle progression,
           transcription, and neuronal function. CDC2L1, also
           called PITSLRE, exists in different isoforms which are
           named using the alias CDK11(p). The CDC2L1 gene produces
           two protein products, CDK11(p110) and CDK11(p58). CDC2L1
           is also represented by the caspase-processed CDK11(p46).
           CDK11(p110), the major isoform, associates with cyclin L
           and is expressed throughout the cell cycle. It is
           involved in RNA processing and the regulation of
           transcription. CDK11(p58) associates with cyclin D3 and
           is expressed during the G2/M phase of the cell cycle. It
           plays roles in spindle morphogenesis, centrosome
           maturation, sister chromatid cohesion, and the
           completion of mitosis. CDK11(p46) is formed from the
           larger isoforms by caspases during TNFalpha- and
           Fas-induced apoptosis. It functions as a downstream
           effector kinase in apoptotic signaling pathways and
           interacts with eukaryotic initiation factor 3f (eIF3f), 
           p21-activated kinase (PAK1), and Ran-binding protein
           (RanBPM).
          Length = 293

 Score =  214 bits (548), Expect = 2e-65
 Identities = 89/211 (42%), Positives = 122/211 (57%), Gaps = 3/211 (1%)

Query: 352 DQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPAN 411
           + D + +V E+++  L  L+   K       VK  M  LL GV++LH  +I+HRDLK +N
Sbjct: 77  NLDKIYMVMEYVEHDLKSLMETMKQPFLQSEVKCLMLQLLSGVAHLHDNWILHRDLKTSN 136

Query: 412 LLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGC 471
           LL++  GILKI DFGLAR +       YT  V + WYRAPELL  ++ Y  ++D+W+VGC
Sbjct: 137 LLLNNRGILKICDFGLAREYGSPL-KPYTQLVVTLWYRAPELLLGAKEYSTAIDMWSVGC 195

Query: 472 ILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKITFAPSDPVPWST 531
           I  E+ T  PLFPG+S+I+QL  +   LGTPTE  WPG  +LP   K TF          
Sbjct: 196 IFAELLTKKPLFPGKSEIDQLNKIFKLLGTPTEKIWPGFSELPGAKKKTFTKYPYNQLRK 255

Query: 532 MLPNASPDT--LDLISKLLLYDGQKRLPANE 560
             P  S      DL+++LL YD  KR+ A +
Sbjct: 256 KFPALSLSDNGFDLLNRLLTYDPAKRISAED 286



 Score = 43.4 bits (103), Expect = 2e-04
 Identities = 19/54 (35%), Positives = 30/54 (55%), Gaps = 11/54 (20%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRH-----TSSVKTDVMREIKTLLSVS 49
          +G +G V RAR+K T +IVA+K++ + +       TS      +REI  LL + 
Sbjct: 15 EGTYGVVYRARDKKTGEIVALKKLKMEKEKEGFPITS------LREINILLKLQ 62


>gnl|CDD|173737 cd07834, STKc_MAPK, Catalytic domain of the Serine/Threonine
           Kinase, Mitogen-Activated Protein Kinase.
           Serine/Threonine Kinases (STKs), Mitogen-Activated
           Protein Kinase (MAPK) subfamily, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The MAPK subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. MAPKs serve as important
           mediators of cellular responses to extracellular
           signals. They control critical cellular functions
           including differentiation, proliferation, migration, and
           apoptosis. They are also implicated in the pathogenesis
           of many diseases including multiple types of cancer,
           stroke, diabetes, and chronic inflammation. Typical MAPK
           pathways involve a triple kinase core cascade comprising
           of the MAPK, which is phosphorylated and activated by a
           MAPK kinase (MAP2K or MKK), which itself is
           phosphorylated and activated by a MAPK kinase kinase
           (MAP3K or MKKK). Each cascade is activated either by a
           small GTP-binding protein or by an adaptor protein,
           which transmits the signal either directly to a MAP3K to
           start the triple kinase core cascade or indirectly
           through a mediator kinase, a MAP4K. There are three main
           typical MAPK subfamilies: Extracellular signal-Regulated
           Kinase (ERK), c-Jun N-terminal Kinase (JNK), and p38.
           Some MAPKs are atypical in that they are not regulated
           by MAP2Ks. These include MAPK4, MAPK6, NLK, and ERK7.
          Length = 330

 Score =  215 bits (551), Expect = 2e-65
 Identities = 87/231 (37%), Positives = 135/231 (58%), Gaps = 15/231 (6%)

Query: 341 PQIVKLLDFFPDQD-----TVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVS 395
             I+ LLD            V +V E M++ L +++   +  LT  H++ ++  +L+G+ 
Sbjct: 59  ENIIGLLDILRPPSPEDFNDVYIVTELMETDLHKVIKSPQ-PLTDDHIQYFLYQILRGLK 117

Query: 396 YLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVE--RWGQYTPEVASRWYRAPEL 453
           YLH   ++HRDLKP+N+L++    LKI DFGLAR  D +    G  T  V +RWYRAPEL
Sbjct: 118 YLHSANVIHRDLKPSNILVNSNCDLKICDFGLARGVDPDEDEKGFLTEYVVTRWYRAPEL 177

Query: 454 LYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDL 513
           L +S  Y +++D+W+VGCI  E+ T  PLFPG   I+QL +++  LGTP+E+    LK +
Sbjct: 178 LLSSSRYTKAIDIWSVGCIFAELLTRKPLFPGRDYIDQLNLIVEVLGTPSEED---LKFI 234

Query: 514 PDYNKITF----APSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
                  +          P S + P ASP+ +DL+ K+L++D +KR+ A+E
Sbjct: 235 TSEKARNYLKSLPKKPKKPLSKLFPGASPEAIDLLEKMLVFDPKKRITADE 285



 Score = 40.2 bits (95), Expect = 0.002
 Identities = 18/48 (37%), Positives = 25/48 (52%), Gaps = 7/48 (14%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTD---VMREIKTL 45
           GA+G V  A +K T + VAIK+I     +      D   ++REIK L
Sbjct: 10 SGAYGVVCSAVDKRTGRKVAIKKI----SNVFDDLIDAKRILREIKLL 53


>gnl|CDD|173751 cd07860, STKc_CDK2_3, Catalytic domain of the Serine/Threonine
           Kinases, Cyclin-Dependent protein Kinase 2 and 3.
           Serine/Threonine Kinases (STKs), Cyclin-dependent
           protein kinase 2 (CDK2) and CDK3 subfamily, catalytic
           (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The CDK2/3 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. CDKs belong to a
           large family of STKs that are regulated by their cognate
           cyclins. Together, they are involved in the control of
           cell-cycle progression, transcription, and neuronal
           function. CDK2 is regulated by cyclin E or cyclin A.
           Upon activation by cyclin E, it phosphorylates the
           retinoblastoma (pRb) protein which activates E2F
           mediated transcription and allows cells to move into S
           phase. The CDK2/cyclin A complex plays a role in
           regulating DNA replication. CDK2, together with CDK4,
           also regulates embryonic cell proliferation. Despite
           these important roles, mice deleted for the cdk2 gene
           are viable and normal except for being sterile. This may
           be due to compensation provided by CDK1 (also called
           Cdc2), which can also bind cyclin E and drive the G1 to
           S phase transition. CDK3 is regulated by cyclin C and it
           phosphorylates pRB specifically during the G0/G1
           transition. This phosphorylation is required for cells
           to exit G0 efficiently and enter the G1 phase.
          Length = 284

 Score =  213 bits (544), Expect = 5e-65
 Identities = 95/219 (43%), Positives = 137/219 (62%), Gaps = 3/219 (1%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIH-LTIPHVKTYMQMLLKGVSYLHG 399
           P IVKLLD    ++ + LVFE +   L + +    +  + +P +K+Y+  LL+G+++ H 
Sbjct: 59  PNIVKLLDVIHTENKLYLVFEFLHQDLKKFMDASPLSGIPLPLIKSYLFQLLQGLAFCHS 118

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRC 459
             ++HRDLKP NLLI+  G +K+ADFGLAR+F V     YT EV + WYRAPE+L   + 
Sbjct: 119 HRVLHRDLKPQNLLINTEGAIKLADFGLARAFGVPV-RTYTHEVVTLWYRAPEILLGCKY 177

Query: 460 YDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKI 519
           Y  +VD+W++GCI  EM T   LFPG+S+I+QL  +   LGTP E  WPG+  LPDY K 
Sbjct: 178 YSTAVDIWSLGCIFAEMVTRRALFPGDSEIDQLFRIFRTLGTPDEVVWPGVTSLPDY-KP 236

Query: 520 TFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPA 558
           +F       +S ++P    D  DL+S++L YD  KR+ A
Sbjct: 237 SFPKWARQDFSKVVPPLDEDGRDLLSQMLHYDPNKRISA 275



 Score = 34.0 bits (78), Expect = 0.16
 Identities = 18/45 (40%), Positives = 28/45 (62%), Gaps = 1/45 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
          +G +G V +ARNK T ++VA+K+I +    T  V +  +REI  L
Sbjct: 10 EGTYGVVYKARNKLTGEVVALKKIRL-DTETEGVPSTAIREISLL 53


>gnl|CDD|173742 cd07845, STKc_CDK10, Catalytic domain of the Serine/Threonine
           Kinase, Cyclin-Dependent protein Kinase 10.
           Serine/Threonine Kinases (STKs), Cyclin-dependent
           protein Kinase 10 (CDK10) subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The CDK10 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. CDKs belong to a
           large family of STKs that are regulated by their cognate
           cyclins. Together, they are involved in the control of
           cell-cycle progression, transcription, and neuronal
           function. CDK10, also called PISSLRE, is essential for
           cell growth and proliferation, and acts through the G2/M
           phase of the cell cycle. CDK10 has also been identified
           as an important factor in endocrine therapy resistance
           in breast cancer. CDK10 silencing increases the
           transcription of c-RAF and the activation of the p42/p44
           MAPK pathway, which leads to antiestrogen resistance.
           Patients who express low levels of CDK10 relapse early
           on tamoxifen.
          Length = 309

 Score =  210 bits (537), Expect = 1e-63
 Identities = 99/229 (43%), Positives = 132/229 (57%), Gaps = 17/229 (7%)

Query: 341 PQIVKLLDFFPDQ--DTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLH 398
           P IV+L +    +  D++ LV E+ +  L  LL +     +   VK  M  LL+G+ YLH
Sbjct: 66  PNIVELKEVVVGKHLDSIFLVMEYCEQDLASLLDNMPTPFSESQVKCLMLQLLRGLQYLH 125

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR 458
             FI+HRDLK +NLL+   G LKIADFGLAR++ +      TP+V + WYRAPELL    
Sbjct: 126 ENFIIHRDLKVSNLLLTDKGCLKIADFGLARTYGLPA-KPMTPKVVTLWYRAPELLLGCT 184

Query: 459 CYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNK 518
            Y  ++D+WAVGCIL E+  + PL PG+S+IEQL +++  LGTP E  WPG  DLP   K
Sbjct: 185 TYTTAIDMWAVGCILAELLAHKPLLPGKSEIEQLDLIIQLLGTPNESIWPGFSDLPLVGK 244

Query: 519 ITFAPSDP-------VPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
            T  P  P        PW       S   L L++ LL+YD +KR  A E
Sbjct: 245 FTL-PKQPYNNLKHKFPWL------SEAGLRLLNFLLMYDPKKRATAEE 286



 Score = 33.1 bits (76), Expect = 0.36
 Identities = 15/48 (31%), Positives = 29/48 (60%), Gaps = 1/48 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSV 48
          +G +G V RAR+ ++ +IVA+K++ +       +    +REI  LL++
Sbjct: 17 EGTYGIVYRARDTTSGEIVALKKVRMDNER-DGIPISSLREITLLLNL 63


>gnl|CDD|143341 cd07836, STKc_Pho85, Catalytic domain of the Serine/Threonine
           Kinase, Fungal Cyclin-Dependent protein Kinase Pho85.
           Serine/Threonine Kinases (STKs), Pho85 subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Pho85 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. Pho85 is a
           multifunctional Cyclin-Dependent protein Kinase (CDK) in
           yeast. CDKs belong to a large family of STKs that are
           regulated by their cognate cyclins. Together, they are
           involved in the control of cell-cycle progression,
           transcription, and neuronal function. Pho85 is regulated
           by 10 different cyclins (Pcls) and plays a role in G1
           progression, cell polarity, phosphate and glycogen
           metabolism, gene expression, and in signaling changes in
           the environment. It is not essential for yeast viability
           and is the functional homolog of mammalian CDK5, which
           plays a role in central nervous system development.
          Length = 284

 Score =  207 bits (528), Expect = 9e-63
 Identities = 94/222 (42%), Positives = 140/222 (63%), Gaps = 4/222 (1%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELL--HDKKIHLTIPHVKTYMQMLLKGVSYLH 398
             IV+L D    ++ + LVFE+MD  L + +  H  +  L    VK++   LLKG+++ H
Sbjct: 58  ENIVRLHDVIHTENKLMLVFEYMDKDLKKYMDTHGVRGALDPNTVKSFTYQLLKGIAFCH 117

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR 458
              ++HRDLKP NLLI+K G LK+ADFGLAR+F +     ++ EV + WYRAP++L  SR
Sbjct: 118 ENRVLHRDLKPQNLLINKRGELKLADFGLARAFGIPV-NTFSNEVVTLWYRAPDVLLGSR 176

Query: 459 CYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNK 518
            Y  S+D+W+VGCI+ EM T  PLFPG ++ +QL  +   +GTPTE +WPG+  LP+Y K
Sbjct: 177 TYSTSIDIWSVGCIMAEMITGRPLFPGTNNEDQLLKIFRIMGTPTESTWPGISQLPEY-K 235

Query: 519 ITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
            TF    P     + P+A P  +DL+ +LL  + + R+ A++
Sbjct: 236 PTFPRYPPQDLQQLFPHADPLGIDLLHRLLQLNPELRISAHD 277



 Score = 30.5 bits (69), Expect = 1.9
 Identities = 10/24 (41%), Positives = 17/24 (70%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRI 24
          +G +  V + RN++T +IVA+K I
Sbjct: 10 EGTYATVYKGRNRTTGEIVALKEI 33


>gnl|CDD|143342 cd07837, STKc_CdkB_plant, Catalytic domain of the Serine/Threonine
           Kinase, Plant B-type Cyclin-Dependent protein Kinase.
           Serine/Threonine Kinases (STKs), Plant B-type
           Cyclin-Dependent protein Kinase (CdkB) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The CdkB subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. CDKs belong to a
           large family of STKs that are regulated by their cognate
           cyclins. Together, they are involved in the control of
           cell-cycle progression, transcription, and neuronal
           function. The plant-specific B-type CDKs are expressed
           from the late S to the M phase of the cell cycle. They
           are characterized by the cyclin binding motif
           PPT[A/T]LRE. They play a role in controlling mitosis and
           integrating developmental pathways, such as stomata and
           leaf development. CdkB has been shown to associate with
           both cyclin B, which controls G2/M transition, and
           cyclin D, which acts as a mediator in linking
           extracellular signals to the cell cycle.
          Length = 295

 Score =  200 bits (510), Expect = 5e-60
 Identities = 99/230 (43%), Positives = 139/230 (60%), Gaps = 13/230 (5%)

Query: 341 PQIVKLLDFF-----PDQDTVCLVFEHMDSGL--WELLHDKKIHLTIPH--VKTYMQMLL 391
             IV+LLD         + ++ LVFE++DS L  +   + +     +P   +K++M  LL
Sbjct: 61  IYIVRLLDVEHVEEKNGKPSLYLVFEYLDSDLKKFMDSNGRGPGRPLPAKTIKSFMYQLL 120

Query: 392 KGVSYLHGKFIMHRDLKPANLLIDKA-GILKIADFGLARSFDVERWGQYTPEVASRWYRA 450
           KGV++ H   +MHRDLKP NLL+DK  G+LKIAD GL R+F +     YT E+ + WYRA
Sbjct: 121 KGVAHCHKHGVMHRDLKPQNLLVDKQKGLLKIADLGLGRAFSIP-VKSYTHEIVTLWYRA 179

Query: 451 PELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGL 510
           PE+L  S  Y   VD+W+VGCI  EM    PLFPG+S+++QL  +   LGTPTE  WPG+
Sbjct: 180 PEVLLGSTHYSTPVDIWSVGCIFAEMSRKQPLFPGDSELQQLLHIFKLLGTPTEQVWPGV 239

Query: 511 KDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
             L D+++  F    P   S  +P+ SP+ LDL+ K+L YD  KR+ A  
Sbjct: 240 SKLRDWHE--FPQWKPQDLSRAVPDLSPEGLDLLQKMLRYDPAKRISAKA 287



 Score = 34.8 bits (80), Expect = 0.10
 Identities = 15/50 (30%), Positives = 29/50 (58%), Gaps = 1/50 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSD 50
          +G +G V +AR+K+T ++VA+K+  +       +    +REI  L  +S+
Sbjct: 11 EGTYGKVYKARDKNTGKLVALKKTRLEMDE-EGIPPTALREISLLQMLSE 59


>gnl|CDD|177649 PLN00009, PLN00009, cyclin-dependent kinase A; Provisional.
          Length = 294

 Score =  198 bits (505), Expect = 4e-59
 Identities = 96/218 (44%), Positives = 135/218 (61%), Gaps = 4/218 (1%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPH-VKTYMQMLLKGVSYLHGKF 401
           IV+L D    +  + LVFE++D  L + +         P  +KTY+  +L+G++Y H   
Sbjct: 63  IVRLQDVVHSEKRLYLVFEYLDLDLKKHMDSSPDFAKNPRLIKTYLYQILRGIAYCHSHR 122

Query: 402 IMHRDLKPANLLIDK-AGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCY 460
           ++HRDLKP NLLID+    LK+ADFGLAR+F +     +T EV + WYRAPE+L  SR Y
Sbjct: 123 VLHRDLKPQNLLIDRRTNALKLADFGLARAFGIPV-RTFTHEVVTLWYRAPEILLGSRHY 181

Query: 461 DQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKIT 520
              VD+W+VGCI  EM    PLFPG+S+I++L  +   LGTP E++WPG+  LPDY K  
Sbjct: 182 STPVDIWSVGCIFAEMVNQKPLFPGDSEIDELFKIFRILGTPNEETWPGVTSLPDY-KSA 240

Query: 521 FAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPA 558
           F    P   +T++P   P  +DL+SK+L  D  KR+ A
Sbjct: 241 FPKWPPKDLATVVPTLEPAGVDLLSKMLRLDPSKRITA 278



 Score = 32.1 bits (73), Expect = 0.71
 Identities = 15/45 (33%), Positives = 28/45 (62%), Gaps = 1/45 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
          +G +G V +AR++ TN+ +A+K+I +  +    V +  +REI  L
Sbjct: 12 EGTYGVVYKARDRVTNETIALKKIRL-EQEDEGVPSTAIREISLL 55


>gnl|CDD|214567 smart00220, S_TKc, Serine/Threonine protein kinases, catalytic
           domain.  Phosphotransferases. Serine or
           threonine-specific kinase subfamily.
          Length = 254

 Score =  195 bits (499), Expect = 8e-59
 Identities = 83/222 (37%), Positives = 121/222 (54%), Gaps = 31/222 (13%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P IV+L D F D+D + LV E+ + G L++LL  +   L+    + Y++ +L  + YLH 
Sbjct: 57  PNIVRLYDVFEDEDKLYLVMEYCEGGDLFDLLKKRG-RLSEDEARFYLRQILSALEYLHS 115

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRC 459
           K I+HRDLKP N+L+D+ G +K+ADFGLAR  D     + T  V +  Y APE+L   + 
Sbjct: 116 KGIVHRDLKPENILLDEDGHVKLADFGLARQLDPG--EKLTTFVGTPEYMAPEVL-LGKG 172

Query: 460 YDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKI 519
           Y ++VD+W++G IL E+ T  P FPG+   +QL  +  K+G P     P   D+      
Sbjct: 173 YGKAVDIWSLGVILYELLTGKPPFPGD---DQLLELFKKIGKPKPPFPPPEWDI------ 223

Query: 520 TFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANEI 561
                            SP+  DLI KLL+ D +KRL A E 
Sbjct: 224 -----------------SPEAKDLIRKLLVKDPEKRLTAEEA 248



 Score = 48.7 bits (117), Expect = 2e-06
 Identities = 17/48 (35%), Positives = 29/48 (60%), Gaps = 2/48 (4%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSV 48
          +G+ G V  AR+K T ++VAIK   I+++     +  ++REIK L  +
Sbjct: 9  EGSFGKVYLARDKKTGKLVAIKV--IKKKKIKKDRERILREIKILKKL 54


>gnl|CDD|173749 cd07855, STKc_ERK5, Catalytic domain of the Serine/Threonine
           Kinase,  Extracellular signal-Regulated Kinase 5.
           Serine/Threonine Kinases (STKs), Extracellular
           signal-Regulated Kinase 5 (ERK5) subfamily, catalytic
           (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The ERK5 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. MAPKs are
           important mediators of cellular responses to
           extracellular signals. ERK5, also called Big MAPK1
           (BMK1) or MAPK7, has a unique C-terminal extension,
           making it approximately twice as big as other MAPKs.
           This extension contains transcriptional activation
           capability which is inhibited by the N-terminal half.
           ERK5 is activated in response to growth factors and
           stress by a cascade that leads to its phosphorylation by
           the MAP2K MEK5, which in turn is regulated by the MAP3Ks
           MEKK2 and MEKK3. Activated ERK5 phosphorylates its
           targets including myocyte enhancer factor 2 (MEF2),
           Sap1a, c-Myc, and RSK. It plays a role in EGF-induced
           cell proliferation during the G1/S phase transition.
           Studies on knockout mice revealed that ERK5 is essential
           for cardiovascular development and plays an important
           role in angiogenesis. It is also critical for neural
           differentiation and survival. The ERK5 pathway has been
           implicated in the pathogenesis of many diseases
           including cancer, cardiac hypertrophy, and
           atherosclerosis.
          Length = 334

 Score =  198 bits (506), Expect = 9e-59
 Identities = 84/229 (36%), Positives = 132/229 (57%), Gaps = 9/229 (3%)

Query: 341 PQIVKLLDFF----PDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSY 396
             I+ + D       D   V +V + M+S L  ++H  +  LT  H++ ++  LL+G+ Y
Sbjct: 64  DNIIAIRDILRPPGADFKDVYVVMDLMESDLHHIIHSDQ-PLTEEHIRYFLYQLLRGLKY 122

Query: 397 LHGKFIMHRDLKPANLLIDKAGILKIADFGLAR---SFDVERWGQYTPEVASRWYRAPEL 453
           +H   ++HRDLKP+NLL+++   L+I DFG+AR   S   E     T  VA+RWYRAPEL
Sbjct: 123 IHSANVIHRDLKPSNLLVNEDCELRIGDFGMARGLSSSPTEHKYFMTEYVATRWYRAPEL 182

Query: 454 LYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDL 513
           L +   Y  ++D+W+VGCI  EM     LFPG++ + QL ++L  LG+P+E+    +   
Sbjct: 183 LLSLPEYTTAIDMWSVGCIFAEMLGRRQLFPGKNYVHQLKLILSVLGSPSEEVLNRIGSD 242

Query: 514 PDYNKIT-FAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANEI 561
                I       PVPWS + P ASP+ LDL+S++L +D ++R+   + 
Sbjct: 243 RVRKYIQNLPRKQPVPWSKIFPKASPEALDLLSQMLQFDPEERITVEQA 291



 Score = 33.1 bits (76), Expect = 0.39
 Identities = 16/46 (34%), Positives = 25/46 (54%), Gaps = 3/46 (6%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRIL-IRRRHTSSVKTDVMREIKTL 45
           GA+G V  A +  + + VAIK+I       T + +T  +RE+K L
Sbjct: 15 SGAYGVVCSAIDTRSGKKVAIKKIPHAFDVPTLAKRT--LRELKIL 58


>gnl|CDD|173739 cd07838, STKc_CDK4_6_like, Catalytic domain of Cyclin-Dependent
           protein Kinase 4 and 6-like Serine/Threonine Kinases.
           Serine/Threonine Kinases (STKs), Cyclin-dependent
           protein kinase 4 (CDK4) and CDK6-like subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The CDK4/6-like
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. CDKs belong to a large family of STKs that are
           regulated by their cognate cyclins. Together, they are
           involved in the control of cell-cycle progression,
           transcription, and neuronal function. CDK4 and CDK6
           partner with D-type cyclins to regulate the early G1
           phase of the cell cycle. They are the first kinase
           activated by mitogenic signals to release cells from the
           G0 arrested state. CDK4 and CDK6 are both expressed
           ubiquitously, associate with all three D cyclins (D1, D2
           and D3), and phosphorylate the retinoblastoma (pRb)
           protein. They are also regulated by the INK4 family of
           inhibitors which associate with either the CDK alone or
           the CDK/cyclin complex. CDK4 and CDK6 show differences
           in subcellular localization, sensitivity to some
           inhibitors, timing in activation, tumor selectivity, and
           possibly substrate profiles. Although CDK4 and CDK6 seem
           to show some redundancy, they also have discrete,
           nonoverlapping functions. CDK6 plays an important role
           in cell differentiation.
          Length = 287

 Score =  196 bits (501), Expect = 1e-58
 Identities = 90/226 (39%), Positives = 125/226 (55%), Gaps = 12/226 (5%)

Query: 341 PQIVKLLDFFPDQDT-----VCLVFEHMDSGLWELL-HDKKIHLTIPHVKTYMQMLLKGV 394
           P IV+LLD      T     + LVFEH+D  L   L    K  L    +K  M+ LL+GV
Sbjct: 61  PNIVRLLDVCHGPRTDRELKLTLVFEHVDQDLATYLSKCPKPGLPPETIKDLMRQLLRGV 120

Query: 395 SYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELL 454
            +LH   I+HRDLKP N+L+   G +KIADFGLAR +  E     T  V + WYRAPE+L
Sbjct: 121 DFLHSHRIVHRDLKPQNILVTSDGQVKIADFGLARIYSFEM--ALTSVVVTLWYRAPEVL 178

Query: 455 YASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLP 514
             S  Y   VD+W+VGCI  E++   PLF G S+ +QL  +   +G P+E+ WP    LP
Sbjct: 179 LQSS-YATPVDMWSVGCIFAELFRRRPLFRGTSEADQLDKIFDVIGLPSEEEWPRNVSLP 237

Query: 515 DYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
              + +F    P  + + +P    + LDL+ K+L ++  KR+ A E
Sbjct: 238 ---RSSFPSYTPRSFKSFVPEICEEGLDLLKKMLTFNPHKRISAFE 280



 Score = 40.7 bits (96), Expect = 0.001
 Identities = 16/56 (28%), Positives = 31/56 (55%), Gaps = 2/56 (3%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSDRYEQTN 56
          +GA+G V +AR+ +T + VA+K++ +       +    +REI  L  + + +E  N
Sbjct: 9  EGAYGTVYKARDLNTGRFVALKKVRVPLSE-EGIPLSTLREIALLKQL-ESFEHPN 62


>gnl|CDD|173747 cd07852, STKc_MAPK15, Catalytic domain of the Serine/Threonine
           Kinase, Mitogen-Activated Protein Kinase 15.
           Serine/Threonine Kinases (STKs), Mitogen-Activated
           Protein Kinase 15 (MAPK15) subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The MAPK15 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. MAPKs are
           important mediators of cellular responses to
           extracellular signals. Human MAPK15 is also called
           Extracellular signal Regulated Kinase 8 (ERK8) while the
           rat protein is called ERK7. ERK7 and ERK8 display both
           similar and different biochemical properties. They
           autophosphorylate and activate themselves and do not
           require upstream activating kinases. ERK7 is
           constitutively active and is not affected by
           extracellular stimuli whereas ERK8 shows low basal
           activity and is activated by DNA-damaging agents. ERK7
           and ERK8 also have different substrate profiles. Genome
           analysis shows that they are orthologs with similar gene
           structures. ERK7 and ERK 8 may be involved in the
           signaling of some nuclear receptor transcription
           factors. ERK7 regulates hormone-dependent degradation of
           estrogen receptor alpha while ERK8 down-regulates the
           transcriptional co-activation androgen and
           glucocorticoid receptors.
          Length = 337

 Score =  197 bits (503), Expect = 2e-58
 Identities = 93/236 (39%), Positives = 130/236 (55%), Gaps = 27/236 (11%)

Query: 341 PQIVKLLDFFP---DQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYL 397
           P IVKLL+      D+D + LVFE+M++ L  ++  +   L   H +  M  LLK + Y+
Sbjct: 67  PNIVKLLNVIKAENDKD-IYLVFEYMETDLHAVI--RANILEDVHKRYIMYQLLKALKYI 123

Query: 398 HGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPE----VASRWYRAPEL 453
           H   ++HRDLKP+N+L++    +K+ADFGLARS          P     VA+RWYRAPE+
Sbjct: 124 HSGNVIHRDLKPSNILLNSDCRVKLADFGLARSLSELEENPENPVLTDYVATRWYRAPEI 183

Query: 454 LYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTED-------- 505
           L  S  Y + VD+W+VGCILGEM    PLFPG S + QL  ++  +G P+ +        
Sbjct: 184 LLGSTRYTKGVDMWSVGCILGEMLLGKPLFPGTSTLNQLEKIIEVIGPPSAEDIESIKSP 243

Query: 506 -SWPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
            +   L  LP             P   +LP AS D LDL+ KLL+++  KRL A E
Sbjct: 244 FAATMLDSLP--------SRPRKPLDELLPKASDDALDLLKKLLVFNPNKRLTAEE 291



 Score = 33.7 bits (78), Expect = 0.25
 Identities = 10/24 (41%), Positives = 19/24 (79%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRI 24
          +GA+G V +A ++ T ++VA+K+I
Sbjct: 17 KGAYGIVWKAIDRRTKEVVALKKI 40


>gnl|CDD|173752 cd07861, STKc_CDK1_euk, Catalytic domain of the Serine/Threonine
           Kinase, Cyclin-Dependent protein Kinase 1 from higher
           eukaryotes-like.  Serine/Threonine Kinases (STKs),
           Cyclin-Dependent protein Kinase 1 (CDK1) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The CDK1 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. CDKs belong to a
           large family of STKs that are regulated by their cognate
           cyclins. Together, they are involved in the control of
           cell-cycle progression, transcription, and neuronal
           function. This subfamily is composed of CDK1 from higher
           eukaryotes. CDK1 is also called Cell division control
           protein 2 (Cdc2) or p34 protein kinase, and is regulated
           by cyclins A, B, and E. The CDK1/cyclin A complex
           controls G2 phase entry and progression. CDK1/cyclin A2
           has also been implicated as an important regulator of S
           phase events. The CDK1/cyclin B complex is critical for
           G2 to M phase transition. It induces mitosis by
           activating nuclear enzymes that regulate chromatin
           condensation, nuclear membrane degradation,
           mitosis-specific microtubule and cytoskeletal
           reorganization. CDK1 also associates with cyclin E and
           plays a role in the entry into S phase. CDK1
           transcription is stable throughout the cell cycle but is
           modulated in some pathological conditions. It may play a
           role in regulating apoptosis under these conditions. In
           breast cancer cells, HER2 can mediate apoptosis by
           inactivating CDK1. Activation of CDK1 may contribute to
           HIV-1 induced apoptosis and neuronal apoptosis in
           neurodegenerative diseases.
          Length = 285

 Score =  193 bits (493), Expect = 1e-57
 Identities = 98/230 (42%), Positives = 135/230 (58%), Gaps = 18/230 (7%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPH--------VKTYMQMLLK 392
           P IV L D    +  + L+FE +   L      KK   ++P         VK+Y+  +L+
Sbjct: 59  PNIVCLQDVLMQESRLYLIFEFLSMDL------KKYLDSLPKGQYMDAELVKSYLYQILQ 112

Query: 393 GVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVE-RWGQYTPEVASRWYRAP 451
           G+ + H + ++HRDLKP NLLID  G++K+ADFGLAR+F +  R   YT EV + WYRAP
Sbjct: 113 GILFCHSRRVLHRDLKPQNLLIDNKGVIKLADFGLARAFGIPVR--VYTHEVVTLWYRAP 170

Query: 452 ELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLK 511
           E+L  S  Y   VD+W++G I  EM T  PLF G+S+I+QL  +   LGTPTED WPG+ 
Sbjct: 171 EVLLGSPRYSTPVDIWSIGTIFAEMATKKPLFHGDSEIDQLFRIFRILGTPTEDVWPGVT 230

Query: 512 DLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANEI 561
            LPDY K TF         + + N   D LDL+ K+L+YD  KR+ A + 
Sbjct: 231 SLPDY-KNTFPKWKKGSLRSAVKNLDEDGLDLLEKMLIYDPAKRISAKKA 279



 Score = 35.5 bits (82), Expect = 0.052
 Identities = 30/115 (26%), Positives = 54/115 (46%), Gaps = 16/115 (13%)

Query: 1   QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSDRYEQTNMAEK 60
           +G +G V + RNK T QIVA+K+I +       V +  +REI  L  +           +
Sbjct: 10  EGTYGVVYKGRNKKTGQIVAMKKIRLESEE-EGVPSTAIREISLLKEL-----------Q 57

Query: 61  RQAKLDMERALAEDPTVYQYDEVYDEIDKKKH-DTLAAKKKGDKKPKYIQSLLKQ 114
               + ++  L ++  +Y   E +  +D KK+ D+L   +  D   + ++S L Q
Sbjct: 58  HPNIVCLQDVLMQESRLYLIFE-FLSMDLKKYLDSLPKGQYMD--AELVKSYLYQ 109


>gnl|CDD|215690 pfam00069, Pkinase, Protein kinase domain. 
          Length = 260

 Score =  189 bits (482), Expect = 3e-56
 Identities = 82/222 (36%), Positives = 114/222 (51%), Gaps = 26/222 (11%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P IV+L+D F D+D + LV E+ + G L++ L      L+    K     +L+G+ YLH 
Sbjct: 58  PNIVRLIDAFEDKDHLYLVMEYCEGGDLFDYLSRGGP-LSEDEAKKIALQILRGLEYLHS 116

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRC 459
             I+HRDLKP N+L+D+ G++KIADFGLA+          T  V + WY APE+L     
Sbjct: 117 NGIIHRDLKPENILLDENGVVKIADFGLAKKLLKSS-SSLTTFVGTPWYMAPEVLLGGNG 175

Query: 460 YDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKI 519
           Y   VD+W++G IL E+ T  P F GE+ ++QL ++   LG P E   P           
Sbjct: 176 YGPKVDVWSLGVILYELLTGKPPFSGENILDQLQLIRRILGPPLEFDEP----------- 224

Query: 520 TFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANEI 561
                    WS+     S +  DLI K L  D  KR  A EI
Sbjct: 225 --------KWSSG----SEEAKDLIKKCLNKDPSKRPTAEEI 254



 Score = 41.9 bits (99), Expect = 5e-04
 Identities = 17/49 (34%), Positives = 26/49 (53%), Gaps = 1/49 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVS 49
           G+ G V +A++K T +IVA+K +  R    S       REI+ L  +S
Sbjct: 9  SGSFGTVYKAKHKGTGKIVAVKILKKRSEK-SKKDQTARREIRILRRLS 56


>gnl|CDD|143344 cd07839, STKc_CDK5, Catalytic domain of the Serine/Threonine
           Kinase, Cyclin-Dependent protein Kinase 5.
           Serine/Threonine Kinases (STKs), Cyclin-Dependent
           protein Kinase 5 (CDK5) subfamily, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The CDK5 subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. CDKs belong to a large family
           of STKs that are regulated by their cognate cyclins.
           Together, they are involved in the control of cell-cycle
           progression, transcription, and neuronal function. CDK5
           is unusual in that it is regulated by non-cyclin
           proteins, p35 and p39. It is highly expressed in the
           nervous system and is critical in normal neural
           development and function. It plays a role in neuronal
           migration and differentiation, and is also important in
           synaptic plasticity and learning. CDK5 also participates
           in protecting against cell death and promoting
           angiogenesis. Impaired CDK5 activity is implicated in
           Alzheimer's disease, amyotrophic lateral sclerosis,
           Parkinson's disease, Huntington's disease and acute
           neuronal injury.
          Length = 284

 Score =  188 bits (479), Expect = 1e-55
 Identities = 89/224 (39%), Positives = 128/224 (57%), Gaps = 9/224 (4%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
             IV+L D       + LVFE+ D  L +        +    VK++M  LLKG+++ H  
Sbjct: 59  KNIVRLYDVLHSDKKLTLVFEYCDQDLKKYFDSCNGDIDPEIVKSFMFQLLKGLAFCHSH 118

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCY 460
            ++HRDLKP NLLI+K G LK+ADFGLAR+F +     Y+ EV + WYR P++L+ ++ Y
Sbjct: 119 NVLHRDLKPQNLLINKNGELKLADFGLARAFGIPV-RCYSAEVVTLWYRPPDVLFGAKLY 177

Query: 461 DQSVDLWAVGCILGEMYTNA--PLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNK 518
             S+D+W+ GCI  E+  NA  PLFPG    +QL  +   LGTPTE+SWPG+  LPDY  
Sbjct: 178 STSIDMWSAGCIFAEL-ANAGRPLFPGNDVDDQLKRIFRLLGTPTEESWPGVSKLPDY-- 234

Query: 519 ITFAPSDP--VPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
               P  P       ++P  +    DL+  LL+ +  +R+ A E
Sbjct: 235 -KPYPMYPATTSLVNVVPKLNSTGRDLLQNLLVCNPVQRISAEE 277



 Score = 32.8 bits (75), Expect = 0.37
 Identities = 16/45 (35%), Positives = 28/45 (62%), Gaps = 1/45 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
          +G +G V +A+N+ T++IVA+KR+ +       V +  +REI  L
Sbjct: 10 EGTYGTVFKAKNRETHEIVALKRVRL-DDDDEGVPSSALREICLL 53


>gnl|CDD|143349 cd07844, STKc_PCTAIRE_like, Catalytic domain of PCTAIRE-like
           Serine/Threonine Kinases.  Serine/Threonine Kinases
           (STKs), PCTAIRE-like subfamily, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The PCTAIRE-like subfamily is part of a
           larger superfamily that includes the catalytic domains
           of other protein STKs, protein tyrosine kinases, RIO
           kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. Members of this
           subfamily share sequence similarity with
           Cyclin-Dependent Kinases (CDKs), which belong to a large
           family of STKs that are regulated by their cognate
           cyclins. Together, CDKs and cyclins are involved in the
           control of cell-cycle progression, transcription, and
           neuronal function. The association of PCTAIRE-like
           proteins with cyclins has not been widely studied,
           although PFTAIRE-1 has been shown to function as a CDK
           which is regulated by cyclin D3 as well as the
           membrane-associated cyclin Y. PCTAIRE-like proteins show
           unusual expression patterns with high levels in
           post-mitotic tissues, suggesting that they may be
           involved in regulating post-mitotic cellular events.
          Length = 291

 Score =  188 bits (479), Expect = 2e-55
 Identities = 91/221 (41%), Positives = 133/221 (60%), Gaps = 4/221 (1%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFI 402
           IV L D    + T+ LVFE++D+ L + + D    L++ +V+ ++  LL+G++Y H + +
Sbjct: 65  IVTLHDIIHTKKTLTLVFEYLDTDLKQYMDDCGGGLSMHNVRLFLFQLLRGLAYCHQRRV 124

Query: 403 MHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQ 462
           +HRDLKP NLLI + G LK+ADFGLAR+  V     Y+ EV + WYR P++L  S  Y  
Sbjct: 125 LHRDLKPQNLLISERGELKLADFGLARAKSVPS-KTYSNEVVTLWYRPPDVLLGSTEYST 183

Query: 463 SVDLWAVGCILGEMYTNAPLFPGESDI-EQLAMVLHKLGTPTEDSWPGLKDLPDYNKITF 521
           S+D+W VGCI  EM T  PLFPG +D+ +QL  +   LGTPTE++WPG+   P++   +F
Sbjct: 184 SLDMWGVGCIFYEMATGRPLFPGSTDVEDQLHKIFRVLGTPTEETWPGVSSNPEFKPYSF 243

Query: 522 APSDPVPWSTMLPNAS--PDTLDLISKLLLYDGQKRLPANE 560
               P P     P     P   +L  K L Y+ +KR+ A E
Sbjct: 244 PFYPPRPLINHAPRLDRIPHGEELALKFLQYEPKKRISAAE 284


>gnl|CDD|173754 cd07865, STKc_CDK9, Catalytic domain of the Serine/Threonine
           Kinase, Cyclin-Dependent protein Kinase 9.
           Serine/Threonine Kinases (STKs), Cyclin-Dependent
           protein Kinase 9 (CDK9) subfamily, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The CDK9 subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. CDKs belong to a large family
           of STKs that are regulated by their cognate cyclins.
           Together, they are involved in the control of cell-cycle
           progression, transcription, and neuronal function. CDK9
           together with a cyclin partner (cyclin T1, T2a, T2b, or
           K) is the main component of distinct positive
           transcription elongation factors (P-TEFb), which
           function as Ser2 C-terminal domain kinases of RNA
           polymerase II. P-TEFb participates in multiple steps of
           gene expression including transcription elongation, mRNA
           synthesis, processing, export, and translation. It also
           plays a role in mediating cytokine induced transcription
           networks such as IL6-induced STAT3 signaling. In
           addition, the CDK9/cyclin T2a complex promotes muscle
           differentiation and enhances the function of some
           myogenic regulatory factors.
          Length = 310

 Score =  189 bits (481), Expect = 2e-55
 Identities = 83/212 (39%), Positives = 119/212 (56%), Gaps = 7/212 (3%)

Query: 355 TVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLI 414
           +  LVFE  +  L  LL +K +  T+  +K  M+MLL G+ Y+H   I+HRD+K AN+LI
Sbjct: 93  SFYLVFEFCEHDLAGLLSNKNVKFTLSEIKKVMKMLLNGLYYIHRNKILHRDMKAANILI 152

Query: 415 DKAGILKIADFGLARSFDVERWGQ---YTPEVASRWYRAPELLYASRCYDQSVDLWAVGC 471
            K GILK+ADFGLAR+F + +  +   YT  V + WYR PELL   R Y   +D+W  GC
Sbjct: 153 TKDGILKLADFGLARAFSLSKNSKPNRYTNRVVTLWYRPPELLLGERDYGPPIDMWGAGC 212

Query: 472 ILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKITFAPSDPVPWST 531
           I+ EM+T +P+  G ++  QL ++    G+ T + WPG+  L  + K+   P        
Sbjct: 213 IMAEMWTRSPIMQGNTEQHQLTLISQLCGSITPEVWPGVDKLELFKKMEL-PQGQKRKVK 271

Query: 532 M---LPNASPDTLDLISKLLLYDGQKRLPANE 560
                    P  LDLI KLL+ D  KR+ A+ 
Sbjct: 272 ERLKPYVKDPHALDLIDKLLVLDPAKRIDADT 303



 Score = 41.2 bits (97), Expect = 8e-04
 Identities = 19/45 (42%), Positives = 26/45 (57%), Gaps = 1/45 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
          QG  G V +AR+K T QIVA+K++L+            +REIK L
Sbjct: 22 QGTFGEVFKARHKKTKQIVALKKVLMENE-KEGFPITALREIKIL 65


>gnl|CDD|143354 cd07849, STKc_ERK1_2_like, Catalytic domain of Extracellular
           signal-Regulated Kinase 1 and 2-like Serine/Threonine
           Kinases.  Serine/Threonine Kinases (STKs), Extracellular
           signal-regulated kinases 1 and 2 (ERK1/2) and Fus3
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. This
           ERK1/2-like subfamily is part of a larger superfamily
           that includes the catalytic domains of other protein
           STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. This subfamily is composed of
           the mitogen-activated protein kinases (MAPKs) ERK1,
           ERK2, baker's yeast Fus3, and similar proteins. MAPK
           pathways are important mediators of cellular responses
           to extracellular signals. ERK1/2 activation is
           preferentially by mitogenic factors, differentiation
           stimuli, and cytokines, through a kinase cascade
           involving the MAPK kinases MEK1/2 and a MAPK kinase
           kinase from the Raf family. ERK1/2 have numerous
           substrates, many of which are nuclear and participate in
           transcriptional regulation of many cellular processes.
           They regulate cell growth, cell proliferation, and cell
           cycle progression from G1 to S phase. Although the
           distinct roles of ERK1 and ERK2 have not been fully
           determined, it is known that ERK2 can maintain most
           functions in the absence of ERK1, and that the deletion
           of ERK2 is embryonically lethal. The MAPK, Fus3,
           regulates yeast mating processes including
           mating-specific gene expression, G1 arrest, mating
           projection, and cell fusion.
          Length = 336

 Score =  185 bits (472), Expect = 8e-54
 Identities = 92/226 (40%), Positives = 139/226 (61%), Gaps = 10/226 (4%)

Query: 343 IVKLLDFFPDQD-----TVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYL 397
           I+ +LD            V +V E M++ L++L+  K  HL+  H++ ++  +L+G+ Y+
Sbjct: 65  IIGILDIIRPPSFESFNDVYIVQELMETDLYKLI--KTQHLSNDHIQYFLYQILRGLKYI 122

Query: 398 HGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVER--WGQYTPEVASRWYRAPELLY 455
           H   ++HRDLKP+NLL++    LKI DFGLAR  D E    G  T  VA+RWYRAPE++ 
Sbjct: 123 HSANVLHRDLKPSNLLLNTNCDLKICDFGLARIADPEHDHTGFLTEYVATRWYRAPEIML 182

Query: 456 ASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPD 515
            S+ Y +++D+W+VGCIL EM +N PLFPG+  + QL ++L  LGTP+++    +  L  
Sbjct: 183 NSKGYTKAIDIWSVGCILAEMLSNRPLFPGKDYLHQLNLILGVLGTPSQEDLNCIISLRA 242

Query: 516 YNKITFAPSDP-VPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
            N I   P  P VPW+ + PNA P  LDL+ K+L ++  KR+   E
Sbjct: 243 RNYIKSLPFKPKVPWNKLFPNADPKALDLLDKMLTFNPHKRITVEE 288



 Score = 36.1 bits (84), Expect = 0.042
 Identities = 19/45 (42%), Positives = 25/45 (55%), Gaps = 2/45 (4%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
          +GA+G V  A +K T   VAIK+I      T   +T  +REIK L
Sbjct: 15 EGAYGMVCSATHKPTGVKVAIKKISPFEHQTFCQRT--LREIKIL 57


>gnl|CDD|173735 cd07831, STKc_MOK, Catalytic domain of the Serine/Threonine Kinase,
           MAPK/MAK/MRK Overlapping Kinase.  Serine/Threonine
           Kinases (STKs), MAPK/MAK/MRK Overlapping Kinase (MOK)
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The MOK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. MOK, also called Renal tumor antigen 1
           (RAGE-1), is widely expressed and is enriched in testis,
           kidney, lung, and brain. It is expressed in
           approximately 50% of renal cell carcinomas (RCC) and is
           a potential target for immunotherapy. MOK is stabilized
           by its association with the HSP90 molecular chaperone.
           It is induced by the transcription factor Cdx2 and may
           be involved in regulating intestinal epithelial
           development and differentiation.
          Length = 282

 Score =  182 bits (464), Expect = 2e-53
 Identities = 88/224 (39%), Positives = 126/224 (56%), Gaps = 10/224 (4%)

Query: 341 PQIVKLLDFFPDQDTVC--LVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLH 398
           P I++L++   D+ T    LVFE MD  L+EL+  +K  L    VK+YM  LLK + ++H
Sbjct: 58  PNILRLIEVLFDRKTGRLALVFELMDMNLYELIKGRKRPLPEKRVKSYMYQLLKSLDHMH 117

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR 458
              I HRD+KP N+LI    ILK+ADFG  R    +    YT  +++RWYRAPE L    
Sbjct: 118 RNGIFHRDIKPENILIKD-DILKLADFGSCRGIYSK--PPYTEYISTRWYRAPECLLTDG 174

Query: 459 CYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNK 518
            Y   +D+WAVGC+  E+ +  PLFPG ++++Q+A +   LGTP  +    LK       
Sbjct: 175 YYGPKMDIWAVGCVFFEILSLFPLFPGTNELDQIAKIHDVLGTPDAEV---LKKFRKSRH 231

Query: 519 IT--FAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
           +   F          +LPNAS + LDL+ KLL YD  +R+ A +
Sbjct: 232 MNYNFPSKKGTGLRKLLPNASAEGLDLLKKLLAYDPDERITAKQ 275


>gnl|CDD|143338 cd07833, STKc_CDKL, Catalytic domain of Cyclin-Dependent protein
           Kinase Like Serine/Threonine Kinases.  Serine/Threonine
           Kinases (STKs), Cyclin-dependent protein kinase like
           (CDKL) subfamily, catalytic (c) domain. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           CDKL subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. CDKs belong to a large family of STKs that are
           regulated by their cognate cyclins. Together, they are
           involved in the control of cell-cycle progression,
           transcription, and neuronal function. This subfamily is
           composed of CDKL1-5 and similar proteins. Some CDKLs,
           like CDKL1 and CDKL3, may be implicated in
           transformation and others, like CDKL3 and CDKL5, are
           associated with mental retardation when impaired. CDKL2
           plays a role in learning and memory.
          Length = 288

 Score =  182 bits (464), Expect = 3e-53
 Identities = 81/222 (36%), Positives = 118/222 (53%), Gaps = 2/222 (0%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
             IV L + F  +  + LVFE+++  L ELL      L    V++Y+  LL+ ++Y H  
Sbjct: 60  ENIVNLKEAFRRKGRLYLVFEYVERTLLELLEASPGGLPPDAVRSYIWQLLQAIAYCHSH 119

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCY 460
            I+HRD+KP N+L+ ++G+LK+ DFG AR+         T  VA+RWYRAPELL     Y
Sbjct: 120 NIIHRDIKPENILVSESGVLKLCDFGFARALRARPASPLTDYVATRWYRAPELLVGDTNY 179

Query: 461 DQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKIT 520
            + VD+WA+GCI+ E+    PLFPG+SDI+QL ++   LG             P +  + 
Sbjct: 180 GKPVDVWAIGCIMAELLDGEPLFPGDSDIDQLYLIQKCLGPLPPSHQELFSSNPRFAGVA 239

Query: 521 F-APSDPVPWSTMLPNASPDT-LDLISKLLLYDGQKRLPANE 560
           F  PS P       P       LD +   L  D ++RL  +E
Sbjct: 240 FPEPSQPESLERRYPGKVSSPALDFLKACLRMDPKERLTCDE 281



 Score = 48.1 bits (115), Expect = 5e-06
 Identities = 20/45 (44%), Positives = 28/45 (62%), Gaps = 1/45 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
          +GA+G VL+ RNK+T +IVAIK+          VK   +RE+K L
Sbjct: 11 EGAYGVVLKCRNKATGEIVAIKKFKE-SEDDEDVKKTALREVKVL 54


>gnl|CDD|173740 cd07842, STKc_CDK8_like, Catalytic domain of Cyclin-Dependent
           protein Kinase 8-like Serine/Threonine Kinases.
           Serine/Threonine Kinases (STKs), Cyclin-Dependent
           protein Kinase 8 (CDK8)-like subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The CDK8-like subfamily
           is part of a larger superfamily that includes the
           catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. CDKs belong to a large family of STKs that are
           regulated by their cognate cyclins. Together, they are
           involved in the control of cell-cycle progression,
           transcription, and neuronal function. This subfamily is
           composed of CDK8, CDC2L6, and similar proteins. CDK8
           functions as a negative or positive regulator of
           transcription, depending on the scenario. Together with
           its regulator, cyclin C, it reversibly associates with
           the multi-subunit core Mediator complex, a cofactor that
           is involved in regulating RNA polymerase II (RNAP
           II)-dependent transcription. CDC2L6 also associates with
           Mediator in complexes lacking CDK8. In VP16-dependent
           transcriptional activation, CDK8 and CDC2L6 exerts
           opposing effects by positive and negative regulation,
           respectively, in similar conditions.
          Length = 316

 Score =  182 bits (465), Expect = 4e-53
 Identities = 85/248 (34%), Positives = 132/248 (53%), Gaps = 28/248 (11%)

Query: 341 PQIVKLLDFFPDQDTVC--LVFEHMDSGLWELLHD----KKIHLTIPHVKTYMQMLLKGV 394
             +V L++ F +       L+F++ +  LW+++      K++ +    VK+ +  +L GV
Sbjct: 62  ENVVSLVEVFLEHADKSVYLLFDYAEHDLWQIIKFHRQAKRVSIPPSMVKSLLWQILNGV 121

Query: 395 SYLHGKFIMHRDLKPANLLI----DKAGILKIADFGLARSFDVERWGQYT--PEVASRWY 448
            YLH  +++HRDLKPAN+L+     + G++KI D GLAR F+          P V + WY
Sbjct: 122 HYLHSNWVLHRDLKPANILVMGEGPERGVVKIGDLGLARLFNAPLKPLADLDPVVVTIWY 181

Query: 449 RAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPG-ESDI--------EQLAMVLHKL 499
           RAPELL  +R Y +++D+WA+GCI  E+ T  P+F G E+ I        +QL  +   L
Sbjct: 182 RAPELLLGARHYTKAIDIWAIGCIFAELLTLEPIFKGREAKIKKSNPFQRDQLERIFEVL 241

Query: 500 GTPTEDSWPGLKDLPDYNKI-------TFAPSDPVPWSTMLPNASPDTLDLISKLLLYDG 552
           GTPTE  WP +K +P+Y+ +       T+  +    W            DL+ KLL YD 
Sbjct: 242 GTPTEKDWPDIKKMPEYDTLMKDFKTKTYPSNSLAKWMEKHKKPDSQGFDLLRKLLEYDP 301

Query: 553 QKRLPANE 560
            KR+ A E
Sbjct: 302 TKRITAEE 309


>gnl|CDD|143376 cd07871, STKc_PCTAIRE3, Catalytic domain of the Serine/Threonine
           Kinase, PCTAIRE-3 kinase.  Serine/Threonine Kinases
           (STKs), PCTAIRE-3 subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The PCTAIRE-3 subfamily is part of a larger superfamily
           that includes the catalytic domains of other protein
           STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. PCTAIRE-3 shares sequence
           similarity with Cyclin-Dependent Kinases (CDKs), which
           belong to a large family of STKs that are regulated by
           their cognate cyclins. Together, CDKs and cyclins are
           involved in the control of cell-cycle progression,
           transcription, and neuronal function. PCTAIRE-3 shows a
           restricted pattern of expression and is present in
           brain, kidney, and intestine. It is elevated in
           Alzheimer's disease (AD) and has been shown to associate
           with paired helical filaments (PHFs) and stimulate Tau
           phosphorylation. As AD progresses, phosphorylated Tau
           aggregates and forms PHFs, which leads to the formation
           of neurofibrillary tangles (NFTs). In human glioma
           cells, PCTAIRE-3 induces cell cycle arrest and cell
           death.
          Length = 288

 Score =  180 bits (457), Expect = 2e-52
 Identities = 91/216 (42%), Positives = 131/216 (60%), Gaps = 1/216 (0%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFI 402
           IV L D    +  + LVFE++DS L + L +    +++ +VK +M  LL+G+SY H + I
Sbjct: 65  IVTLHDIIHTERCLTLVFEYLDSDLKQYLDNCGNLMSMHNVKIFMFQLLRGLSYCHKRKI 124

Query: 403 MHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQ 462
           +HRDLKP NLLI++ G LK+ADFGLAR+  V     Y+ EV + WYR P++L  S  Y  
Sbjct: 125 LHRDLKPQNLLINEKGELKLADFGLARAKSVPT-KTYSNEVVTLWYRPPDVLLGSTEYST 183

Query: 463 SVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKITFA 522
            +D+W VGCIL EM T  P+FPG +  E+L ++   LGTPTE++WPG+    ++    F 
Sbjct: 184 PIDMWGVGCILYEMATGRPMFPGSTVKEELHLIFRLLGTPTEETWPGITSNEEFRSYLFP 243

Query: 523 PSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPA 558
                P     P    D +DL+S LLLY+ + R+ A
Sbjct: 244 QYRAQPLINHAPRLDTDGIDLLSSLLLYETKSRISA 279


>gnl|CDD|173750 cd07857, STKc_MPK1, Catalytic domain of the Serine/Threonine
           Kinase, Fungal Mitogen-Activated Protein Kinase MPK1.
           Serine/Threonine Kinases (STKs), Fungal
           Mitogen-Activated Protein Kinase (MAPK) MPK1 subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The MPK1 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. This subfamily is
           composed of the MAPKs MPK1 from Saccharomyces
           cerevisiae, Pmk1 from Schizosaccharomyces pombe, and
           similar proteins. MAPKs are important mediators of
           cellular responses to extracellular signals. MPK1 (also
           called Slt2) and Pmk1 (also called Spm1) are
           stress-activated MAPKs that regulate the cell wall
           integrity (CWI) pathway, and are therefore important in
           the maintainance of cell shape, cell wall construction,
           morphogenesis, and ion homeostasis. MPK1 is activated in
           response to cell wall stress including heat stimulation,
           osmotic shock, UV irradiation, and any agents that
           interfere with cell wall biogenesis such as chitin
           antagonists, caffeine, or zymolase. MPK1 is regulated by
           the MAP2Ks Mkk1/2, which are regulated by the MAP3K
           Bck1. Pmk1 is also activated by multiple stresses
           including elevated temperatures, hyper- or hypotonic
           stress, glucose deprivation, exposure to cell-wall
           damaging compounds, and oxidative stress. It is
           regulated by the MAP2K Pek1, which is regulated by the
           MAP3K Mkh1.
          Length = 332

 Score =  174 bits (443), Expect = 1e-49
 Identities = 85/224 (37%), Positives = 131/224 (58%), Gaps = 9/224 (4%)

Query: 341 PQIVKLLDF---FPDQ-DTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSY 396
             I  L D    FP   + + L  E M++ L +++   +  LT  H ++++  +L G+ Y
Sbjct: 62  KNITCLYDMDIVFPGNFNELYLYEELMEADLHQIIRSGQ-PLTDAHFQSFIYQILCGLKY 120

Query: 397 LHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFD---VERWGQYTPEVASRWYRAPEL 453
           +H   ++HRDLKP NLL++    LKI DFGLAR F     E  G  T  VA+RWYRAPE+
Sbjct: 121 IHSANVLHRDLKPGNLLVNADCELKICDFGLARGFSENPGENAGFMTEYVATRWYRAPEI 180

Query: 454 LYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDL 513
           + + + Y +++D+W+VGCIL E+    P+F G+  ++QL  +L  LGTP E++   +   
Sbjct: 181 MLSFQSYTKAIDVWSVGCILAELLGRKPVFKGKDYVDQLNQILQVLGTPDEETLSRIGSP 240

Query: 514 PDYNKITFAPSDP-VPWSTMLPNASPDTLDLISKLLLYDGQKRL 556
              N I   P+ P  P+ ++ PNA+P  LDL+ KLL +D  KR+
Sbjct: 241 KAQNYIRSLPNIPKKPFESIFPNANPLALDLLEKLLAFDPTKRI 284


>gnl|CDD|143375 cd07870, STKc_PFTAIRE2, Catalytic domain of the Serine/Threonine
           Kinase, PFTAIRE-2 kinase.  Serine/Threonine Kinases
           (STKs), PFTAIRE-2 subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The PFTAIRE-2 subfamily is part of a larger superfamily
           that includes the catalytic domains of other protein
           STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. PFTAIRE-2 shares sequence
           similarity with Cyclin-Dependent Kinases (CDKs), which
           belong to a large family of STKs that are regulated by
           their cognate cyclins. Together, CDKs and cyclins are
           involved in the control of cell-cycle progression,
           transcription, and neuronal function. PFTAIRE-2 is also
           referred to as ALS2CR7 (amyotrophic lateral sclerosis 2
           (juvenile) chromosome region candidate 7). It may be
           associated with amyotrophic lateral sclerosis 2 (ALS2),
           an autosomal recessive form of juvenile ALS. The
           function of PFTAIRE-2 is not yet known.
          Length = 291

 Score =  172 bits (436), Expect = 2e-49
 Identities = 91/226 (40%), Positives = 132/226 (58%), Gaps = 14/226 (6%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELL--HDKKIHLTIPH-VKTYMQMLLKGVSYLHG 399
           IV L D    ++T+  VFE+M + L + +  H   +H   P+ V+ +M  LL+G++Y+HG
Sbjct: 65  IVLLHDIIHTKETLTFVFEYMHTDLAQYMIQHPGGLH---PYNVRLFMFQLLRGLAYIHG 121

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRC 459
           + I+HRDLKP NLLI   G LK+ADFGLAR+  +     Y+ EV + WYR P++L  +  
Sbjct: 122 QHILHRDLKPQNLLISYLGELKLADFGLARAKSIPS-QTYSSEVVTLWYRPPDVLLGATD 180

Query: 460 YDQSVDLWAVGCILGEMYTNAPLFPGESDI-EQLAMVLHKLGTPTEDSWPGLKDLPDYNK 518
           Y  ++D+W  GCI  EM    P FPG SD+ EQL  +   LG PTED+WPG+  LP+Y  
Sbjct: 181 YSSALDIWGAGCIFIEMLQGQPAFPGVSDVFEQLEKIWTVLGVPTEDTWPGVSKLPNYKP 240

Query: 519 ITFAPSDP----VPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
             F P  P    V W  +  +  P   DL S++L+   + R+ A +
Sbjct: 241 EWFLPCKPQQLRVVWKRL--SRPPKAEDLASQMLMMFPKDRISAQD 284


>gnl|CDD|143378 cd07873, STKc_PCTAIRE1, Catalytic domain of the Serine/Threonine
           Kinase, PCTAIRE-1 kinase.  Serine/Threonine Kinases
           (STKs), PCTAIRE-1 subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The PCTAIRE-1 subfamily is part of a larger superfamily
           that includes the catalytic domains of other protein
           STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. PCTAIRE-1 shares sequence
           similarity with Cyclin-Dependent Kinases (CDKs), which
           belong to a large family of STKs that are regulated by
           their cognate cyclins. Together, CDKs and cyclins are
           involved in the control of cell-cycle progression,
           transcription, and neuronal function. PCTAIRE-1 is
           expressed ubiquitously and is localized in the
           cytoplasm. Its kinase activity is cell cycle dependent
           and peaks at the S and G2 phases. PCTAIRE-1 is highly
           expressed in the brain and may play a role in regulating
           neurite outgrowth. It can also associate with Trap
           (Tudor repeat associator with PCTAIRE-2), a
           physiological partner of PCTAIRE-2; with p11, a small
           dimeric protein with similarity to S100; and with 14-3-3
           proteins, mediators of phosphorylation-dependent
           interactions in many different proteins.
          Length = 301

 Score =  170 bits (433), Expect = 9e-49
 Identities = 87/218 (39%), Positives = 129/218 (59%), Gaps = 1/218 (0%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFI 402
           IV L D    + ++ LVFE++D  L + L D    + + +VK ++  LL+G++Y H + +
Sbjct: 66  IVTLHDIIHTEKSLTLVFEYLDKDLKQYLDDCGNSINMHNVKLFLFQLLRGLNYCHRRKV 125

Query: 403 MHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQ 462
           +HRDLKP NLLI++ G LK+ADFGLAR+  +     Y+ EV + WYR P++L  S  Y  
Sbjct: 126 LHRDLKPQNLLINERGELKLADFGLARAKSIPT-KTYSNEVVTLWYRPPDILLGSTDYST 184

Query: 463 SVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKITFA 522
            +D+W VGCI  EM T  PLFPG +  EQL  +   LGTPTE++WPG+    ++    + 
Sbjct: 185 QIDMWGVGCIFYEMSTGRPLFPGSTVEEQLHFIFRILGTPTEETWPGILSNEEFKSYNYP 244

Query: 523 PSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
                      P    D  +L+SKLL ++G+KR+ A E
Sbjct: 245 KYRADCLHNHAPRLDSDGAELLSKLLQFEGRKRISAEE 282


>gnl|CDD|143377 cd07872, STKc_PCTAIRE2, Catalytic domain of the Serine/Threonine
           Kinase, PCTAIRE-2 kinase.  Serine/Threonine Kinases
           (STKs), PCTAIRE-2 subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The PCTAIRE-2 subfamily is part of a larger superfamily
           that includes the catalytic domains of other protein
           STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. PCTAIRE-2 shares sequence
           similarity with Cyclin-Dependent Kinases (CDKs), which
           belong to a large family of STKs that are regulated by
           their cognate cyclins. Together, CDKs and cyclins are
           involved in the control of cell-cycle progression,
           transcription, and neuronal function. PCTAIRE-2 is
           specifically expressed in neurons in the central nervous
           system, mainly in terminally differentiated neurons. It
           associates with Trap (Tudor repeat associator with
           PCTAIRE-2) and could play a role in regulating
           mitochondrial function in neurons.
          Length = 309

 Score =  169 bits (430), Expect = 3e-48
 Identities = 83/218 (38%), Positives = 131/218 (60%), Gaps = 1/218 (0%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFI 402
           IV L D      ++ LVFE++D  L + + D    +++ +VK ++  +L+G++Y H + +
Sbjct: 66  IVTLHDIVHTDKSLTLVFEYLDKDLKQYMDDCGNIMSMHNVKIFLYQILRGLAYCHRRKV 125

Query: 403 MHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQ 462
           +HRDLKP NLLI++ G LK+ADFGLAR+  V     Y+ EV + WYR P++L  S  Y  
Sbjct: 126 LHRDLKPQNLLINERGELKLADFGLARAKSVPT-KTYSNEVVTLWYRPPDVLLGSSEYST 184

Query: 463 SVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKITFA 522
            +D+W VGCI  EM +  PLFPG +  ++L ++   LGTPTE++WPG+    ++    F 
Sbjct: 185 QIDMWGVGCIFFEMASGRPLFPGSTVEDELHLIFRLLGTPTEETWPGISSNDEFKNYNFP 244

Query: 523 PSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
              P P     P    + ++L++K L Y+ +KR+ A E
Sbjct: 245 KYKPQPLINHAPRLDTEGIELLTKFLQYESKKRISAEE 282


>gnl|CDD|173753 cd07864, STKc_CDK12, Catalytic domain of the Serine/Threonine
           Kinase, Cyclin-Dependent protein Kinase 12.
           Serine/Threonine Kinases (STKs), Cyclin-Dependent
           protein Kinase 12 (CDK12) subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The CDK12 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. CDKs belong to a
           large family of STKs that are regulated by their cognate
           cyclins. Together, they are involved in the control of
           cell-cycle progression, transcription, and neuronal
           function. CDK12 is also called Cdc2-related protein
           kinase 7 (CRK7) or Cdc2-related kinase
           arginine/serine-rich (CrkRS). It is a unique CDK that
           contains an arginine/serine-rich (RS) domain, which is
           predominantly found in splicing factors. CDK12 is widely
           expressed in tissues. It interacts with cyclins L1 and
           L2, and plays roles in regulating transcription and
           alternative splicing.
          Length = 302

 Score =  164 bits (418), Expect = 1e-46
 Identities = 82/219 (37%), Positives = 123/219 (56%), Gaps = 10/219 (4%)

Query: 347 LDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRD 406
           LDF  D+    LVFE+MD  L  LL    +H +  H+K++M+ LL+G++Y H K  +HRD
Sbjct: 82  LDFKKDKGAFYLVFEYMDHDLMGLLESGLVHFSEDHIKSFMKQLLEGLNYCHKKNFLHRD 141

Query: 407 LKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQSVDL 466
           +K +N+L++  G +K+ADFGLAR ++ E    YT +V + WYR PELL     Y  ++D+
Sbjct: 142 IKCSNILLNNKGQIKLADFGLARLYNSEESRPYTNKVITLWYRPPELLLGEERYGPAIDV 201

Query: 467 WAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKITFAPSDP 526
           W+ GCILGE++T  P+F    ++ QL ++    G+P    WP +  LP +N  T  P   
Sbjct: 202 WSCGCILGELFTKKPIFQANQELAQLELISRLCGSPCPAVWPDVIKLPYFN--TMKPKKQ 259

Query: 527 VPWS-----TMLPNASPDTLDLISKLLLYDGQKRLPANE 560
                    + +P      LDL+  +L  D  KR  A E
Sbjct: 260 YRRRLREEFSFIP---TPALDLLDHMLTLDPSKRCTAEE 295



 Score = 34.4 bits (79), Expect = 0.13
 Identities = 30/116 (25%), Positives = 56/116 (48%), Gaps = 10/116 (8%)

Query: 1   QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSDRYEQTNMAEK 60
           +G +G V +AR+K T ++VA+K++ +         T + REIK L  ++ R    N+   
Sbjct: 17  EGTYGQVYKARDKDTGELVALKKVRLDNEKEGFPITAI-REIKILRQLNHR----NIVNL 71

Query: 61  RQAKLDMERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKKG--DKKPKYIQSLLKQ 114
           ++   D + AL        +  V++ +D   HD +   + G       +I+S +KQ
Sbjct: 72  KEIVTDKQDALDFKKDKGAFYLVFEYMD---HDLMGLLESGLVHFSEDHIKSFMKQ 124


>gnl|CDD|143368 cd07863, STKc_CDK4, Catalytic domain of the Serine/Threonine
           Kinase, Cyclin-Dependent protein Kinase 4.
           Serine/Threonine Kinases (STKs), Cyclin-dependent
           protein kinase 4 (CDK4) subfamily, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The CDK4 subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. CDKs belong to a large family
           of STKs that are regulated by their cognate cyclins.
           Together, they are involved in the control of cell-cycle
           progression, transcription, and neuronal function. CDK4
           partners with all three D-type cyclins (D1, D2, and D3)
           and is also regulated by INK4 inhibitors. It is active
           towards the retinoblastoma (pRb) protein and plays a
           role in regulating the early G1 phase of the cell cycle.
           It is expressed ubiquitously and is localized in the
           nucleus. CDK4 also shows kinase activity towards Smad3,
           a signal transducer of transforming growth factor
           (TGF)-beta signaling which modulates transcription and
           plays a role in cell proliferation and apoptosis. CDK4
           is inhibited by the p21 inhibitor and is specifically
           mutated in human melanoma.
          Length = 288

 Score =  161 bits (409), Expect = 2e-45
 Identities = 89/225 (39%), Positives = 126/225 (56%), Gaps = 14/225 (6%)

Query: 341 PQIVKLLDFFP----DQDT-VCLVFEHMDSGLWELLHDKKIHLTIP--HVKTYMQMLLKG 393
           P IV+L+D       D++T V LVFEH+D  L   L DK     +P   +K  M+  L+G
Sbjct: 62  PNIVRLMDVCATSRTDRETKVTLVFEHVDQDLRTYL-DKVPPPGLPAETIKDLMRQFLRG 120

Query: 394 VSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPEL 453
           + +LH   I+HRDLKP N+L+   G +K+ADFGLAR +  +     TP V + WYRAPE+
Sbjct: 121 LDFLHANCIVHRDLKPENILVTSGGQVKLADFGLARIYSCQM--ALTPVVVTLWYRAPEV 178

Query: 454 LYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDL 513
           L  S  Y   VD+W+VGCI  EM+   PLF G S+ +QL  +   +G P ED WP    L
Sbjct: 179 LLQS-TYATPVDMWSVGCIFAEMFRRKPLFCGNSEADQLGKIFDLIGLPPEDDWPRDVTL 237

Query: 514 PDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPA 558
           P      F+P  P P  +++P        L+ ++L ++  KR+ A
Sbjct: 238 PRGA---FSPRGPRPVQSVVPEIEESGAQLLLEMLTFNPHKRISA 279


>gnl|CDD|143363 cd07858, STKc_TEY_MAPK_plant, Catalytic domain of the
           Serine/Threonine Kinases, TEY Mitogen-Activated Protein
           Kinases from Plants.  Serine/Threonine Kinases (STKs),
           Plant TEY Mitogen-Activated Protein Kinase (MAPK)
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The TEY
           MAPK subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. MAPKs are important mediators of cellular
           responses to extracellular signals. In plants, MAPKs are
           associated with physiological, developmental, hormonal,
           and stress responses. Some plants show numerous gene
           duplications of MAPKs. Arabidopsis thaliana harbors at
           least 20 MAPKs, named AtMPK1-20. There are two subtypes
           of plant MAPKs based on the conserved phosphorylation
           motif present in the activation loop, TEY and TDY. This
           subfamily represents the TEY subtype and is further
           subdivided into three groups (A, B, and C). Group A is
           represented by AtMPK3, AtMPK6, Nicotiana tabacum BTF4
           (NtNTF4), among others. They are mostly involved in
           environmental and hormonal responses. AtMPK3 and  AtMPK6
           are also key regulators for stomatal development and
           patterning. Group B is represented by AtMPK4, AtMPK13,
           and NtNTF6, among others. They may be involved in both
           cell division and environmental stress response. AtMPK4
           also participates in regulating innate immunity. Group C
           is represented by AtMPK1, AtMPK2, NtNTF3, Oryza sativa
           MAPK4 (OsMAPK4), among others. They may also be involved
           in stress responses. AtMPK1 and AtMPK2 are activated
           following mechanical injury and in the presence of
           stress chemicals such as jasmonic acid, hydrogen
           peroxide and abscisic acid. OsMAPK4 is also called
           OsMSRMK3 for Multiple Stress-Responsive MAPK3.
          Length = 337

 Score =  162 bits (412), Expect = 3e-45
 Identities = 77/214 (35%), Positives = 124/214 (57%), Gaps = 19/214 (8%)

Query: 356 VCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLID 415
           V +V+E MD+ L +++   +  L+  H + ++  LL+G+ Y+H   ++HRDLKP+NLL++
Sbjct: 84  VYIVYELMDTDLHQIIRSSQT-LSDDHCQYFLYQLLRGLKYIHSANVLHRDLKPSNLLLN 142

Query: 416 KAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGE 475
               LKI DFGLAR+   E+    T  V +RWYRAPELL     Y  ++D+W+VGCI  E
Sbjct: 143 ANCDLKICDFGLARTTS-EKGDFMTEYVVTRWYRAPELLLNCSEYTTAIDVWSVGCIFAE 201

Query: 476 MYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGL---------KDLPDYNKITFAPSDP 526
           +    PLFPG+  + QL ++   LG+P+E+    +         + LP   + +FA    
Sbjct: 202 LLGRKPLFPGKDYVHQLKLITELLGSPSEEDLGFIRNEKARRYIRSLPYTPRQSFA---- 257

Query: 527 VPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
                + P+A+P  +DL+ K+L++D  KR+   E
Sbjct: 258 ----RLFPHANPLAIDLLEKMLVFDPSKRITVEE 287



 Score = 30.8 bits (70), Expect = 1.7
 Identities = 20/51 (39%), Positives = 27/51 (52%), Gaps = 13/51 (25%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRI------LIRRRHTSSVKTDVMREIKTL 45
          +GA+G V  A+N  TN+ VAIK+I       I  + T       +REIK L
Sbjct: 15 RGAYGIVCSAKNSETNEKVAIKKIANAFDNRIDAKRT-------LREIKLL 58


>gnl|CDD|143356 cd07851, STKc_p38, Catalytic domain of the Serine/Threonine Kinase,
           p38 Mitogen-Activated Protein Kinase.  Serine/Threonine
           Kinases (STKs), p38 subfamily, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The p38 subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. p38 kinases are
           mitogen-activated protein kinases (MAPKs), serving as
           important mediators of cellular responses to
           extracellular signals. They function in the regulation
           of the cell cycle, cell development, cell
           differentiation, senescence, tumorigenesis, apoptosis,
           pain development and pain progression, and immune
           responses. p38 kinases are activated by the MAPK kinases
           MKK3 and MKK6, which in turn are activated by upstream
           MAPK kinase kinases including TAK1, ASK1, and MLK3, in
           response to cellular stresses or inflammatory cytokines.
           p38 substrates include other protein kinases and factors
           that regulate transcription, nuclear export, mRNA
           stability and translation. p38 kinases are drug targets
           for the inflammatory diseases psoriasis, rheumatoid
           arthritis, and chronic pulmonary disease. Vertebrates
           contain four isoforms of p38, named alpha, beta, gamma,
           and delta, which show varying substrate specificity and
           expression patterns. p38alpha and p38beta are
           ubiquitously expressed, p38gamma is predominantly found
           in skeletal muscle, and p38delta is found in the heart,
           lung, testis, pancreas, and small intestine.
          Length = 343

 Score =  158 bits (401), Expect = 1e-43
 Identities = 83/235 (35%), Positives = 127/235 (54%), Gaps = 29/235 (12%)

Query: 341 PQIVKLLDFF-PDQ-----DTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGV 394
             ++ LLD F P         V LV   M + L  ++  +K  L+  H++  +  +L+G+
Sbjct: 74  ENVIGLLDVFTPASSLEDFQDVYLVTHLMGADLNNIVKCQK--LSDDHIQFLVYQILRGL 131

Query: 395 SYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELL 454
            Y+H   I+HRDLKP+N+ +++   LKI DFGLAR  D E     T  VA+RWYRAPE++
Sbjct: 132 KYIHSAGIIHRDLKPSNIAVNEDCELKILDFGLARHTDDE----MTGYVATRWYRAPEIM 187

Query: 455 YASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGL---- 510
                Y+Q+VD+W+VGCI+ E+ T   LFPG   I+QL  +++ +GTP E+    +    
Sbjct: 188 LNWMHYNQTVDIWSVGCIMAELLTGKTLFPGSDHIDQLKRIMNLVGTPDEELLQKISSES 247

Query: 511 -----KDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
                + LP   K  F          +   A+P  +DL+ K+L+ D  KR+ A E
Sbjct: 248 ARNYIQSLPQMPKKDF--------KEVFSGANPLAIDLLEKMLVLDPDKRITAAE 294


>gnl|CDD|143361 cd07856, STKc_Sty1_Hog1, Catalytic domain of the Serine/Threonine
           Kinases, Fungal Mitogen-Activated Protein Kinases Sty1
           and Hog1.  Serine/Threonine Kinases (STKs), Fungal
           Mitogen-Activated Protein Kinase (MAPK) Sty1/Hog1
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           Sty1/Hog1 subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. This subfamily is composed of the MAPKs Sty1
           from Schizosaccharomyces pombe, Hog1 from Saccharomyces
           cerevisiae, and similar proteins. MAPKs are important
           mediators of cellular responses to extracellular
           signals. Sty1 and Hog1 are stress-activated MAPKs that
           partipate in transcriptional regulation in response to
           stress. Sty1 is activated in response to oxidative
           stress, osmotic stress, and UV radiation. Sty1 is
           regulated by the MAP2K Wis1, which is activated by the
           MAP3Ks Wis4 and Win1, which receive signals of the
           stress condition from membrane-spanning histidine
           kinases Mak1-3. Activated Sty1 stabilizes the Atf1
           transcription factor and induces transcription of
           Atf1-dependent genes of the core environmetal stress
           response (CESR). Hog1 is the key element in the high
           osmolarity glycerol (HOG) pathway and is activated upon
           hyperosmotic stress. Activated Hog1 accumulates in the
           nucleus and regulates stress-induced transcription. The
           HOG pathway is mediated by two transmembrane
           osmosensors, Sln1 and Sho1.
          Length = 328

 Score =  157 bits (398), Expect = 2e-43
 Identities = 85/224 (37%), Positives = 130/224 (58%), Gaps = 16/224 (7%)

Query: 343 IVKLLDFF--PDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           I+ L D F  P +D +  V E + + L  LL  +   L    ++ ++  +L+G+ Y+H  
Sbjct: 71  IISLSDIFISPLED-IYFVTELLGTDLHRLLTSRP--LEKQFIQYFLYQILRGLKYVHSA 127

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCY 460
            ++HRDLKP+N+LI++   LKI DFGLAR  D     Q T  V++R+YRAPE++   + Y
Sbjct: 128 GVVHRDLKPSNILINENCDLKICDFGLARIQD----PQMTGYVSTRYYRAPEIMLTWQKY 183

Query: 461 DQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKIT 520
           D  VD+W+ GCI  EM    PLFPG+  + Q +++   LGTP +D    +  +   N + 
Sbjct: 184 DVEVDIWSAGCIFAEMLEGKPLFPGKDHVNQFSIITDLLGTPPDDV---INTICSENTLR 240

Query: 521 FAPS----DPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
           F  S    +PVP+S    NA P  +DL+ K+L++D QKR+ A E
Sbjct: 241 FVQSLPKREPVPFSEKFKNADPSAIDLLEKMLVFDPQKRISAAE 284


>gnl|CDD|173743 cd07846, STKc_CDKL2_3, Catalytic domain of the Serine/Threonine
           Kinases, Cyclin-Dependent protein Kinase Like 2 and 3.
           Serine/Threonine Kinases (STKs), Cyclin-dependent
           protein kinase like 2 (CDKL2) and CDKL3 subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The CDKL2 and CDKL3
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. CDKs belong to a large family of STKs that are
           regulated by their cognate cyclins. Together, they are
           involved in the control of cell-cycle progression,
           transcription, and neuronal function. CDKL2, also called
           p56 KKIAMRE, is expressed in testis, kidney, lung, and
           brain. It functions mainly in mature neurons and plays
           an important role in learning and memory. Inactivation
           of CDKL3, also called NKIAMRE (NKIATRE in rat), by
           translocation is associated with mild mental
           retardation. It has been reported that CDKL3 is lost in
           leukemic cells having a chromosome arm 5q deletion, and
           may contribute to the transformed phenotype.
          Length = 286

 Score =  148 bits (376), Expect = 8e-41
 Identities = 81/220 (36%), Positives = 122/220 (55%), Gaps = 14/220 (6%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFI 402
           +V L++ F  +  + LVFE +D  + + L      L    V+ Y+  +L+G+ + H   I
Sbjct: 62  LVNLIEVFRRKKRLYLVFEFVDHTVLDDLEKYPNGLDESRVRKYLFQILRGIEFCHSHNI 121

Query: 403 MHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQ-YTPEVASRWYRAPELLYASRCYD 461
           +HRD+KP N+L+ ++G++K+ DFG AR+      G+ YT  VA+RWYRAPELL     Y 
Sbjct: 122 IHRDIKPENILVSQSGVVKLCDFGFARTLAAP--GEVYTDYVATRWYRAPELLVGDTKYG 179

Query: 462 QSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKITF 521
           ++VD+WAVGC++ EM T  PLFPG+SDI+QL  ++  LG       P  +++   N + F
Sbjct: 180 RAVDIWAVGCLVTEMLTGEPLFPGDSDIDQLYHIIKCLGNLI----PRHQEIFQKNPL-F 234

Query: 522 A----PS--DPVPWSTMLPNASPDTLDLISKLLLYDGQKR 555
           A    P   +  P     P  S   LDL  + L  D   R
Sbjct: 235 AGMRLPEVKEIEPLEKRFPKLSGLVLDLAKQCLRIDPDDR 274



 Score = 44.7 bits (106), Expect = 6e-05
 Identities = 19/45 (42%), Positives = 28/45 (62%), Gaps = 1/45 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
          +G++G V++ ++K T QIVAIK+ L        VK   MREI+ L
Sbjct: 11 EGSYGMVMKCKHKETGQIVAIKKFL-ESEDDKMVKKIAMREIRML 54


>gnl|CDD|143374 cd07869, STKc_PFTAIRE1, Catalytic domain of the Serine/Threonine
           Kinase, PFTAIRE-1 kinase.  Serine/Threonine Kinases
           (STKs), PFTAIRE-1 subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The PFTAIRE-1 subfamily is part of a larger superfamily
           that includes the catalytic domains of other protein
           STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. PFTAIRE-1 shares sequence
           similarity with Cyclin-Dependent Kinases (CDKs), which
           belong to a large family of STKs that are regulated by
           their cognate cyclins. Together, CDKs and cyclins are
           involved in the control of cell-cycle progression,
           transcription, and neuronal function. PFTAIRE-1 is
           widely expressed except in the spleen and thymus. It is
           highly expressed in the brain, heart, pancreas, testis,
           and ovary, and is localized in the cytoplasm. It is
           regulated by cyclin D3 and is inhibited by the p21 cell
           cycle inhibitor. It has also been shown to interact with
           the membrane-associated cyclin Y, which recruits the
           protein to the plasma membrane.
          Length = 303

 Score =  146 bits (370), Expect = 7e-40
 Identities = 87/219 (39%), Positives = 122/219 (55%), Gaps = 4/219 (1%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFI 402
           IV L D    ++T+ LVFE++ + L + +      L   +VK ++  LL+G+SY+H ++I
Sbjct: 65  IVLLHDIIHTKETLTLVFEYVHTDLCQYMDKHPGGLHPENVKLFLFQLLRGLSYIHQRYI 124

Query: 403 MHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQ 462
           +HRDLKP NLLI   G LK+ADFGLAR+  V     Y+ EV + WYR P++L  S  Y  
Sbjct: 125 LHRDLKPQNLLISDTGELKLADFGLARAKSVPS-HTYSNEVVTLWYRPPDVLLGSTEYST 183

Query: 463 SVDLWAVGCILGEMYTNAPLFPGESDIE-QLAMVLHKLGTPTEDSWPGLKDLPDYN--KI 519
            +D+W VGCI  EM      FPG  DI+ QL  +   LGTP ED+WPG+  LP +   + 
Sbjct: 184 CLDMWGVGCIFVEMIQGVAAFPGMKDIQDQLERIFLVLGTPNEDTWPGVHSLPHFKPERF 243

Query: 520 TFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPA 558
           T      +  +    +      DL SKLL    + RL A
Sbjct: 244 TLYSPKNLRQAWNKLSYVNHAEDLASKLLQCFPKNRLSA 282


>gnl|CDD|143359 cd07854, STKc_MAPK4_6, Catalytic domain of the Serine/Threonine
           Kinases, Mitogen-Activated Protein Kinases 4 and 6.
           Serine/Threonine Kinases (STKs), Mitogen-Activated
           Protein Kinase 4 (MAPK4) and MAPK6 subfamily, catalytic
           (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The MAPK4/6 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. MAPKs are
           important mediators of cellular responses to
           extracellular signals. MAPK4 is also called ERK4 or
           p63MAPK, while MAPK6 is also called ERK3 or p97MAPK.
           MAPK4 and MAPK6 are atypical MAPKs that are not
           regulated by MAP2Ks. MAPK6 is expressed ubiquitously
           with highest amounts in brain and skeletal muscle. It
           may be involved in the control of cell differentiation
           by negatively regulating cell cycle progression in
           certain conditions. It may also play a role in
           glucose-induced insulin secretion. MAPK6 and MAPK4
           cooperate to regulate the activity of MAPK-activated
           protein kinase 5 (MK5), leading to its relocation to the
           cytoplasm and exclusion from the nucleus. The MAPK6/MK5
           and MAPK4/MK5 pathways may play critical roles in
           embryonic and post-natal development.
          Length = 342

 Score =  146 bits (370), Expect = 2e-39
 Identities = 91/284 (32%), Positives = 141/284 (49%), Gaps = 32/284 (11%)

Query: 302 LVFEHMDSGLWELLHDKKIHLTIPH--------------------IKTYTYLSDVFSFLP 341
           LVF  +DS   + +  KKI LT P                     +K Y  L    S L 
Sbjct: 20  LVFSAVDSDCDKRVAVKKIVLTDPQSVKHALREIKIIRRLDHDNIVKVYEVLGPSGSDLT 79

Query: 342 QIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKF 401
           + V  L      ++V +V E+M++ L  +L      L+  H + +M  LL+G+ Y+H   
Sbjct: 80  EDVGSLTEL---NSVYIVQEYMETDLANVLEQGP--LSEEHARLFMYQLLRGLKYIHSAN 134

Query: 402 IMHRDLKPANLLIDKAG-ILKIADFGLARSFD--VERWGQYTPEVASRWYRAPELLYASR 458
           ++HRDLKPAN+ I+    +LKI DFGLAR  D      G  +  + ++WYR+P LL +  
Sbjct: 135 VLHRDLKPANVFINTEDLVLKIGDFGLARIVDPHYSHKGYLSEGLVTKWYRSPRLLLSPN 194

Query: 459 CYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLG-TPTEDSWPGLKDLPDY- 516
            Y +++D+WA GCI  EM T  PLF G  ++EQ+ ++L  +     ED    L  +P + 
Sbjct: 195 NYTKAIDMWAAGCIFAEMLTGKPLFAGAHELEQMQLILESVPVVREEDRNELLNVIPSFV 254

Query: 517 NKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
                 P  P+    +LP  +P+ LD + ++L ++   RL A E
Sbjct: 255 RNDGGEPRRPL--RDLLPGVNPEALDFLEQILTFNPMDRLTAEE 296


>gnl|CDD|173748 cd07853, STKc_NLK, Catalytic domain of the Serine/Threonine Kinase,
           Nemo-Like Kinase.  Serine/Threonine Kinases (STKs),
           Nemo-Like Kinase (NLK) subfamily, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The NLK subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. Mitogen-activated protein
           kinases (MAPKs) are important mediators of cellular
           responses to extracellular signals. NLK is an atypical
           MAPK that is not regulated by a MAPK kinase. It
           functions downstream of the MAPK kinase kinase Tak1,
           which also plays a role in activating the JNK and p38
           MAPKs. The Tak1/NLK pathways are regulated by Wnts, a
           family of secreted proteins that is critical in the
           control of asymmetric division and cell polarity. NLK
           can phosphorylate transcription factors from the TCF/LEF
           family, inhibiting their ability to activate the
           transcription of target genes. In prostate cancer cells,
           NLK is involved in regulating androgen receptor-mediated
           transcription and its expression is altered during
           cancer progression.
          Length = 372

 Score =  146 bits (370), Expect = 5e-39
 Identities = 68/187 (36%), Positives = 107/187 (57%), Gaps = 4/187 (2%)

Query: 377 HLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERW 436
            L+  HVK ++  +L+G+ YLH   I+HRD+KP NLL++   +LKI DFGLAR  + +  
Sbjct: 99  PLSSDHVKVFLYQILRGLKYLHSAGILHRDIKPGNLLVNSNCVLKICDFGLARVEEPDES 158

Query: 437 GQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVL 496
              T EV +++YRAPE+L  SR Y  +VD+W+VGCI  E+     LF  +S I+QL ++ 
Sbjct: 159 KHMTQEVVTQYYRAPEILMGSRHYTSAVDIWSVGCIFAELLGRRILFQAQSPIQQLDLIT 218

Query: 497 HKLGTPTEDSWPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDT---LDLISKLLLYDGQ 553
             LGTP+ ++     +      I   P  P     +   +S  T   + L+ ++L++D  
Sbjct: 219 DLLGTPSLEAMRSACE-GARAHILRGPHKPPSLPVLYTLSSQATHEAVHLLCRMLVFDPD 277

Query: 554 KRLPANE 560
           KR+ A +
Sbjct: 278 KRISAAD 284


>gnl|CDD|143367 cd07862, STKc_CDK6, Catalytic domain of the Serine/Threonine
           Kinase, Cyclin-Dependent protein Kinase 6.
           Serine/Threonine Kinases (STKs), Cyclin-dependent
           protein kinase 6 (CDK6) subfamily, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The CDK6 subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. CDKs belong to a large family
           of STKs that are regulated by their cognate cyclins.
           Together, they are involved in the control of cell-cycle
           progression, transcription, and neuronal function. CDK6
           is regulated by D-type cyclins and INK4 inhibitors. It
           is active towards the retinoblastoma (pRb) protein,
           implicating it to function in regulating the early G1
           phase of the cell cycle. It is expressed ubiquitously
           and is localized in the cytoplasm. It is also present in
           the ruffling edge of spreading fibroblasts and may play
           a role in cell spreading. It binds to the p21 inhibitor
           without any effect on its own activity and it is
           overexpressed in squamous cell carcinomas and
           neuroblastomas. CDK6 has also been shown to inhibit cell
           differentiation in many cell types.
          Length = 290

 Score =  143 bits (363), Expect = 6e-39
 Identities = 87/225 (38%), Positives = 123/225 (54%), Gaps = 14/225 (6%)

Query: 341 PQIVKLLDFFP----DQDT-VCLVFEHMDSGLWELLHDKKIHLTIP--HVKTYMQMLLKG 393
           P +V+L D       D++T + LVFEH+D  L   L DK     +P   +K  M  LL+G
Sbjct: 64  PNVVRLFDVCTVSRTDRETKLTLVFEHVDQDLTTYL-DKVPEPGVPTETIKDMMFQLLRG 122

Query: 394 VSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPEL 453
           + +LH   ++HRDLKP N+L+  +G +K+ADFGLAR +  +     T  V + WYRAPE+
Sbjct: 123 LDFLHSHRVVHRDLKPQNILVTSSGQIKLADFGLARIYSFQ--MALTSVVVTLWYRAPEV 180

Query: 454 LYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDL 513
           L  S  Y   VDLW+VGCI  EM+   PLF G SD++QL  +L  +G P E+ WP    L
Sbjct: 181 LLQSS-YATPVDLWSVGCIFAEMFRRKPLFRGSSDVDQLGKILDVIGLPGEEDWPRDVAL 239

Query: 514 PDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPA 558
           P   +  F      P    + +      DL+ K L ++  KR+ A
Sbjct: 240 P---RQAFHSKSAQPIEKFVTDIDELGKDLLLKCLTFNPAKRISA 281


>gnl|CDD|143384 cd07879, STKc_p38delta_MAPK13, Catalytic domain of the
           Serine/Threonine Kinase, p38delta Mitogen-Activated
           Protein Kinase.  Serine/Threonine Kinases (STKs),
           p38delta subfamily, catalytic (c) domain. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           p38delta subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. p38 kinases are mitogen-activated protein
           kinases (MAPKs), serving as important mediators of
           cellular responses to extracellular signals. They are
           activated by the MAPK kinases MKK3 and MKK6, which in
           turn are activated by upstream MAPK kinase kinases
           including TAK1, ASK1, and MLK3, in response to cellular
           stresses or inflammatory cytokines. Vertebrates contain
           four isoforms of p38, named alpha, beta, gamma, and
           delta. p38delta, also called MAPK13, is found in
           skeletal muscle, heart, lung, testis, pancreas, and
           small intestine. It regulates microtubule function by
           phosphorylating Tau. It activates the c-jun promoter and
           plays a role in G2 cell cycle arrest. It also controls
           the degration of c-Myb, which is associated with myeloid
           leukemia and poor prognosis in colorectal cancer.
           p38delta is the main isoform involved in regulating the
           differentiation and apoptosis of keratinocytes.
          Length = 342

 Score =  143 bits (362), Expect = 3e-38
 Identities = 86/229 (37%), Positives = 124/229 (54%), Gaps = 15/229 (6%)

Query: 333 LSDVFSFLPQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLK 392
           L DVF+      +  DF+       LV  +M + L +++      L+   V+  +  +L 
Sbjct: 79  LLDVFTSAVSGDEFQDFY-------LVMPYMQTDLQKIM---GHPLSEDKVQYLVYQMLC 128

Query: 393 GVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPE 452
           G+ Y+H   I+HRDLKP NL +++   LKI DFGLAR  D E  G     V +RWYRAPE
Sbjct: 129 GLKYIHSAGIIHRDLKPGNLAVNEDCELKILDFGLARHADAEMTGY----VVTRWYRAPE 184

Query: 453 LLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKD 512
           ++     Y+Q+VD+W+VGCI+ EM T   LF G+  ++QL  +L   G P  +    L+D
Sbjct: 185 VILNWMHYNQTVDIWSVGCIMAEMLTGKTLFKGKDYLDQLTQILKVTGVPGPEFVQKLED 244

Query: 513 LPDYNKITFAPSDPVP-WSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
               + I   P  P   +ST+ P ASP  +DL+ K+L  D  KRL A E
Sbjct: 245 KAAKSYIKSLPKYPRKDFSTLFPKASPQAVDLLEKMLELDVDKRLTATE 293


>gnl|CDD|143385 cd07880, STKc_p38gamma_MAPK12, Catalytic domain of the
           Serine/Threonine Kinase, p38gamma Mitogen-Activated
           Protein Kinase.  Serine/Threonine Kinases (STKs),
           p38gamma subfamily, catalytic (c) domain. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           p38gamma subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. p38 kinases are mitogen-activated protein
           kinases (MAPKs), serving as important mediators of
           cellular responses to extracellular signals. They are
           activated by the MAPK kinases MKK3 and MKK6, which in
           turn are activated by upstream MAPK kinase kinases
           including TAK1, ASK1, and MLK3, in response to cellular
           stresses or inflammatory cytokines. Vertebrates contain
           four isoforms of p38, named alpha, beta, gamma, and
           delta. p38gamma, also called MAPK12, is predominantly
           expressed in skeletal muscle. Unlike p38alpha and
           p38beta, p38gamma is insensitive to pyridinylimidazoles.
           It displays an antagonizing function compared to
           p38alpha. p38gamma inhibits, while p38alpha stimulates,
           c-Jun phosphorylation and AP-1 mediated transcription.
           p38gamma also plays a role in the signaling between Ras
           and the estrogen receptor and has been implicated to
           increase cell invasion and breast cancer progression. In
           Xenopus, p38gamma is critical in the meiotic maturation
           of oocytes.
          Length = 343

 Score =  142 bits (360), Expect = 6e-38
 Identities = 86/237 (36%), Positives = 131/237 (55%), Gaps = 30/237 (12%)

Query: 333 LSDVFSFLPQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLK 392
           L DVF+    + +  DF+       LV   M + L +L+  +K  L+   ++  +  +LK
Sbjct: 79  LLDVFTPDLSLDRFHDFY-------LVMPFMGTDLGKLMKHEK--LSEDRIQFLVYQMLK 129

Query: 393 GVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPE 452
           G+ Y+H   I+HRDLKP NL +++   LKI DFGLAR  D E  G     V +RWYRAPE
Sbjct: 130 GLKYIHAAGIIHRDLKPGNLAVNEDCELKILDFGLARQTDSEMTGY----VVTRWYRAPE 185

Query: 453 LLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPT--------- 503
           ++     Y Q+VD+W+VGCI+ EM T  PLF G   ++QL  ++   GTP+         
Sbjct: 186 VILNWMHYTQTVDIWSVGCIMAEMLTGKPLFKGHDHLDQLMEIMKVTGTPSKEFVQKLQS 245

Query: 504 EDSWPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
           ED+   +K LP + K  F         ++LPNA+P  ++++ K+L+ D + R+ A E
Sbjct: 246 EDAKNYVKKLPRFRKKDFR--------SLLPNANPLAVNVLEKMLVLDAESRITAAE 294


>gnl|CDD|173744 cd07847, STKc_CDKL1_4, Catalytic domain of the Serine/Threonine
           Kinases, Cyclin-Dependent protein Kinase Like 1 and 4.
           Serine/Threonine Kinases (STKs), Cyclin-dependent
           protein kinase like 1 (CDKL1) and CDKL4 subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The CDKL1 and CDKL4
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. CDKs belong to a large family of STKs that are
           regulated by their cognate cyclins. Together, they are
           involved in the control of cell-cycle progression,
           transcription, and neuronal function. CDKL1, also called
           p42 KKIALRE, is a glial protein that is upregulated in
           gliosis. It is present in neuroblastoma and A431 human
           carcinoma cells, and may be implicated in neoplastic
           transformation. The function of CDKL4 is unknown.
          Length = 286

 Score =  138 bits (350), Expect = 4e-37
 Identities = 80/232 (34%), Positives = 117/232 (50%), Gaps = 22/232 (9%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMD-SGLWELLHDKKIH-LTIPHVKTYMQMLLKGVSYLH 398
           P +V L++ F  +  + LVFE+ D + L EL  +K    +    +K  +   L+ V++ H
Sbjct: 60  PNLVNLIEVFRRKRKLHLVFEYCDHTVLNEL--EKNPRGVPEHLIKKIIWQTLQAVNFCH 117

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR 458
               +HRD+KP N+LI K G +K+ DFG AR         YT  VA+RWYRAPELL    
Sbjct: 118 KHNCIHRDVKPENILITKQGQIKLCDFGFARILTGPG-DDYTDYVATRWYRAPELLVGDT 176

Query: 459 CYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGT---------PTEDSWPG 509
            Y   VD+WA+GC+  E+ T  PL+PG+SD++QL ++   LG           T   + G
Sbjct: 177 QYGPPVDVWAIGCVFAELLTGQPLWPGKSDVDQLYLIRKTLGDLIPRHQQIFSTNQFFKG 236

Query: 510 LKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANEI 561
           L  +P+       P    P  +  PN S   L  +   L  D  +RL   E+
Sbjct: 237 LS-IPE-------PETREPLESKFPNISSPALSFLKGCLQMDPTERLSCEEL 280



 Score = 39.3 bits (92), Expect = 0.003
 Identities = 17/45 (37%), Positives = 27/45 (60%), Gaps = 1/45 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
          +G++G V + RN+ T QIVAIK+  +       +K   +REI+ L
Sbjct: 11 EGSYGVVFKCRNRETGQIVAIKK-FVESEDDPVIKKIALREIRML 54


>gnl|CDD|143364 cd07859, STKc_TDY_MAPK_plant, Catalytic domain of the
           Serine/Threonine Kinases, TDY Mitogen-Activated Protein
           Kinases from Plants.  Serine/Threonine Kinases (STKs),
           Plant TDY Mitogen-Activated Protein Kinase (MAPK)
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The TDY
           MAPK subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. MAPKs are important mediators of cellular
           responses to extracellular signals. In plants, MAPKs are
           associated with physiological, developmental, hormonal,
           and stress responses. Some plants show numerous gene
           duplications of MAPKs. Arabidopsis thaliana harbors at
           least 20 MAPKs, named AtMPK1-20. Oryza sativa contains
           at least 17 MAPKs. There are two subtypes of plant MAPKs
           based on the conserved phosphorylation motif present in
           the activation loop, TEY and TDY. Arabidopsis thaliana
           contains more TEY-type MAPKs than TDY-type, whereas the
           reverse is true for Oryza sativa. This subfamily
           represents the TDY subtype and is composed of Group D
           plant MAPKs including Arabidopsis thaliana MPK18
           (AtMPK18), Oryza sativa Blast- and Wound-induced MAPK1
           (OsBWMK1), OsWJUMK1 (Wound- and JA-Uninducible MAPK1),
           Zea mays MPK6, and the Medicago sativa TDY1 gene
           product. OsBWMK1 enhances resistance to pathogenic
           infections. It mediates stress-activated defense
           responses by activating a transcription factor that
           affects the expression of stress-related genes. AtMPK18
           is involved in microtubule-related functions.
          Length = 338

 Score =  139 bits (351), Expect = 1e-36
 Identities = 87/258 (33%), Positives = 137/258 (53%), Gaps = 17/258 (6%)

Query: 318 KKIHLTIPHIKTYTYLSDVFSFL-----PQIVKLLDFF--PDQDT---VCLVFEHMDSGL 367
           KKI+    H+   T +      L     P IV++      P +     + +VFE M+S L
Sbjct: 31  KKINDVFEHVSDATRILREIKLLRLLRHPDIVEIKHIMLPPSRREFKDIYVVFELMESDL 90

Query: 368 WELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGL 427
            +++      LT  H + ++  LL+ + Y+H   + HRDLKP N+L +    LKI DFGL
Sbjct: 91  HQVIKAND-DLTPEHHQFFLYQLLRALKYIHTANVFHRDLKPKNILANADCKLKICDFGL 149

Query: 428 ARSFDVERWGQ--YTPEVASRWYRAPELL--YASRCYDQSVDLWAVGCILGEMYTNAPLF 483
           AR    +      +T  VA+RWYRAPEL   + S+ Y  ++D+W++GCI  E+ T  PLF
Sbjct: 150 ARVAFNDTPTAIFWTDYVATRWYRAPELCGSFFSK-YTPAIDIWSIGCIFAEVLTGKPLF 208

Query: 484 PGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKI-TFAPSDPVPWSTMLPNASPDTLD 542
           PG++ + QL ++   LGTP+ ++   +++      + +     PVP+S   PNA P  L 
Sbjct: 209 PGKNVVHQLDLITDLLGTPSPETISRVRNEKARRYLSSMRKKQPVPFSQKFPNADPLALR 268

Query: 543 LISKLLLYDGQKRLPANE 560
           L+ +LL +D + R  A E
Sbjct: 269 LLERLLAFDPKDRPTAEE 286


>gnl|CDD|173623 cd00180, PKc, Catalytic domain of Protein Kinases.  Protein Kinases
           (PKs), catalytic (c) domain. PKs catalyze the transfer
           of the gamma-phosphoryl group from ATP to
           serine/threonine or tyrosine residues on protein
           substrates. The PK family is part of a larger
           superfamily that includes the catalytic domains of RIO
           kinases, aminoglycoside phosphotransferase, choline
           kinase, phosphoinositide 3-kinase (PI3K), and
           actin-fragmin kinase. PKs make up a large family of
           serine/threonine kinases, protein tyrosine kinases
           (PTKs), and dual-specificity PKs that phosphorylate both
           serine/threonine and tyrosine residues of target
           proteins. Majority of protein phosphorylation, about
           95%, occurs on serine residues while only 1% occurs on
           tyrosine residues. Protein phosphorylation is a
           mechanism by which a wide variety of cellular proteins,
           such as enzymes and membrane channels, are reversibly
           regulated in response to certain stimuli. PKs often
           function as components of signal transduction pathways
           in which one kinase activates a second kinase, which in
           turn, may act on other kinases; this sequential action
           transmits a signal from the cell surface to target
           proteins, which results in cellular responses. The PK
           family is one of the largest known protein families with
           more than 100 homologous yeast enzymes and 550 human
           proteins. A fraction of PK family members are
           pseudokinases that lack crucial residues for catalytic
           activity. The mutiplicity of kinases allows for specific
           regulation according to substrate, tissue distribution,
           and cellular localization. PKs regulate many cellular
           processes including proliferation, division,
           differentiation, motility, survival, metabolism,
           cell-cycle progression, cytoskeletal rearrangement,
           immunity, and neuronal functions. Many kinases are
           implicated in the development of various human diseases
           including different types of cancer.
          Length = 215

 Score =  135 bits (342), Expect = 1e-36
 Identities = 50/138 (36%), Positives = 80/138 (57%), Gaps = 3/138 (2%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P IVKL   F D++ + LV E+ + G L +LL + +  L+   +   +  +L+G+ YLH 
Sbjct: 51  PNIVKLYGVFEDENHLYLVMEYCEGGSLKDLLKENEGKLSEDEILRILLQILEGLEYLHS 110

Query: 400 KFIMHRDLKPANLLIDKA-GILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR 458
             I+HRDLKP N+L+D   G +K+ADFGL++    ++       V +  Y APE+L    
Sbjct: 111 NGIIHRDLKPENILLDSDNGKVKLADFGLSKLLTSDK-SLLKTIVGTPAYMAPEVLLGKG 169

Query: 459 CYDQSVDLWAVGCILGEM 476
            Y +  D+W++G IL E+
Sbjct: 170 YYSEKSDIWSLGVILYEL 187



 Score = 43.0 bits (102), Expect = 2e-04
 Identities = 18/52 (34%), Positives = 31/52 (59%), Gaps = 2/52 (3%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSDRY 52
          +G  G V  AR+K T + VAIK   I++  +SS+  +++REI+ L  ++   
Sbjct: 3  EGGFGTVYLARDKKTGKKVAIKI--IKKEDSSSLLEELLREIEILKKLNHPN 52


>gnl|CDD|173745 cd07848, STKc_CDKL5, Catalytic domain of the Serine/Threonine
           Kinase, Cyclin-Dependent protein Kinase Like 5.
           Serine/Threonine Kinases (STKs), Cyclin-dependent
           protein kinase like 5 (CDKL5) subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The CDKL5 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. CDKs belong to a
           large family of STKs that are regulated by their cognate
           cyclins. Together, they are involved in the control of
           cell-cycle progression, transcription, and neuronal
           function. Mutations in the gene encoding CDKL5,
           previously called STK9, are associated with early onset
           epilepsy and severe mental retardation [X-linked
           infantile spasm syndrome (ISSX) or West syndrome]. In
           addition, CDKL5 mutations also sometimes cause a
           phenotype similar to Rett syndrome (RTT), a progressive
           neurodevelopmental disorder. These pathogenic mutations
           are located in the N-terminal portion of the protein
           within the kinase domain.
          Length = 287

 Score =  136 bits (343), Expect = 3e-36
 Identities = 81/216 (37%), Positives = 120/216 (55%), Gaps = 5/216 (2%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFI 402
           IV+L + F  +  + LVFE+++  + ELL +    +    V++Y+  L+K + + H   I
Sbjct: 62  IVELKEAFRRRGKLYLVFEYVEKNMLELLEEMPNGVPPEKVRSYIYQLIKAIHWCHKNDI 121

Query: 403 MHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQ 462
           +HRD+KP NLLI    +LK+ DFG AR+        YT  VA+RWYR+PELL  +  Y +
Sbjct: 122 VHRDIKPENLLISHNDVLKLCDFGFARNLSEGSNANYTEYVATRWYRSPELLLGAP-YGK 180

Query: 463 SVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKITFA 522
           +VD+W+VGCILGE+    PLFPGES+I+QL  +   LG    +        P ++ + F 
Sbjct: 181 AVDMWSVGCILGELSDGQPLFPGESEIDQLFTIQKVLGPLPAEQMKLFYSNPRFHGLRF- 239

Query: 523 PSDPVPWS---TMLPNASPDTLDLISKLLLYDGQKR 555
           P+   P S     L   S   LDL+  LL  +   R
Sbjct: 240 PAVNHPQSLERRYLGILSGVLLDLMKNLLKLNPTDR 275



 Score = 38.4 bits (89), Expect = 0.006
 Identities = 23/63 (36%), Positives = 37/63 (58%), Gaps = 5/63 (7%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSDRYEQTNMAEK 60
          +GA+G VL+ R+K T +IVAIK+          VK   +RE+K L ++    +Q N+ E 
Sbjct: 11 EGAYGVVLKCRHKETKEIVAIKK-FKDSEENEEVKETTLRELKMLRTL----KQENIVEL 65

Query: 61 RQA 63
          ++A
Sbjct: 66 KEA 68


>gnl|CDD|143382 cd07877, STKc_p38alpha_MAPK14, Catalytic domain of the
           Serine/Threonine Kinase, p38alpha Mitogen-Activated
           Protein Kinase.  Serine/Threonine Kinases (STKs),
           p38alpha subfamily, catalytic (c) domain. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           p38alpha subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. p38 kinases are mitogen-activated protein
           kinases (MAPKs), serving as important mediators of
           cellular responses to extracellular signals. They are
           activated by the MAPK kinases MKK3 and MKK6, which in
           turn are activated by upstream MAPK kinase kinases
           including TAK1, ASK1, and MLK3, in response to cellular
           stresses or inflammatory cytokines. Vertebrates contain
           four isoforms of p38, named alpha, beta, gamma, and
           delta. p38alpha, also called MAPK14, is expressed in
           most tissues and is the major isoform involved in the
           immune and inflammatory response. It is the central p38
           MAPK involved in myogenesis. It plays a role in
           regulating cell cycle check-point transition and
           promoting cell differentiation. p38alpha also regulates
           cell proliferation and death through crosstalk with the
           JNK pathway. Its substrates include MAPK activated
           protein kinase 2 (MK2), MK5, and the transcription
           factors ATF2 and Mitf.
          Length = 345

 Score =  136 bits (344), Expect = 9e-36
 Identities = 83/225 (36%), Positives = 128/225 (56%), Gaps = 13/225 (5%)

Query: 343 IVKLLDFFP------DQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSY 396
           ++ LLD F       + + V LV   M + L  ++  +K  LT  HV+  +  +L+G+ Y
Sbjct: 78  VIGLLDVFTPARSLEEFNDVYLVTHLMGADLNNIVKCQK--LTDDHVQFLIYQILRGLKY 135

Query: 397 LHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYA 456
           +H   I+HRDLKP+NL +++   LKI DFGLAR  D E  G     VA+RWYRAPE++  
Sbjct: 136 IHSADIIHRDLKPSNLAVNEDCELKILDFGLARHTDDEMTGY----VATRWYRAPEIMLN 191

Query: 457 SRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDY 516
              Y+Q+VD+W+VGCI+ E+ T   LFPG   I+QL ++L  +GTP  +    +      
Sbjct: 192 WMHYNQTVDIWSVGCIMAELLTGRTLFPGTDHIDQLKLILRLVGTPGAELLKKISSESAR 251

Query: 517 NKITFAPSDP-VPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
           N I      P + ++ +   A+P  +DL+ K+L+ D  KR+ A +
Sbjct: 252 NYIQSLTQMPKMNFANVFIGANPLAVDLLEKMLVLDSDKRITAAQ 296


>gnl|CDD|220376 pfam09745, DUF2040, Coiled-coil domain-containing protein 55
           (DUF2040).  This entry is a conserved domain of
           approximately 130 residues of proteins conserved from
           fungi to humans. The proteins do contain a coiled-coil
           domain, but the function is unknown.
          Length = 128

 Score =  129 bits (325), Expect = 2e-35
 Identities = 67/128 (52%), Positives = 91/128 (71%), Gaps = 3/128 (2%)

Query: 61  RQAKLDMERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKKGD---KKPKYIQSLLKQAER 117
           ++A+ + ++AL EDP++Y YDEVYD I   K +   AK       +KPKYI SLL+ AER
Sbjct: 1   KKARKEAQKALEEDPSIYDYDEVYDSIKAAKEEKKQAKLSERKENRKPKYIGSLLEAAER 60

Query: 118 RKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGD 177
           RK+E E   ER++Q EREKEG+EF DKE FVTS+Y+K+LEE +KL+EEE+  + LE+  D
Sbjct: 61  RKREREIAEERKLQKEREKEGDEFADKEKFVTSAYKKQLEENRKLEEEEKEREELEEEND 120

Query: 178 VAKQQDLS 185
           V K +DL 
Sbjct: 121 VTKGKDLF 128


>gnl|CDD|143383 cd07878, STKc_p38beta_MAPK11, Catalytic domain of the
           Serine/Threonine Kinase, p38beta Mitogen-Activated
           Protein Kinase.  Serine/Threonine Kinases (STKs),
           p38beta subfamily, catalytic (c) domain. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           p38beta subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. p38 kinases are mitogen-activated protein
           kinases (MAPKs), serving as important mediators of
           cellular responses to extracellular signals. They are
           activated by the MAPK kinases MKK3 and MKK6, which in
           turn are activated by upstream MAPK kinase kinases
           including TAK1, ASK1, and MLK3, in response to cellular
           stresses or inflammatory cytokines. Vertebrates contain
           four isoforms of p38, named alpha, beta, gamma, and
           delta. p38beta, also called MAPK11, is widely expressed
           in tissues and shows more similarity with p38alpha than
           with the other isoforms. Both are sensitive to
           pyridinylimidazoles and share some common substrates
           such as MAPK activated protein kinase 2 (MK2) and the
           transcription factors ATF2, c-Fos and, ELK-1. p38beta is
           involved in regulating the activation of the
           cyclooxygenase-2 promoter and the expression of
           TGFbeta-induced alpha-smooth muscle cell actin.
          Length = 343

 Score =  131 bits (330), Expect = 6e-34
 Identities = 82/228 (35%), Positives = 130/228 (57%), Gaps = 19/228 (8%)

Query: 343 IVKLLDFFP------DQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSY 396
           ++ LLD F       + + V LV   M + L  ++  +K  L+  HV+  +  LL+G+ Y
Sbjct: 76  VIGLLDVFTPATSIENFNEVYLVTNLMGADLNNIVKCQK--LSDEHVQFLIYQLLRGLKY 133

Query: 397 LHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYA 456
           +H   I+HRDLKP+N+ +++   L+I DFGLAR  D E  G     VA+RWYRAPE++  
Sbjct: 134 IHSAGIIHRDLKPSNVAVNEDCELRILDFGLARQADDEMTGY----VATRWYRAPEIMLN 189

Query: 457 SRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDY 516
              Y+Q+VD+W+VGCI+ E+     LFPG   I+QL  ++  +GTP+ +    LK +   
Sbjct: 190 WMHYNQTVDIWSVGCIMAELLKGKALFPGNDYIDQLKRIMEVVGTPSPEV---LKKISSE 246

Query: 517 NKITFAPSDP-VP---WSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
           +   +  S P +P      +   A+P  +DL+ K+L+ D  KR+ A+E
Sbjct: 247 HARKYIQSLPHMPQQDLKKIFRGANPLAIDLLEKMLVLDSDKRISASE 294


>gnl|CDD|173333 PTZ00036, PTZ00036, glycogen synthase kinase; Provisional.
          Length = 440

 Score =  133 bits (335), Expect = 8e-34
 Identities = 75/178 (42%), Positives = 106/178 (59%), Gaps = 10/178 (5%)

Query: 383 VKTYMQMLLKGVSYLHGKFIMHRDLKPANLLID-KAGILKIADFGLARSFDVERWGQYTP 441
           VK Y   L + ++Y+H KFI HRDLKP NLLID     LK+ DFG A++      GQ + 
Sbjct: 172 VKLYSYQLCRALAYIHSKFICHRDLKPQNLLIDPNTHTLKLCDFGSAKNL---LAGQRSV 228

Query: 442 E-VASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLG 500
             + SR+YRAPEL+  +  Y   +DLW++GCI+ EM    P+F G+S ++QL  ++  LG
Sbjct: 229 SYICSRFYRAPELMLGATNYTTHIDLWSLGCIIAEMILGYPIFSGQSSVDQLVRIIQVLG 288

Query: 501 TPTEDSWPGLKDL-PDYNKITFAPSDPVPWSTMLPNASP-DTLDLISKLLLYDGQKRL 556
           TPTED    LK++ P+Y  I F    P     + P  +P D ++ IS+ L Y+  KRL
Sbjct: 289 TPTEDQ---LKEMNPNYADIKFPDVKPKDLKKVFPKGTPDDAINFISQFLKYEPLKRL 343


>gnl|CDD|173746 cd07850, STKc_JNK, Catalytic domain of the Serine/Threonine Kinase,
           c-Jun N-terminal Kinase.  Serine/Threonine Kinases
           (STKs), c-Jun N-terminal kinase (JNK) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The JNK subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. JNKs are
           mitogen-activated protein kinases (MAPKs) that are
           involved in many stress-activated responses including
           those during inflammation, neurodegeneration, apoptosis,
           and persistent pain sensitization, among others. They
           are also essential regulators of physiological and
           pathological processes and are involved in the
           pathogenesis of several diseases such as diabetes,
           atherosclerosis, stroke, Parkinson's and Alzheimer's.
           Vetebrates harbor three different JNK genes (Jnk1, Jnk2,
           and Jnk3) that are alternatively spliced to produce at
           least 10 isoforms. JNKs are specifically activated by
           the MAPK kinases MKK4 and MKK7, which are in turn
           activated by upstream MAPK kinase kinases as a result of
           different stimuli including stresses such as ultraviolet
           (UV) irradiation, hyperosmolarity, heat shock, or
           cytokines. JNKs activate a large number of different
           substrates based on specific stimulus, cell type, and
           cellular condition, and may be implicated in seemingly
           contradictory functions.
          Length = 353

 Score =  129 bits (326), Expect = 4e-33
 Identities = 83/245 (33%), Positives = 129/245 (52%), Gaps = 37/245 (15%)

Query: 341 PQIVKLLDFFPDQDT------VCLVFEHMDSGLWELLHDKKIHLTIPHVK-TYM--QMLL 391
             I+ LL+ F  Q +      V LV E MD+ L ++     I + + H + +Y+  QML 
Sbjct: 75  KNIIGLLNVFTPQKSLEEFQDVYLVMELMDANLCQV-----IQMDLDHERMSYLLYQMLC 129

Query: 392 KGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAP 451
            G+ +LH   I+HRDLKP+N+++     LKI DFGLAR+         TP V +R+YRAP
Sbjct: 130 -GIKHLHSAGIIHRDLKPSNIVVKSDCTLKILDFGLARTAGTSF--MMTPYVVTRYYRAP 186

Query: 452 ELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLK 511
           E++     Y ++VD+W+VGCI+GEM     LFPG   I+Q   ++ +LGTP+++    L+
Sbjct: 187 EVILGMG-YKENVDIWSVGCIMGEMIRGTVLFPGTDHIDQWNKIIEQLGTPSDEFMSRLQ 245

Query: 512 --------DLPDYNKITFAPSDPVPWSTMLPNASPDTL--------DLISKLLLYDGQKR 555
                   + P Y   +F    P     + P  S            DL+SK+L+ D +KR
Sbjct: 246 PTVRNYVENRPKYAGYSFEELFP---DVLFPPDSESHNKLKASQARDLLSKMLVIDPEKR 302

Query: 556 LPANE 560
           +  ++
Sbjct: 303 ISVDD 307


>gnl|CDD|173724 cd06606, STKc_MAPKKK, Catalytic domain of the Protein
           Serine/Threonine Kinase, Mitogen-Activated Protein
           Kinase Kinase Kinase.  Serine/threonine kinases (STKs),
           mitogen-activated protein kinase (MAPK) kinase kinase
           (MAPKKK) subfamily, catalytic (c) domain. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           MAPKKK subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. MAPKKKs (MKKKs or MAP3Ks) are also called
           MAP/ERK kinase kinases (MEKKs) in some cases. They
           phosphorylate and activate MAPK kinases (MAPKKs or MKKs
           or MAP2Ks), which in turn phosphorylate and activate
           MAPKs during signaling cascades that are important in
           mediating cellular responses to extracellular signals.
           This subfamily is composed of the Apoptosis
           Signal-regulating Kinases ASK1 (or MAPKKK5) and ASK2 (or
           MAPKKK6), MEKK1, MEKK2, MEKK3, MEKK4, as well as plant
           and fungal MAPKKKs. Also included in this subfamily are
           the cell division control proteins Schizosaccharomyces
           pombe Cdc7 and Saccharomyces cerevisiae Cdc15.
          Length = 260

 Score =  122 bits (309), Expect = 1e-31
 Identities = 64/226 (28%), Positives = 107/226 (47%), Gaps = 37/226 (16%)

Query: 341 PQIVKLLDFF--PDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYL 397
           P IV+        +++T+ +  E++  G L  LL      L  P ++ Y + +L+G++YL
Sbjct: 59  PNIVRYYGSERDEEKNTLNIFLEYVSGGSLSSLLKKFG-KLPEPVIRKYTRQILEGLAYL 117

Query: 398 HGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVA-SRWYRAPELLYA 456
           H   I+HRD+K AN+L+D  G++K+ADFG A+       G+ T  V  + ++ APE++  
Sbjct: 118 HSNGIVHRDIKGANILVDSDGVVKLADFGCAKRLGDIETGEGTGSVRGTPYWMAPEVIRG 177

Query: 457 SRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPD- 515
              Y ++ D+W++GC + EM T  P  P                      W  L +    
Sbjct: 178 EE-YGRAADIWSLGCTVIEMATGKP--P----------------------WSELGNPMAA 212

Query: 516 YNKITFAPSDPVPWSTMLP-NASPDTLDLISKLLLYDGQKRLPANE 560
             KI  +   P      +P + S +  D + K L  D +KR  A+E
Sbjct: 213 LYKIGSSGEPP-----EIPEHLSEEAKDFLRKCLRRDPKKRPTADE 253



 Score = 34.5 bits (80), Expect = 0.12
 Identities = 12/45 (26%), Positives = 25/45 (55%), Gaps = 1/45 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
          +G+ G V  A +K T +++A+K + +       ++  + REI+ L
Sbjct: 10 RGSFGSVYLALDKDTGELMAVKSVELSGDSEEELE-ALEREIRIL 53


>gnl|CDD|173660 cd05123, STKc_AGC, Catalytic domain of AGC family Protein
           Serine/Threonine Kinases.  Serine/Threonine Kinases
           (STKs), AGC (Protein Kinases A, G and C) family,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The AGC family is part
           of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and Phosphoinositide 3-Kinase (PI3K). Members of
           this family include cAMP-dependent Protein Kinase (PKA),
           cGMP-dependent Protein Kinase (PKG), Protein Kinase C
           (PKC), Protein Kinase B (PKB), G protein-coupled
           Receptor Kinase (GRK), Serum- and Glucocorticoid-induced
           Kinase (SGK), and 70 kDa ribosomal Protein S6 Kinase
           (p70S6K or S6K), among others. AGC kinases share an
           activation mechanism based on the phosphorylation of up
           to three sites: the activation loop (A-loop), the
           hydrophobic motif (HM) and the turn motif.
           Phosphorylation at the A-loop is required of most AGC
           kinases, which results in a disorder-to-order transition
           of the A-loop. The ordered conformation results in the
           access of substrates and ATP to the active site. A
           subset of AGC kinases with C-terminal extensions
           containing the HM also requires phosphorylation at this
           site. Phosphorylation at the HM allows the C-terminal
           extension to form an ordered structure that packs into
           the hydrophobic pocket of the catalytic domain, which
           then reconfigures the kinase into an active bi-lobed
           state. In addition, growth factor-activated AGC kinases
           such as PKB, p70S6K, RSK, MSK, PKC, and SGK, require
           phosphorylation at the turn motif (also called tail or
           zipper site), located N-terminal to the HM at the
           C-terminal extension. AGC kinases regulate many cellular
           processes including division, growth, survival,
           metabolism, motility, and differentiation. Many are
           implicated in the development of various human diseases.
          Length = 250

 Score =  122 bits (308), Expect = 2e-31
 Identities = 77/251 (30%), Positives = 110/251 (43%), Gaps = 51/251 (20%)

Query: 315 LHDKKIHLTIPHIKTYTYLSDVFSFLPQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHD 373
           L ++ I   I H              P IVKL   F  ++ + LV E+   G L+  L  
Sbjct: 41  LTERNILSRINH--------------PFIVKLHYAFQTEEKLYLVLEYAPGGELFSHLS- 85

Query: 374 KKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDV 433
           K+   +    + Y   ++  + YLH   I++RDLKP N+L+D  G +K+ DFGLA+    
Sbjct: 86  KEGRFSEERARFYAAEIVLALEYLHSLGIIYRDLKPENILLDADGHIKLTDFGLAKELSS 145

Query: 434 ERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLA 493
           E     T    +  Y APE+L   + Y ++VD W++G +L EM T  P F  E D +++ 
Sbjct: 146 EGSRTNTF-CGTPEYLAPEVL-LGKGYGKAVDWWSLGVLLYEMLTGKPPFYAE-DRKEI- 201

Query: 494 MVLHKLGTPTEDSWPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQ 553
                                 Y KI     DP+         SP+  DLIS LL  D  
Sbjct: 202 ----------------------YEKIL---KDPL---RFPEFLSPEARDLISGLLQKDPT 233

Query: 554 KRL---PANEI 561
           KRL    A EI
Sbjct: 234 KRLGSGGAEEI 244



 Score = 29.8 bits (68), Expect = 3.1
 Identities = 13/49 (26%), Positives = 25/49 (51%), Gaps = 6/49 (12%)

Query: 1  QGAHGHVLRARNKSTNQIVAI----KRILIRRRHTSSVKT--DVMREIK 43
          +G+ G VL  R K T ++ A+    K+ +I+R+      T  +++  I 
Sbjct: 3  KGSFGKVLLVRKKDTGKLYAMKVLKKKKIIKRKEVEHTLTERNILSRIN 51


>gnl|CDD|143381 cd07876, STKc_JNK2, Catalytic domain of the Serine/Threonine
           Kinase, c-Jun N-terminal Kinase 2.  Serine/Threonine
           Kinases (STKs), c-Jun N-terminal kinase 2 (JNK2)
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           JNK2 subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. JNKs are mitogen-activated protein kinases
           (MAPKs) that are involved in many stress-activated
           responses including those during inflammation,
           neurodegeneration, apoptosis, and persistent pain
           sensitization, among others. Vetebrates harbor three
           different JNK genes (Jnk1, Jnk2, and Jnk3). JNK1, like
           JNK2, is expressed in every cell and tissue type.
           Initially it was thought that JNK1 and JNK2 were
           functionally redundant as mice deficient in either genes
           (Jnk1 or Jnk2) could survive but disruption of both
           genes resulted in lethality. However, recent studies
           have shown that JNK1 and JNK2 perform distinct functions
           through specific binding partners and substrates.  JNK2
           is specifically translocated to the mitochondria during
           dopaminergic cell death. Specific substrates include the
           microtubule-associated proteins DCX and Tau, as well as
           TIF-IA which is involved in ribosomal RNA synthesis
           regulation. Mice deficient in Jnk2 show protection
           against arthritis, type 1 diabetes, atherosclerosis,
           abdominal aortic aneurysm, cardiac cell death,
           TNF-induced liver damage, and tumor growth, indicating
           that JNK2 may play roles in the pathogenesis of these
           diseases.
          Length = 359

 Score =  120 bits (303), Expect = 4e-30
 Identities = 83/239 (34%), Positives = 130/239 (54%), Gaps = 30/239 (12%)

Query: 343 IVKLLDFFPDQDT------VCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSY 396
           I+ LL+ F  Q +      V LV E MD+ L +++H +  H  + ++   +  +L G+ +
Sbjct: 82  IISLLNVFTPQKSLEEFQDVYLVMELMDANLCQVIHMELDHERMSYL---LYQMLCGIKH 138

Query: 397 LHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYA 456
           LH   I+HRDLKP+N+++     LKI DFGLAR+         TP V +R+YRAPE++  
Sbjct: 139 LHSAGIIHRDLKPSNIVVKSDCTLKILDFGLARTACTNF--MMTPYVVTRYYRAPEVILG 196

Query: 457 SRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDL--- 513
              Y ++VD+W+VGCI+GE+   + +F G   I+Q   V+ +LGTP+ +    L+     
Sbjct: 197 MG-YKENVDIWSVGCIMGELVKGSVIFQGTDHIDQWNKVIEQLGTPSAEFMNRLQPTVRN 255

Query: 514 -----PDYNKITFAPSDPVPWSTMLPNASP-DTL------DLISKLLLYDGQKRLPANE 560
                P Y  I+F    P  W  + P+ S  D L      DL+SK+L+ D  KR+  +E
Sbjct: 256 YVENRPQYPGISFEELFP-DW--IFPSESERDKLKTSQARDLLSKMLVIDPDKRISVDE 311


>gnl|CDD|143379 cd07874, STKc_JNK3, Catalytic domain of the Serine/Threonine
           Kinase, c-Jun N-terminal Kinase 3.  Serine/Threonine
           Kinases (STKs), c-Jun N-terminal kinase 3 (JNK3)
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           JNK3 subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. JNKs are mitogen-activated protein kinases
           (MAPKs) that are involved in many stress-activated
           responses including those during inflammation,
           neurodegeneration, apoptosis, and persistent pain
           sensitization, among others. Vetebrates harbor three
           different JNK genes (Jnk1, Jnk2, and Jnk3). JNK3 is
           expressed primarily in the brain, and to a lesser extent
           in the heart and testis. Mice deficient in Jnk3 are
           protected against kainic acid-induced seizures, stroke,
           sciatic axotomy neural death, and neuronal death due to
           NGF deprivation, oxidative stress, or exposure to
           beta-amyloid peptide. This suggests that JNK3 may play
           roles in the pathogenesis of these diseases.
          Length = 355

 Score =  119 bits (300), Expect = 1e-29
 Identities = 82/239 (34%), Positives = 127/239 (53%), Gaps = 30/239 (12%)

Query: 343 IVKLLDFFPDQDT------VCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSY 396
           I+ LL+ F  Q +      V LV E MD+ L +++  +  H  + ++   +  +L G+ +
Sbjct: 78  IISLLNVFTPQKSLEEFQDVYLVMELMDANLCQVIQMELDHERMSYL---LYQMLCGIKH 134

Query: 397 LHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYA 456
           LH   I+HRDLKP+N+++     LKI DFGLAR+         TP V +R+YRAPE++  
Sbjct: 135 LHSAGIIHRDLKPSNIVVKSDCTLKILDFGLARTAGTSF--MMTPYVVTRYYRAPEVILG 192

Query: 457 SRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLK----- 511
              Y ++VD+W+VGCI+GEM  +  LFPG   I+Q   V+ +LGTP  +    L+     
Sbjct: 193 MG-YKENVDIWSVGCIMGEMVRHKILFPGRDYIDQWNKVIEQLGTPCPEFMKKLQPTVRN 251

Query: 512 ---DLPDYNKITFAPSDPVPWSTMLPNAS-------PDTLDLISKLLLYDGQKRLPANE 560
              + P Y  +TF    P    ++ P  S           DL+SK+L+ D  KR+  +E
Sbjct: 252 YVENRPKYAGLTFPKLFP---DSLFPADSEHNKLKASQARDLLSKMLVIDPAKRISVDE 307


>gnl|CDD|143372 cd07867, STKc_CDC2L6, Catalytic domain of Serine/Threonine Kinase,
           Cell Division Cycle 2-like 6.  Serine/Threonine Kinases
           (STKs), Cell Division Cycle 2-like 6 (CDC2L6) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The CDC2L6 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. CDKs belong to a
           large family of STKs that are regulated by their cognate
           cyclins. Together, they are involved in the control of
           cell-cycle progression, transcription, and neuronal
           function. CDC2L6 is also called CDK8-like and was
           previously referred to as CDK11. However, this is a
           confusing nomenclature as CDC2L6 is distinct from
           CDC2L1, which is represented by the two protein products
           from its gene, called CDK11(p110) and CDK11(p58), as
           well as the caspase-processed CDK11(p46). CDK11(p110),
           CDK11(p58), and CDK11(p46)do not belong to this
           subfamily. CDC2L6 is an associated protein of Mediator,
           a multiprotein complex that provides a platform to
           connect transcriptional and chromatin regulators and
           cofactors, in order to activate and mediate RNA
           polymerase II transcription. CDC2L6 is localized mainly
           in the nucleus amd exerts an opposing effect to CDK8 in
           VP16-dependent transcriptional activation by being a
           negative regulator.
          Length = 317

 Score =  117 bits (295), Expect = 3e-29
 Identities = 78/254 (30%), Positives = 130/254 (51%), Gaps = 35/254 (13%)

Query: 341 PQIVKLLDFFPDQD--TVCLVFEHMDSGLWELL--------HDKKIHLTIPHVKTYMQML 390
           P ++ L   F       V L+F++ +  LW ++        + K + L    VK+ +  +
Sbjct: 58  PNVIALQKVFLSHSDRKVWLLFDYAEHDLWHIIKFHRASKANKKPMQLPRSMVKSLLYQI 117

Query: 391 LKGVSYLHGKFIMHRDLKPANLLI----DKAGILKIADFGLARSFD--VERWGQYTPEVA 444
           L G+ YLH  +++HRDLKPAN+L+     + G +KIAD G AR F+  ++      P V 
Sbjct: 118 LDGIHYLHANWVLHRDLKPANILVMGEGPERGRVKIADMGFARLFNSPLKPLADLDPVVV 177

Query: 445 SRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFP-GESDI--------EQLAMV 495
           + WYRAPELL  +R Y +++D+WA+GCI  E+ T+ P+F   + DI        +QL  +
Sbjct: 178 TFWYRAPELLLGARHYTKAIDIWAIGCIFAELLTSEPIFHCRQEDIKTSNPFHHDQLDRI 237

Query: 496 LHKLGTPTEDSWPGLKDLP-------DYNKITFAPSDPVPWSTMLPNASPDT--LDLISK 546
              +G P +  W  ++ +P       D+ + T+A S  + +        PD+    L+ K
Sbjct: 238 FSVMGFPADKDWEDIRKMPEYPTLQKDFRRTTYANSSLIKYMEK-HKVKPDSKVFLLLQK 296

Query: 547 LLLYDGQKRLPANE 560
           LL  D  KR+ + +
Sbjct: 297 LLTMDPTKRITSEQ 310


>gnl|CDD|143380 cd07875, STKc_JNK1, Catalytic domain of the Serine/Threonine
           Kinase, c-Jun N-terminal Kinase 1.  Serine/Threonine
           Kinases (STKs), c-Jun N-terminal kinase 1 (JNK1)
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           JNK1 subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. JNKs are mitogen-activated protein kinases
           (MAPKs) that are involved in many stress-activated
           responses including those during inflammation,
           neurodegeneration, apoptosis, and persistent pain
           sensitization, among others. Vetebrates harbor three
           different JNK genes (Jnk1, Jnk2, and Jnk3). JNK1, like
           JNK2, is expressed in every cell and tissue type.
           Initially it was thought that JNK1 and JNK2 were
           functionally redundant as mice deficient in either genes
           (Jnk1 or Jnk2) could survive but disruption of both
           genes resulted in lethality. However, recent studies
           have shown that JNK1 and JNK2 perform distinct functions
           through specific binding partners and substrates. JNK1
           specifically binds with JAMP (JNK1-associated membrane
           protein), which regulates the duration of JNK1 activity
           in response to stimuli. Specific JNK1 substrates include
           Itch and SG10, which are implicated in Th2 responses and
           airway inflammation, and microtubule dynamics and
           axodendritic length, respectively. Mice deficient in
           Jnk1 are protected against arthritis, obesity, type 2
           diabetes, cardiac cell death, and non-alcoholic liver
           disease, suggesting that JNK1 may play roles in the
           pathogenesis of these diseases.
          Length = 364

 Score =  118 bits (297), Expect = 4e-29
 Identities = 82/237 (34%), Positives = 124/237 (52%), Gaps = 29/237 (12%)

Query: 339 FLPQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLH 398
           F PQ  K L+ F D   V +V E MD+ L +++  +  H  + ++   +  +L G+ +LH
Sbjct: 92  FTPQ--KSLEEFQD---VYIVMELMDANLCQVIQMELDHERMSYL---LYQMLCGIKHLH 143

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR 458
              I+HRDLKP+N+++     LKI DFGLAR+         TP V +R+YRAPE++    
Sbjct: 144 SAGIIHRDLKPSNIVVKSDCTLKILDFGLARTAGTSF--MMTPYVVTRYYRAPEVILGMG 201

Query: 459 CYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLK------- 511
            Y ++VD+W+VGCI+GEM     LFPG   I+Q   V+ +LGTP  +    L+       
Sbjct: 202 -YKENVDIWSVGCIMGEMIKGGVLFPGTDHIDQWNKVIEQLGTPCPEFMKKLQPTVRTYV 260

Query: 512 -DLPDYNKITFAPSDPVPWSTMLPNAS-------PDTLDLISKLLLYDGQKRLPANE 560
            + P Y   +F    P     + P  S           DL+SK+L+ D  KR+  +E
Sbjct: 261 ENRPKYAGYSFEKLFP---DVLFPADSEHNKLKASQARDLLSKMLVIDASKRISVDE 314


>gnl|CDD|143373 cd07868, STKc_CDK8, Catalytic domain of the Serine/Threonine
           Kinase, Cyclin-Dependent protein Kinase 8.
           Serine/Threonine Kinases (STKs), Cyclin-Dependent
           protein Kinase 8 (CDK8) subfamily, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The CDK8 subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. CDKs belong to a large family
           of STKs that are regulated by their cognate cyclins.
           Together, they are involved in the control of cell-cycle
           progression, transcription, and neuronal function. CDK8
           can act as a negative or positive regulator of
           transcription, depending on the scenario. Together with
           its regulator, cyclin C, it reversibly associates with
           the multi-subunit core Mediator complex, a cofactor that
           is involved in regulating RNA polymerase II (RNAP
           II)-dependent transcription. CDK8 phosphorylates cyclin
           H, a subunit of the general transcription factor TFIIH,
           which results in the inhibition of TFIIH-dependent
           phosphorylation of the C-terminal domain (CTD) of RNAP
           II, facilitating the inhibition of transcription. It has
           also been shown to promote transcription by a mechanism
           that is likely to involve RNAP II phosphorylation. CDK8
           also functions as a stimulus-specific positive
           coregulator of p53 transcriptional responses.
          Length = 317

 Score =  115 bits (289), Expect = 2e-28
 Identities = 77/254 (30%), Positives = 129/254 (50%), Gaps = 35/254 (13%)

Query: 341 PQIVKLLDFFPDQ--DTVCLVFEHMDSGLWELL--------HDKKIHLTIPHVKTYMQML 390
           P ++ L   F       V L+F++ +  LW ++        + K + L    VK+ +  +
Sbjct: 58  PNVISLQKVFLSHADRKVWLLFDYAEHDLWHIIKFHRASKANKKPVQLPRGMVKSLLYQI 117

Query: 391 LKGVSYLHGKFIMHRDLKPANLLI----DKAGILKIADFGLARSFD--VERWGQYTPEVA 444
           L G+ YLH  +++HRDLKPAN+L+     + G +KIAD G AR F+  ++      P V 
Sbjct: 118 LDGIHYLHANWVLHRDLKPANILVMGEGPERGRVKIADMGFARLFNSPLKPLADLDPVVV 177

Query: 445 SRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFP-GESDI--------EQLAMV 495
           + WYRAPELL  +R Y +++D+WA+GCI  E+ T+ P+F   + DI        +QL  +
Sbjct: 178 TFWYRAPELLLGARHYTKAIDIWAIGCIFAELLTSEPIFHCRQEDIKTSNPYHHDQLDRI 237

Query: 496 LHKLGTPTEDSWPGLKDLP-------DYNKITFAPSDPVPWSTMLPNASPDT--LDLISK 546
            + +G P +  W  +K +P       D+ + T+     + +        PD+    L+ K
Sbjct: 238 FNVMGFPADKDWEDIKKMPEHSTLMKDFRRNTYTNCSLIKYMEK-HKVKPDSKAFHLLQK 296

Query: 547 LLLYDGQKRLPANE 560
           LL  D  KR+ + +
Sbjct: 297 LLTMDPIKRITSEQ 310


>gnl|CDD|173702 cd05611, STKc_Rim15_like, Catalytic domain of fungal Rim15-like
           Protein Serine/Threonine Kinases.  Serine/Threonine
           Kinases (STKs), Microtubule-associated serine/threonine
           (MAST) kinase subfamily, fungal Rim15-like kinases,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The MAST kinase
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. Members of this group include Saccharomyces
           cerevisiae Rim15, Schizosaccharomyces pombe cek1, and
           similar fungal proteins. They contain a central
           catalytic domain, which contains an insert relative to
           MAST kinases. In addition, Rim15 contains a C-terminal
           signal receiver (REC) domain while cek1 contains an
           N-terminal PAS domain. Rim15 (or Rim15p) functions as a
           regulator of meiosis. It acts as a downstream effector
           of PKA and regulates entry into stationary phase (G0).
           Thus, it plays a crucial role in regulating yeast
           proliferation, differentiation, and aging. Cek1 may
           facilitate progression of mitotic anaphase.
          Length = 260

 Score =  112 bits (281), Expect = 6e-28
 Identities = 67/219 (30%), Positives = 99/219 (45%), Gaps = 32/219 (14%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P + KL   F  +D + LV E+++ G    L      L     K Y+  ++ GV  LH +
Sbjct: 57  PYVAKLYYSFQSKDYLYLVMEYLNGGDCASLIKTLGGLPEDWAKQYIAEVVLGVEDLHQR 116

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCY 460
            I+HRD+KP NLLID+ G LK+ DFGL+R+    +    TP+     Y APE +      
Sbjct: 117 GIIHRDIKPENLLIDQTGHLKLTDFGLSRNGLENKKFVGTPD-----YLAPETILGVG-D 170

Query: 461 DQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKIT 520
           D+  D W++GC++ E     P F  E+       +L +       +WP            
Sbjct: 171 DKMSDWWSLGCVIFEFLFGYPPFHAETPDAVFDNILSR-----RINWPEEVK-------- 217

Query: 521 FAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPAN 559
                           SP+ +DLI++LL  D  KRL AN
Sbjct: 218 -------------EFCSPEAVDLINRLLCMDPAKRLGAN 243


>gnl|CDD|223589 COG0515, SPS1, Serine/threonine protein kinase [General function
           prediction only / Signal transduction mechanisms /
           Transcription / DNA replication, recombination, and
           repair].
          Length = 384

 Score =  112 bits (281), Expect = 4e-27
 Identities = 70/233 (30%), Positives = 99/233 (42%), Gaps = 30/233 (12%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIH---LTIPHVKTYMQMLLKGVSYL 397
           P IVKL DFF D+ ++ LV E++D G  E L  K      L+       +  +L  + YL
Sbjct: 58  PNIVKLYDFFQDEGSLYLVMEYVDGGSLEDLLKKIGRKGPLSESEALFILAQILSALEYL 117

Query: 398 HGKFIMHRDLKPANLLIDKAG-ILKIADFGLARSFDVERWGQYTPE-----VASRWYRAP 451
           H K I+HRD+KP N+L+D+ G ++K+ DFGLA+           P      V +  Y AP
Sbjct: 118 HSKGIIHRDIKPENILLDRDGRVVKLIDFGLAKLLPDPGSTSSIPALPSTSVGTPGYMAP 177

Query: 452 ELLYASRC--YDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPG 509
           E+L          S D+W++G  L E+ T  P F G                  E +   
Sbjct: 178 EVLLGLSLAYASSSSDIWSLGITLYELLTGLPPFEG------------------EKNSSA 219

Query: 510 LKDLPDYNKITFAPSDPVPWST-MLPNASPDTLDLISKLLLYDGQKRLPANEI 561
                        PS   P S       S    DL+ KLL  D + RL ++  
Sbjct: 220 TSQTLKIILELPTPSLASPLSPSNPELISKAASDLLKKLLAKDPKNRLSSSSD 272



 Score = 29.3 bits (64), Expect = 6.2
 Identities = 14/50 (28%), Positives = 26/50 (52%), Gaps = 3/50 (6%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSD 50
          +G+ G V  AR+    ++VA+K +  +    S      +REI+ L S++ 
Sbjct: 10 EGSFGEVYLARD---RKLVALKVLAKKLESKSKEVERFLREIQILASLNH 56


>gnl|CDD|132963 cd06632, STKc_MEKK1_plant, Catalytic domain of the Protein
           Serine/Threonine Kinase, Plant MAP/ERK kinase kinase 1. 
           Serine/threonine kinases (STKs), plant MAP/ERK kinase
           kinase 1 (MEKK1)-like subfamily, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The plant MEKK1 subfamily is part of a
           larger superfamily that includes the catalytic domains
           of other protein STKs, protein tyrosine kinases, RIO
           kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. This subfamily is
           composed of plant mitogen-activated protein kinase
           (MAPK) kinase kinases (MAPKKKs or MKKKs or MAP3Ks)
           including Arabidopsis thaliana MEKK1 and MAPKKK3. MEKK1
           is a MAPKKK that phosphorylates and activates MAPK
           kinases (MAPKKs or MKKs or MAP2Ks), which in turn
           phosphorylate and activate MAPKs during signaling
           cascades that are important in mediating cellular
           responses to extracellular signals. Arabidopsis thaliana
           MEKK1 activates MPK4, a MAPK that regulates systemic
           acquired resistance. MEKK1 also participates in the
           regulation of temperature-sensitive and tissue-specific
           cell death.
          Length = 258

 Score =  109 bits (273), Expect = 1e-26
 Identities = 64/221 (28%), Positives = 104/221 (47%), Gaps = 30/221 (13%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P IV+ L    ++D + +  E +  G    L  K      P ++ Y + +L G+ YLH +
Sbjct: 62  PNIVQYLGTEREEDNLYIFLELVPGGSLAKLLKKYGSFPEPVIRLYTRQILLGLEYLHDR 121

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCY 460
             +HRD+K AN+L+D  G++K+ADFG+A+   V  +        S ++ APE++     Y
Sbjct: 122 NTVHRDIKGANILVDTNGVVKLADFGMAKQ--VVEFSFAKSFKGSPYWMAPEVIAQQGGY 179

Query: 461 DQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKIT 520
             + D+W++GC + EM T  P +   S +E +A V   +G          K+LP      
Sbjct: 180 GLAADIWSLGCTVLEMATGKPPW---SQLEGVAAVFK-IGRS--------KELP------ 221

Query: 521 FAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANEI 561
                P+P      + S +  D I K L  D   R  A E+
Sbjct: 222 -----PIP-----DHLSDEAKDFILKCLQRDPSLRPTAAEL 252


>gnl|CDD|173755 cd08215, STKc_Nek, Catalytic domain of the Protein Serine/Threonine
           Kinase, Never In Mitosis gene A-related kinase.
           Serine/Threonine Kinases (STKs), Never In Mitosis gene A
           (NIMA)-related kinase (Nek) family, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Nek family is part
           of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. The Nek family is
           composed of 11 different mammalian members (Nek1-11)
           with similarity to the catalytic domain of Aspergillus
           nidulans NIMA kinase, the founding member of the Nek
           family which was identified in a screen for cell cycle
           mutants that were prevented from entering mitosis. Neks
           contain a conserved N-terminal catalytic domain and a
           more divergent C-terminal regulatory region of various
           sizes and structures. They are involved in the
           regulation of downstream processes following the
           activation of Cdc2, and many of their functions are cell
           cycle-related. They play critical roles in microtubule
           dynamics during ciliogenesis and mitosis.
          Length = 258

 Score =  106 bits (266), Expect = 9e-26
 Identities = 58/230 (25%), Positives = 104/230 (45%), Gaps = 45/230 (19%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKK---IHLTIPHVKTYMQMLLKGVSY 396
           P I+K  + F ++  +C+V E+ D G L + +  +K          +  +   L   + Y
Sbjct: 59  PNIIKYYESFEEKGKLCIVMEYADGGDLSQKIKKQKKEGKPFPEEQILDWFVQLCLALKY 118

Query: 397 LHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASR-----WYRAP 451
           LH + I+HRD+KP N+ +   G++K+ DFG+++          T ++A       +Y +P
Sbjct: 119 LHSRKILHRDIKPQNIFLTSNGLVKLGDFGISKVL------SSTVDLAKTVVGTPYYLSP 172

Query: 452 ELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLK 511
           EL   ++ Y+   D+W++GC+L E+ T    F GE+ + +LA                  
Sbjct: 173 ELC-QNKPYNYKSDIWSLGCVLYELCTLKHPFEGEN-LLELA------------------ 212

Query: 512 DLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANEI 561
                 KI      P+P        S +  +L+S LL  D ++R    +I
Sbjct: 213 -----LKILKGQYPPIP-----SQYSSELRNLVSSLLQKDPEERPSIAQI 252



 Score = 35.6 bits (83), Expect = 0.042
 Identities = 12/45 (26%), Positives = 22/45 (48%), Gaps = 1/45 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
          +G+ G V   R KS  ++  +K I +    +   + D + E+K L
Sbjct: 10 KGSFGKVYLVRRKSDGKLYVLKEIDLSNM-SEKEREDALNEVKIL 53


>gnl|CDD|173670 cd05579, STKc_MAST_like, Catalytic domain of Microtubule-associated
           serine/threonine kinase-like proteins.  Serine/Threonine
           Kinases (STKs), Microtubule-associated serine/threonine
           (MAST) kinase subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The MAST kinase subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. The MAST kinase subfamily
           includes MAST kinases, MAST-like (MASTL) kinases, and
           fungal kinases with similarity to Saccharomyces
           cerevisiae Rim15 and Schizosaccharomyces pombe cek1.
           MAST kinases contain an N-terminal domain of unknown
           function, a central catalytic domain, and a C-terminal
           PDZ domain that mediates protein-protein interactions.
           MASTL kinases carry only a catalytic domain which
           contains a long insert relative to other kinases. The
           fungal kinases in this subfamily harbor other domains in
           addition to a central catalytic domain, which also
           contains an insert relative to MAST kinases like MASTL.
           Rim15 contains a C-terminal signal receiver (REC) domain
           while cek1 contains an N-terminal PAS domain. MAST
           kinases are cytoskeletal associated kinases of unknown
           function that are also expressed at neuromuscular
           junctions and postsynaptic densities. The fungal
           proteins Rim15 and cek1 are involved in the regulation
           of meiosis and mitosis, respectively.
          Length = 265

 Score =  103 bits (259), Expect = 9e-25
 Identities = 73/234 (31%), Positives = 105/234 (44%), Gaps = 48/234 (20%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLH-----DKKIHLTIPHVKTYMQMLLKGV 394
           P +VKL   F  +  + LV E++  G L  LL      D+         + Y+  ++  +
Sbjct: 53  PYVVKLYYSFQGKKNLYLVMEYLPGGDLASLLENVGSLDED------VARIYIAEIVLAL 106

Query: 395 SYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVER-WGQYTPEVASR------W 447
            YLH   I+HRDLKP N+LID  G LK+ DFGL++   V R       E   +       
Sbjct: 107 EYLHSNGIIHRDLKPDNILIDSNGHLKLTDFGLSKVGLVRRQINLNDDEKEDKRIVGTPD 166

Query: 448 YRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSW 507
           Y APE++   + + ++VD W++GCIL E     P F GE              TP E   
Sbjct: 167 YIAPEVI-LGQGHSKTVDWWSLGCILYEFLVGIPPFHGE--------------TPEEI-- 209

Query: 508 PGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANEI 561
                   +  I    +  + W       S + +DLISKLL+ D +KRL A  I
Sbjct: 210 --------FQNIL---NGKIEWPE-DVEVSDEAIDLISKLLVPDPEKRLGAKSI 251



 Score = 37.6 bits (88), Expect = 0.010
 Identities = 19/46 (41%), Positives = 26/46 (56%), Gaps = 6/46 (13%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRI----LIRRRHTSSVKTDVMREI 42
          +GA+G V  A+ KST  I AIK I    +IR+     V T+  R+I
Sbjct: 3  KGAYGRVFLAKKKSTGDIYAIKVIKKADMIRKNQVDQVLTE--RDI 46


>gnl|CDD|173672 cd05581, STKc_PDK1, Catalytic domain of the Protein
           Serine/Threonine Kinase, Phosphoinositide-dependent
           kinase 1.  Serine/Threonine Kinases (STKs),
           Phosphoinositide-dependent kinase 1 (PDK1) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The PDK1 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase (PI3K). PDK1
           carries an N-terminal catalytic domain and a C-terminal
           pleckstrin homology (PH) domain that binds
           phosphoinositides. It phosphorylates the activation loop
           of AGC kinases that are regulated by PI3K such as PKB,
           SGK, and PKC, among others, and is crucial for their
           activation. Thus, it contributes in regulating many
           processes including metabolism, growth, proliferation,
           and survival. PDK1 also has the ability to
           autophosphorylate and is constitutively active in
           mammalian cells. PDK1 is essential for normal embryo
           development and is important in regulating cell volume.
          Length = 280

 Score =  102 bits (257), Expect = 2e-24
 Identities = 75/240 (31%), Positives = 102/240 (42%), Gaps = 52/240 (21%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P I+KL   F D++ +  V E+  +G L + +      L     + Y   +L  + YLH 
Sbjct: 62  PGIIKLYYTFQDEENLYFVLEYAPNGELLQYIRKYGS-LDEKCTRFYAAEILLALEYLHS 120

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFD-----VERWGQYTPEVASRW------- 447
           K I+HRDLKP N+L+DK   +KI DFG A+  D         G  T   +          
Sbjct: 121 KGIIHRDLKPENILLDKDMHIKITDFGTAKVLDPNSSPESNKGDATNIDSQIEKNRRRFA 180

Query: 448 -------YRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLG 500
                  Y +PELL       +S DLWA+GCI+ +M T  P F G ++         K+ 
Sbjct: 181 SFVGTAEYVSPELLNEKPA-GKSSDLWALGCIIYQMLTGKPPFRGSNEYL----TFQKI- 234

Query: 501 TPTEDSWPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
              E S+P                         PN  PD  DLI KLL+ D Q RL  NE
Sbjct: 235 LKLEYSFP-------------------------PNFPPDAKDLIEKLLVLDPQDRLGVNE 269



 Score = 37.2 bits (87), Expect = 0.017
 Identities = 16/51 (31%), Positives = 28/51 (54%), Gaps = 6/51 (11%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRI----LIRRRHTSSVKTDVMREIKTLLS 47
          +G+   V+ A+ K TN+  AIK +    LI+ +    VK +  +E+ T L+
Sbjct: 11 EGSFSTVVLAKEKETNKEYAIKILDKRQLIKEKKVKYVKIE--KEVLTRLN 59


>gnl|CDD|219530 pfam07714, Pkinase_Tyr, Protein tyrosine kinase. 
          Length = 258

 Score = 98.7 bits (247), Expect = 4e-23
 Identities = 50/161 (31%), Positives = 80/161 (49%), Gaps = 10/161 (6%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P IV+LL      + + +V E+M  G L + L      LT+  +      + KG+ YL  
Sbjct: 61  PNIVRLLGVCTQGEPLYIVTEYMPGGDLLDFLRKHGEKLTLKDLLQMALQIAKGMEYLES 120

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVAS----RWYRAPELLY 455
           K  +HRDL   N L+ +  ++KI+DFGL+R  D+     Y          +W  APE L 
Sbjct: 121 KNFVHRDLAARNCLVTENLVVKISDFGLSR--DIYEDDYYRKRGGGKLPIKWM-APESLK 177

Query: 456 ASRCYDQSVDLWAVGCILGEMYTNAPL-FPGESDIEQLAMV 495
             +   +S D+W+ G +L E++T     +PG S+ E L ++
Sbjct: 178 DGKFTSKS-DVWSFGVLLWEIFTLGEQPYPGMSNEEVLELL 217


>gnl|CDD|173691 cd05600, STKc_Sid2p_Dbf2p, Catalytic domain of Fungal Sid2p- and
           Dbf2p-like Protein Serine/Threonine Kinases.
           Serine/Threonine Kinases (STKs), ROCK- and NDR-like
           subfamily, fungal Sid2p- and Dbf2p-like proteins,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Sid2p- and
           Dbf2p-like group is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. This group contains fungal kinases including
           Schizosaccharomyces pombe Sid2p and Saccharomyces
           cerevisiae Dbf2p. Group members show similarity to NDR
           kinases in that they contain an N-terminal regulatory
           (NTR) domain and an insert within the catalytic domain
           that contains an auto-inhibitory sequence. Sid2p plays a
           crucial role in the septum initiation network (SIN) and
           in the initiation of cytokinesis. Dbf2p is important in
           regulating the mitotic exit network (MEN) and in
           cytokinesis.
          Length = 333

 Score = 99.4 bits (248), Expect = 6e-23
 Identities = 67/214 (31%), Positives = 97/214 (45%), Gaps = 28/214 (13%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFI 402
           +VKLL  F D + + L  E++  G +  L +    L+  H + YM  + + V  LH    
Sbjct: 63  LVKLLYAFQDDEYLYLAMEYVPGGDFRTLLNNLGVLSEDHARFYMAEMFEAVDALHELGY 122

Query: 403 MHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQ 462
           +HRDLKP N LID +G +K+ DFGL++   V         V S  Y APE+L     YD 
Sbjct: 123 IHRDLKPENFLIDASGHIKLTDFGLSKGI-VTYANSV---VGSPDYMAPEVLRGKG-YDF 177

Query: 463 SVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKITFA 522
           +VD W++GC+L E     P F G +  E    + +         W      P Y+   F 
Sbjct: 178 TVDYWSLGCMLYEFLCGFPPFSGSTPNETWENLKY---------WKETLQRPVYDDPRFN 228

Query: 523 PSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRL 556
            SD             +  DLI+KL+  D  +R 
Sbjct: 229 LSD-------------EAWDLITKLIN-DPSRRF 248



 Score = 29.3 bits (66), Expect = 5.9
 Identities = 12/24 (50%), Positives = 17/24 (70%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRI 24
          QG +G V  A+ K T +IVA+KR+
Sbjct: 11 QGGYGQVFLAKKKDTGEIVALKRM 34


>gnl|CDD|173659 cd05122, PKc_STE, Catalytic domain of STE family Protein Kinases.
           Protein Kinases (PKs), STE family, catalytic (c) domain.
           PKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine or tyrosine residues on
           protein substrates. The STE family is part of a larger
           superfamily that includes the catalytic domains of other
           protein serine/threonine kinases (STKs), protein
           tyrosine kinases (PTKs), RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase (PI3K). This family is composed of STKs, and
           some dual-specificity PKs that phosphorylate both
           threonine and tyrosine residues of target proteins. Most
           members are kinases involved in mitogen-activated
           protein kinase (MAPK) signaling cascades, acting as MAPK
           kinases (MAPKKs), MAPK kinase kinases (MAPKKKs), or MAPK
           kinase kinase kinases (MAP4Ks). The MAPK signaling
           pathways are important mediators of cellular responses
           to extracellular signals. The pathways involve a triple
           kinase core cascade comprising of the MAPK, which is
           phosphorylated and activated by a MAPKK, which itself is
           phosphorylated and activated by a MAPKKK. Each MAPK
           cascade is activated either by a small GTP-binding
           protein or by an adaptor protein, which transmits the
           signal either directly to a MAPKKK to start the triple
           kinase core cascade or indirectly through a mediator
           kinase, a MAP4K. Other STE family members include
           p21-activated kinases (PAKs) and class III myosins,
           among others. PAKs are Rho family GTPase-regulated
           kinases that serve as important mediators in the
           function of Cdc42 (cell division cycle 42) and Rac.
           Class III myosins are motor proteins containing an
           N-terminal kinase catalytic domain and a C-terminal
           actin-binding domain, which can phosphorylate several
           cytoskeletal proteins, conventional myosin regulatory
           light chains, as well as autophosphorylate the
           C-terminal motor domain. They play an important role in
           maintaining the structural integrity of photoreceptor
           cell microvilli.
          Length = 253

 Score = 95.7 bits (239), Expect = 3e-22
 Identities = 60/221 (27%), Positives = 93/221 (42%), Gaps = 31/221 (14%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P IVK    +  +D + +V E    G L +LL      LT   +    + LLKG+ YLH 
Sbjct: 57  PNIVKYYGSYLKKDELWIVMEFCSGGSLKDLLKSTNQTLTESQIAYVCKELLKGLEYLHS 116

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRC 459
             I+HRD+K AN+L+   G +K+ DFGL+      +       V + ++ APE++     
Sbjct: 117 NGIIHRDIKAANILLTSDGEVKLIDFGLSAQLSDTKARNTM--VGTPYWMAPEVINGKP- 173

Query: 460 YDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKI 519
           YD   D+W++G    E+    P +  E      A+        T    PGL+        
Sbjct: 174 YDYKADIWSLGITAIELAEGKPPY-SELPP-MKALFK----IATNGP-PGLR-------- 218

Query: 520 TFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
                +P  WS           D + K L  + +KR  A +
Sbjct: 219 -----NPEKWSDEF-------KDFLKKCLQKNPEKRPTAEQ 247



 Score = 36.4 bits (85), Expect = 0.025
 Identities = 16/45 (35%), Positives = 25/45 (55%), Gaps = 3/45 (6%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
          +G  G V +AR+K T + VAIK I +    +   K  ++ EI+ L
Sbjct: 10 KGGFGEVYKARHKRTGKEVAIKVIKLE---SKEKKEKIINEIQIL 51


>gnl|CDD|173761 cd08221, STKc_Nek9, Catalytic domain of the Protein
           Serine/Threonine Kinase, Never In Mitosis gene A-related
           kinase 9.  Serine/Threonine Kinases (STKs), Never In
           Mitosis gene A (NIMA)-related kinase 9 (Nek9) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Nek9 subfamily is
           one of a family of 11 different Neks (Nek1-11) that are
           involved in cell cycle control. The Nek family is part
           of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. Nek9, also called
           Nercc1, is primarily a cytoplasmic protein but can also
           localize in the nucleus. It is involved in modulating
           chromosome alignment and splitting during mitosis. It
           interacts with the gamma-tubulin ring complex and the
           Ran GTPase, and is implicated in microtubule
           organization. Nek9 associates with FACT (FAcilitates
           Chromatin Transcription) and modulates interphase
           progression. It also interacts with Nek6, and Nek7,
           during mitosis, resulting in their activation.
          Length = 256

 Score = 93.3 bits (232), Expect = 2e-21
 Identities = 46/148 (31%), Positives = 81/148 (54%), Gaps = 6/148 (4%)

Query: 335 DVFSFL--PQIVKLLDFFPDQDTVCLVFEHMDSG-LWE-LLHDKKIHLTIPHVKTYMQML 390
            + S L  P I+   + F D +T+ +  E+ + G L++ ++  K        V  Y+  +
Sbjct: 51  VILSLLQHPNIIAYYNHFMDDNTLLIEMEYANGGTLYDKIVRQKGQLFEEEMVLWYLFQI 110

Query: 391 LKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRA 450
           +  VSY+H   I+HRD+K  N+ + KAG++K+ DFG+++    E     T  V + +Y +
Sbjct: 111 VSAVSYIHKAGILHRDIKTLNIFLTKAGLIKLGDFGISKILGSEYSMAETV-VGTPYYMS 169

Query: 451 PELLYASRCYDQSVDLWAVGCILGEMYT 478
           PEL    + Y+   D+WA+GC+L E+ T
Sbjct: 170 PELCQGVK-YNFKSDIWALGCVLYELLT 196


>gnl|CDD|173671 cd05580, STKc_PKA, Catalytic domain of the Protein Serine/Threonine
           Kinase, cAMP-dependent protein kinase.  Serine/Threonine
           Kinases (STKs), cAMP-dependent protein kinase (PKA)
           subfamily, catalytic (c) subunit. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The PKA
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase (PI3K). This subfamily is composed of the
           cAMP-dependent proteins kinases, PKA and PRKX. The
           inactive PKA holoenzyme is a heterotetramer composed of
           two phosphorylated and active catalytic (C) subunits
           with a dimer of regulatory (R) subunits. Activation is
           achieved through the binding of the important second
           messenger cAMP to the R subunits, which leads to the
           dissociation of PKA into the R dimer and two active C
           subunits. PKA is present ubiquitously in cells and
           interacts with many different downstream targets. It
           plays a role in the regulation of diverse processes such
           as growth, development, memory, metabolism, gene
           expression, immunity, and lipolysis.
          Length = 290

 Score = 93.8 bits (234), Expect = 3e-21
 Identities = 71/221 (32%), Positives = 100/221 (45%), Gaps = 45/221 (20%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWEL--LHDKKIHLTIPHVKTYMQMLLKGVSYLH 398
           P +V L   F D   + LV E++  G  EL     K      P  + Y   ++  + YLH
Sbjct: 61  PFLVNLYGSFQDDSNLYLVMEYVPGG--ELFSHLRKSGRFPEPVARFYAAQVVLALEYLH 118

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERW---GQYTPEVASRWYRAPELLY 455
              I++RDLKP NLL+D  G +KI DFG A+      +   G  TPE     Y APE++ 
Sbjct: 119 SLDIVYRDLKPENLLLDSDGYIKITDFGFAKRVKGRTYTLCG--TPE-----YLAPEII- 170

Query: 456 ASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPD 515
            S+ Y ++VD WA+G ++ EM    P F  ++      + +++            K L  
Sbjct: 171 LSKGYGKAVDWWALGILIYEMLAGYPPFFDDNP-----IQIYE------------KILEG 213

Query: 516 YNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRL 556
             K+ F PS            SPD  DLI  LL  D  KRL
Sbjct: 214 --KVRF-PS----------FFSPDAKDLIRNLLQVDLTKRL 241


>gnl|CDD|173728 cd06614, STKc_PAK, Catalytic domain of the Protein Serine/Threonine
           Kinase, p21-activated kinase.  Serine/threonine kinases
           (STKs), p21-activated kinase (PAK) subfamily, catalytic
           (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The PAK subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. PAKs are Rho
           family GTPase-regulated kinases that serve as important
           mediators in the function of Cdc42 (cell division cycle
           42) and Rac. PAKs are implicated in the regulation of
           many cellular processes including growth factor
           receptor-mediated proliferation, cell polarity, cell
           motility, cell death and survival, and actin
           cytoskeleton organization. PAK deregulation is
           associated with tumor development. PAKs from higher
           eukaryotes are classified into two groups (I and II),
           according to their biochemical and structural features.
           Group I PAKs contain a PBD (p21-binding domain)
           overlapping with an AID (autoinhibitory domain), a
           C-terminal catalytic domain, SH3 binding sites and a
           non-classical SH3 binding site for PIX (PAK-interacting
           exchange factor). Group II PAKs contain a PBD and a
           catalytic domain, but lack other motifs found in group I
           PAKs. Since group II PAKs do not contain an obvious AID,
           they may be regulated differently from group I PAKs.
           Group I PAKs interact with the SH3 containing proteins
           Nck, Grb2 and PIX; no such binding has been demonstrated
           for group II PAKs.
          Length = 286

 Score = 93.4 bits (233), Expect = 3e-21
 Identities = 46/145 (31%), Positives = 75/145 (51%), Gaps = 19/145 (13%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P IV   D +   D + +V E+MD G L +++    + +  P +    + +L+G+ YLH 
Sbjct: 75  PNIVDYYDSYLVGDELWVVMEYMDGGSLTDIITQNFVRMNEPQIAYVCREVLQGLEYLHS 134

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASR--------WYRAP 451
           + ++HRD+K  N+L+ K G +K+ADFG A         Q T E + R        W  AP
Sbjct: 135 QNVIHRDIKSDNILLSKDGSVKLADFGFA--------AQLTKEKSKRNSVVGTPYWM-AP 185

Query: 452 ELLYASRCYDQSVDLWAVGCILGEM 476
           E++     Y   VD+W++G +  EM
Sbjct: 186 EVIKRKD-YGPKVDIWSLGIMCIEM 209



 Score = 36.8 bits (86), Expect = 0.021
 Identities = 13/45 (28%), Positives = 30/45 (66%), Gaps = 2/45 (4%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDV--MREIK 43
          +GA G V +A +++T + VAIK++ +R+++   +  ++  M++ K
Sbjct: 29 EGASGEVYKATDRATGKEVAIKKMRLRKQNKELIINEILIMKDCK 73


>gnl|CDD|173731 cd06627, STKc_Cdc7_like, Catalytic domain of Cell division control
           protein 7-like Protein Serine/Threonine Kinases.
           Serine/threonine kinases (STKs),  (Cdc7)-like subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Cdc7-like subfamily
           is part of a larger superfamily that includes the
           catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. Members of this subfamily include
           Schizosaccharomyces pombe Cdc7, Saccharomyces cerevisiae
           Cdc15, Arabidopsis thaliana mitogen-activated protein
           kinase (MAPK) kinase kinase (MAPKKK) epsilon, and
           related proteins. MAPKKKs phosphorylate and activate
           MAPK kinases (MAPKKs or MKKs or MAP2Ks), which in turn
           phosphorylate and activate MAPKs during signaling
           cascades that are important in mediating cellular
           responses to extracellular signals. Fission yeast Cdc7
           is essential for cell division by playing a key role in
           the initiation of septum formation and cytokinesis.
           Budding yeast Cdc15 functions to coordinate mitotic exit
           with cytokinesis. Arabidopsis MAPKKK epsilon is required
           for pollen development in the plasma membrane.
          Length = 254

 Score = 92.3 bits (230), Expect = 4e-21
 Identities = 45/146 (30%), Positives = 81/146 (55%), Gaps = 7/146 (4%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPH--VKTYMQMLLKGVSYLH 398
           P IVK +      D++ ++ E+ ++G   L    K     P   V  Y+  +L+G++YLH
Sbjct: 59  PNIVKYIGSIETSDSLYIILEYAENG--SLRQIIKKFGPFPESLVAVYVYQVLQGLAYLH 116

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR 458
            + ++HRD+K AN+L  K G++K+ADFG+A   +       +  V + ++ APE++  S 
Sbjct: 117 EQGVIHRDIKAANILTTKDGVVKLADFGVATKLNDVSKDDASV-VGTPYWMAPEVIEMSG 175

Query: 459 CYDQSVDLWAVGCILGEMYT-NAPLF 483
               + D+W++GC + E+ T N P +
Sbjct: 176 A-STASDIWSLGCTVIELLTGNPPYY 200



 Score = 38.4 bits (90), Expect = 0.006
 Identities = 16/45 (35%), Positives = 25/45 (55%), Gaps = 1/45 (2%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
          +GA G V +  N  T   VAIK+I + +    ++K  +M+EI  L
Sbjct: 10 RGAFGVVYKGLNLETGDFVAIKQISLEKIKEEALK-SIMQEIDLL 53


>gnl|CDD|197581 smart00219, TyrKc, Tyrosine kinase, catalytic domain.
           Phosphotransferases. Tyrosine-specific kinase subfamily.
          Length = 257

 Score = 92.2 bits (230), Expect = 6e-21
 Identities = 48/160 (30%), Positives = 82/160 (51%), Gaps = 9/160 (5%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P +VKLL    +++ + +V E+M+ G L   L   +  L++  + ++   + +G+ YL  
Sbjct: 61  PNVVKLLGVCTEEEPLYIVMEYMEGGDLLSYLRKNRPKLSLSDLLSFALQIARGMEYLES 120

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVAS---RWYRAPELLYA 456
           K  +HRDL   N L+ +  ++KI+DFGL+R  D+     Y         RW  APE L  
Sbjct: 121 KNFIHRDLAARNCLVGENLVVKISDFGLSR--DLYDDDYYRKRGGKLPIRWM-APESL-K 176

Query: 457 SRCYDQSVDLWAVGCILGEMYTN-APLFPGESDIEQLAMV 495
              +    D+W+ G +L E++T     +PG S+ E L  +
Sbjct: 177 EGKFTSKSDVWSFGVLLWEIFTLGEQPYPGMSNEEVLEYL 216


>gnl|CDD|132957 cd06626, STKc_MEKK4, Catalytic domain of the Protein
           Serine/Threonine Kinase, MAP/ERK kinase kinase 4.
           Serine/threonine kinases (STKs), MAP/ERK kinase kinase 4
           (MEKK4) subfamily, catalytic (c) domain. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           MEKK4 subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. MEKK4 is a mitogen-activated protein kinase
           (MAPK) kinase kinase (MAPKKK or MKKK or MAP3K), that
           phosphorylates and activates MAPK kinases (MAPKKs or
           MKKs or MAP2Ks), which in turn phosphorylate and
           activate MAPKs during signaling cascades that are
           important in mediating cellular responses to
           extracellular signals. MEKK4 activates the c-Jun
           N-terminal kinase (JNK) and p38 MAPK signaling pathways
           by directly activating their respective MAPKKs,
           MKK4/MKK7 and MKK3/MKK6. JNK and p38 are collectively
           known as stress-activated MAPKs, as they are activated
           in response to a variety of environmental stresses and
           pro-inflammatory cytokines. MEKK4 also plays roles in
           the re-polarization of the actin cytoskeleton in
           response to osmotic stress, in the proper closure of the
           neural tube, in cardiovascular development, and in
           immune responses.
          Length = 264

 Score = 91.2 bits (227), Expect = 1e-20
 Identities = 69/267 (25%), Positives = 121/267 (45%), Gaps = 42/267 (15%)

Query: 307 MDSGLWELLHDKKIHLTIPHIKTYTYLSD---VFSFL--PQIVKLLDFFPDQDTVCLVFE 361
           +D+G  EL+  K+I +     KT   ++D   V   L  P +VK       ++ V +  E
Sbjct: 22  LDTG--ELMAVKEIRIQDNDPKTIKEIADEMKVLELLKHPNLVKYYGVEVHREKVYIFME 79

Query: 362 HMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGIL 420
           +   G L ELL   +I L    ++ Y   LL+G++YLH   I+HRD+KPAN+ +D  G++
Sbjct: 80  YCSGGTLEELLEHGRI-LDEHVIRVYTLQLLEGLAYLHSHGIVHRDIKPANIFLDHNGVI 138

Query: 421 KIADFG----LARSFDVERWGQYTPEVASRWYRAPELLYASRC--YDQSVDLWAVGCILG 474
           K+ DFG    L  +         +    +  Y APE++   +   + ++ D+W++GC++ 
Sbjct: 139 KLGDFGCAVKLKNNTTTMGEEVQS-LAGTPAYMAPEVITGGKGKGHGRAADIWSLGCVVL 197

Query: 475 EMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKITFAPSDPVPWSTMLP 534
           EM T    +    +  Q+   +     P          +PD  ++               
Sbjct: 198 EMATGKRPWSELDNEFQIMFHVGAGHKPP---------IPDSLQL--------------- 233

Query: 535 NASPDTLDLISKLLLYDGQKRLPANEI 561
             SP+  D + + L  D +KR  A+E+
Sbjct: 234 --SPEGKDFLDRCLESDPKKRPTASEL 258


>gnl|CDD|132960 cd06629, STKc_MAPKKK_Bck1_like, Catalytic domain of fungal
           Bck1-like MAP Kinase Kinase Kinases.  Serine/threonine
           kinases (STKs), mitogen-activated protein kinase (MAPK)
           kinase kinase (MAPKKK) subfamily, fungal Bck1-like
           proteins, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           MAPKKK subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. Members of this group include the MAPKKKs
           Saccharomyces cerevisiae Bck1 and Schizosaccharomyces
           pombe Mkh1, and related proteins. MAPKKKs phosphorylate
           and activate MAPK kinases (MAPKKs or MKKs or MAP2Ks),
           which in turn phosphorylate and activate MAPKs during
           signaling cascades that are important in mediating
           cellular responses to extracellular signals. Budding
           yeast Bck1 is part of the cell integrity MAPK pathway,
           which is activated by stresses and aggressions to the
           cell wall. The MAPKKK Bck1, MAPKKs Mkk1 and Mkk2, and
           the MAPK Slt2 make up the cascade that is important in
           the maintenance of cell wall homeostasis. Fission yeast
           Mkh1 is involved in MAPK cascades regulating cell
           morphology, cell wall integrity, salt resistance, and
           filamentous growth in response to stress.
          Length = 272

 Score = 91.0 bits (226), Expect = 2e-20
 Identities = 67/226 (29%), Positives = 108/226 (47%), Gaps = 32/226 (14%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
             IV+ L F   ++ + +  E++  G                V+ + + +L+G++YLH K
Sbjct: 68  LNIVQYLGFETTEEYLSIFLEYVPGGSIGSCLRTYGRFEEQLVRFFTEQVLEGLAYLHSK 127

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLAR-SFDVERWGQYTPEVASRWYRAPELLYA-SR 458
            I+HRDLK  NLL+D  GI KI+DFG+++ S D+    Q      S ++ APE++++ S+
Sbjct: 128 GILHRDLKADNLLVDADGICKISDFGISKKSDDIYDNDQNMSMQGSVFWMAPEVIHSYSQ 187

Query: 459 CYDQSVDLWAVGCILGEMYTNAPLFPGE---SDIEQLAMVLHKLGTPTEDSWPGLKDLPD 515
            Y   VD+W++GC++ EM      F G    SD E +A +  KLG               
Sbjct: 188 GYSAKVDIWSLGCVVLEM------FAGRRPWSDEEAIAAMF-KLGNKRS----------- 229

Query: 516 YNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANEI 561
                 AP  P+P   +  N SP  LD ++     +   R  A E+
Sbjct: 230 ------AP--PIP-PDVSMNLSPVALDFLNACFTINPDNRPTAREL 266


>gnl|CDD|173764 cd08224, STKc_Nek6_Nek7, Catalytic domain of the Protein
           Serine/Threonine Kinases, Never In Mitosis gene
           A-related kinase 6 and 7.  Serine/Threonine Kinases
           (STKs), Never In Mitosis gene A (NIMA)-related kinase 6
           (Nek6) and Nek7 subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The Nek6/7 subfamily is part of a family of 11 different
           Neks (Nek1-11) that are involved in cell cycle control.
           The Nek family is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. Nek6 and Nek7 are the shortest Neks,
           consisting only of the catalytic domain and a very short
           N-terminal extension. They show distinct expression
           patterns and both appear to be downstream substrates of
           Nek9. They are required for mitotic spindle formation
           and cytokinesis. They may also be regulators of the p70
           ribosomal S6 kinase.
          Length = 267

 Score = 89.0 bits (221), Expect = 1e-19
 Identities = 47/140 (33%), Positives = 78/140 (55%), Gaps = 6/140 (4%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELL-HDKKIHLTIPHVK--TYMQMLLKGVSY 396
           P ++K L  F + + + +V E  D+G L  ++ H KK    IP      Y   L   + +
Sbjct: 62  PNVIKYLASFIENNELNIVLELADAGDLSRMIKHFKKQKRLIPERTIWKYFVQLCSALEH 121

Query: 397 LHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYA 456
           +H K IMHRD+KPAN+ I   G++K+ D GL R F  +    ++  V + +Y +PE ++ 
Sbjct: 122 MHSKRIMHRDIKPANVFITATGVVKLGDLGLGRFFSSKTTAAHS-LVGTPYYMSPERIHE 180

Query: 457 SRCYDQSVDLWAVGCILGEM 476
           +  Y+   D+W++GC+L EM
Sbjct: 181 NG-YNFKSDIWSLGCLLYEM 199


>gnl|CDD|173669 cd05578, STKc_Yank1, Catalytic domain of the Protein
           Serine/Threonine Kinase, Yank1.  Serine/Threonine
           Kinases (STKs), Yank1 or STK32A subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Yank1 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. This subfamily
           contains uncharacterized STKs with similarity to the
           human protein designated Yank1 or STK32A.
          Length = 258

 Score = 88.5 bits (220), Expect = 1e-19
 Identities = 58/219 (26%), Positives = 92/219 (42%), Gaps = 36/219 (16%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P +V L   F D++ + LV + +  G       +K+  +   VK ++  ++  + YLH K
Sbjct: 60  PFLVNLWYSFQDEENMYLVVDLLLGGDLRYHLSQKVKFSEEQVKFWICEIVLALEYLHSK 119

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVA-SRWYRAPELLYASRC 459
            I+HRD+KP N+L+D+ G + I DF +A           T   + +  Y APE +   + 
Sbjct: 120 GIIHRDIKPDNILLDEQGHVHITDFNIATKV---TPDTLTTSTSGTPGYMAPE-VLCRQG 175

Query: 460 YDQSVDLWAVGCILGEMYTNAPLFPGES--DIEQLAMVLHKLGTPTEDSWPGLKDLPDYN 517
           Y  +VD W++G    E       + G S    +Q+     K  T                
Sbjct: 176 YSVAVDWWSLGVTAYECLRGKRPYRGHSRTIRDQI---RAKQETADVLYPAT-------- 224

Query: 518 KITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRL 556
                      WST       + +D I+KLL  D QKRL
Sbjct: 225 -----------WST-------EAIDAINKLLERDPQKRL 245


>gnl|CDD|214568 smart00221, STYKc, Protein kinase; unclassified specificity.
           Phosphotransferases. The specificity of this class of
           kinases can not be predicted. Possible dual-specificity
           Ser/Thr/Tyr kinase.
          Length = 258

 Score = 88.4 bits (220), Expect = 1e-19
 Identities = 49/161 (30%), Positives = 83/161 (51%), Gaps = 10/161 (6%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIH-LTIPHVKTYMQMLLKGVSYLH 398
           P IVKLL    +++ + +V E+M  G L + L   +   L++  + ++   + +G+ YL 
Sbjct: 61  PNIVKLLGVCTEEEPLMIVMEYMPGGDLLDYLRKNRPKELSLSDLLSFALQIARGMEYLE 120

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVAS---RWYRAPELLY 455
            K  +HRDL   N L+ +  ++KI+DFGL+R  D+     Y  +      RW  APE L 
Sbjct: 121 SKNFIHRDLAARNCLVGENLVVKISDFGLSR--DLYDDDYYKVKGGKLPIRWM-APESL- 176

Query: 456 ASRCYDQSVDLWAVGCILGEMYTN-APLFPGESDIEQLAMV 495
               +    D+W+ G +L E++T     +PG S+ E L  +
Sbjct: 177 KEGKFTSKSDVWSFGVLLWEIFTLGEEPYPGMSNAEVLEYL 217


>gnl|CDD|173663 cd05572, STKc_cGK_PKG, Catalytic domain of the Protein
           Serine/Threonine Kinase, cGMP-dependent protein kinase. 
           Serine/Threonine Kinases (STKs), cGMP-dependent protein
           kinase (cGK or PKG) subfamily, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The cGK subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. Mammals have two cGK isoforms
           from different genes, cGKI and cGKII. cGKI exists as two
           splice variants, cGKI-alpha and cGKI-beta. cGK consists
           of an N-terminal regulatory domain containing a
           dimerization and an autoinhibitory pseudosubstrate
           region, two cGMP-binding domains, and a C-terminal
           catalytic domain. Binding of cGMP to both binding sites
           releases the inhibition of the catalytic center by the
           pseudosubstrate region, allowing autophosphorylation and
           activation of the kinase. cGKI is a  soluble protein
           expressed in all smooth muscles, platelets, cerebellum,
           and kidney. It is also expressed at lower concentrations
           in other tissues. cGKII is a membrane-bound protein that
           is most abundantly expressed in the intestine. It is
           also present in the brain nuclei, adrenal cortex,
           kidney, lung, and prostate. cGKI is involved in the
           regulation of smooth muscle tone, smooth cell
           proliferation, and platelet activation. cGKII plays a
           role in the regulation of secretion, such as renin
           secretion by the kidney and aldosterone secretion by the
           adrenal. It also regulates bone growth and the circadian
           rhythm.
          Length = 262

 Score = 87.7 bits (218), Expect = 2e-19
 Identities = 67/222 (30%), Positives = 105/222 (47%), Gaps = 41/222 (18%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P IVKL   F D+  + ++ E+   G LW +L D+         + Y+  ++    YLH 
Sbjct: 53  PFIVKLYRTFKDKKYIYMLMEYCLGGELWTILRDRG-LFDEYTARFYIACVVLAFEYLHN 111

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARS-FDVER-W---GQYTPEVASRWYRAPELL 454
           + I++RDLKP NLL+D  G +K+ DFG A+     ++ W   G  TPE     Y APE++
Sbjct: 112 RGIIYRDLKPENLLLDSNGYVKLVDFGFAKKLKSGQKTWTFCG--TPE-----YVAPEII 164

Query: 455 YASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLP 514
             ++ YD SVD W++G +L E+ T  P F GE D + + +                    
Sbjct: 165 -LNKGYDFSVDYWSLGILLYELLTGRPPF-GEDDEDPMEI-------------------- 202

Query: 515 DYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRL 556
            YN I    +  + +            DLI +LL  + ++RL
Sbjct: 203 -YNDI-LKGNGKLEFP---NYIDKAAKDLIKQLLRRNPEERL 239


>gnl|CDD|132954 cd06623, PKc_MAPKK_plant_like, Catalytic domain of Plant
           dual-specificity MAP kinase kinases and similar
           proteins.  Protein kinases (PKs), MAP kinase kinase
           (MAPKK) subfamily, Plant MAPKKs and similar proteins,
           catalytic (c) domain. PKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine or
           tyrosine residues on protein substrates. The MAPKK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein serine/threonine
           kinases, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. The mitogen-activated protein
           (MAP) kinase signaling pathways are important mediators
           of cellular responses to extracellular signals. The
           pathways involve a triple kinase core cascade comprising
           of the MAP kinase (MAPK), which is phosphorylated and
           activated by a MAPK kinase (MAPKK or MKK), which itself
           is phosphorylated and activated by a MAPK kinase kinase
           (MAPKKK or MKKK). Members of this group include MAPKKs
           from plants, kinetoplastids, alveolates, and mycetozoa.
           The MAPKK, LmxPK4, from Leishmania mexicana, is
           important in differentiation and virulence.
           Dictyostelium discoideum MEK1 is required for proper
           chemotaxis. MEK1 null mutants display severe defects in
           cell polarization and directional movement. Plants
           contain multiple MAPKKs like other eukaryotes. The
           Arabidopsis genome encodes for 10 MAPKKs while poplar
           and rice contain 13 MAPKKs each. The functions of these
           proteins have not been fully elucidated. There is
           evidence to suggest that MAPK cascades are involved in
           plant stress responses. In Arabidopsis, MKK3 plays a
           role in pathogen signaling, MKK2 is involved in cold and
           salt stress signaling, MKK4/MKK5 participates in innate
           immunity, and MKK7 regulates basal and systemic acquired
           resistance.
          Length = 264

 Score = 87.3 bits (217), Expect = 4e-19
 Identities = 47/140 (33%), Positives = 73/140 (52%), Gaps = 5/140 (3%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P +VK    F  +  + +V E+MD G    L  K   +  P +    + +LKG+ YLH K
Sbjct: 59  PYVVKCYGAFYKEGEISIVLEYMDGGSLADLLKKVGKIPEPVLAYIARQILKGLDYLHTK 118

Query: 401 F-IMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPE-VASRWYRAPELLYASR 458
             I+HRD+KP+NLLI+  G +KIADFG+++   +E         V +  Y +PE +    
Sbjct: 119 RHIIHRDIKPSNLLINSKGEVKIADFGISKV--LENTLDQCNTFVGTVTYMSPERI-QGE 175

Query: 459 CYDQSVDLWAVGCILGEMYT 478
            Y  + D+W++G  L E   
Sbjct: 176 SYSYAADIWSLGLTLLECAL 195



 Score = 41.0 bits (97), Expect = 8e-04
 Identities = 18/52 (34%), Positives = 29/52 (55%), Gaps = 2/52 (3%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSDRY 52
          QG+ G V + R+K T +I A+K+I +        +  ++RE+KTL S    Y
Sbjct: 11 QGSSGVVYKVRHKPTGKIYALKKIHV--DGDEEFRKQLLRELKTLRSCESPY 60


>gnl|CDD|132961 cd06630, STKc_MEKK1, Catalytic domain of the Protein
           Serine/Threonine Kinase, MAP/ERK kinase kinase 1.
           Serine/threonine kinases (STKs), MAP/ERK kinase kinase 1
           (MEKK1) subfamily, catalytic (c) domain. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           MEKK1 subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. MEKK1 is a mitogen-activated protein kinase
           (MAPK) kinase kinase (MAPKKK or MKKK or MAP3K), that
           phosphorylates and activates MAPK kinases (MAPKKs or
           MKKs or MAP2Ks), which in turn phosphorylate and
           activate MAPKs during signaling cascades that are
           important in mediating cellular responses to
           extracellular signals. MEKK1 activates the extracellular
           signal-regulated kinase 1/2 (ERK1/2) and c-Jun
           N-terminal kinase (JNK) pathways by activating their
           respective MAPKKs, MEK1/2 and MKK4/MKK7, respectively.
           MEKK1 is important in regulating cell survival and
           apoptosis. MEKK1 also plays a role in cell migration,
           tissue maintenance and homeostasis, and wound healing.
          Length = 268

 Score = 85.3 bits (211), Expect = 2e-18
 Identities = 55/140 (39%), Positives = 76/140 (54%), Gaps = 16/140 (11%)

Query: 386 YMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAG-ILKIADFGLARSFDV------ERWGQ 438
           Y + LL+G+SYLH   I+HRD+K ANLLID  G  L+IADFG A           E  GQ
Sbjct: 108 YTEQLLRGLSYLHENQIIHRDVKGANLLIDSTGQRLRIADFGAAARLAAKGTGAGEFQGQ 167

Query: 439 YTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLH- 497
               +A   + APE+L   + Y +S D+W+VGC++ EM T  P +  E     LA++   
Sbjct: 168 LLGTIA---FMAPEVLRGEQ-YGRSCDVWSVGCVIIEMATAKPPWNAEKHSNHLALIFKI 223

Query: 498 --KLGTPT--EDSWPGLKDL 513
                 P+  E   PGL+D+
Sbjct: 224 ASATTAPSIPEHLSPGLRDV 243


>gnl|CDD|173732 cd06628, STKc_MAPKKK_Byr2_like, Catalytic domain of fungal
           Byr2-like MAP Kinase Kinase Kinases.  Serine/threonine
           kinases (STKs), mitogen-activated protein kinase (MAPK)
           kinase kinase (MAPKKK) subfamily, fungal Byr2-like
           proteins, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           MAPKKK subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. Members of this group include the MAPKKKs
           Schizosaccharomyces pombe Byr2, Saccharomyces cerevisiae
           and Cryptococcus neoformans Ste11, and related proteins.
           They contain an N-terminal SAM (sterile alpha-motif)
           domain, which mediates protein-protein interaction, and
           a C-terminal catalytic domain. MAPKKKs phosphorylate and
           activate MAPK kinases (MAPKKs or MKKs or MAP2Ks), which
           in turn phosphorylate and activate MAPKs during
           signaling cascades that are important in mediating
           cellular responses to extracellular signals. Fission
           yeast Byr2 is regulated by Ras1. It responds to
           pheromone signaling and controls mating through the MAPK
           pathway. Budding yeast Ste11 functions in MAPK cascades
           that regulate mating, high osmolarity glycerol, and
           filamentous growth responses.
          Length = 267

 Score = 84.5 bits (209), Expect = 3e-18
 Identities = 50/157 (31%), Positives = 83/157 (52%), Gaps = 9/157 (5%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
             IV+ L    D D + +  E++  G    L +         V+ +++ +LKG++YLH +
Sbjct: 66  ENIVQYLGSSLDADHLNIFLEYVPGGSVAALLNNYGAFEETLVRNFVRQILKGLNYLHNR 125

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGL-----ARSFDVERWGQYTPEVASRWYRAPELLY 455
            I+HRD+K AN+L+D  G +KI+DFG+     A S   +  G       S ++ APE++ 
Sbjct: 126 GIIHRDIKGANILVDNKGGIKISDFGISKKLEANSLSTKTNGARPSLQGSVFWMAPEVVK 185

Query: 456 ASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQL 492
            +  Y +  D+W++GC++ EM T    FP   D  QL
Sbjct: 186 QT-SYTRKADIWSLGCLVVEMLTGKHPFP---DCTQL 218


>gnl|CDD|132956 cd06625, STKc_MEKK3_like, Catalytic domain of MAP/ERK kinase kinase
           3-like Protein Serine/Threonine Kinases.
           Serine/threonine kinases (STKs), MAP/ERK kinase kinase 3
           (MEKK3)-like subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The MEKK3-like subfamily is part of a larger superfamily
           that includes the catalytic domains of other protein
           STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. This subfamily is composed of
           MEKK3, MEKK2, and related proteins, all containing an
           N-terminal PB1 domain, which mediates oligomerization,
           and a C-terminal catalytic domain. MEKK2 and MEKK3 are
           mitogen-activated protein kinase (MAPK) kinase kinases
           (MAPKKKs or MKKKs or MAP3Ks), proteins that
           phosphorylate and activate MAPK kinases (MAPKKs or MKKs
           or MAP2Ks), which in turn phosphorylate and activate
           MAPKs during signaling cascades that are important in
           mediating cellular responses to extracellular signals.
           MEKK2 and MEKK3 activate MEK5 (also called MKK5), which
           activates extracellular signal-regulated kinase 5
           (ERK5). The ERK5 cascade plays roles in promoting cell
           proliferation, differentiation, neuronal survival, and
           neuroprotection. MEKK3 plays an essential role in
           embryonic angiogenesis and early heart development.
           MEKK2 and MEKK3 can also activate the MAPKs, c-Jun
           N-terminal kinase (JNK) and p38, through their
           respective MAPKKs.
          Length = 263

 Score = 83.3 bits (206), Expect = 7e-18
 Identities = 53/188 (28%), Positives = 92/188 (48%), Gaps = 14/188 (7%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDK-KIH--LTIPHVKTYMQMLLKGVSYL 397
            +IV+      D +T+ +  E+M  G    + D+ K +  LT    + Y + +L+GV YL
Sbjct: 64  ERIVQYYGCLRDDETLSIFMEYMPGGS---VKDQLKAYGALTETVTRKYTRQILEGVEYL 120

Query: 398 HGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQ--YTPEVASRWYRAPELLY 455
           H   I+HRD+K AN+L D AG +K+ DFG ++                 + ++ +PE++ 
Sbjct: 121 HSNMIVHRDIKGANILRDSAGNVKLGDFGASKRLQTICSSGTGMKSVTGTPYWMSPEVI- 179

Query: 456 ASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPG--LKDL 513
           +   Y +  D+W+VGC + EM T  P +   ++ E +A +      PT    P     D 
Sbjct: 180 SGEGYGRKADVWSVGCTVVEMLTEKPPW---AEFEAMAAIFKIATQPTNPQLPSHVSPDA 236

Query: 514 PDYNKITF 521
            ++ + TF
Sbjct: 237 RNFLRRTF 244


>gnl|CDD|173762 cd08222, STKc_Nek11, Catalytic domain of the Protein
           Serine/Threonine Kinase, Never In Mitosis gene A-related
           kinase 11.  Serine/Threonine Kinases (STKs), Never In
           Mitosis gene A (NIMA)-related kinase 11 (Nek11)
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           Nek11 subfamily is one of a family of 11 different Neks
           (Nek1-11) that are involved in cell cycle control. The
           Nek family is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. Nek11 is involved, through direct
           phosphorylation, in regulating the degradation of Cdc25A
           (Cell Division Cycle 25 homolog A), which plays a role
           in cell cycle progression and in activating cyclin
           dependent kinases. Nek11 is activated by CHK1
           (CHeckpoint Kinase 1) and may be involved in the G2/M
           checkpoint. Nek11 may also play a role in the S-phase
           checkpoint as well as in DNA replication and genotoxic
           stress responses.
          Length = 260

 Score = 82.7 bits (204), Expect = 1e-17
 Identities = 63/172 (36%), Positives = 91/172 (52%), Gaps = 20/172 (11%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEH-----MDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVS 395
           P IVK    F ++D  C++ E+     +D  L EL H  K  L+   V  +   LL GV 
Sbjct: 62  PAIVKFHASFLERDAFCIITEYCEGRDLDCKLEELKHTGKT-LSENQVCEWFIQLLLGVH 120

Query: 396 YLHGKFIMHRDLKPANLLIDKAGILKIADFGLAR----SFDVERWGQYTPEVASRWYRAP 451
           Y+H + I+HRDLK  N+ + K  +LKI DFG++R    S D+      TP     +Y +P
Sbjct: 121 YMHQRRILHRDLKAKNIFL-KNNLLKIGDFGVSRLLMGSCDLATTFTGTP-----YYMSP 174

Query: 452 ELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPT 503
           E L   + YD   D+W++GCIL EM   A  F G++    L++VL  +  PT
Sbjct: 175 EAL-KHQGYDSKSDIWSLGCILYEMCCLAHAFEGQN---FLSVVLRIVEGPT 222


>gnl|CDD|173664 cd05573, STKc_ROCK_NDR_like, Catalytic domain of ROCK- and NDR
           kinase-like Protein Serine/Threonine Kinases.
           Serine/Threonine Kinases (STKs), Rho-associated
           coiled-coil containing protein kinase (ROCK) and Nuclear
           Dbf2-Related (NDR)-like kinase subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The ROCK- and NDR-like
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. Members of this subfamily include ROCK and
           ROCK-like proteins such as DMPK, MRCK, and CRIK, as well
           as NDR and NDR-like proteins such as LATS, CBK1 and
           Sid2p. ROCK and CRIK are effectors of the small GTPase
           Rho, while MRCK is an effector of the small GTPase
           Cdc42. NDR and NDR-like kinases contain an N-terminal
           regulatory (NTR) domain and an insert within the
           catalytic domain that contains an auto-inhibitory
           sequence. Proteins in this subfamily are involved in
           regulating many cellular functions including
           contraction, motility, division, proliferation,
           apoptosis, morphogenesis, and cytokinesis.
          Length = 350

 Score = 83.9 bits (208), Expect = 2e-17
 Identities = 68/244 (27%), Positives = 93/244 (38%), Gaps = 71/244 (29%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P IVKL   F D++ + LV E+M  G L  LL  K +       + Y+  L+  +  +H 
Sbjct: 61  PWIVKLYYSFQDEEHLYLVMEYMPGGDLMNLLIRKDV-FPEETARFYIAELVLALDSVHK 119

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSF------------DVERWGQYTPEVASRW 447
              +HRD+KP N+LID  G +K+ADFGL +                    +    V  R 
Sbjct: 120 LGFIHRDIKPDNILIDADGHIKLADFGLCKKMNKAKDREYYLNDSHNLLFRDNVLVRRRD 179

Query: 448 ----------------YRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQ 491
                           Y APE+L     Y    D W++G IL EM    P F  ++    
Sbjct: 180 HKQRRVRANSTVGTPDYIAPEVL-RGTPYGLECDWWSLGVILYEMLYGFPPFYSDT---- 234

Query: 492 LAMVLHKLGTPTEDSWPGLKDLPDYNKIT-------FAPSDPVPWSTMLPNASPDTLDLI 544
                    T              YNKI        F P  PV         SP+ +DLI
Sbjct: 235 ------LQET--------------YNKIINWKESLRFPPDPPV---------SPEAIDLI 265

Query: 545 SKLL 548
            +LL
Sbjct: 266 CRLL 269



 Score = 30.3 bits (69), Expect = 2.7
 Identities = 15/48 (31%), Positives = 26/48 (54%), Gaps = 6/48 (12%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRI----LIRRRHTSSVKTDVMREIKT 44
          +GA G V   R+K T Q+ A+K +    +I+R   + V+ +  R+I  
Sbjct: 11 RGAFGEVWLVRDKDTGQVYAMKVLRKSDMIKRNQIAHVRAE--RDILA 56


>gnl|CDD|173768 cd08228, STKc_Nek6, Catalytic domain of the Protein
           Serine/Threonine Kinase, Never In Mitosis gene A-related
           kinase 6.  Serine/Threonine Kinases (STKs), Never In
           Mitosis gene A (NIMA)-related kinase 6 (Nek6) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Nek6 subfamily is
           one of a family of 11 different Neks (Nek1-11) that are
           involved in cell cycle control. The Nek family is part
           of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. Nek6 is required
           for the transition from metaphase to anaphase. It also
           plays important roles in mitotic spindle formation and
           cytokinesis.  Activated by Nek9 during mitosis, Nek6
           phosphorylates Eg5, a kinesin that is important for
           spindle bipolarity. Nek6 localizes to spindle
           microtubules during metaphase and anaphase, and to the
           midbody during cytokinesis.
          Length = 267

 Score = 80.5 bits (198), Expect = 8e-17
 Identities = 47/140 (33%), Positives = 81/140 (57%), Gaps = 6/140 (4%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELL-HDKKIHLTIPH--VKTYMQMLLKGVSY 396
           P ++K LD F + + + +V E  D+G L +++ + KK    IP   V  Y   L   V +
Sbjct: 62  PNVIKYLDSFIEDNELNIVLELADAGDLSQMIKYFKKQKRLIPERTVWKYFVQLCSAVEH 121

Query: 397 LHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYA 456
           +H + +MHRD+KPAN+ I   G++K+ D GL R F  +    ++  V + +Y +PE ++ 
Sbjct: 122 MHSRRVMHRDIKPANVFITATGVVKLGDLGLGRFFSSKTTAAHS-LVGTPYYMSPERIHE 180

Query: 457 SRCYDQSVDLWAVGCILGEM 476
           +  Y+   D+W++GC+L EM
Sbjct: 181 NG-YNFKSDIWSLGCLLYEM 199


>gnl|CDD|173772 cd08530, STKc_CNK2-like, Catalytic domain of the Protein
           Serine/Threonine Kinase, Chlamydomonas reinhardtii CNK2,
            and similar domains.  Serine/Threonine Kinases (STKs),
           Chlamydomonas reinhardtii Never In Mitosis gene A
           (NIMA)-related kinase 1 (CNK2)-like subfamily, catalytic
           (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Chlamydomonas
           reinhardtii CNK2-like subfamily belongs to the
           (NIMA)-related kinase (Nek) family. The Nek family
           includes seven different Chlamydomonas Neks (CNKs 1-6
           and Fa2). This subfamily includes CNK1, and -2.  The Nek
           family is part of a larger superfamily that includes the
           catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase.  Chlamydomonas reinhardtii CNK2 has both
           cilliary and cell cycle functions. It influences
           flagellar length through promoting flagellar
           disassembly, and it regulates cell size, through
           influencing the size threshold at which cells commit to
           mitosis.
          Length = 256

 Score = 78.6 bits (194), Expect = 3e-16
 Identities = 62/225 (27%), Positives = 101/225 (44%), Gaps = 37/225 (16%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELL-HDKKIHLTIPH--VKTYMQMLLKGVSY 396
           P I+   + F D + +C+V E+   G L + +   KK    IP   +      LL+G+  
Sbjct: 59  PNIISYKEAFLDGNKLCIVMEYAPFGDLSKAISKRKKKRKLIPEQEIWRIFIQLLRGLQA 118

Query: 397 LHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYA 456
           LH + I+HRDLK AN+L+    ++KI D G+++   V +      ++ +  Y APE ++ 
Sbjct: 119 LHEQKILHRDLKSANILLVANDLVKIGDLGISK---VLKKNMAKTQIGTPHYMAPE-VWK 174

Query: 457 SRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDY 516
            R Y    D+W++GC+L EM T AP F   S                      ++DL   
Sbjct: 175 GRPYSYKSDIWSLGCLLYEMATFAPPFEARS----------------------MQDL--R 210

Query: 517 NKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANEI 561
            K+      P+P     P  S D  + I  +L    + R   ++I
Sbjct: 211 YKVQRGKYPPIP-----PIYSQDLQNFIRSMLQVKPKLRPNCDKI 250



 Score = 28.6 bits (64), Expect = 9.2
 Identities = 18/69 (26%), Positives = 35/69 (50%), Gaps = 5/69 (7%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSDRYEQTNMAEK 60
          +G++G V + +  S NQ  A+K + +    +   + D + EI+ L SV+      N+   
Sbjct: 10 KGSYGSVYKVKRLSDNQFYALKEVDLGSM-SQKEREDAVNEIRILASVN----HPNIISY 64

Query: 61 RQAKLDMER 69
          ++A LD  +
Sbjct: 65 KEAFLDGNK 73


>gnl|CDD|173668 cd05577, STKc_GRK, Catalytic domain of the Protein Serine/Threonine
           Kinase, G protein-coupled Receptor Kinase.
           Serine/Threonine Kinases (STKs), G protein-coupled
           Receptor Kinase (GRK) subfamily, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The GRK subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. GRKs phosphorylate and
           regulate G protein-coupled receptors (GPCRs), the
           largest superfamily of cell surface receptors, which
           regulate some part of nearly all physiological
           functions. Phosphorylated GPCRs bind to arrestins, which
           prevents further G protein signaling despite the
           presence of activating ligand. GRKs contain a central
           catalytic domain, flanked by N- and C-terminal
           extensions. The N-terminus contains an RGS (regulator of
           G protein signaling) homology (RH) domain and several
           motifs. The C-terminus diverges among different groups
           of GRKs. There are seven types of GRKs, named GRK1 to
           GRK7. They are subdivided into three main groups: visual
           (GRK1/7); beta-adrenergic receptor kinases (GRK2/3); and
           GRK4-like (GRK4/5/6). Expression of GRK2/3/5/6 is
           widespread while GRK1/4/7 show a limited tissue
           distribution. The substrate spectrum of the widely
           expressed GRKs partially overlaps. GRKs play important
           roles in the cardiovascular, immune, respiratory,
           skeletal, and nervous systems.
          Length = 277

 Score = 79.1 bits (195), Expect = 3e-16
 Identities = 48/140 (34%), Positives = 72/140 (51%), Gaps = 9/140 (6%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG--LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLH 398
             IV L   F  +D +CLV   M+ G   + + +  +          Y   ++ G+ +LH
Sbjct: 53  RFIVSLAYAFETKDDLCLVMTLMNGGDLKYHIYNVGEPGFPEARAIFYAAQIICGLEHLH 112

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPE--VASRWYRAPELLYA 456
            + I++RDLKP N+L+D  G ++I+D GLA    VE  G    +    +  Y APE+L  
Sbjct: 113 QRRIVYRDLKPENVLLDDHGNVRISDLGLA----VELKGGKKIKGRAGTPGYMAPEVLQG 168

Query: 457 SRCYDQSVDLWAVGCILGEM 476
              YD SVD +A+GC L EM
Sbjct: 169 EV-YDFSVDWFALGCTLYEM 187


>gnl|CDD|173680 cd05589, STKc_PKN, Catalytic domain of the Protein Serine/Threonine
           Kinase, Protein Kinase N.  Serine/Threonine Kinases
           (STKs), Protein Kinase N (PKN) subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The PKN subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. PKN has a
           C-terminal catalytic domain that is highly homologous to
           PKCs. Its unique N-terminal regulatory region contains
           antiparallel coiled-coil (ACC) domains. In mammals,
           there are three PKN isoforms from different genes
           (designated PKN-alpha, beta, and gamma), which show
           different enzymatic properties, tissue distribution, and
           varied functions. PKN can be activated by the small
           GTPase Rho, and by fatty acids such as arachidonic and
           linoleic acids. It is involved in many biological
           processes including cytokeletal regulation, cell
           adhesion, vesicle transport, glucose transport,
           regulation of meiotic maturation and embryonic cell
           cycles, signaling to the nucleus, and tumorigenesis.
          Length = 324

 Score = 79.3 bits (196), Expect = 4e-16
 Identities = 54/155 (34%), Positives = 81/155 (52%), Gaps = 13/155 (8%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P +V L   F  +D VC V E+  +G   ++H      + P    Y   ++ G+ YLH  
Sbjct: 62  PFLVNLFACFQTEDHVCFVMEYA-AGGDLMMHIHTDVFSEPRAVFYAACVVLGLQYLHEN 120

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARS---FDVERWGQY--TPEVASRWYRAPELLY 455
            I++RDLK  NLL+D  G +KIADFGL +    F  +R   +  TPE     + APE+L 
Sbjct: 121 KIVYRDLKLDNLLLDTEGFVKIADFGLCKEGMGFG-DRTSTFCGTPE-----FLAPEVLT 174

Query: 456 ASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIE 490
            +  Y ++VD W +G ++ EM      FPG+ + E
Sbjct: 175 ETS-YTRAVDWWGLGVLIYEMLVGESPFPGDDEEE 208


>gnl|CDD|173624 cd00192, PTKc, Catalytic domain of Protein Tyrosine Kinases.
           Protein Tyrosine Kinase (PTK) family, catalytic domain.
           This PTKc family is part of a larger superfamily that
           includes the catalytic domains of protein
           serine/threonine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. They can be classified
           into receptor and non-receptor tyr kinases. PTKs play
           important roles in many cellular processes including,
           lymphocyte activation, epithelium growth and
           maintenance, metabolism control, organogenesis
           regulation, survival, proliferation, differentiation,
           migration, adhesion, motility, and morphogenesis.
           Receptor tyr kinases (RTKs) are integral membrane
           proteins which contain an extracellular ligand-binding
           region, a transmembrane segment, and an intracellular
           tyr kinase domain. RTKs are usually activated through
           ligand binding, which causes dimerization and
           autophosphorylation of the intracellular tyr kinase
           catalytic domain, leading to intracellular signaling.
           Some RTKs are orphan receptors with no known ligands.
           Non-receptor (or cytoplasmic) tyr kinases are
           distributed in different intracellular compartments and
           are usually multi-domain proteins containing a catalytic
           tyr kinase domain as well as various regulatory domains
           such as SH3 and SH2. PTKs are usually autoinhibited and
           require a mechanism for activation. In many PTKs, the
           phosphorylation of tyr residues in the activation loop
           is essential for optimal activity. Aberrant expression
           of PTKs is associated with many development
           abnormalities and cancers.
          Length = 262

 Score = 78.0 bits (193), Expect = 4e-16
 Identities = 50/168 (29%), Positives = 82/168 (48%), Gaps = 16/168 (9%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVK--TYMQMLL------ 391
           P +V+LL    +++ + LV E+M+ G L + L   +     P     +   +L       
Sbjct: 56  PNVVRLLGVCTEEEPLYLVLEYMEGGDLLDYLRKSRPVFPSPEKSTLSLKDLLSFAIQIA 115

Query: 392 KGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVAS--RWYR 449
           KG+ YL  K  +HRDL   N L+ +  ++KI+DFGL+R    + + +         RW  
Sbjct: 116 KGMEYLASKKFVHRDLAARNCLVGEDLVVKISDFGLSRDVYDDDYYRKKTGGKLPIRWM- 174

Query: 450 APELLYASRCYDQSVDLWAVGCILGEMYTNA--PLFPGESDIEQLAMV 495
           APE L       +S D+W+ G +L E++T    P +PG S+ E L  +
Sbjct: 175 APESLKDGIFTSKS-DVWSFGVLLWEIFTLGATP-YPGLSNEEVLEYL 220


>gnl|CDD|177557 PHA03209, PHA03209, serine/threonine kinase US3; Provisional.
          Length = 357

 Score = 78.0 bits (192), Expect = 1e-15
 Identities = 63/246 (25%), Positives = 102/246 (41%), Gaps = 39/246 (15%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P ++++ D        C+V  H  S L+  L  +   L I       + +L+G+ YLH +
Sbjct: 117 PSVIRMKDTLVSGAITCMVLPHYSSDLYTYLTKRSRPLPIDQALIIEKQILEGLRYLHAQ 176

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWY--------RAPE 452
            I+HRD+K  N+ I+    + I D G A+           P VA  +          APE
Sbjct: 177 RIIHRDVKTENIFINDVDQVCIGDLGAAQ----------FPVVAPAFLGLAGTVETNAPE 226

Query: 453 LLYASRCYDQSVDLWAVGCILGEM-------YTNAPLFPGESDIE---QLAMVLHKLGTP 502
           +L   + Y+   D+W+ G +L EM       + + P  P E        L  ++  L   
Sbjct: 227 VLARDK-YNSKADIWSAGIVLFEMLAYPSTIFEDPPSTPEEYVKSCHSHLLKIISTLKVH 285

Query: 503 TED--SWPGLKDLPDYNKITFAPSDPVPWSTMLP-----NASPDTLDLISKLLLYDGQKR 555
            E+    PG + +  +  I +A  +  P+ T  P     N   D   L+ K+L +D   R
Sbjct: 286 PEEFPRDPGSRLVRGF--IEYASLERQPY-TRYPCFQRVNLPIDGEFLVHKMLTFDAAMR 342

Query: 556 LPANEI 561
             A EI
Sbjct: 343 PSAEEI 348


>gnl|CDD|173771 cd08529, STKc_FA2-like, Catalytic domain of the Protein
           Serine/Threonine Kinase, Chlamydomonas reinhardtii FA2
           and similar domains.  Serine/Threonine Kinases (STKs),
           Chlamydomonas reinhardtii FA2-like subfamily, catalytic
           (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Chlamydomonas
           reinhardtii FA2-like subfamily belongs to the
           (NIMA)-related kinase (Nek) family. The Nek family
           includes seven different Chlamydomonas Neks (CNKs 1-6
           and Fa2). This subfamily includes FA2 and CNK4.  The Nek
           family is part of a larger superfamily that includes the
           catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase.  Chlamydomonas reinhardtii FA2 was discovered
           in a genetic screen for deflagellation-defective
           mutants. It is essential for
           basal-body/centriole-associated microtubule severing,
           and plays a role in cell cycle progression. No cellular
           function has yet been ascribed to CNK4.
          Length = 256

 Score = 76.4 bits (188), Expect = 1e-15
 Identities = 49/159 (30%), Positives = 85/159 (53%), Gaps = 9/159 (5%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLH-DKKIHLTIPHV-KTYMQMLLKGVSYL 397
             I++  + F D+  + +V E+ ++G L +LL   +   L    V + ++Q+LL G+++L
Sbjct: 59  SYIIRYYESFLDKGKLNIVMEYAENGDLHKLLKMQRGRPLPEDQVWRFFIQILL-GLAHL 117

Query: 398 HGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYAS 457
           H K I+HRD+K  NL +D    +KI D G+A+          T  V + +Y +PEL    
Sbjct: 118 HSKKILHRDIKSLNLFLDAYDNVKIGDLGVAKLLSDNTNFANTI-VGTPYYLSPELC-ED 175

Query: 458 RCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVL 496
           + Y++  D+WA+G +L E  T    F   +   Q A++L
Sbjct: 176 KPYNEKSDVWALGVVLYECCTGKHPFDANN---QGALIL 211


>gnl|CDD|173673 cd05582, STKc_RSK_N, N-terminal catalytic domain of the Protein
           Serine/Threonine Kinase, 90 kDa ribosomal protein S6
           kinase.  Serine/Threonine Kinases (STKs), 90 kDa
           ribosomal protein S6 kinase (RSK) subfamily, N-terminal
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The RSK subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. RSKs contain an
           N-terminal kinase domain (NTD) from the AGC family and a
           C-terminal kinase domain (CTD) from the CAMK family.
           They are activated by signaling inputs from
           extracellular regulated kinase (ERK) and
           phosphoinositide dependent kinase 1 (PDK1). ERK
           phosphorylates and activates the CTD of RSK, serving as
           a docking site for PDK1, which phosphorylates and
           activates the NTD, which in turn phosphorylates all
           known RSK substrates. RSKs act as downstream effectors
           of mitogen-activated protein kinase (MAPK) and play key
           roles in mitogen-activated cell growth, differentiation,
           and survival. Mammals possess four RSK isoforms (RSK1-4)
           from distinct genes. RSK proteins are also referred to
           as MAP kinase-activated protein kinases (MAPKAPKs),
           p90-RSKs, or p90S6Ks.
          Length = 318

 Score = 76.8 bits (189), Expect = 2e-15
 Identities = 56/164 (34%), Positives = 88/164 (53%), Gaps = 5/164 (3%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P IVKL   F  +  + L+ + +  G       K++  T   VK Y+  L   + +LH  
Sbjct: 58  PFIVKLHYAFQTEGKLYLILDFLRGGDLFTRLSKEVMFTEEDVKFYLAELALALDHLHSL 117

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLAR-SFDVERWGQYTPEVASRWYRAPELLYASRC 459
            I++RDLKP N+L+D+ G +K+ DFGL++ S D E+  +      +  Y APE++   R 
Sbjct: 118 GIIYRDLKPENILLDEEGHIKLTDFGLSKESIDHEK--KAYSFCGTVEYMAPEVV-NRRG 174

Query: 460 YDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLH-KLGTP 502
           + QS D W+ G ++ EM T +  F G+   E + M+L  KLG P
Sbjct: 175 HTQSADWWSFGVLMFEMLTGSLPFQGKDRKETMTMILKAKLGMP 218


>gnl|CDD|173722 cd05633, STKc_GRK3, Catalytic domain of the Protein
           Serine/Threonine Kinase, G protein-coupled Receptor
           Kinase 3.  Serine/Threonine Kinases (STKs), G
           protein-coupled Receptor Kinase (GRK) subfamily, GRK3
           isoform, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The GRK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. GRKs phosphorylate and regulate G
           protein-coupled receptors (GPCRs), the largest
           superfamily of cell surface receptors which regulate
           some part of nearly all physiological functions.
           Phosphorylated GPCRs bind to arrestins, which prevents
           further G protein signaling despite the presence of
           activating ligand. There are seven types of GRKs, named
           GRK1 to GRK7. GRK3 (also known as beta-adrenergic
           receptor kinase 2) is widely expressed in many tissues.
           GRK3-deficient mice show a lack of olfactory receptor
           desensitization and altered regulation of the M2
           muscarinic airway. GRK3 is involved in modulating the
           cholinergic response of airway smooth muscles. It also
           plays a role in dopamine receptor regulation. GRK3
           promoter polymorphisms may be associated with bipolar
           disorder.
          Length = 279

 Score = 76.2 bits (187), Expect = 3e-15
 Identities = 65/222 (29%), Positives = 104/222 (46%), Gaps = 42/222 (18%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHV------KTYMQMLLKGV 394
           P IV +   F   D +C + + M+ G      D   HL+   V      + Y   ++ G+
Sbjct: 57  PFIVCMTYAFHTPDKLCFILDLMNGG------DLHYHLSQHGVFSEKEMRFYATEIILGL 110

Query: 395 SYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELL 454
            ++H +F+++RDLKPAN+L+D+ G ++I+D GLA  F  ++       V +  Y APE+L
Sbjct: 111 EHMHNRFVVYRDLKPANILLDEHGHVRISDLGLACDFSKKK---PHASVGTHGYMAPEVL 167

Query: 455 YASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLP 514
                YD S D +++GC+L +      L  G S   Q     HK            KD  
Sbjct: 168 QKGTAYDSSADWFSLGCMLFK------LLRGHSPFRQ-----HK-----------TKDKH 205

Query: 515 DYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRL 556
           + +++T   +  +P S      SP+   L+  LL  D  KRL
Sbjct: 206 EIDRMTLTVNVELPDSF-----SPELKSLLEGLLQRDVSKRL 242


>gnl|CDD|173769 cd08229, STKc_Nek7, Catalytic domain of the Protein
           Serine/Threonine Kinase, Never In Mitosis gene A-related
           kinase 7.  Serine/Threonine Kinases (STKs), Never In
           Mitosis gene A (NIMA)-related kinase 7 (Nek7) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Nek7 subfamily is
           one of a family of 11 different Neks (Nek1-11) that are
           involved in cell cycle control. The Nek family is part
           of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. Nek7 is required
           for mitotic spindle formation and cytokinesis. It is
           enriched in the centrosome and is critical for
           microtubule nucleation. Nek7 is activated by Nek9 during
           mitosis, and may regulate the p70 ribosomal S6 kinase.
          Length = 267

 Score = 75.1 bits (184), Expect = 5e-15
 Identities = 47/150 (31%), Positives = 81/150 (54%), Gaps = 6/150 (4%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELL-HDKKIHLTIPH--VKTYMQMLLKGVSY 396
           P ++K    F + + + +V E  D+G L  ++ H KK    IP   V  Y   L   + +
Sbjct: 62  PNVIKYYASFIEDNELNIVLELADAGDLSRMIKHFKKQKRLIPEKTVWKYFVQLCSALEH 121

Query: 397 LHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYA 456
           +H + +MHRD+KPAN+ I   G++K+ D GL R F  +    ++  V + +Y +PE ++ 
Sbjct: 122 MHSRRVMHRDIKPANVFITATGVVKLGDLGLGRFFSSKTTAAHS-LVGTPYYMSPERIHE 180

Query: 457 SRCYDQSVDLWAVGCILGEMYTNAPLFPGE 486
           +  Y+   D+W++GC+L EM      F G+
Sbjct: 181 NG-YNFKSDIWSLGCLLYEMAALQSPFYGD 209


>gnl|CDD|165473 PHA03207, PHA03207, serine/threonine kinase US3; Provisional.
          Length = 392

 Score = 76.4 bits (188), Expect = 6e-15
 Identities = 67/233 (28%), Positives = 100/233 (42%), Gaps = 22/233 (9%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFI 402
           I+ L+  +  + TVC+V       L+  + D+   L +    T  + LL+ ++YLHG+ I
Sbjct: 148 IINLIHAYRWKSTVCMVMPKYKCDLFTYV-DRSGPLPLEQAITIQRRLLEALAYLHGRGI 206

Query: 403 MHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPE----VASRWYRAPELLYASR 458
           +HRD+K  N+ +D+     + DFG A   D       TP+      +    +PELL A  
Sbjct: 207 IHRDVKTENIFLDEPENAVLGDFGAACKLDAH---PDTPQCYGWSGTLETNSPELL-ALD 262

Query: 459 CYDQSVDLWAVGCILGEMYT-NAPLF----PGESDIEQL-----AMVLHKLGTPTEDSWP 508
            Y    D+W+ G +L EM   N  LF       S   QL      M +H L  P   S  
Sbjct: 263 PYCAKTDIWSAGLVLFEMSVKNVTLFGKQVKSSS--SQLRSIIRCMQVHPLEFPQNGSTN 320

Query: 509 GLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANEI 561
             K    Y  I   P   +P          D   LI+K+L +D + R  A +I
Sbjct: 321 LCKHFKQY-AIVLRPPYTIPPVIRKYGMHMDVEYLIAKMLTFDQEFRPSAQDI 372


>gnl|CDD|173703 cd05612, STKc_PRKX_like, Catalytic domain of PRKX-like Protein
           Serine/Threonine Kinases.  Serine/Threonine Kinases
           (STKs), cAMP-dependent protein kinase (PKA) subfamily,
           PRKX-like kinases, catalytic (c) subunit. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The PKA
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. Members of this group include human PRKX (X
           chromosome-encoded protein kinase), Drosophila DC2, and
           similar proteins. PRKX is present in many tissues
           including fetal and adult brain, kidney, and lung. The
           PRKX gene is located in the Xp22.3 subregion and has a
           homolog called PRKY on the Y chromosome. An abnormal
           interchange between PRKX aand PRKY leads to the sex
           reversal disorder of XX males and XY females. PRKX is
           implicated in granulocyte/macrophage lineage
           differentiation, renal cell epithelial migration, and
           tubular morphogenesis in the developing kidney.
          Length = 291

 Score = 75.2 bits (185), Expect = 6e-15
 Identities = 55/166 (33%), Positives = 80/166 (48%), Gaps = 41/166 (24%)

Query: 394 VSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQY-TPEVASRWYRAPE 452
           + YLH K I++RDLKP N+L+DK G +K+ DFG A+      W    TPE     Y APE
Sbjct: 114 LEYLHSKEIVYRDLKPENILLDKEGHIKLTDFGFAKKLRDRTWTLCGTPE-----YLAPE 168

Query: 453 LLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGE--SDIEQLAMVLHKLGTPTEDSWPGL 510
           ++  S+ ++++VD WA+G ++ EM    P F  +    I +  ++  KL       +P  
Sbjct: 169 VI-QSKGHNKAVDWWALGILIYEMLVGYPPFFDDNPFGIYE-KILAGKL------EFPRH 220

Query: 511 KDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRL 556
            DL  Y K                       DLI KLL+ D  +RL
Sbjct: 221 LDL--YAK-----------------------DLIKKLLVVDRTRRL 241


>gnl|CDD|173760 cd08220, STKc_Nek8, Catalytic domain of the Protein
           Serine/Threonine Kinase, Never In Mitosis gene A-related
           kinase 8.  Serine/Threonine Kinases (STKs), Never In
           Mitosis gene A (NIMA)-related kinase 8 (Nek8) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Nek8 subfamily is
           one of a family of 11 different Neks (Nek1-11) that are
           involved in cell cycle control. The Nek family is part
           of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. Nek8 contains an
           N-terminal kinase catalytic domain and a C-terminal RCC1
           (regulator of chromosome condensation) domain. A double
           point mutation in Nek8 causes cystic kidney disease in
           mice that genetically resembles human autosomal
           recessive polycystic kidney disease (ARPKD). Nek8 is
           also associated with a rare form of juvenile renal
           cystic disease, nephronophthisis type 9. It has been
           suggested that a defect in the ciliary localization of
           Nek8 contributes to the development of cysts manifested
           by these diseases.
          Length = 256

 Score = 74.1 bits (182), Expect = 8e-15
 Identities = 68/228 (29%), Positives = 107/228 (46%), Gaps = 43/228 (18%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHL----TIPHVKTYMQMLLKGVS 395
           P I++  + F +   + +V E+   G L E +  +   L    TI H   ++Q+LL  + 
Sbjct: 59  PNIIEYYENFLEDKALMIVMEYAPGGTLAEYIQKRCNSLLDEDTILH--FFVQILL-ALH 115

Query: 396 YLHGKFIMHRDLKPANLLIDK-AGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELL 454
           ++H K I+HRDLK  N+L+DK   ++KI DFG+++     +   YT  V +  Y +PEL 
Sbjct: 116 HVHTKLILHRDLKTQNILLDKHKMVVKIGDFGISKIL-SSKSKAYTV-VGTPCYISPELC 173

Query: 455 YASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLP 514
              + Y+Q  D+WA+GC+L E+ +    F   +     A+VL  +               
Sbjct: 174 -EGKPYNQKSDIWALGCVLYELASLKRAFEAAN---LPALVLKIMSG------------- 216

Query: 515 DYNKITFAP-SDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANEI 561
                TFAP SD           SPD   LI  +L  D  KR   ++I
Sbjct: 217 -----TFAPISDRY---------SPDLRQLILSMLNLDPSKRPQLSQI 250


>gnl|CDD|132983 cd06652, STKc_MEKK2, Catalytic domain of the Protein
           Serine/Threonine Kinase, MAP/ERK kinase kinase 2.
           Serine/threonine kinases (STKs), MAP/ERK kinase kinase 2
           (MEKK2) subfamily, catalytic (c) domain. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           MEKK2 subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. MEKK2 is a mitogen-activated protein kinase
           (MAPK) kinase kinase (MAPKKK or MKKK or MAP3K), that
           phosphorylates and activates the MAPK kinase MEK5 (or
           MKK5), which in turn phosphorylates and activates
           extracellular signal-regulated kinase 5 (ERK5). The ERK5
           cascade plays roles in promoting cell proliferation,
           differentiation, neuronal survival, and neuroprotection.
           MEKK2 also activates ERK1/2, c-Jun N-terminal kinase
           (JNK) and p38 through their respective MAPKKs MEK1/2,
           JNK-activating kinase 2 (JNKK2), and MKK3/6. MEKK2 plays
           roles in T cell receptor signaling, immune synapse
           formation, cytokine gene expression, as well as in EGF
           and FGF receptor signaling.
          Length = 265

 Score = 74.3 bits (182), Expect = 9e-15
 Identities = 49/160 (30%), Positives = 81/160 (50%), Gaps = 6/160 (3%)

Query: 351 PDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPA 410
           P + T+ +  EHM  G  +        LT    + Y + +L+GVSYLH   I+HRD+K A
Sbjct: 76  PMERTLSIFMEHMPGGSIKDQLKSYGALTENVTRKYTRQILEGVSYLHSNMIVHRDIKGA 135

Query: 411 NLLIDKAGILKIADFGLARSFD-VERWGQYTPEV-ASRWYRAPELLYASRCYDQSVDLWA 468
           N+L D  G +K+ DFG ++    +   G     V  + ++ +PE++ +   Y +  D+W+
Sbjct: 136 NILRDSVGNVKLGDFGASKRLQTICLSGTGMKSVTGTPYWMSPEVI-SGEGYGRKADIWS 194

Query: 469 VGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWP 508
           VGC + EM T  P +   ++ E +A +      PT    P
Sbjct: 195 VGCTVVEMLTEKPPW---AEFEAMAAIFKIATQPTNPVLP 231


>gnl|CDD|140289 PTZ00263, PTZ00263, protein kinase A catalytic subunit;
           Provisional.
          Length = 329

 Score = 74.9 bits (184), Expect = 1e-14
 Identities = 52/154 (33%), Positives = 78/154 (50%), Gaps = 19/154 (12%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPH--VKTYMQMLLKGVSYLH 398
           P IV ++  F D++ V  + E +  G  EL    +     P+   K Y   L+    YLH
Sbjct: 78  PFIVNMMCSFQDENRVYFLLEFVVGG--ELFTHLRKAGRFPNDVAKFYHAELVLAFEYLH 135

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLA-----RSFDVERWGQYTPEVASRWYRAPEL 453
            K I++RDLKP NLL+D  G +K+ DFG A     R+F +      TPE     Y APE+
Sbjct: 136 SKDIIYRDLKPENLLLDNKGHVKVTDFGFAKKVPDRTFTLCG----TPE-----YLAPEV 186

Query: 454 LYASRCYDQSVDLWAVGCILGEMYTNAPLFPGES 487
           +  S+ + ++VD W +G +L E     P F  ++
Sbjct: 187 I-QSKGHGKAVDWWTMGVLLYEFIAGYPPFFDDT 219


>gnl|CDD|132991 cd06917, STKc_NAK1_like, Catalytic domain of Fungal Nak1-like
           Protein Serine/Threonine Kinases.  Serine/threonine
           kinases (STKs), Nak1 subfamily, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The Nak1 subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. This subfamily is composed of
           Schizosaccharomyces pombe Nak1, Saccharomyces cerevisiae
           Kic1p (kinase that interacts with Cdc31p) and related
           proteins. Nak1 (also known as N-rich kinase 1), is
           required by fission yeast for polarizing the tips of
           actin cytoskeleton and is involved in cell growth, cell
           separation, cell morphology and cell-cycle progression.
           Kic1p is required by budding yeast for cell integrity
           and morphogenesis. Kic1p interacts with Cdc31p, the
           yeast homologue of centrin, and phosphorylates
           substrates in a Cdc31p-dependent manner.
          Length = 277

 Score = 74.0 bits (182), Expect = 1e-14
 Identities = 36/142 (25%), Positives = 72/142 (50%), Gaps = 4/142 (2%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P I K    +     + ++ E+ + G +  L+    I     ++   ++ +L  + Y+H 
Sbjct: 62  PNITKYYGSYLKGPRLWIIMEYAEGGSVRTLMKAGPI--AEKYISVIIREVLVALKYIHK 119

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRC 459
             ++HRD+K AN+L+   G +K+ DFG+A   +     + +  V + ++ APE++   + 
Sbjct: 120 VGVIHRDIKAANILVTNTGNVKLCDFGVAALLNQNS-SKRSTFVGTPYWMAPEVITEGKY 178

Query: 460 YDQSVDLWAVGCILGEMYTNAP 481
           YD   D+W++G  + EM T  P
Sbjct: 179 YDTKADIWSLGITIYEMATGNP 200


>gnl|CDD|173700 cd05609, STKc_MAST, Catalytic domain of the Protein
           Serine/Threonine Kinase, Microtubule-associated
           serine/threonine kinase.  Serine/Threonine Kinases
           (STKs), Microtubule-associated serine/threonine (MAST)
           kinase subfamily, MAST, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The MAST kinase subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. MAST kinases contain an
           N-terminal domain of unknown function, a central
           catalytic domain, and a C-terminal PDZ domain that
           mediates protein-protein interactions. There are four
           mammalian MAST kinases, named MAST1-MAST4. MAST1 is also
           referred to as syntrophin-associated STK (SAST), while
           MAST2 is also called MAST205. MAST kinases are
           cytoskeletal associated kinases of unknown function that
           are also expressed at neuromuscular junctions and
           postsynaptic densities. MAST1, MAST2, and MAST3 bind and
           phosphorylate the tumor suppressor PTEN, and may
           contribute to the regulation and stabilization of PTEN.
           MAST2 is involved in the regulation of the Fc-gamma
           receptor of the innate immune response in macrophages,
           and may also be involved in the regulation of the Na+/H+
           exchanger NHE3.
          Length = 305

 Score = 74.4 bits (183), Expect = 1e-14
 Identities = 68/245 (27%), Positives = 100/245 (40%), Gaps = 58/245 (23%)

Query: 335 DVFSFL--PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLK 392
           D+ +F   P +V +   F  +  +C+V E+++ G    L      L +   + Y    + 
Sbjct: 53  DILTFAENPFVVSMFCSFETKRHLCMVMEYVEGGDCATLLKNIGALPVDMARMYFAETVL 112

Query: 393 GVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGL--------------------ARSF- 431
            + YLH   I+HRDLKP NLLI   G +K+ DFGL                     R F 
Sbjct: 113 ALEYLHNYGIVHRDLKPDNLLITSMGHIKLTDFGLSKIGLMSLTTNLYEGHIEKDTREFL 172

Query: 432 DVERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQ 491
           D +  G  TPE     Y APE++   + Y + VD WA+G IL E       F G++  E 
Sbjct: 173 DKQVCG--TPE-----YIAPEVIL-RQGYGKPVDWWAMGIILYEFLVGCVPFFGDTPEEL 224

Query: 492 LAMVLHKLGTPTEDSWPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYD 551
              V+       +  WP                + +P          D  DLIS+LL  +
Sbjct: 225 FGQVISD-----DIEWPE-------------GDEALP---------ADAQDLISRLLRQN 257

Query: 552 GQKRL 556
             +RL
Sbjct: 258 PLERL 262


>gnl|CDD|173697 cd05606, STKc_beta_ARK, Catalytic domain of the Protein
           Serine/Threonine Kinase, beta-adrenergic receptor
           kinase.  Serine/Threonine Kinases (STKs), G
           protein-coupled Receptor Kinase (GRK) subfamily,
           beta-adrenergic receptor kinase (beta-ARK) group,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The GRK subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. GRKs
           phosphorylate and regulate G protein-coupled receptors
           (GPCRs), the largest superfamily of cell surface
           receptors which regulate some part of nearly all
           physiological functions. Phosphorylated GPCRs bind to
           arrestins, which prevents further G protein signaling
           despite the presence of activating ligand. There are
           seven types of GRKs, named GRK1 to GRK7. The beta-ARK
           group is composed of GRK2, GRK3, and similar proteins.
           GRK2 and GRK3 are both widely expressed in many tissues,
           although GRK2 is present at higher levels. They contain
           an N-terminal RGS homology (RH) domain, a central
           catalytic domain, and C-terminal pleckstrin homology
           (PH) domain that mediates PIP2 and G protein
           betagamma-subunit translocation to the membrane. GRK2
           (also called beta-ARK or beta-ARK1) is important in
           regulating several cardiac receptor responses. It plays
           a role in cardiac development and in hypertension.
           Deletion of GRK2 in mice results in embryonic lethality,
           caused by hypoplasia of the ventricular myocardium. GRK2
           also plays important roles in the liver (as a regulator
           of portal blood pressure), in immune cells, and in the
           nervous system. Altered GRK2 expression has been
           reported in several disorders including major
           depression, schizophrenia, bipolar disorder, and
           Parkinsonism.
          Length = 278

 Score = 73.8 bits (181), Expect = 1e-14
 Identities = 43/139 (30%), Positives = 74/139 (53%), Gaps = 15/139 (10%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHL------TIPHVKTYMQMLLKGV 394
           P IV +   F   D +  + + M+ G      D   HL      +   ++ Y   ++ G+
Sbjct: 57  PFIVCMSYAFHTPDKLSFILDLMNGG------DLHYHLSQHGVFSEAEMRFYAAEIILGL 110

Query: 395 SYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELL 454
            ++H +F+++RDLKPAN+L+D+ G ++I+D GLA  F  ++       V +  Y APE+L
Sbjct: 111 EHMHNRFVVYRDLKPANILLDEHGHVRISDLGLACDFSKKK---PHASVGTHGYMAPEVL 167

Query: 455 YASRCYDQSVDLWAVGCIL 473
                YD S D +++GC+L
Sbjct: 168 QKGVAYDSSADWFSLGCML 186


>gnl|CDD|132946 cd06615, PKc_MEK, Catalytic domain of the dual-specificity Protein
           Kinase, MAP/ERK Kinase.  Protein kinases (PKs), MAP/ERK
           kinase (MEK) subfamily, catalytic (c) domain. PKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine or tyrosine residues on protein
           substrates. The MEK subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein serine/threonine kinases, protein tyrosine
           kinases, RIO kinases, aminoglycoside phosphotransferase,
           choline kinase, and phosphoinositide 3-kinase. The
           mitogen-activated protein (MAP) kinase signaling
           pathways are important mediators of cellular responses
           to extracellular signals. The pathways involve a triple
           kinase core cascade comprising the MAP kinase (MAPK),
           which is phosphorylated and activated by a MAPK kinase
           (MAPKK or MKK), which itself is phosphorylated and
           activated by a MAPK kinase kinase (MAPKKK or MKKK). MEK1
           and MEK2 are dual-specificity PKs that phosphorylate and
           activate the downstream targets, ERK(extracellular
           signal-regulated kinase) 1 and ERK2, on specific
           threonine and tyrosine residues. The ERK cascade starts
           with extracellular signals including growth factors,
           hormones, and neurotransmitters, which act through
           receptors and ion channels to initiate intracellular
           signaling that leads to the activation at the MAPKKK
           (Raf-1 or MOS) level, which leads to the transmission of
           signals to MEK1/2, and finally to ERK1/2. The ERK
           cascade plays an important role in cell proliferation,
           differentiation, oncogenic transformation, and cell
           cycle control, as well as in apoptosis and cell survival
           under certain conditions. This cascade has also been
           implicated in synaptic plasticity, migration,
           morphological determination, and stress response
           immunological reactions. Gain-of-function mutations in
           genes encoding ERK cascade proteins, including MEK1/2,
           cause cardiofaciocutaneous (CFC) syndrome, a condition
           leading to multiple congenital anomalies and mental
           retardation in patients.
          Length = 308

 Score = 74.0 bits (182), Expect = 2e-14
 Identities = 64/210 (30%), Positives = 92/210 (43%), Gaps = 32/210 (15%)

Query: 300 VCLVFEHMDSGLWELLHDKKIHLTI-PHIKT-----YTYLSDVFSFLPQIVKLLDFFPDQ 353
           V  V  H  SGL  ++  K IHL I P I+         L +  S  P IV     F   
Sbjct: 17  VTKV-LHRPSGL--IMARKLIHLEIKPAIRNQIIRELKVLHECNS--PYIVGFYGAFYSD 71

Query: 354 DTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKF-IMHRDLKPANL 412
             + +  EHMD G  + +  K   +    +      +L+G++YL  K  IMHRD+KP+N+
Sbjct: 72  GEISICMEHMDGGSLDQVLKKAGRIPENILGKISIAVLRGLTYLREKHKIMHRDVKPSNI 131

Query: 413 LIDKAGILKIADFG--------LARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQSV 464
           L++  G +K+ DFG        +A SF           V +R Y +PE L  +  Y    
Sbjct: 132 LVNSRGEIKLCDFGVSGQLIDSMANSF-----------VGTRSYMSPERLQGTH-YTVQS 179

Query: 465 DLWAVGCILGEMYTNAPLFPGESDIEQLAM 494
           D+W++G  L EM       P     E  AM
Sbjct: 180 DIWSLGLSLVEMAIGRYPIPPPDAKELEAM 209


>gnl|CDD|173666 cd05575, STKc_SGK, Catalytic domain of the Protein Serine/Threonine
           Kinase, Serum- and Glucocorticoid-induced Kinase.
           Serine/Threonine Kinases (STKs), Serum- and
           Glucocorticoid-induced Kinase (SGK) subfamily, catalytic
           (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The SGK subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. There are three
           isoforms of SGK, named SGK1, SGK2, and SGK3 (also called
           cytokine-independent survival kinase CISK). SGKs are
           activated by insulin and growth factors via
           phosphoinositide 3-kinase and PDK1. They activate ion
           channels, ion carriers, and the Na-K-ATPase, as well as
           regulate the activity of enzymes and transcription
           factors. SGKs play important roles in transport, hormone
           release, neuroexcitability, cell proliferation, and
           apoptosis.
          Length = 323

 Score = 74.1 bits (182), Expect = 2e-14
 Identities = 60/221 (27%), Positives = 94/221 (42%), Gaps = 34/221 (15%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P +V L   F   D +  V ++++ G L+  L  ++     P  + Y   +   + YLH 
Sbjct: 56  PFLVGLHYSFQTADKLYFVLDYVNGGELFFHLQRER-SFPEPRARFYAAEIASALGYLHS 114

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRC 459
             I++RDLKP N+L+D  G + + DFGL +   +E     +    +  Y APE+L   + 
Sbjct: 115 LNIIYRDLKPENILLDSQGHVVLTDFGLCKE-GIEHSKTTSTFCGTPEYLAPEVLR-KQP 172

Query: 460 YDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKI 519
           YD++VD W +G +L EM    P F      E    +L+K                     
Sbjct: 173 YDRTVDWWCLGAVLYEMLYGLPPFYSRDTAEMYDNILNK--------------------- 211

Query: 520 TFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
                 P+    + PN S     L+  LL  D  KRL A +
Sbjct: 212 ------PL---RLKPNISVSARHLLEGLLQKDRTKRLGAKD 243


>gnl|CDD|132943 cd06612, STKc_MST1_2, Catalytic domain of the Protein
           Serine/Threonine Kinases, Mammalian Ste20-like protein
           kinase 1 and 2.  Serine/threonine kinases (STKs),
           mammalian Ste20-like protein kinase 1 (MST1) and MST2
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           MST1/2 subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. This subfamily is composed of MST1, MST2, and
           related proteins including Drosophila Hippo and
           Dictyostelium discoideum Krs1 (kinase responsive to
           stress 1). MST1/2 and Hippo are involved in a conserved
           pathway that governs cell contact inhibition, organ size
           control, and tumor development. MST1 activates the
           mitogen-activated protein kinases (MAPKs) p38 and c-Jun
           N-terminal kinase (JNK) through MKK7 (a MAPK kinase) and
           MEKK1 (a MAPK kinase kinase) by acting as a MAPK kinase
           kinase kinase (MAPKKKK). Activation of JNK by MST1 leads
           to caspase activation and apoptosis. MST1 has also been
           implicated in cell proliferation and differentiation.
           Krs1 may regulate cell growth arrest and apoptosis in
           response to cellular stress.
          Length = 256

 Score = 72.7 bits (179), Expect = 2e-14
 Identities = 52/178 (29%), Positives = 80/178 (44%), Gaps = 45/178 (25%)

Query: 391 LKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASR---- 446
           LKG+ YLH    +HRD+K  N+L+++ G  K+ADFG++        GQ T  +A R    
Sbjct: 109 LKGLEYLHSNKKIHRDIKAGNILLNEEGQAKLADFGVS--------GQLTDTMAKRNTVI 160

Query: 447 ---WYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQL-AMVLHKLGTP 502
              ++ APE++     Y+   D+W++G    EM   A   P  SDI  + A+ +     P
Sbjct: 161 GTPFWMAPEVIQEIG-YNNKADIWSLGITAIEM---AEGKPPYSDIHPMRAIFMIPNKPP 216

Query: 503 TEDSWPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANE 560
                P L              DP  W       SP+  D + K L+ D ++R  A +
Sbjct: 217 -----PTLS-------------DPEKW-------SPEFNDFVKKCLVKDPEERPSAIQ 249



 Score = 34.9 bits (81), Expect = 0.077
 Identities = 11/26 (42%), Positives = 19/26 (73%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILI 26
          +G++G V +A +K T Q+VAIK + +
Sbjct: 13 EGSYGSVYKAIHKETGQVVAIKVVPV 38


>gnl|CDD|132984 cd06653, STKc_MEKK3_like_1, Catalytic domain of MAP/ERK kinase
           kinase 3-like Protein Serine/Threonine Kinases.
           Serine/threonine kinases (STKs), MAP/ERK kinase kinase 3
           (MEKK3)-like subfamily, catalytic (c) domain,
           functionally uncharacterized subgroup 1. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           MEKK3-like subfamily is part of a larger superfamily
           that includes the catalytic domains of other protein
           STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. The MEKK3-like subfamily is
           composed of MEKK3, MEKK2, and related proteins, all
           containing an N-terminal PB1 domain, which mediates
           oligomerization, and a C-terminal catalytic domain.
           MEKK2 and MEKK3 are mitogen-activated protein kinase
           (MAPK) kinase kinases (MAPKKKs or MKKKs or MAP3Ks),
           proteins that phosphorylate and activate MAPK kinases
           (MAPKKs or MKKs or MAP2Ks), which in turn phosphorylate
           and activate MAPKs during signaling cascades that are
           important in mediating cellular responses to
           extracellular signals. MEKK2 and MEKK3 activate MEK5
           (also called MKK5), which activates extracellular
           signal-regulated kinase 5 (ERK5). The ERK5 cascade plays
           roles in promoting cell proliferation, differentiation,
           neuronal survival, and neuroprotection. MEKK3 plays an
           essential role in embryonic angiogenesis and early heart
           development. MEKK2 and MEKK3 can also activate the
           MAPKs, c-Jun N-terminal kinase (JNK) and p38, through
           their respective MAPKKs.
          Length = 264

 Score = 72.7 bits (178), Expect = 3e-14
 Identities = 54/188 (28%), Positives = 92/188 (48%), Gaps = 8/188 (4%)

Query: 351 PDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPA 410
           P++  + +  E+M  G  +        LT    + Y + +L+GVSYLH   I+HRD+K A
Sbjct: 76  PEEKKLSIFVEYMPGGSIKDQLKAYGALTENVTRRYTRQILQGVSYLHSNMIVHRDIKGA 135

Query: 411 NLLIDKAGILKIADFGLARSFD-VERWGQYTPEV-ASRWYRAPELLYASRCYDQSVDLWA 468
           N+L D AG +K+ DFG ++    +   G     V  + ++ +PE++ +   Y +  D+W+
Sbjct: 136 NILRDSAGNVKLGDFGASKRIQTICMSGTGIKSVTGTPYWMSPEVI-SGEGYGRKADVWS 194

Query: 469 VGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWP-GLKD-LPDYNKITFAPSDP 526
           V C + EM T  P +   ++ E +A +      PT+   P G+ D   D+ K  F     
Sbjct: 195 VACTVVEMLTEKPPW---AEYEAMAAIFKIATQPTKPMLPDGVSDACRDFLKQIFVEEKR 251

Query: 527 VPWSTMLP 534
            P +  L 
Sbjct: 252 RPTAEFLL 259


>gnl|CDD|173757 cd08217, STKc_Nek2, Catalytic domain of the Protein
           Serine/Threonine Kinase, Never In Mitosis gene A-related
           kinase 2.  Serine/Threonine Kinases (STKs), Never In
           Mitosis gene A (NIMA)-related kinase 2 (Nek2) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Nek2 subfamily is
           one of a family of 11 different Neks (Nek1-11) that are
           involved in cell cycle control. The Nek family is part
           of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. The Nek2
           subfamily includes Aspergillus nidulans NIMA kinase, the
           founding member of the Nek family, which was identified
           in a screen for cell cycle mutants prevented from
           entering mitosis. NIMA is essential for mitotic entry
           and progression through mitosis, and its degradation is
           essential for mitotic exit. NIMA is involved in nuclear
           membrane fission. Vertebrate Nek2 is a cell
           cycle-regulated STK, localized in centrosomes and
           kinetochores, that regulates centrosome splitting at the
           G2/M phase. It also interacts with other mitotic kinases
           such as Polo-like kinase 1 and may play a role in
           spindle checkpoint. An increase in the expression of the
           human NEK2 gene is strongly associated with the
           progression of non-Hodgkin lymphoma.
          Length = 265

 Score = 72.7 bits (179), Expect = 3e-14
 Identities = 48/162 (29%), Positives = 80/162 (49%), Gaps = 15/162 (9%)

Query: 341 PQIVKLLDFF--PDQDTVCLVFEHMDSG-LWELL-HDKKIHLTIPH---VKTYMQMLLKG 393
           P IV+  D        T+ +V E+ + G L +L+   KK    I      +   Q+LL  
Sbjct: 59  PNIVRYYDRIIDRSNQTLYIVMEYCEGGDLAQLIQKCKKERKYIEEEFIWRILTQLLL-A 117

Query: 394 VSYLH-----GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWY 448
           +   H     G  ++HRDLKPAN+ +D    +K+ DFGLA+    +     T  V + +Y
Sbjct: 118 LYECHNRSDPGNTVLHRDLKPANIFLDANNNVKLGDFGLAKILGHDSSFAKT-YVGTPYY 176

Query: 449 RAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIE 490
            +PE L     YD+  D+W++GC++ E+   +P F   + ++
Sbjct: 177 MSPEQL-NHMSYDEKSDIWSLGCLIYELCALSPPFTARNQLQ 217


>gnl|CDD|173661 cd05570, STKc_PKC, Catalytic domain of the Protein Serine/Threonine
           Kinase, Protein Kinase C.  Serine/Threonine Kinases
           (STKs), Protein Kinase C (PKC) subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The PKC subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. PKCs are
           classified into three groups (classical, atypical, and
           novel) depending on their mode of activation and the
           structural characteristics of their regulatory domain.
           PKCs undergo three phosphorylations in order to take
           mature forms. In addition, classical PKCs depend on
           calcium, DAG (1,2-diacylglycerol), and in most cases,
           phosphatidylserine (PS) for activation. Novel PKCs are
           calcium-independent, but require DAG and PS for
           activity, while atypical PKCs only require PS. PKCs
           phosphorylate and modify the activities of a wide
           variety of cellular proteins including receptors,
           enzymes, cytoskeletal proteins, transcription factors,
           and other kinases. They play a central role in signal
           transduction pathways that regulate cell migration and
           polarity, proliferation, differentiation, and apoptosis.
           Also included in this subfamily are the PKC-like
           proteins, called PKNs.
          Length = 318

 Score = 73.2 bits (180), Expect = 4e-14
 Identities = 47/164 (28%), Positives = 80/164 (48%), Gaps = 14/164 (8%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG--LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLH 398
           P + +L   F  +D +  V E+++ G  ++ +    +     P  + Y   ++ G+ +LH
Sbjct: 56  PFLTQLHSCFQTKDRLFFVMEYVNGGDLMFHIQRSGRFDE--PRARFYAAEIVLGLQFLH 113

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLA----RSFDVERWGQYTPEVASRWYRAPELL 454
            + I++RDLK  N+L+D  G +KIADFG+                TP+     Y APE+L
Sbjct: 114 ERGIIYRDLKLDNVLLDSEGHIKIADFGMCKEGILGGVTTSTFCGTPD-----YIAPEIL 168

Query: 455 YASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHK 498
            + + Y  +VD WA+G +L EM      F G+ + E    +L  
Sbjct: 169 -SYQPYGPAVDWWALGVLLYEMLAGQSPFEGDDEDELFQSILED 211


>gnl|CDD|173692 cd05601, STKc_CRIK, Catalytic domain of the Protein
           Serine/Threonine Kinase, Citron Rho-interacting kinase. 
           Serine/Threonine Kinases (STKs), Citron Rho-interacting
           kinase (CRIK) subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The CRIK subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. CRIK is also called citron kinase. It contains
           a catalytic domain, a central coiled-coil domain, and a
           C-terminal region containing a Rho-binding domain (RBD),
           a zinc finger, and a pleckstrin homology (PH) domain, in
           addition to other motifs. CRIK, an effector of the small
           GTPase Rho, plays an important function during
           cytokinesis and affects its contractile process.
           CRIK-deficient mice show severe ataxia and epilepsy as a
           result of abnormal cytokinesis and massive apoptosis in
           neuronal precursors. A Down syndrome critical region
           protein TTC3 interacts with CRIK and inhibits
           CRIK-dependent neuronal differentiation and neurite
           extension.
          Length = 330

 Score = 72.9 bits (179), Expect = 5e-14
 Identities = 49/154 (31%), Positives = 72/154 (46%), Gaps = 7/154 (4%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P I +L   F D+D + LV E+   G L  LL+  +        + Y+  L+  +  +H 
Sbjct: 61  PWIPQLQYAFQDKDNLYLVMEYQPGGDLLSLLNRYEDQFDEDMAQFYLAELVLAIHSVHQ 120

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELL----- 454
              +HRD+KP N+LID+ G +K+ADFG A      +       V +  Y APE+L     
Sbjct: 121 MGYVHRDIKPENVLIDRTGHIKLADFGSAARLTANKMVNSKLPVGTPDYIAPEVLTTMNG 180

Query: 455 YASRCYDQSVDLWAVGCILGEM-YTNAPLFPGES 487
                Y    D W++G I  EM Y  +P   G S
Sbjct: 181 DGKGTYGVECDWWSLGVIAYEMIYGRSPFHEGTS 214


>gnl|CDD|132982 cd06651, STKc_MEKK3, Catalytic domain of the Protein
           Serine/Threonine Kinase, MAP/ERK kinase kinase 3.
           Serine/threonine kinases (STKs), MAP/ERK kinase kinase 3
           (MEKK3) subfamily, catalytic (c) domain. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           MEKK3 subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. MEKK3 is a mitogen-activated protein kinase
           (MAPK) kinase kinase (MAPKKK or MKKK or MAP3K), that
           phosphorylates and activates the MAPK kinase MEK5 (or
           MKK5), which in turn phosphorylates and activates
           extracellular signal-regulated kinase 5 (ERK5). The ERK5
           cascade plays roles in promoting cell proliferation,
           differentiation, neuronal survival, and neuroprotection.
           MEKK3 plays an essential role in embryonic angiogenesis
           and early heart development. In addition, MEKK3 is
           involved in interleukin-1 receptor and Toll-like
           receptor 4 signaling. It is also a specific regulator of
           the proinflammatory cytokines IL-6 and GM-CSF in some
           immune cells. MEKK3 also regulates calcineurin, which
           plays a critical role in T cell activation, apoptosis,
           skeletal myocyte differentiation, and cardiac
           hypertrophy.
          Length = 266

 Score = 72.0 bits (176), Expect = 6e-14
 Identities = 42/133 (31%), Positives = 72/133 (54%), Gaps = 6/133 (4%)

Query: 378 LTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFD-VERW 436
           LT    + Y + +L+G+SYLH   I+HRD+K AN+L D AG +K+ DFG ++    +   
Sbjct: 103 LTESVTRKYTRQILEGMSYLHSNMIVHRDIKGANILRDSAGNVKLGDFGASKRLQTICMS 162

Query: 437 GQYTPEV-ASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMV 495
           G     V  + ++ +PE++ +   Y +  D+W++GC + EM T  P +   ++ E +A +
Sbjct: 163 GTGIRSVTGTPYWMSPEVI-SGEGYGRKADVWSLGCTVVEMLTEKPPW---AEYEAMAAI 218

Query: 496 LHKLGTPTEDSWP 508
                 PT    P
Sbjct: 219 FKIATQPTNPQLP 231


>gnl|CDD|132942 cd06611, STKc_SLK_like, Catalytic domain of Ste20-like kinase-like
           Protein Serine/Threonine Kinases.  Serine/threonine
           kinases (STKs), Ste20-like kinase (SLK)-like subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The SLK-like subfamily
           is part of a larger superfamily that includes the
           catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. Members of the subfamily include SLK, STK10
           (also called LOK for lymphocyte-oriented kinase), SmSLK
           (Schistosoma mansoni SLK), and related proteins. SLK
           promotes apoptosis through apoptosis signal-regulating
           kinase 1 (ASK1) and the mitogen-activated protein kinase
           (MAPK) p38. It also plays a role in mediating actin
           reorganization. STK10 is responsible in regulating the
           CD28 responsive element in T cells, as well as leukocyte
           function associated antigen (LFA-1)-mediated lymphocyte
           adhesion. SmSLK is capable of activating the MAPK Jun
           N-terminal kinase (JNK) pathway in human embryonic
           kidney (HEK) cells as well as in Xenopus oocytes. It may
           participate in regulating MAPK cascades during
           host-parasite interactions.
          Length = 280

 Score = 71.7 bits (176), Expect = 7e-14
 Identities = 37/141 (26%), Positives = 75/141 (53%), Gaps = 6/141 (4%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIH-LTIPHVKTYMQMLLKGVSYLHG 399
           P IV L + +  ++ + ++ E  D G  + +  +    LT P ++   + +L+ +++LH 
Sbjct: 62  PNIVGLYEAYFYENKLWILIEFCDGGALDSIMLELERGLTEPQIRYVCRQMLEALNFLHS 121

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELL----Y 455
             ++HRDLK  N+L+   G +K+ADFG++         + T  + + ++ APE++    +
Sbjct: 122 HKVIHRDLKAGNILLTLDGDVKLADFGVSAKNKSTLQKRDT-FIGTPYWMAPEVVACETF 180

Query: 456 ASRCYDQSVDLWAVGCILGEM 476
               YD   D+W++G  L E+
Sbjct: 181 KDNPYDYKADIWSLGITLIEL 201


>gnl|CDD|173693 cd05602, STKc_SGK1, Catalytic domain of the Protein
           Serine/Threonine Kinase, Serum- and
           Glucocorticoid-induced Kinase 1.  Serine/Threonine
           Kinases (STKs), Serum- and Glucocorticoid-induced Kinase
           (SGK) subfamily, SGK1 isoform, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The SGK subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. There are three isoforms of
           SGK, named SGK1, SGK2, and SGK3. SGK1 is ubiquitously
           expressed and is under transcriptional control of
           numerous stimuli including cell stress (cell shrinkage),
           serum, hormones (gluco- and mineralocorticoids),
           gonadotropins, growth factors, interleukin-6, and other
           cytokines. It plays roles in sodium retention and
           potassium elimination in the kidney, nutrient transport,
           salt sensitivity, memory consolidation, and cardiac
           repolarization. A common SGK1 variant is associated with
           increased blood pressure and body weight. SGK1 may also
           contribute to tumor growth, neurodegeneration, fibrosing
           disease, and ischemia.
          Length = 325

 Score = 72.4 bits (177), Expect = 7e-14
 Identities = 50/159 (31%), Positives = 83/159 (52%), Gaps = 4/159 (2%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P +V L   F   D +  V ++++ G L+  L  ++  L  P  + Y   +   + YLH 
Sbjct: 56  PFLVGLHFSFQTADKLYFVLDYINGGELFYHLQRERCFLE-PRARFYAAEIASALGYLHS 114

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRC 459
             I++RDLKP N+L+D  G + + DFGL +  ++E  G  +    +  Y APE+L+  + 
Sbjct: 115 LNIVYRDLKPENILLDSQGHIVLTDFGLCKE-NIEHNGTTSTFCGTPEYLAPEVLH-KQP 172

Query: 460 YDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHK 498
           YD++VD W +G +L EM    P F   +  E    +L+K
Sbjct: 173 YDRTVDWWCLGAVLYEMLYGLPPFYSRNTAEMYDNILNK 211


>gnl|CDD|173629 cd05041, PTKc_Fes_like, Catalytic domain of Fes-like Protein
           Tyrosine Kinases.  Protein Tyrosine Kinase (PTK) family;
           Fes subfamily; catalytic (c) domain. Fes subfamily
           members include Fes (or Fps), Fer, and similar proteins.
           The PTKc family is part of a larger superfamily that
           includes the catalytic domains of other kinases such as
           protein serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Fes
           subfamily proteins are cytoplasmic (or nonreceptor) tyr
           kinases containing an N-terminal region with FCH
           (Fes/Fer/CIP4 homology) and coiled-coil domains,
           followed by a SH2 domain, and a C-terminal catalytic
           domain. The genes for Fes (feline sarcoma) and Fps
           (Fujinami poultry sarcoma) were first isolated from
           tumor-causing retroviruses. The viral oncogenes encode
           chimeric Fes proteins consisting of Gag sequences at the
           N-termini, resulting in unregulated tyr kinase activity.
           Fes and Fer kinases play roles in haematopoiesis,
           inflammation and immunity, growth factor signaling,
           cytoskeletal regulation, cell migration and adhesion,
           and the regulation of cell-cell interactions. Fes and
           Fer show redundancy in their biological functions.
          Length = 251

 Score = 71.0 bits (174), Expect = 1e-13
 Identities = 58/179 (32%), Positives = 85/179 (47%), Gaps = 20/179 (11%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLK---GVSY 396
           P IVKL+     +  + +V E +  G L   L  KK  LT   VK  +QM L    G+ Y
Sbjct: 52  PNIVKLIGVCVQKQPIYIVMELVPGGSLLTFLRKKKNRLT---VKKLLQMSLDAAAGMEY 108

Query: 397 LHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYT-----PEVASRWYRAP 451
           L  K  +HRDL   N L+ +  +LKI+DFG++R    E  G YT      ++  +W  AP
Sbjct: 109 LESKNCIHRDLAARNCLVGENNVLKISDFGMSRE---EEGGIYTVSDGLKQIPIKW-TAP 164

Query: 452 ELLYASRCYDQSVDLWAVGCILGEMYT--NAPLFPGESDIEQLAMVLHKLGTPTEDSWP 508
           E L   R Y    D+W+ G +L E ++  + P +PG S+ +    +      P     P
Sbjct: 165 EALNYGR-YTSESDVWSYGILLWETFSLGDTP-YPGMSNQQTRERIESGYRMPAPQLCP 221


>gnl|CDD|173678 cd05587, STKc_cPKC, Catalytic domain of the Protein
           Serine/Threonine Kinase, Classical Protein Kinase C.
           Serine/Threonine Kinases (STKs), Classical (or
           Conventional) Protein Kinase C (cPKC) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The cPKC subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase (PI3K). PKCs are
           classified into three groups (classical, atypical, and
           novel) depending on their mode of activation and the
           structural characteristics of their regulatory domain.
           PKCs undergo three phosphorylations in order to take
           mature forms. In addition, cPKCs depend on calcium, DAG
           (1,2-diacylglycerol), and in most cases,
           phosphatidylserine (PS) for activation. cPKCs contain a
           calcium-binding C2 region in their regulatory domain.
           There are four cPKC isoforms, named alpha, betaI,
           betaII, and gamma. cPKCs are potent kinases for
           histones, myelin basic protein, and protamine. PKC-gamma
           is mainly expressed in neuronal tissues. It plays a role
           in protection from ischemia.
          Length = 324

 Score = 71.7 bits (176), Expect = 1e-13
 Identities = 44/114 (38%), Positives = 62/114 (54%), Gaps = 10/114 (8%)

Query: 381 PHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSF----DVERW 436
           PH   Y   +  G+ +LH K I++RDLK  N+++D  G +KIADFG+ +         R 
Sbjct: 101 PHAVFYAAEIAIGLFFLHSKGIIYRDLKLDNVMLDAEGHIKIADFGMCKENIFGGKTTRT 160

Query: 437 GQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIE 490
              TP+     Y APE++ A + Y +SVD WA G +L EM    P F GE + E
Sbjct: 161 FCGTPD-----YIAPEII-AYQPYGKSVDWWAFGVLLYEMLAGQPPFDGEDEDE 208


>gnl|CDD|173770 cd08528, STKc_Nek10, Catalytic domain of the Protein
           Serine/Threonine Kinase, Never In Mitosis gene A-related
           kinase 10.  Serine/Threonine Kinases (STKs), Never In
           Mitosis gene A (NIMA)-related kinase 10 (Nek10)
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           Nek10 subfamily is one of a family of 11 different Neks
           (Nek1-11) that are involved in cell cycle control. The
           Nek family is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. No function has yet been ascribed to Nek10.
           The gene encoding Nek10 is a putative causative gene for
           breast cancer; it is located within a breast cancer
           susceptibility loci on chromosome 3p24.
          Length = 269

 Score = 70.6 bits (173), Expect = 1e-13
 Identities = 48/149 (32%), Positives = 77/149 (51%), Gaps = 10/149 (6%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG----LWELLHDKKIHLTIPHV-KTYMQMLLKGVS 395
           P IV+    F + D + +V + ++       +  L +KK   T   +   ++QM+L  + 
Sbjct: 69  PNIVRYYKTFLENDRLYIVMDLIEGAPLGEHFNSLKEKKQRFTEERIWNIFVQMVL-ALR 127

Query: 396 YLHG-KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELL 454
           YLH  K I+HRDL P N+++ +   + I DFGLA+    E   + T  V +  Y  PE++
Sbjct: 128 YLHKEKRIVHRDLTPNNIMLGEDDKVTITDFGLAKQKQPE--SKLTSVVGTILYSCPEIV 185

Query: 455 YASRCYDQSVDLWAVGCILGEMYTNAPLF 483
             +  Y +  D+WA GCIL +M T  P F
Sbjct: 186 -KNEPYGEKADVWAFGCILYQMCTLQPPF 213


>gnl|CDD|173727 cd06613, STKc_MAP4K3_like, Catalytic domain of Mitogen-activated
           protein kinase kinase kinase kinase-like Protein
           Serine/Threonine Kinases.  Serine/threonine kinases
           (STKs), mitogen-activated protein kinase (MAPK) kinase
           kinase kinase 3 (MAPKKKK3 or MAP4K3)-like subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The MAP4K3-like
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. This subfamily includes MAP4K3, MAP4K1,
           MAP4K2, MAP4K5, and related proteins. Vertebrate members
           contain an N-terminal catalytic domain and a C-terminal
           citron homology (CNH) regulatory domain, similar to
           MAP4K4/6. MAP4Ks are involved in some MAPK signaling
           pathways that are important in mediating cellular
           responses to extracellular signals by activating a MAPK
           kinase kinase (MAPKKK or MAP3K or MKKK). Each MAPK
           cascade is activated either by a small GTP-binding
           protein or by an adaptor protein, which transmits the
           signal either directly to a MAP3K to start the triple
           kinase core cascade or indirectly through a mediator
           kinase, a MAP4K. MAP4K1, also called haematopoietic
           progenitor kinase 1 (HPK1), is a hematopoietic-specific
           STK involved in many cellular signaling cascades
           including MAPK, antigen receptor, apoptosis, growth
           factor, and cytokine signaling. It participates in the
           regulation of T cell receptor signaling and T
           cell-mediated immune responses. MAP4K2 was referred to
           as germinal center (GC) kinase because of its preferred
           location in GC B cells. MAP4K3 plays a role in the
           nutrient-responsive pathway of mTOR (mammalian target of
           rapamycin) signaling. It is required in the activation
           of S6 kinase by amino acids and for the phosphorylation
           of the mTOR-regulated inhibitor of eukaryotic initiation
           factor 4E. MAP4K5, also called germinal center
           kinase-related enzyme (GCKR), has been shown to activate
           the MAPK c-Jun N-terminal kinase (JNK).
          Length = 262

 Score = 70.4 bits (173), Expect = 2e-13
 Identities = 38/108 (35%), Positives = 57/108 (52%), Gaps = 20/108 (18%)

Query: 391 LKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASR---- 446
           LKG++YLH    +HRD+K AN+L+ + G +K+ADFG++         Q T  +A R    
Sbjct: 111 LKGLAYLHETGKIHRDIKGANILLTEDGDVKLADFGVS--------AQLTATIAKRKSFI 162

Query: 447 ---WYRAPELLYASRC--YDQSVDLWAVGCILGEMYTNAPLFPGESDI 489
              ++ APE+    R   YD   D+WA+G    E+   A L P   D+
Sbjct: 163 GTPYWMAPEVAAVERKGGYDGKCDIWALGITAIEL---AELQPPMFDL 207



 Score = 30.7 bits (70), Expect = 1.7
 Identities = 11/25 (44%), Positives = 18/25 (72%)

Query: 2  GAHGHVLRARNKSTNQIVAIKRILI 26
          G +G V +AR+ +T ++VAIK I +
Sbjct: 14 GTYGDVYKARDIATGELVAIKVIKL 38


>gnl|CDD|173628 cd05038, PTKc_Jak_rpt2, Catalytic (repeat 2) domain of the Protein
           Tyrosine Kinases, Janus kinases.  Protein Tyrosine
           Kinase (PTK) family; Janus kinase (Jak) subfamily;
           catalytic (c) domain (repeat 2). The Jak subfamily is
           composed of Jak1, Jak2, Jak3, TYK2, and similar
           proteins. The PTKc family is part of a larger
           superfamily that includes the catalytic domains of other
           kinases such as protein serine/threonine kinases, RIO
           kinases, and phosphoinositide 3-kinase (PI3K). PTKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to tyrosine (tyr) residues in protein substrates.
           Jak subfamily proteins are cytoplasmic (or nonreceptor)
           tyr kinases containing an N-terminal FERM domain,
           followed by a Src homology 2 (SH2) domain, a
           pseudokinase domain, and a C-terminal tyr kinase
           catalytic domain. Most Jaks are expressed in a wide
           variety of tissues, except for Jak3, which is expressed
           only in hematopoietic cells. Jaks are crucial for
           cytokine receptor signaling. They are activated by
           autophosphorylation upon cytokine-induced receptor
           aggregation, and subsequently trigger downstream
           signaling events such as the phosphorylation of signal
           transducers and activators of transcription (STATs).
           Jaks are also involved in regulating the surface
           expression of some cytokine receptors. The Jak-STAT
           pathway is involved in many biological processes
           including hematopoiesis, immunoregulation, host defense,
           fertility, lactation, growth, and embryogenesis.
          Length = 284

 Score = 70.5 bits (173), Expect = 2e-13
 Identities = 43/145 (29%), Positives = 73/145 (50%), Gaps = 10/145 (6%)

Query: 341 PQIVKL--LDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYL 397
             IVK   +   P   ++ L+ E++ SG L + L   +  + +  +  +   + KG+ YL
Sbjct: 66  ENIVKYKGVCEKPGGRSLRLIMEYLPSGSLRDYLQRHRDQINLKRLLLFSSQICKGMDYL 125

Query: 398 HGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTP----EVASRWYRAPEL 453
             +  +HRDL   N+L++   ++KI+DFGLA+    ++   Y      E    WY APE 
Sbjct: 126 GSQRYIHRDLAARNILVESEDLVKISDFGLAKVLPEDK-DYYYVKEPGESPIFWY-APEC 183

Query: 454 LYASRCYDQSVDLWAVGCILGEMYT 478
           L  S+    S D+W+ G  L E++T
Sbjct: 184 LRTSKFSSAS-DVWSFGVTLYELFT 207


>gnl|CDD|132979 cd06648, STKc_PAK_II, Catalytic domain of the Protein
           Serine/Threonine Kinase, Group II p21-activated kinase. 
           Serine/threonine kinases (STKs), p21-activated kinase
           (PAK) subfamily, Group II, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The PAK subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. PAKs are Rho family GTPase-regulated kinases
           that serve as important mediators in the function of
           Cdc42 (cell division cycle 42) and Rac. PAKs from higher
           eukaryotes are classified into two groups (I and II),
           according to their biochemical and structural features.
           Group II PAKs, also called non-conventional PAKs,
           include PAK4, PAK5, and PAK6. Group II PAKs contain PBD
           (p21-binding domain) and catalytic domains, but lack
           other motifs found in group I PAKs, such as an AID
           (autoinhibitory domain) and SH3 binding sites. Since
           group II PAKs do not contain an obvious AID, they may be
           regulated differently from group I PAKs. While group I
           PAKs interact with the SH3 containing proteins Nck, Grb2
           and PIX, no such binding has been demonstrated for group
           II PAKs. Some known substrates of group II PAKs are also
           substrates of group I PAKs such as Raf, BAD, LIMK and
           GEFH1. Unique group II substrates include MARK/Par-1 and
           PDZ-RhoGEF. Group II PAKs play important roles in
           filopodia formation, neuron extension, cytoskeletal
           organization, and cell survival.
          Length = 285

 Score = 70.2 bits (172), Expect = 2e-13
 Identities = 52/230 (22%), Positives = 98/230 (42%), Gaps = 48/230 (20%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTI--PHVKTYMQMLLKGVSYLH 398
           P IV++   +   D + +V E ++ G    L D   H  +    + T    +LK +S+LH
Sbjct: 76  PNIVEMYSSYLVGDELWVVMEFLEGGA---LTDIVTHTRMNEEQIATVCLAVLKALSFLH 132

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASR-------WYRAP 451
            + ++HRD+K  ++L+   G +K++DFG           Q + EV  R       ++ AP
Sbjct: 133 AQGVIHRDIKSDSILLTSDGRVKLSDFGFC--------AQVSKEVPRRKSLVGTPYWMAP 184

Query: 452 ELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLK 511
           E++ +   Y   VD+W++G ++ EM    P +  E  ++ +                 ++
Sbjct: 185 EVI-SRLPYGTEVDIWSLGIMVIEMVDGEPPYFNEPPLQAMKR---------------IR 228

Query: 512 DLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANEI 561
           D            +  P    L   SP     + ++L+ D  +R  A E+
Sbjct: 229 D------------NLPPKLKNLHKVSPRLRSFLDRMLVRDPAQRATAAEL 266


>gnl|CDD|165478 PHA03212, PHA03212, serine/threonine kinase US3; Provisional.
          Length = 391

 Score = 71.2 bits (174), Expect = 3e-13
 Identities = 69/240 (28%), Positives = 115/240 (47%), Gaps = 29/240 (12%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P I++L   F      CL+     + L+  L  K+ ++ I  +    + +L+ + YLH  
Sbjct: 143 PSIIQLKGTFTYNKFTCLILPRYKTDLYCYLAAKR-NIAICDILAIERSVLRAIQYLHEN 201

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVE----RWGQYTPEVASRWYRAPELLYA 456
            I+HRD+K  N+ I+  G + + DFG A  F V+    ++  +   +A+    APELL A
Sbjct: 202 RIIHRDIKAENIFINHPGDVCLGDFG-AACFPVDINANKYYGWAGTIAT---NAPELL-A 256

Query: 457 SRCYDQSVDLWAVGCILGEMYT-NAPLFP-----GESDIE-QLAMVLHKLGT-PTE---D 505
              Y  +VD+W+ G +L EM T +  LF      G+ D + Q+ +++ + GT P E   D
Sbjct: 257 RDPYGPAVDIWSAGIVLFEMATCHDSLFEKDGLDGDCDSDRQIKLIIRRSGTHPNEFPID 316

Query: 506 SWPGLKD--LPDYNKITFAPSDPVPWSTM--LPNASPDTLDLISKLLLYDGQKRLPANEI 561
           +   L +  +    K +  P     W+ +  LP    D   LI K+L +D   R P+ E 
Sbjct: 317 AQANLDEIYIGLAKKSSRKPGSRPLWTNLYELP---IDLEYLICKMLAFDAHHR-PSAEA 372


>gnl|CDD|133243 cd05112, PTKc_Itk, Catalytic domain of the Protein Tyrosine Kinase,
           Interleukin-2-inducible T-cell Kinase.  Protein Tyrosine
           Kinase (PTK) family; Interleukin-2 (IL-2)-inducible
           T-cell kinase (Itk); catalytic (c) domain. The PTKc
           family is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Itk (also
           known as Tsk or Emt) is a member of the Tec subfamily of
           proteins, which are cytoplasmic (or nonreceptor) tyr
           kinases with similarity to Src kinases in that they
           contain Src homology protein interaction domains (SH3,
           SH2) N-terminal to the catalytic tyr kinase domain.
           Unlike Src kinases, most Tec subfamily members (except
           Rlk) also contain an N-terminal pleckstrin homology (PH)
           domain, which binds the products of PI3K and allows
           membrane recruitment and activation. In addition, Itk
           contains the Tec homology (TH) domain containing one
           proline-rich region and a zinc-binding region. Tec
           kinases are expressed mainly by haematopoietic cells.
           Itk is expressed in T-cells and mast cells, and is
           important in their development and differentiation. Of
           the three Tec kinases expressed in T-cells, Itk plays
           the predominant role in T-cell receptor (TCR) signaling.
           It is activated by phosphorylation upon TCR crosslinking
           and is involved in the pathway resulting in
           phospholipase C-gamma1 activation and actin
           polymerization. It also plays a role in the downstream
           signaling of the T-cell costimulatory receptor CD28, the
           T-cell surface receptor CD2, and the chemokine receptor
           CXCR4. In addition, Itk is crucial for the development
           of T-helper(Th)2 effector responses.
          Length = 256

 Score = 69.2 bits (169), Expect = 4e-13
 Identities = 41/145 (28%), Positives = 82/145 (56%), Gaps = 14/145 (9%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLL---KGVSY 396
           P++V+L     ++  +CLVFE M+ G L + L  ++   +    +T + M L   +G++Y
Sbjct: 59  PKLVQLYGVCTERSPICLVFEFMEHGCLSDYLRAQRGKFS---QETLLGMCLDVCEGMAY 115

Query: 397 LHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW---YRAPEL 453
           L    ++HRDL   N L+ +  ++K++DFG+ R F ++   QYT    +++   + +PE+
Sbjct: 116 LESSNVIHRDLAARNCLVGENQVVKVSDFGMTR-FVLD--DQYTSSTGTKFPVKWSSPEV 172

Query: 454 LYASRCYDQSVDLWAVGCILGEMYT 478
              S+ Y    D+W+ G ++ E+++
Sbjct: 173 FSFSK-YSSKSDVWSFGVLMWEVFS 196


>gnl|CDD|132952 cd06621, PKc_MAPKK_Pek1_like, Catalytic domain of fungal Pek1-like
           dual-specificity MAP kinase kinases.  Protein kinases
           (PKs), MAP kinase kinase(MAPKK) subfamily, fungal
           Pek1-like proteins, catalytic (c) domain. PKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine or tyrosine residues on protein
           substrates. The MAPKK subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein serine/threonine kinases, protein tyrosine
           kinases, RIO kinases, aminoglycoside phosphotransferase,
           choline kinase, and phosphoinositide 3-kinase. The
           mitogen-activated protein (MAP) kinase signaling
           pathways are important mediators of cellular responses
           to extracellular signals. The pathways involve a triple
           kinase core cascade comprising of the MAP kinase (MAPK),
           which is phosphorylated and activated by a MAPK kinase
           (MAPKK or MKK), which itself is phosphorylated and
           activated by a MAPK kinase kinase (MAPKKK or MKKK).
           Members of this group include the MAPKKs Pek1/Skh1 from
           Schizosaccharomyces pombe and MKK2 from Saccharomyces
           cerevisiae, and related proteins. Both fission yeast
           Pek1 and baker's yeast MKK2 are components of the cell
           integrity MAPK pathway. In fission yeast, Pek1
           phosphorylates and activates the MAPK Pmk1/Spm1 and is
           regulated by the MAPKKK Mkh1. In baker's yeast, the
           pathway involves the MAPK Slt2, the MAPKKs MKK1 and
           MKK2, and the MAPKKK Bck1. The cell integrity MAPK
           cascade is activated by multiple stress conditions, and
           is essential  in cell wall construction, morphogenesis,
           cytokinesis, and ion homeostasis.
          Length = 287

 Score = 69.4 bits (170), Expect = 5e-13
 Identities = 49/165 (29%), Positives = 77/165 (46%), Gaps = 22/165 (13%)

Query: 391 LKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRA 450
           LKG+SYLH + I+HRD+KP+N+L+ + G +K+ DFG++        G +T    + +Y A
Sbjct: 115 LKGLSYLHSRKIIHRDIKPSNILLTRKGQVKLCDFGVSGELVNSLAGTFT---GTSFYMA 171

Query: 451 PELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGL 510
           PE +   + Y  + D+W++G  L E+  N   FP   + E     +  L        P L
Sbjct: 172 PERI-QGKPYSITSDVWSLGLTLLEVAQNR--FPFPPEGEPPLGPIELLSYIVNMPNPEL 228

Query: 511 KDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKR 555
           KD          P + + WS           D I + L  D  +R
Sbjct: 229 KD---------EPGNGIKWSEEFK-------DFIKQCLEKDPTRR 257


>gnl|CDD|215036 PLN00034, PLN00034, mitogen-activated protein kinase kinase;
           Provisional.
          Length = 353

 Score = 70.2 bits (172), Expect = 5e-13
 Identities = 35/89 (39%), Positives = 52/89 (58%), Gaps = 4/89 (4%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P +VK  D F     + ++ E MD G  E  H       +  V    + +L G++YLH +
Sbjct: 132 PNVVKCHDMFDHNGEIQVLLEFMDGGSLEGTHIADEQF-LADVA---RQILSGIAYLHRR 187

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLAR 429
            I+HRD+KP+NLLI+ A  +KIADFG++R
Sbjct: 188 HIVHRDIKPSNLLINSAKNVKIADFGVSR 216


>gnl|CDD|173707 cd05616, STKc_cPKC_beta, Catalytic domain of the Protein
           Serine/Threonine Kinase, Classical Protein Kinase C
           beta.  Serine/Threonine Kinases (STKs), Classical
           Protein Kinase C (cPKC) subfamily, beta isoforms,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The cPKC subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. PKCs are
           classified into three groups (classical, atypical, and
           novel) depending on their mode of activation and the
           structural characteristics of their regulatory domain.
           PKCs undergo three phosphorylations in order to take
           mature forms. In addition, cPKCs depend on calcium, DAG
           (1,2-diacylglycerol), and in most cases,
           phosphatidylserine (PS) for activation. There are four
           cPKC isoforms, named alpha, betaI, betaII, and gamma.
           The PKC beta isoforms (I and II), generated by
           alternative splicing of a single gene, are
           preferentially activated by hyperglycemia-induced DAG in
           retinal tissues. This is implicated in diabetic
           microangiopathy such as ischemia, neovascularization,
           and abnormal vasodilator function. PKC-beta also plays
           an important role in VEGF signaling. In addition,
           glucose regulates proliferation in retinal endothelial
           cells via PKC-betaI. PKC-beta is also being explored as
           a therapeutic target in cancer. It contributes to tumor
           formation and is involved in the tumor host mechanisms
           of inflammation and angiogenesis.
          Length = 323

 Score = 69.6 bits (170), Expect = 7e-13
 Identities = 51/166 (30%), Positives = 83/166 (50%), Gaps = 9/166 (5%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKI-HLTIPHVKTYMQMLLKGVSYLHG 399
           P + +L   F   D +  V E+++ G   +   +++     PH   Y   +  G+ +LH 
Sbjct: 61  PFLTQLHSCFQTMDRLYFVMEYVNGGDL-MYQIQQVGRFKEPHAVFYAAEIAIGLFFLHS 119

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEV--ASRWYRAPELLYAS 457
           K I++RDLK  N+++D  G +KIADFG+ +      W   T +    +  Y APE++ A 
Sbjct: 120 KGIIYRDLKLDNVMLDSEGHIKIADFGMCKE---NMWDGVTTKTFCGTPDYIAPEII-AY 175

Query: 458 RCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVL-HKLGTP 502
           + Y +SVD WA G +L EM      F GE + E    ++ H +  P
Sbjct: 176 QPYGKSVDWWAFGVLLYEMLAGQAPFEGEDEDELFQSIMEHNVAYP 221


>gnl|CDD|132962 cd06631, STKc_YSK4, Catalytic domain of the Protein
           Serine/Threonine Kinase, Yeast Sps1/Ste20-related kinase
           4.  Serine/threonine kinases (STKs), yeast
           Sps1/Ste20-related kinase 4 (YSK4) subfamily, catalytic
           (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The YSK4 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. YSK4 is a
           putative MAPKKK, whose mammalian gene has been isolated.
           MAPKKKs (MKKKs or MAP3Ks) phosphorylate and activate
           MAPK kinases (MAPKKs or MKKs or MAP2Ks), which in turn
           phosphorylate and activate MAPKs during signaling
           cascades that are important in mediating cellular
           responses to extracellular signals.
          Length = 265

 Score = 68.4 bits (167), Expect = 9e-13
 Identities = 35/106 (33%), Positives = 58/106 (54%), Gaps = 16/106 (15%)

Query: 386 YMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSF----------DVER 435
           Y + +L GV+YLH   ++HRD+K  N+++   GI+K+ DFG AR            ++ +
Sbjct: 107 YTKQILDGVAYLHNNCVVHRDIKGNNVMLMPNGIIKLIDFGCARRLAWVGLHGTHSNMLK 166

Query: 436 WGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAP 481
               TP     ++ APE++  S  Y +  D+W++GC + EM T  P
Sbjct: 167 SMHGTP-----YWMAPEVINESG-YGRKSDIWSIGCTVFEMATGKP 206


>gnl|CDD|133199 cd05068, PTKc_Frk_like, Catalytic domain of Fyn-related kinase-like
           Protein Tyrosine Kinases.  Protein Tyrosine Kinase (PTK)
           family; Human Fyn-related kinase (Frk) and similar
           proteins; catalytic (c) domain. The PTKc family is part
           of a larger superfamily that includes the catalytic
           domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Frk and
           Srk are members of the Src subfamily of proteins, which
           are cytoplasmic (or non-receptor) tyr kinases. Src
           kinases contain an N-terminal SH4 domain with a
           myristoylation site, followed by SH3 and SH2 domains, a
           tyr kinase domain, and a regulatory C-terminal region
           containing a conserved tyr. They are activated by
           autophosphorylation at the tyr kinase domain, but are
           negatively regulated by phosphorylation at the
           C-terminal tyr by Csk (C-terminal Src Kinase). Src
           proteins are involved in signaling pathways that
           regulate cytokine and growth factor responses,
           cytoskeleton dynamics, cell proliferation, survival, and
           differentiation. Frk, also known as Rak, is specifically
           expressed in liver, lung, kidney, intestine, mammary
           glands, and the islets of Langerhans. Rodent homologs
           were previously referred to as GTK (gastrointestinal tyr
           kinase), BSK (beta-cell Src-like kinase), or IYK
           (intestinal tyr kinase). Studies in mice reveal that Frk
           is not essential for viability. It plays a role in the
           signaling that leads to cytokine-induced beta-cell death
           in Type I diabetes. It also regulates beta-cell number
           during embryogenesis and early in life.
          Length = 261

 Score = 68.2 bits (167), Expect = 9e-13
 Identities = 46/161 (28%), Positives = 80/161 (49%), Gaps = 10/161 (6%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKI-HLTIPHVKTYMQMLLKGVSYLH 398
           P++++L      ++ + +V E M  G L E L       L +P +      +  G++YL 
Sbjct: 61  PKLIQLYAVCTLEEPIYIVTELMKYGSLLEYLQGGAGRALKLPQLIDMAAQVASGMAYLE 120

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW---YRAPELLY 455
            +  +HRDL   N+L+ +  I K+ADFGLAR    +    Y     +++   + APE   
Sbjct: 121 AQNYIHRDLAARNVLVGENNICKVADFGLARVIKED---IYEAREGAKFPIKWTAPEAAL 177

Query: 456 ASRCYDQSVDLWAVGCILGEMYTNAPL-FPGESDIEQLAMV 495
            +R   +S D+W+ G +L E+ T   + +PG ++ E L  V
Sbjct: 178 YNRFSIKS-DVWSFGILLTEIVTYGRMPYPGMTNAEVLQQV 217


>gnl|CDD|173706 cd05615, STKc_cPKC_alpha, Catalytic domain of the Protein
           Serine/Threonine Kinase, Classical Protein Kinase C
           alpha.  Serine/Threonine Kinases (STKs), Classical
           Protein Kinase C (cPKC) subfamily, alpha isoform,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The cPKC subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. PKCs are
           classified into three groups (classical, atypical, and
           novel) depending on their mode of activation and the
           structural characteristics of their regulatory domain.
           PKCs undergo three phosphorylations in order to take
           mature forms. In addition, cPKCs depend on calcium, DAG
           (1,2-diacylglycerol), and in most cases,
           phosphatidylserine (PS) for activation. There are four
           cPKC isoforms, named alpha, betaI, betaII, and gamma.
           PKC-alpha is expressed in many tissues and is associated
           with cell proliferation, apoptosis, and cell motility.
           It plays a role in the signaling of the growth factors
           PDGF, VEGF, EGF, and FGF. Abnormal levels of PKC-alpha
           have been detected in many transformed cell lines and
           several human tumors. In addition, PKC-alpha is required
           for HER2 dependent breast cancer invasion.
          Length = 323

 Score = 68.9 bits (168), Expect = 1e-12
 Identities = 53/168 (31%), Positives = 86/168 (51%), Gaps = 13/168 (7%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKI-HLTIPHVKTYMQMLLKGVSYLHG 399
           P + +L   F   D +  V E+++ G   + H +++     P    Y   +  G+ +LH 
Sbjct: 61  PFLTQLHSCFQTVDRLYFVMEYVNGGDL-MYHIQQVGKFKEPQAVFYAAEISVGLFFLHR 119

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVE----RWGQYTPEVASRWYRAPELLY 455
           + I++RDLK  N+++D  G +KIADFG+ +   V+    R    TP+     Y APE++ 
Sbjct: 120 RGIIYRDLKLDNVMLDSEGHIKIADFGMCKEHMVDGVTTRTFCGTPD-----YIAPEII- 173

Query: 456 ASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVL-HKLGTP 502
           A + Y +SVD WA G +L EM    P F GE + E    ++ H +  P
Sbjct: 174 AYQPYGKSVDWWAYGVLLYEMLAGQPPFDGEDEDELFQSIMEHNVSYP 221


>gnl|CDD|173726 cd06610, STKc_OSR1_SPAK, Catalytic domain of the Protein
           Serine/Threonine Kinases, Oxidative stress response
           kinase and Ste20-related proline alanine-rich kinase.
           Serine/threonine kinases (STKs), oxidative stress
           response kinase (OSR1) and Ste20-related proline
           alanine-rich kinase (SPAK) subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The OSR1 and SPAK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. SPAK is also referred to as STK39 or PASK
           (proline-alanine-rich STE20-related kinase). OSR1 and
           SPAK regulate the activity of cation-chloride
           cotransporters through direct interaction and
           phosphorylation. They are also implicated in
           cytoskeletal rearrangement, cell differentiation,
           transformation and proliferation. OSR1 and SPAK contain
           a conserved C-terminal (CCT) domain, which recognizes a
           unique motif ([RK]FX[VI]) present in their activating
           kinases (WNK1/WNK4) and their substrates.
          Length = 267

 Score = 67.8 bits (166), Expect = 1e-12
 Identities = 36/103 (34%), Positives = 57/103 (55%), Gaps = 5/103 (4%)

Query: 385 TYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSF----DVERWGQYT 440
           T ++ +LKG+ YLH    +HRD+K  N+L+ + G +KIADFG++ S     D  R  + T
Sbjct: 106 TVLKEVLKGLEYLHSNGQIHRDIKAGNILLGEDGSVKIADFGVSASLADGGDRTRKVRKT 165

Query: 441 PEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLF 483
             V +  + APE++     YD   D+W+ G    E+ T A  +
Sbjct: 166 -FVGTPCWMAPEVMEQVHGYDFKADIWSFGITAIELATGAAPY 207



 Score = 31.2 bits (71), Expect = 1.4
 Identities = 14/45 (31%), Positives = 23/45 (51%), Gaps = 2/45 (4%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
           GA   V  A     N+ VAIKRI + +  TS    ++ +E++ +
Sbjct: 11 VGATAVVYAAICLPNNEKVAIKRIDLEKCQTSV--DELRKEVQAM 53


>gnl|CDD|173730 cd06624, STKc_ASK, Catalytic domain of the Protein Serine/Threonine
           Kinase, Apoptosis signal-regulating kinase.
           Serine/threonine kinases (STKs), Apoptosis
           signal-regulating kinase (ASK) subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The ASK subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. Subfamily members
           are mitogen-activated protein kinase (MAPK) kinase
           kinases (MAPKKKs or MKKKs or MAP3Ks) and include ASK1,
           ASK2, and MAPKKK15. MAPKKKs phosphorylate and activate
           MAPK kinases (MAPKKs or MKKs or MAP2Ks), which in turn
           phosphorylate and activate MAPKs during signaling
           cascades that are important in mediating cellular
           responses to extracellular signals. ASK1 (also called
           MAPKKK5) functions in the c-Jun N-terminal kinase (JNK)
           and p38 MAPK signaling pathways by directly activating
           their respective MAPKKs, MKK4/MKK7 and MKK3/MKK6. It
           plays important roles in cytokine and stress responses,
           as well as in reactive oxygen species (ROS)-mediated
           cellular responses. ASK1 is implicated in various
           diseases mediated by oxidative stress including
           inschemic heart disease, hypertension, vessel injury,
           brain ischemia, Fanconi anemia, asthma, and pulmonary
           edema, among others. ASK2 (also called MAPKKK6)
           functions only in a heteromeric complex with ASK1, and
           can activate ASK1 by direct phosphorylation. The
           function of MAPKKK15 is still unknown.
          Length = 268

 Score = 67.5 bits (165), Expect = 2e-12
 Identities = 45/150 (30%), Positives = 73/150 (48%), Gaps = 14/150 (9%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDK--KIHLTIPHVKTYMQMLLKGVSYLHG 399
           IV+ L    +     +  E +  G L  LL  K   +      +  Y + +L+G+ YLH 
Sbjct: 67  IVQYLGSDSENGFFKIFMEQVPGGSLSALLRSKWGPLKDNEQTIIFYTKQILEGLKYLHD 126

Query: 400 KFIMHRDLKPANLLIDK-AGILKIADFGLARSFDVERWGQYTPEVAS----RWYRAPELL 454
             I+HRD+K  N+L++  +G++KI+DFG ++     R     P   +      Y APE++
Sbjct: 127 NQIVHRDIKGDNVLVNTYSGVVKISDFGTSK-----RLAGINPCTETFTGTLQYMAPEVI 181

Query: 455 -YASRCYDQSVDLWAVGCILGEMYTNAPLF 483
               R Y    D+W++GC + EM T  P F
Sbjct: 182 DKGPRGYGAPADIWSLGCTIVEMATGKPPF 211


>gnl|CDD|173630 cd05044, PTKc_c-ros, Catalytic domain of the Protein Tyrosine
           Kinase, C-ros.  Protein Tyrosine Kinases (PTK) family;
           C-ros and Drosophila Sevenless proteins; catalytic (c)
           domain. The PTKc family is part of a larger superfamily
           that includes the catalytic domains of other kinases
           such as protein serine/threonine kinases, RIO kinases,
           and phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. The
           proto-oncogene c-ros encodes an orphan receptor tyr
           kinase (RTK) with an unknown ligand. RTKs contain an
           extracellular ligand-binding domain, a transmembrane
           region, and an intracellular tyr kinase domain. RTKs are
           usually activated through ligand binding, which causes
           dimerization and autophosphorylation of the
           intracellular tyr kinase catalytic domain. C-ros is
           expressed in embryonic cells of the kidney, intestine
           and lung, but disappears soon after birth. It persists
           only in the adult epididymis. Male mice bearing inactive
           mutations of c-ros lack the initial segment of the
           epididymis and are infertile. The Drosophila protein,
           Sevenless, is required for the specification of the R7
           photoreceptor cell during eye development.
          Length = 269

 Score = 67.2 bits (164), Expect = 2e-12
 Identities = 55/173 (31%), Positives = 81/173 (46%), Gaps = 23/173 (13%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIP---HVKTYMQMLL---KG 393
           P IVKLL      +   ++ E M+ G L   L D ++    P    +K  + + L   KG
Sbjct: 59  PNIVKLLGVCLLNEPQYIIMELMEGGDLLSYLRDARVERFGPPLLTLKELLDICLDVAKG 118

Query: 394 VSYLHGKFIMHRDLKPANLLIDKAG-----ILKIADFGLARSFDVERWGQYTPE----VA 444
             YL     +HRDL   N L+ + G     ++KI DFGLAR  D+ +   Y  E    + 
Sbjct: 119 CVYLEQMHFIHRDLAARNCLVSEKGYDADRVVKIGDFGLAR--DIYKSDYYRKEGEGLLP 176

Query: 445 SRWYRAPELLYASRCYDQSVDLWAVGCILGEMYT--NAPLFPGESDIEQLAMV 495
            RW  APE L   +   QS D+W+ G ++ E+ T    P +P  ++ E L  V
Sbjct: 177 VRWM-APESLLDGKFTTQS-DVWSFGVLMWEILTLGQQP-YPALNNQEVLQHV 226


>gnl|CDD|173695 cd05604, STKc_SGK3, Catalytic domain of the Protein
           Serine/Threonine Kinase, Serum- and
           Glucocorticoid-induced Kinase 3.  Serine/Threonine
           Kinases (STKs), Serum- and Glucocorticoid-induced Kinase
           (SGK) subfamily, SGK3 isoform, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The SGK subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. There are three isoforms of
           SGK, named SGK1, SGK2, and SGK3 (also called
           cytokine-independent survival kinase CISK). SGK3 is
           expressed in most tissues and is most abundant in the
           embryo and adult heart and spleen. It was originally
           discovered in a screen for antiapoptotic genes. It
           phosphorylates and inhibits the proapoptotic proteins,
           Bad and FKHRL1. SGK3 also regulates many transporters,
           ion channels, and receptors. It plays a critical role in
           hair follicle morphogenesis and hair cycling.
          Length = 325

 Score = 68.1 bits (166), Expect = 2e-12
 Identities = 45/158 (28%), Positives = 73/158 (46%), Gaps = 2/158 (1%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P +V L   F   + +  V + ++ G       ++     P  + Y   +   + YLH  
Sbjct: 56  PFLVGLHYSFQTTEKLYFVLDFVNGGELFFHLQRERSFPEPRARFYAAEIASALGYLHSI 115

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCY 460
            I++RDLKP N+L+D  G + + DFGL +   + +    T    +  Y APE++   + Y
Sbjct: 116 NIVYRDLKPENILLDSQGHVVLTDFGLCKE-GIAQSDTTTTFCGTPEYLAPEVI-RKQPY 173

Query: 461 DQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHK 498
           D +VD W +G +L EM    P F      E    +LHK
Sbjct: 174 DNTVDWWCLGAVLYEMLYGLPPFYCRDVAEMYDNILHK 211


>gnl|CDD|132940 cd06609, STKc_MST3_like, Catalytic domain of Mammalian Ste20-like
           protein kinase 3-like Protein Serine/Threonine Kinases. 
           Serine/threonine kinases (STKs), mammalian Ste20-like
           protein kinase 3 (MST3)-like subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The MST3-like subfamily
           is part of a larger superfamily that includes the
           catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. This subfamily is composed of MST3, MST4,
           STK25, Schizosaccharomyces pombe Nak1 and Sid1,
           Saccharomyces cerevisiae sporulation-specific protein 1
           (SPS1), and related proteins. Nak1 is required by
           fission yeast for polarizing the tips of actin
           cytoskeleton and is involved in cell growth, cell
           separation, cell morphology and cell-cycle progression.
           Sid1 is a component in the septation initiation network
           (SIN) signaling pathway, and plays a role in
           cytokinesis. SPS1 plays a role in regulating proteins
           required for spore wall formation. MST4 plays a role in
           mitogen-activated protein kinase (MAPK) signaling during
           cytoskeletal rearrangement, morphogenesis, and
           apoptosis. MST3 phosphorylates the STK NDR and may play
           a role in cell cycle progression and cell morphology.
           STK25 may play a role in the regulation of cell
           migration and polarization.
          Length = 274

 Score = 67.3 bits (165), Expect = 2e-12
 Identities = 43/149 (28%), Positives = 75/149 (50%), Gaps = 19/149 (12%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P I K    F     + ++ E+   G   +LL  K   L   ++   ++ +L G+ YLH 
Sbjct: 59  PYITKYYGSFLKGSKLWIIMEYCGGGSCLDLL--KPGKLDETYIAFILREVLLGLEYLHE 116

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASR-------WYRAPE 452
           +  +HRD+K AN+L+ + G +K+ADFG++        GQ T  ++ R       ++ APE
Sbjct: 117 EGKIHRDIKAANILLSEEGDVKLADFGVS--------GQLTSTMSKRNTFVGTPFWMAPE 168

Query: 453 LLYASRCYDQSVDLWAVGCILGEMYTNAP 481
           ++  S  YD+  D+W++G    E+    P
Sbjct: 169 VIKQSG-YDEKADIWSLGITAIELAKGEP 196



 Score = 33.4 bits (77), Expect = 0.25
 Identities = 13/24 (54%), Positives = 18/24 (75%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRI 24
          +G+ G V +A +K TNQ+VAIK I
Sbjct: 11 KGSFGEVYKAIDKRTNQVVAIKVI 34


>gnl|CDD|173665 cd05574, STKc_phototropin_like, Catalytic domain of
           Phototropin-like Protein Serine/Threonine Kinases.
           Serine/Threonine Kinases (STKs), Phototropin-like
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           phototropin-like subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. Included in this subfamily
           are plant phototropins and predominantly uncharacterized
           fungal STKs whose catalytic domains resemble the
           phototropin kinase domain. One protein from Neurospora
           crassa is called nrc-2. Phototropins are blue-light
           receptors that control responses such as phototropism,
           stromatal opening, and chloroplast movement in order to
           optimize the photosynthetic efficiency of plants. They
           are light-activated STKs that contain an N-terminal
           photosensory domain and a C-terminal catalytic domain.
           The N-terminal domain contains two LOV (Light, Oxygen or
           Voltage) domains that binds FMN. Photoexcitation of the
           LOV domains results in autophosphorylation at multiple
           sites and activation of the catalytic domain. Neurospora
           crassa nrc-2 plays a role in growth and development by
           controlling entry into the conidiation program.
          Length = 316

 Score = 66.9 bits (164), Expect = 4e-12
 Identities = 70/256 (27%), Positives = 105/256 (41%), Gaps = 65/256 (25%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIH-LTIPHVKTYMQMLLKGVSYLH 398
           P +  L   F  +  +CLV ++   G L+ LL  +    L+    + Y   +L  + YLH
Sbjct: 61  PFLPTLYASFQTETYLCLVMDYCPGGELFRLLQRQPGKCLSEEVARFYAAEVLLALEYLH 120

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVE---------------RWGQYTPE- 442
              I++RDLKP N+L+ ++G + ++DF L++  DVE                      E 
Sbjct: 121 LLGIVYRDLKPENILLHESGHIMLSDFDLSKQSDVEPPPVSKALRKGSRRSSVNSIPSET 180

Query: 443 ------------VASRWYRAPELLYASRCYDQSVDLWAVGCILGEM-YTNAPLFPGESDI 489
                       V +  Y APE++     +  +VD W +G +L EM Y   P F G +  
Sbjct: 181 FSEEPSFRSNSFVGTEEYIAPEVISGDG-HGSAVDWWTLGILLYEMLYGTTP-FKGSNRD 238

Query: 490 EQLAMVLHKLGTPTEDSWPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLL 549
           E  + +L K                   ++TF  S PV         S    DLI KLL+
Sbjct: 239 ETFSNILKK-------------------EVTFPGSPPV---------SSSARDLIRKLLV 270

Query: 550 YDGQKRL----PANEI 561
            D  KRL     A EI
Sbjct: 271 KDPSKRLGSKRGAAEI 286


>gnl|CDD|173662 cd05571, STKc_PKB, Catalytic domain of the Protein Serine/Threonine
           Kinase, Protein Kinase B.  Serine/Threonine Kinases
           (STKs), Protein Kinase B (PKB) or Akt subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The PKB subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase (PI3K). There are
           three PKB isoforms from different genes, PKB-alpha (or
           Akt1), PKB-beta (or Akt2), and PKB-gamma (or Akt3). PKB
           contains an N-terminal pleckstrin homology (PH) domain
           and a C-terminal catalytic domain. It is activated
           downstream of PI3K and plays important roles in diverse
           cellular functions including cell survival, growth,
           proliferation, angiogenesis, motility, and migration.
           PKB also has a central role in a variety of human
           cancers, having been implicated in tumor initiation,
           progression, and metastasis.
          Length = 323

 Score = 66.8 bits (163), Expect = 5e-12
 Identities = 42/133 (31%), Positives = 68/133 (51%), Gaps = 14/133 (10%)

Query: 350 FPDQDTVCLVFEHMDSG--LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDL 407
           F   D +C V E+ + G   + L  ++    +    + Y   ++  + YLH   +++RDL
Sbjct: 64  FQTHDRLCFVMEYANGGELFFHLSRERV--FSEDRARFYGAEIVSALGYLHSCDVVYRDL 121

Query: 408 KPANLLIDKAGILKIADFGLAR---SF-DVERWGQYTPEVASRWYRAPELLYASRCYDQS 463
           K  NL++DK G +KI DFGL +   S     +    TPE     Y APE+L  +  Y ++
Sbjct: 122 KLENLMLDKDGHIKITDFGLCKEGISDGATMKTFCGTPE-----YLAPEVLEDND-YGRA 175

Query: 464 VDLWAVGCILGEM 476
           VD W +G ++ EM
Sbjct: 176 VDWWGLGVVMYEM 188


>gnl|CDD|173667 cd05576, STKc_RPK118_like, Catalytic domain of the Protein
           Serine/Threonine Kinases, RPK118 and similar proteins.
           Serine/Threonine Kinases (STKs), RPK118-like subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The RPK118-like
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. Members of this subfamily show similarity to
           human RPK118, which contains an N-terminal Phox homology
           (PX) domain, a Microtubule Interacting and Trafficking
           (MIT) domain, and a kinase domain containing a long
           insert. Also included in the family is human RPK60 (or
           ribosomal protein S6 kinase-like 1), which also contains
           MIT and kinase domains but lacks a PX domain. RPK118
           binds sphingosine kinase, a key enzyme in the synthesis
           of sphingosine 1-phosphate (SPP), a lipid messenger
           involved in many cellular events. RPK118 may be involved
           in transmitting SPP-mediated signaling. RPK118 also
           binds the antioxidant peroxiredoxin-3 (PRDX3). RPK118
           may be involved in the transport of PRDX3 from the
           cytoplasm to its site of function in the mitochondria.
          Length = 237

 Score = 65.6 bits (160), Expect = 5e-12
 Identities = 42/148 (28%), Positives = 71/148 (47%), Gaps = 15/148 (10%)

Query: 340 LPQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLH 398
           +P +V L  +   +D+V LV +H + G LW  +  K +++    VK +   ++  +  LH
Sbjct: 44  VPNMVCLHKYIVSEDSVFLVLQHAEGGKLWSHI-SKFLNIPEECVKRWAAEMVVALDALH 102

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTP----EVASRWYRAPELL 454
            + I+ RDL P N+L+D  G +++  F         RW +       E     Y APE+ 
Sbjct: 103 REGIVCRDLNPNNILLDDRGHIQLTYFS--------RWSEVEDSCDGEAVENMYCAPEVG 154

Query: 455 YASRCYDQSVDLWAVGCILGEMYTNAPL 482
             S    ++ D W++G IL E+ T   L
Sbjct: 155 GISE-ETEACDWWSLGAILFELLTGKTL 181


>gnl|CDD|132974 cd06643, STKc_SLK, Catalytic domain of the Protein Serine/Threonine
           Kinase, Ste20-like kinase.  Serine/threonine kinases
           (STKs), Ste20-like kinase (SLK) subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The SLK subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. SLK promotes
           apoptosis through apoptosis signal-regulating kinase 1
           (ASK1) and the mitogen-activated protein kinase (MAPK)
           p38. It acts as a MAPK kinase kinase (MAPKKK) by
           phosphorylating ASK1, resulting in the phosphorylation
           of p38. SLK also plays a role in mediating actin
           reorganization. It is part of a microtubule-associated
           complex that is targeted at adhesion sites, and is
           required in focal adhesion turnover and in regulating
           cell migration.
          Length = 282

 Score = 66.6 bits (162), Expect = 5e-12
 Identities = 45/148 (30%), Positives = 80/148 (54%), Gaps = 10/148 (6%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWE-LLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P IVKLLD F  ++ + ++ E    G  + ++ + +  LT P ++   +  L+ ++YLH 
Sbjct: 62  PNIVKLLDAFYYENNLWILIEFCAGGAVDAVMLELERPLTEPQIRVVCKQTLEALNYLHE 121

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLA--RSFDVERWGQYTPEVASRWYRAPELLYAS 457
             I+HRDLK  N+L    G +K+ADFG++   +  ++R   +   + + ++ APE++   
Sbjct: 122 NKIIHRDLKAGNILFTLDGDIKLADFGVSAKNTRTIQRRDSF---IGTPYWMAPEVVMCE 178

Query: 458 ----RCYDQSVDLWAVGCILGEMYTNAP 481
               R YD   D+W++G  L EM    P
Sbjct: 179 TSKDRPYDYKADVWSLGITLIEMAQIEP 206


>gnl|CDD|173694 cd05603, STKc_SGK2, Catalytic domain of the Protein
           Serine/Threonine Kinase, Serum- and
           Glucocorticoid-induced Kinase 2.  Serine/Threonine
           Kinases (STKs), Serum- and Glucocorticoid-induced Kinase
           (SGK) subfamily, SGK2 isoform, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The SGK subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. There are three isoforms of
           SGK, named SGK1, SGK2, and SGK3. SGK2 shows a more
           restricted distribution that SGK1 and is most abundantly
           expressed in epithelial tissues including kidney, liver,
           pancreas, and the choroid plexus of the brain. In vitro
           cellular assays show that SGK2 can stimulate the
           activity of ion channels, the glutamate transporter
           EEAT4, and the glutamate receptors, GluR6 and GLUR1.
          Length = 321

 Score = 66.5 bits (162), Expect = 6e-12
 Identities = 46/158 (29%), Positives = 74/158 (46%), Gaps = 2/158 (1%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P +V L   F   + +  V ++++ G       ++     P  + Y   +   + YLH  
Sbjct: 56  PFLVGLHYSFQTAEKLYFVLDYVNGGELFFHLQRERCFLEPRARFYAAEVASAIGYLHSL 115

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCY 460
            I++RDLKP N+L+D  G + + DFGL +   VE     +    +  Y APE+L     Y
Sbjct: 116 NIIYRDLKPENILLDSQGHVVLTDFGLCKE-GVEPEETTSTFCGTPEYLAPEVL-RKEPY 173

Query: 461 DQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHK 498
           D++VD W +G +L EM    P F      +    +LHK
Sbjct: 174 DRTVDWWCLGAVLYEMLYGLPPFYSRDVSQMYDNILHK 211


>gnl|CDD|173709 cd05619, STKc_nPKC_theta, Catalytic domain of the Protein
           Serine/Threonine Kinase, Novel Protein Kinase C theta.
           Serine/Threonine Kinases (STKs), Novel Protein Kinase C
           (nPKC), theta isoform, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The nPKC subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. PKCs are classified into three groups
           (classical, atypical, and novel) depending on their mode
           of activation and the structural characteristics of
           their regulatory domain. nPKCs are calcium-independent,
           but require DAG (1,2-diacylglycerol) and
           phosphatidylserine (PS) for activity. There are four
           nPKC isoforms, delta, epsilon, eta, and theta. PKC-theta
           is selectively expressed in T-cells and plays an
           important and non-redundant role in several aspects of
           T-cell biology. Although T-cells also express other PKC
           isoforms, PKC-theta is unique in that upon antigen
           stimulation, it is translocated to the plasma membrane
           at the immunological synapse, where it mediates signals
           essential for T-cell activation. It is essential for
           TCR-induced proliferation, cytokine production, T-cell
           survival, and the differentiation and effector function
           of T-helper (Th) cells, particularly Th2 and Th17.
           PKC-theta is being developed as a therapeutic target for
           Th2-mediated allergic inflammation and Th17-mediated
           autoimmune diseases.
          Length = 316

 Score = 66.5 bits (162), Expect = 6e-12
 Identities = 48/155 (30%), Positives = 78/155 (50%), Gaps = 12/155 (7%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIH-LTIPHVKTYMQMLLKGVSYLHG 399
           P +  L   F  ++ +  V E+++ G   + H +  H   +P    Y   ++ G+ +LH 
Sbjct: 56  PFLTHLYCTFQTKENLFFVMEYLNGGDL-MFHIQSCHKFDLPRATFYAAEIICGLQFLHS 114

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARS--FDVERWGQY--TPEVASRWYRAPELLY 455
           K I++RDLK  N+L+D  G +KIADFG+ +       +   +  TP+     Y APE+L 
Sbjct: 115 KGIVYRDLKLDNILLDTDGHIKIADFGMCKENMLGDAKTCTFCGTPD-----YIAPEILL 169

Query: 456 ASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIE 490
             + Y+ SVD W+ G +L EM      F G  + E
Sbjct: 170 GQK-YNTSVDWWSFGVLLYEMLIGQSPFHGHDEEE 203


>gnl|CDD|173696 cd05605, STKc_GRK4_like, Catalytic domain of G protein-coupled
           Receptor Kinase 4-like Protein Serine/Threonine Kinases.
            Serine/Threonine Kinases (STKs), G protein-coupled
           Receptor Kinase (GRK) subfamily, GRK4-like group,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The GRK subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. GRKs
           phosphorylate and regulate G protein-coupled receptors
           (GPCRs), the largest superfamily of cell surface
           receptors which regulate some part of nearly all
           physiological functions. Phosphorylated GPCRs bind to
           arrestins, which prevents further G protein signaling
           despite the presence of activating ligand. There are
           seven types of GRKs, named GRK1 to GRK7. Members of the
           GRK4-like group include GRK4, GRK5, GRK6, and similar
           GRKs. GRKs in this group contain an N-terminal RGS
           homology (RH) domain and a catalytic domain, but lack a
           G protein betagamma-subunit binding domain. They are
           localized to the plasma membrane through
           post-translational lipid modification or direct binding
           to PIP2.
          Length = 285

 Score = 66.0 bits (161), Expect = 7e-12
 Identities = 44/142 (30%), Positives = 68/142 (47%), Gaps = 17/142 (11%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHL--------TIPHVKTYMQMLLKGV 394
           +V L   +  +D +CLV   M+ G      D K H+               Y   +  G+
Sbjct: 62  VVSLAYAYETKDALCLVLTLMNGG------DLKFHIYNMGNPGFDEERAVFYAAEITCGL 115

Query: 395 SYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELL 454
             LH + I++RDLKP N+L+D  G ++I+D GLA   ++         V +  Y APE++
Sbjct: 116 EDLHRERIVYRDLKPENILLDDYGHIRISDLGLA--VEIPEGETIRGRVGTVGYMAPEVV 173

Query: 455 YASRCYDQSVDLWAVGCILGEM 476
              R Y  S D W +GC++ EM
Sbjct: 174 KNER-YTFSPDWWGLGCLIYEM 194


>gnl|CDD|173719 cd05630, STKc_GRK6, Catalytic domain of the Protein
           Serine/Threonine Kinase, G protein-coupled Receptor
           Kinase 6.  Serine/Threonine Kinases (STKs), G
           protein-coupled Receptor Kinase (GRK) subfamily, GRK6
           isoform, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The GRK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. GRKs phosphorylate and regulate G
           protein-coupled receptors (GPCRs), the largest
           superfamily of cell surface receptors which regulate
           some part of nearly all physiological functions.
           Phosphorylated GPCRs bind to arrestins, which prevents
           further G protein signaling despite the presence of
           activating ligand. There are seven types of GRKs, named
           GRK1 to GRK7. GRK6 is widely expressed in many tissues.
           t is expressed as multiple splice variants with
           different domain architectures. It is
           post-translationally palmitoylated and localized in the
           membrane. GRK6 plays important roles in the regulation
           of dopamine, M3 muscarinic, opioid, and chemokine
           receptor signaling. It also plays maladaptive roles in
           addiction and Parkinson's disease. GRK6-deficient mice
           exhibit altered dopamine receptor regulation, decreased
           lymphocyte chemotaxis, and increased acute inflammation
           and neutrophil chemotaxis.
          Length = 285

 Score = 65.8 bits (160), Expect = 8e-12
 Identities = 61/216 (28%), Positives = 93/216 (43%), Gaps = 31/216 (14%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSG--LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           +V L   +  +D +CLV   M+ G   + + H  +          Y   +  G+  LH +
Sbjct: 62  VVSLAYAYETKDALCLVLTLMNGGDLKFHIYHMGEAGFEEGRAVFYAAEICCGLEDLHQE 121

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCY 460
            I++RDLKP N+L+D  G ++I+D GLA    V         V +  Y APE++   R Y
Sbjct: 122 RIVYRDLKPENILLDDHGHIRISDLGLA--VHVPEGQTIKGRVGTVGYMAPEVVKNER-Y 178

Query: 461 DQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKIT 520
             S D WA+GC+L EM        G+S  +Q      K     E+    +K++ +     
Sbjct: 179 TFSPDWWALGCLLYEM------IAGQSPFQQ-----RKKKIKREEVERLVKEVQEEYSEK 227

Query: 521 FAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRL 556
           F               SPD   L   LL  D ++RL
Sbjct: 228 F---------------SPDARSLCKMLLCKDPKERL 248


>gnl|CDD|173683 cd05592, STKc_nPKC_theta_delta, Catalytic domain of the Protein
           Serine/Threonine Kinases, Novel Protein Kinase C theta
           and delta.  Serine/Threonine Kinases (STKs), Novel
           Protein Kinase C (nPKC), theta and delta-like isoforms,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The nPKC subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. PKCs are
           classified into three groups (classical, atypical, and
           novel) depending on their mode of activation and the
           structural characteristics of their regulatory domain.
           nPKCs are calcium-independent, but require DAG
           (1,2-diacylglycerol) and phosphatidylserine (PS) for
           activity. There are four nPKC isoforms, delta, epsilon,
           eta, and theta. PKC-theta is selectively expressed in
           T-cells and plays an important and non-redundant role in
           several aspects of T-cell biology. PKC-delta plays a
           role in cell cycle regulation and programmed cell death
           in many cell types.
          Length = 316

 Score = 66.0 bits (161), Expect = 8e-12
 Identities = 41/112 (36%), Positives = 66/112 (58%), Gaps = 2/112 (1%)

Query: 386 YMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVAS 445
           Y   ++ G+ +LH K I++RDLK  N+L+DK G +KIADFG+ +  ++   G+ +    +
Sbjct: 101 YAAEIICGLQFLHKKGIIYRDLKLDNVLLDKDGHIKIADFGMCKE-NMNGEGKASTFCGT 159

Query: 446 RWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLH 497
             Y APE+L   + Y++SVD W+ G +L EM      F GE + E    +L+
Sbjct: 160 PDYIAPEILKGQK-YNESVDWWSFGVLLYEMLIGQSPFHGEDEDELFDSILN 210


>gnl|CDD|173723 cd06605, PKc_MAPKK, Catalytic domain of the dual-specificity
           Protein Kinase, Mitogen-Activated Protein Kinase Kinase.
            Protein kinases (PKs), MAP kinase kinase (MAPKK)
           subfamily, catalytic (c) domain. PKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine or tyrosine residues on protein
           substrates. The MAPKK subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein serine/threonine kinases, protein tyrosine
           kinases, RIO kinases, aminoglycoside phosphotransferase,
           choline kinase, and phosphoinositide 3-kinase. The
           mitogen-activated protein (MAP) kinase signaling
           pathways are important mediators of cellular responses
           to extracellular signals. The pathways involve a triple
           kinase core cascade comprising the MAP kinase (MAPK),
           which is phosphorylated and activated by a MAPK kinase
           (MAPKK or MKK or MAP2K), which itself is phosphorylated
           and activated by a MAPK kinase kinase (MAPKKK or MKKK or
           MAP3K). MAPKKs are dual-specificity PKs that
           phosphorylate their downstream targets, MAPKs, at
           specific threonine and tyrosine residues. There are
           three MAPK subfamilies: extracellular signal-regulated
           kinase (ERK), c-Jun N-terminal kinase (JNK), and p38. In
           mammalian cells, there are seven MAPKKs (named MKK1-7)
           and 20 MAPKKKs. Each MAPK subfamily can be activated by
           at least two cognate MAPKKs and by multiple MAPKKKs.
          Length = 265

 Score = 65.4 bits (160), Expect = 9e-12
 Identities = 50/160 (31%), Positives = 81/160 (50%), Gaps = 26/160 (16%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHV---KTYMQMLLKGVSYL 397
           P IV     F +   + +  E+MD G  + +  K++   IP     K  + +L KG++YL
Sbjct: 59  PYIVGFYGAFYNNGDISICMEYMDGGSLDKIL-KEVQGRIPERILGKIAVAVL-KGLTYL 116

Query: 398 HGKF-IMHRDLKPANLLIDKAGILKIADFG--------LARSFDVERWGQYTPEVASRWY 448
           H K  I+HRD+KP+N+L++  G +K+ DFG        LA++F           V +  Y
Sbjct: 117 HEKHKIIHRDVKPSNILVNSRGQIKLCDFGVSGQLVNSLAKTF-----------VGTSSY 165

Query: 449 RAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESD 488
            APE +  +  Y    D+W++G  L E+ T    +P E+D
Sbjct: 166 MAPERIQGND-YSVKSDIWSLGLSLIELATGRFPYPPEND 204



 Score = 31.1 bits (71), Expect = 1.1
 Identities = 13/51 (25%), Positives = 26/51 (50%), Gaps = 2/51 (3%)

Query: 2  GAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSDRY 52
          G  G V +  ++ T +I+A+K   IR     +++  ++RE+  L   +  Y
Sbjct: 12 GNSGVVSKVLHRPTGKIMAVKT--IRLEINEAIQKQILRELDILHKCNSPY 60


>gnl|CDD|173698 cd05607, STKc_GRK7, Catalytic domain of the Protein
           Serine/Threonine Kinase, G protein-coupled Receptor
           Kinase 7.  Serine/Threonine Kinases (STKs), G
           protein-coupled Receptor Kinase (GRK) subfamily, GRK7
           isoform, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The GRK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. GRKs phosphorylate and regulate G
           protein-coupled receptors (GPCRs), the largest
           superfamily of cell surface receptors, which regulate
           some part of nearly all physiological functions.
           Phosphorylated GPCRs bind to arrestins, which prevents
           further G protein signaling despite the presence of
           activating ligand. There are seven types of GRKs, named
           GRK1 to GRK7. GRK7, also called iodopsin kinase, belongs
           to the visual group of GRKs. It is primarily found in
           the retina and plays a role in the regulation of opsin
           light receptors. GRK7 is located in retinal cone outer
           segments and plays an important role in regulating
           photoresponse of the cones.
          Length = 277

 Score = 65.4 bits (159), Expect = 9e-12
 Identities = 43/138 (31%), Positives = 70/138 (50%), Gaps = 5/138 (3%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG--LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLH 398
           P IV L   F  +  +CLV   M+ G   + + +  +  L +  V  Y   +  G+ +LH
Sbjct: 53  PFIVNLAYAFESKTHLCLVMSLMNGGDLKYHIYNVGERGLEMERVIHYSAQITCGILHLH 112

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR 458
              I++RD+KP N+L+D  G  +++D GLA   +++     T    +  Y APE+L    
Sbjct: 113 SMDIVYRDMKPENVLLDDQGNCRLSDLGLA--VELKDGKTITQRAGTNGYMAPEIL-KEE 169

Query: 459 CYDQSVDLWAVGCILGEM 476
            Y   VD +A+GC + EM
Sbjct: 170 PYSYPVDWFAMGCSIYEM 187


>gnl|CDD|173758 cd08218, STKc_Nek1, Catalytic domain of the Protein
           Serine/Threonine Kinase, Never In Mitosis gene A-related
           kinase 1.  Serine/Threonine Kinases (STKs), Never In
           Mitosis gene A (NIMA)-related kinase 1 (Nek1) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Nek1 subfamily is
           one of a family of 11 different Neks (Nek1-11) that are
           involved in cell cycle control. The Nek family is part
           of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. Nek1 is
           associated with centrosomes throughout the cell cycle.
           It is involved in the formation of primary cilium and in
           the maintenance of centrosomes. It cycles through the
           nucleus and may be capable of relaying signals between
           the cilium and the nucleus. Nek1 is implicated in the
           development of polycystic kidney disease, which is
           characterized by benign polycystic tumors formed by
           abnormal overgrowth of renal epithelial cells. It
           appears also to be involved in DNA damage response, and
           may be important for both correct DNA damage checkpoint
           activation and DNA repair.
          Length = 256

 Score = 64.9 bits (158), Expect = 1e-11
 Identities = 39/144 (27%), Positives = 79/144 (54%), Gaps = 12/144 (8%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKK-IHLTIPHVKTYMQMLLKGVSYLH 398
           P IV+  + F +   + +V ++ + G L++ ++ ++ +      +  +   +   + ++H
Sbjct: 59  PNIVQYQESFEENGNLYIVMDYCEGGDLYKKINAQRGVLFPEDQILDWFVQICLALKHVH 118

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLAR----SFDVERWGQYTPEVASRWYRAPELL 454
            + I+HRD+K  N+ + K G +K+ DFG+AR    + ++ R    TP     +Y +PE+ 
Sbjct: 119 DRKILHRDIKSQNIFLTKDGTIKLGDFGIARVLNSTVELARTCIGTP-----YYLSPEIC 173

Query: 455 YASRCYDQSVDLWAVGCILGEMYT 478
             +R Y+   D+WA+GC+L EM T
Sbjct: 174 -ENRPYNNKSDIWALGCVLYEMCT 196


>gnl|CDD|173677 cd05586, STKc_Sck1_like, Catalytic domain of Suppressor of loss of
           cAMP-dependent protein kinase-like Protein
           Serine/Threonine Kinases.  Serine/Threonine Kinases
           (STKs), Fission yeast Suppressor of loss of
           cAMP-dependent protein kinase (Sck1)-like subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Sck1-like subfamily
           is part of a larger superfamily that includes the
           catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. This subfamily is composed of fungal proteins
           with similarity to the Schizosaccharomyces pombe STK
           Sck1. Sck1 plays a role in trehalase activation
           triggered by glucose and a nitrogen source. Trehalase
           catalyzes the cleavage of the disaccharide trehalose to
           glucose. Trehalose, as a carbohydrate reserve and stress
           metabolite, plays an important role in the response of
           yeast to environmental changes.
          Length = 330

 Score = 65.7 bits (160), Expect = 1e-11
 Identities = 42/138 (30%), Positives = 71/138 (51%), Gaps = 5/138 (3%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG--LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLH 398
           P IV L   F     + LV ++M  G   W L  + +   +    K Y+  L+  + +LH
Sbjct: 56  PFIVGLKFSFQTDSDLYLVTDYMSGGELFWHLQKEGR--FSEDRAKFYIAELVLALEHLH 113

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR 458
              I++RDLKP N+L+D  G + + DFGL+++ ++           +  Y APE+L   +
Sbjct: 114 KYDIVYRDLKPENILLDATGHIALCDFGLSKA-NLTDNKTTNTFCGTTEYLAPEVLLDEK 172

Query: 459 CYDQSVDLWAVGCILGEM 476
            Y + VD W++G ++ EM
Sbjct: 173 GYTKHVDFWSLGVLVFEM 190


>gnl|CDD|173674 cd05583, STKc_MSK_N, N-terminal catalytic domain of the Protein
           Serine/Threonine Kinase, Mitogen and stress-activated
           kinase.  Serine/Threonine Kinases (STKs), Mitogen and
           stress-activated kinase (MSK) subfamily, N-terminal
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The MSK subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. MSKs contain an
           N-terminal kinase domain (NTD) from the AGC family and a
           C-terminal kinase domain (CTD) from the CAMK family,
           similar to 90 kDa ribosomal protein S6 kinases (RSKs).
           MSKs are activated by two major signaling cascades, the
           Ras-MAPK and p38 stress kinase pathways, in response to
           various stimuli such as growth factors, hormones,
           neurotransmitters, cellular stress, and pro-inflammatory
           cytokines. This triggers phosphorylation in the
           activation loop (A-loop) of the CTD of MSK. The active
           CTD phosphorylates the hydrophobic motif (HM) in the
           C-terminal extension of NTD, which facilitates the
           phosphorylation of the A-loop and activates the NTD,
           which in turn phosphorylates downstream targets. MSKs
           are predominantly nuclear proteins. They are widely
           expressed in many tissues including heart, brain, lung,
           liver, kidney, and pancreas. There are two isoforms of
           MSK, called MSK1 and MSK2.
          Length = 288

 Score = 64.8 bits (158), Expect = 2e-11
 Identities = 59/221 (26%), Positives = 104/221 (47%), Gaps = 29/221 (13%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P +V L   F     + L+ ++++ G L+  L+ ++ H T   V+ Y+  ++  + +LH 
Sbjct: 65  PFLVTLHYAFQTDTKLHLILDYVNGGELFTHLYQRE-HFTESEVRVYIAEIVLALDHLHQ 123

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYA-SR 458
             I++RD+K  N+L+D  G + + DFGL++ F  E   +      +  Y APE++   S 
Sbjct: 124 LGIIYRDIKLENILLDSEGHVVLTDFGLSKEFLAEEEERAYSFCGTIEYMAPEVIRGGSG 183

Query: 459 CYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNK 518
            +D++VD W++G +  E+ T A  F  + +    + +  ++          LK  P    
Sbjct: 184 GHDKAVDWWSLGVLTFELLTGASPFTVDGEQNSQSEISRRI----------LKSKP---- 229

Query: 519 ITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPAN 559
                  P P        S +  D I KLL  D +KRL AN
Sbjct: 230 -------PFP-----KTMSAEARDFIQKLLEKDPKKRLGAN 258


>gnl|CDD|173763 cd08223, STKc_Nek4, Catalytic domain of the Protein
           Serine/Threonine Kinase, Never In Mitosis gene A-related
           kinase 4.  Serine/Threonine Kinases (STKs), Never In
           Mitosis gene A (NIMA)-related kinase 4 (Nek4) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Nek4 subfamily is
           one of a family of 11 different Neks (Nek1-11). The Nek
           family is part of a larger superfamily that includes the
           catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. Neks are involved in the regulation of
           downstream processes following the activation of Cdc2,
           and many of their functions are cell cycle-related. They
           play critical roles in microtubule dynamics during
           ciliogenesis and mitosis. Nek4 is highly abundant in the
           testis. Its specific function is unknown.
          Length = 257

 Score = 64.2 bits (156), Expect = 2e-11
 Identities = 30/85 (35%), Positives = 53/85 (62%), Gaps = 2/85 (2%)

Query: 394 VSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPEL 453
           + YLH K I+HRDLK  N+ + +  I+K+ D G+AR  +  +    +  + + +Y +PE 
Sbjct: 115 LQYLHEKHILHRDLKTQNVFLTRTNIIKVGDLGIARVLE-NQCDMASTLIGTPYYMSPE- 172

Query: 454 LYASRCYDQSVDLWAVGCILGEMYT 478
           L++++ Y+   D+WA+GC + EM T
Sbjct: 173 LFSNKPYNYKSDVWALGCCVYEMAT 197


>gnl|CDD|173658 cd05114, PTKc_Tec_Rlk, Catalytic domain of the Protein Tyrosine
           Kinases, Tyrosine kinase expressed in hepatocellular
           carcinoma and Resting lymphocyte kinase.  Protein
           Tyrosine Kinase (PTK) family; Tyrosine kinase expressed
           in hepatocellular carcinoma (Tec) and Resting lymphocyte
           kinase (Rlk); catalytic (c) domain. The PTKc family is
           part of a larger superfamily, that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Tec and
           Rlk (also named Txk) are members of the Tec subfamily of
           proteins, which are cytoplasmic (or nonreceptor) tyr
           kinases with similarity to Src kinases in that they
           contain Src homology protein interaction domains (SH3,
           SH2) N-terminal to the catalytic tyr kinase domain.
           Unlike Src kinases, most Tec subfamily members (except
           Rlk) also contain an N-terminal pleckstrin homology (PH)
           domain, which binds the products of PI3K and allows
           membrane recruitment and activation. Instead of PH, Rlk
           contains an N-terminal cysteine-rich region. In addition
           to PH, Tec also contains the Tec homology (TH) domain
           with proline-rich and zinc-binding regions. Tec kinases
           are expressed mainly by haematopoietic cells. Tec is
           more widely-expressed than other Tec subfamily kinases.
           It is found in endothelial cells, both B- and T-cells,
           and a variety of myeloid cells including mast cells,
           erythroid cells, platelets, macrophages and neutrophils.
           Rlk is expressed in T-cells and mast cell lines. Tec and
           Rlk are both key components of T-cell receptor (TCR)
           signaling. They are important in TCR-stimulated
           proliferation, IL-2 production and phopholipase C-gamma1
           activation.
          Length = 256

 Score = 64.1 bits (156), Expect = 2e-11
 Identities = 43/161 (26%), Positives = 83/161 (51%), Gaps = 11/161 (6%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P++V+L      Q  + +V E M++G L   L  ++  L+   + +  Q + +G+ YL  
Sbjct: 59  PKLVQLYGVCTQQKPLYIVTEFMENGCLLNYLRQRQGKLSKDMLLSMCQDVCEGMEYLER 118

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLAR-SFDVERWGQYTPEVASRW---YRAPELLY 455
              +HRDL   N L+   G++K++DFG+ R   D     +YT    +++   +  PE+  
Sbjct: 119 NSFIHRDLAARNCLVSSTGVVKVSDFGMTRYVLD----DEYTSSSGAKFPVKWSPPEVFN 174

Query: 456 ASRCYDQSVDLWAVGCILGEMYTNAPL-FPGESDIEQLAMV 495
            S+ Y    D+W+ G ++ E++T   + F  +S+ E + M+
Sbjct: 175 FSK-YSSKSDVWSFGVLMWEVFTEGKMPFEKKSNYEVVEMI 214


>gnl|CDD|223009 PHA03211, PHA03211, serine/threonine kinase US3; Provisional.
          Length = 461

 Score = 65.7 bits (160), Expect = 3e-11
 Identities = 46/154 (29%), Positives = 70/154 (45%), Gaps = 5/154 (3%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P ++ LLD        CLV     S L+  L  +   L +  V    + LL  + Y+HG+
Sbjct: 220 PAVLALLDVRVVGGLTCLVLPKYRSDLYTYLGARLRPLGLAQVTAVARQLLSAIDYIHGE 279

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQ--YTPEVASRWYRAPELLYASR 458
            I+HRD+K  N+L++    + + DFG A  F    W    +     +    APE+L A  
Sbjct: 280 GIIHRDIKTENVLVNGPEDICLGDFG-AACFARGSWSTPFHYGIAGTVDTNAPEVL-AGD 337

Query: 459 CYDQSVDLWAVGCILGEMYT-NAPLFPGESDIEQ 491
            Y  SVD+W+ G ++ E     A LF      E+
Sbjct: 338 PYTPSVDIWSAGLVIFEAAVHTASLFSASRGDER 371


>gnl|CDD|132975 cd06644, STKc_STK10_LOK, Catalytic domain of the Protein
           Serine/Threonine Kinase, STK10 or Lymphocyte-oriented
           kinase.  Serine/threonine kinases (STKs), STK10
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           STK10 subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. Other names for STK10 include
           lymphocyte-oriented kinase (LOK) and Xenopus polo-like
           kinase kinase 1 (xPlkk1). STK10 is highly expressed in
           lymphocytes and is responsible in regulating leukocyte
           function associated antigen (LFA-1)-mediated lymphocyte
           adhesion. It plays a role in regulating the CD28
           responsive element in T cells, and may also function as
           a regulator of polo-like kinase 1 (Plk1), a protein
           which is overexpressed in multiple tumor types.
          Length = 292

 Score = 64.3 bits (156), Expect = 3e-11
 Identities = 46/150 (30%), Positives = 78/150 (52%), Gaps = 14/150 (9%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEH-----MDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVS 395
           P IVKLL  F     + ++ E      +D+ + EL  D+   LT P ++   + +L+ + 
Sbjct: 69  PYIVKLLGAFYWDGKLWIMIEFCPGGAVDAIMLEL--DRG--LTEPQIQVICRQMLEALQ 124

Query: 396 YLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLY 455
           YLH   I+HRDLK  N+L+   G +K+ADFG++   +V+   +    + + ++ APE++ 
Sbjct: 125 YLHSMKIIHRDLKAGNVLLTLDGDIKLADFGVSAK-NVKTLQRRDSFIGTPYWMAPEVVM 183

Query: 456 ASRC----YDQSVDLWAVGCILGEMYTNAP 481
                   YD   D+W++G  L EM    P
Sbjct: 184 CETMKDTPYDYKADIWSLGITLIEMAQIEP 213


>gnl|CDD|173676 cd05585, STKc_YPK1_like, Catalytic domain of Yeast Protein Kinase
           1-like Protein Serine/Threonine Kinases.
           Serine/Threonine Kinases (STKs), Yeast protein kinase 1
           (YPK1)-like subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The YPK1-like subfamily is part of a larger superfamily
           that includes the catalytic domains of other protein
           STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. This subfamily is composed of
           fungal proteins with similarity to the AGC STKs,
           Saccharomyces cerevisiae YPK1 and Schizosaccharomyces
           pombe Gad8p. YPK1 is required for cell growth and acts
           as a downstream kinase in the sphingolipid-mediated
           signaling pathway of yeast. It also plays a role in
           efficient endocytosis and in the maintenance of cell
           wall integrity. Gad8p is a downstream target of Tor1p,
           the fission yeast homolog of mTOR. It plays a role in
           cell growth and sexual development.
          Length = 312

 Score = 64.2 bits (156), Expect = 3e-11
 Identities = 53/162 (32%), Positives = 79/162 (48%), Gaps = 14/162 (8%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLH--DKKIHLTIPHVKTYMQMLLKGVSYLH 398
           P IV L   F   + + LV   ++ G  EL H   ++    +   + Y   LL  +  LH
Sbjct: 53  PFIVPLKFSFQSPEKLYLVLAFINGG--ELFHHLQREGRFDLSRARFYTAELLCALENLH 110

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLAR--SFDVERWGQY--TPEVASRWYRAPELL 454
              +++RDLKP N+L+D  G + + DFGL +    D ++   +  TPE     Y APELL
Sbjct: 111 KFNVIYRDLKPENILLDYQGHIALCDFGLCKLNMKDDDKTNTFCGTPE-----YLAPELL 165

Query: 455 YASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVL 496
                Y ++VD W +G +L EM T  P F  E+  E    +L
Sbjct: 166 -LGHGYTKAVDWWTLGVLLYEMLTGLPPFYDENVNEMYRKIL 206


>gnl|CDD|140293 PTZ00267, PTZ00267, NIMA-related protein kinase; Provisional.
          Length = 478

 Score = 65.4 bits (159), Expect = 3e-11
 Identities = 54/166 (32%), Positives = 81/166 (48%), Gaps = 18/166 (10%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLW--ELLHDKKIHLTIPHVKT---YMQMLLKGVSYL 397
           IVK  D F   D + L+ E+   G    ++    K HL     +    + Q++L  +  +
Sbjct: 127 IVKHFDDFKSDDKLLLIMEYGSGGDLNKQIKQRLKEHLPFQEYEVGLLFYQIVL-ALDEV 185

Query: 398 HGKFIMHRDLKPANLLIDKAGILKIADFGLAR------SFDVERWGQYTPEVASRWYRAP 451
           H + +MHRDLK AN+ +   GI+K+ DFG ++      S DV      TP     +Y AP
Sbjct: 186 HSRKMMHRDLKSANIFLMPTGIIKLGDFGFSKQYSDSVSLDVASSFCGTP-----YYLAP 240

Query: 452 ELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLH 497
           EL    R Y +  D+W++G IL E+ T    F G S  E +  VL+
Sbjct: 241 ELWERKR-YSKKADMWSLGVILYELLTLHRPFKGPSQREIMQQVLY 285


>gnl|CDD|173710 cd05620, STKc_nPKC_delta, Catalytic domain of the Protein
           Serine/Threonine Kinase, Novel Protein Kinase C delta.
           Serine/Threonine Kinases (STKs), Novel Protein Kinase C
           (nPKC), delta isoform, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The nPKC subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. PKCs are classified into three groups
           (classical, atypical, and novel) depending on their mode
           of activation and the structural characteristics of
           their regulatory domain. nPKCs are calcium-independent,
           but require DAG (1,2-diacylglycerol) and
           phosphatidylserine (PS) for activity. There are four
           nPKC isoforms, delta, epsilon, eta, and theta. PKC-delta
           plays a role in cell cycle regulation and programmed
           cell death in many cell types. It slows down cell
           proliferation, inducing cell cycle arrest and enhancing
           cell differentiation. PKC-delta is also involved in the
           regulation of transcription as well as immune and
           inflammatory responses. It plays a central role in the
           genotoxic stress response that leads to DNA
           damaged-induced apoptosis.
          Length = 316

 Score = 64.2 bits (156), Expect = 4e-11
 Identities = 50/171 (29%), Positives = 81/171 (47%), Gaps = 12/171 (7%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P +  L   F  ++ +  V E ++ G        K    +     Y   ++ G+ +LH K
Sbjct: 56  PFLTHLYCTFQTKEHLFFVMEFLNGGDLMFHIQDKGRFDLYRATFYAAEIVCGLQFLHSK 115

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARS--FDVERWGQY--TPEVASRWYRAPELLYA 456
            I++RDLK  N+++D+ G +KIADFG+ +   F   R   +  TP+     Y APE+L  
Sbjct: 116 GIIYRDLKLDNVMLDRDGHIKIADFGMCKENVFGDNRASTFCGTPD-----YIAPEILQG 170

Query: 457 SRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSW 507
            + Y  SVD W+ G +L EM      F G+ + E    +  ++ TP    W
Sbjct: 171 LK-YTFSVDWWSFGVLLYEMLIGQSPFHGDDEDELFESI--RVDTPHYPRW 218


>gnl|CDD|173657 cd05113, PTKc_Btk_Bmx, Catalytic domain of the Protein Tyrosine
           Kinases, Bruton's tyrosine kinase and Bone marrow kinase
           on the X chromosome.  Protein Tyrosine Kinase (PTK)
           family; Bruton's tyrosine kinase (Btk) and Bone marrow
           kinase on the X chromosome (Bmx); catalytic (c) domain.
           The PTKc family is part of a larger superfamily that
           includes the catalytic domains of other kinases such as
           protein serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Btk and
           Bmx (also named Etk) are members of the Tec subfamily of
           proteins, which are cytoplasmic (or nonreceptor) tyr
           kinases with similarity to Src kinases in that they
           contain Src homology protein interaction domains (SH3,
           SH2) N-terminal to the catalytic tyr kinase domain.
           Unlike Src kinases, most Tec subfamily members (except
           Rlk) also contain an N-terminal pleckstrin homology (PH)
           domain, which binds the products of PI3K and allows
           membrane recruitment and activation. In addition, Btk
           contains the Tec homology (TH) domain with proline-rich
           and zinc-binding regions. Tec kinases are expressed
           mainly by haematopoietic cells. Btk is expressed in
           B-cells, and a variety of myeloid cells including mast
           cells, platelets, neutrophils, and dendrictic cells. It
           interacts with a variety of partners, from cytosolic
           proteins to nuclear transcription factors, suggesting a
           diversity of functions. Stimulation of a diverse array
           of cell surface receptors, including antigen engagement
           of the B-cell receptor (BCR), leads to PH-mediated
           membrane translocation of Btk and subsequent
           phosphorylation by Src kinase and activation. Btk plays
           an important role in the life cycle of B-cells including
           their development, differentiation, proliferation,
           survival, and apoptosis. Mutations in Btk cause the
           primary immunodeficiency disease, X-linked
           agammaglobulinaemia (XLA) in humans. Bmx is primarily
           expressed in bone marrow and the arterial endothelium,
           and plays an important role in ischemia-induced
           angiogenesis. It facilitates arterial growth, capillary
           formation, vessel maturation, and bone marrow-derived
           endothelial progenitor cell mobilization.
          Length = 256

 Score = 63.4 bits (154), Expect = 4e-11
 Identities = 41/142 (28%), Positives = 74/142 (52%), Gaps = 8/142 (5%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
            ++V+L      Q  + +V E+M +G L   L +         +    + + +G++YL  
Sbjct: 59  EKLVQLYGVCTKQRPIYIVTEYMSNGCLLNYLREHGKRFQPSQLLEMCKDVCEGMAYLES 118

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW---YRAPELLYA 456
           K  +HRDL   N L+D  G +K++DFGL+R    +   +YT  V S++   +  PE+L  
Sbjct: 119 KQFIHRDLAARNCLVDDQGCVKVSDFGLSRYVLDD---EYTSSVGSKFPVRWSPPEVLLY 175

Query: 457 SRCYDQSVDLWAVGCILGEMYT 478
           S+ +    D+WA G ++ E+Y+
Sbjct: 176 SK-FSSKSDVWAFGVLMWEVYS 196


>gnl|CDD|173625 cd05032, PTKc_InsR_like, Catalytic domain of Insulin Receptor-like
           Protein Tyrosine Kinases.  Protein Tyrosine Kinase (PTK)
           family; Insulin Receptor (InsR) subfamily; catalytic (c)
           domain. The PTKc family is part of a larger superfamily
           that includes the catalytic domains of other kinases
           such as protein serine/threonine kinases, RIO kinases,
           and phosphoinositide 3-kinase (PI3K). The InsR subfamily
           is composed of InsR, Insulin-like Growth Factor-1
           Receptor (IGF-1R), and similar proteins. PTKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. InsR and
           IGF-1R are receptor tyr kinases (RTKs) composed of two
           alphabeta heterodimers. Binding of the ligand (insulin,
           IGF-1, or IGF-2) to the extracellular alpha subunit
           activates the intracellular tyr kinase domain of the
           transmembrane beta subunit. Receptor activation leads to
           autophosphorylation, stimulating downstream kinase
           activities, which initiate signaling cascades and
           biological function. InsR and IGF-1R, which share 84%
           sequence identity in their kinase domains, display
           physiologically distinct yet overlapping functions in
           cell growth, differentiation, and metabolism. InsR
           activation leads primarily to metabolic effects while
           IGF-1R activation stimulates mitogenic pathways. In
           cells expressing both receptors, InsR/IGF-1R hybrids are
           found together with classical receptors. Both receptors
           can interact with common adaptor molecules such as IRS-1
           and IRS-2.
          Length = 277

 Score = 63.5 bits (155), Expect = 4e-11
 Identities = 58/230 (25%), Positives = 92/230 (40%), Gaps = 44/230 (19%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-----LWELLHDKKIH--LTIPHVKTYMQM---L 390
             +V+LL          +V E M  G     L     + + +  L  P ++ ++QM   +
Sbjct: 69  HHVVRLLGVVSTGQPTLVVMELMAKGDLKSYLRSRRPEAENNPGLGPPTLQKFIQMAAEI 128

Query: 391 LKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVAS----R 446
             G++YL  K  +HRDL   N ++ +   +KI DFG+ R  D+     Y          R
Sbjct: 129 ADGMAYLAAKKFVHRDLAARNCMVAEDLTVKIGDFGMTR--DIYETDYYRKGGKGLLPVR 186

Query: 447 WYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPL-FPGESDIEQLAMVLHKLGTPTED 505
           W  APE L     +    D+W+ G +L EM T A   + G S+ E L  V+         
Sbjct: 187 WM-APESL-KDGVFTTKSDVWSFGVVLWEMATLAEQPYQGLSNEEVLKFVIDG------- 237

Query: 506 SWPGLKDLPDYNKITFAPSDPVPWSTML-------PNASPDTLDLISKLL 548
              G  DLP+        + P     ++       P   P  L+++S L 
Sbjct: 238 ---GHLDLPE--------NCPDKLLELMRMCWQYNPKMRPTFLEIVSSLK 276


>gnl|CDD|173626 cd05034, PTKc_Src_like, Catalytic domain of Src kinase-like Protein
           Tyrosine Kinases.  Protein Tyrosine Kinase (PTK) family;
           Src kinase subfamily; catalytic (c) domain. Src
           subfamily members include Src, Lck, Hck, Blk, Lyn, Fgr,
           Fyn, Yrk, and Yes. The PTKc family is part of a larger
           superfamily that includes the catalytic domains of other
           kinases such as protein serine/threonine kinases, RIO
           kinases, and phosphoinositide 3-kinase (PI3K). PTKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to tyrosine (tyr) residues in protein substrates.
           Src (or c-Src) proteins are cytoplasmic (or
           non-receptor) tyr kinases which are anchored to the
           plasma membrane. They contain an N-terminal SH4 domain
           with a myristoylation site, followed by SH3 and SH2
           domains, a tyr kinase domain, and a regulatory
           C-terminal region containing a conserved tyr. They are
           activated by autophosphorylation at the tyr kinase
           domain, but are negatively regulated by phosphorylation
           at the C-terminal tyr by Csk (C-terminal Src Kinase).
           Src proteins are involved in signaling pathways that
           regulate cytokine and growth factor responses,
           cytoskeleton dynamics, cell proliferation, survival, and
           differentiation. They were identified as the first
           proto-oncogene products, and they regulate cell
           adhesion, invasion, and motility in cancer cells and
           tumor vasculature, contributing to cancer progression
           and metastasis. Src kinases are overexpressed in a
           variety of human cancers, making them attractive targets
           for therapy. They are also implicated in acute
           inflammatory responses and osteoclast function. Src,
           Fyn, Yes, and Yrk are widely expressed, while Blk, Lck,
           Hck, Fgr, and Lyn show a limited expression pattern.
          Length = 261

 Score = 63.5 bits (155), Expect = 4e-11
 Identities = 45/162 (27%), Positives = 84/162 (51%), Gaps = 12/162 (7%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKK-IHLTIPHVKTYMQMLLKGVSYLH 398
            ++V+L     +++ + +V E+M  G L + L   +   L +P +      + +G++YL 
Sbjct: 61  DKLVQLYAVCSEEEPIYIVTEYMSKGSLLDFLKSGEGKKLRLPQLVDMAAQIAEGMAYLE 120

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW---YRAPE-LL 454
            +  +HRDL   N+L+ +  + KIADFGLAR  + +   +YT    +++   + APE   
Sbjct: 121 SRNYIHRDLAARNILVGENLVCKIADFGLARLIEDD---EYTAREGAKFPIKWTAPEAAN 177

Query: 455 YASRCYDQSVDLWAVGCILGEMYTNAPL-FPGESDIEQLAMV 495
           Y    +    D+W+ G +L E+ T   + +PG ++ E L  V
Sbjct: 178 Y--GRFTIKSDVWSFGILLTEIVTYGRVPYPGMTNREVLEQV 217


>gnl|CDD|173712 cd05622, STKc_ROCK1, Catalytic domain of the Protein
           Serine/Threonine Kinase, Rho-associated coiled-coil
           containing protein kinase 1.  Serine/Threonine Kinases
           (STKs), ROCK subfamily, ROCK1 (or ROK-beta) isoform,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The ROCK subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. ROCK contains an
           N-terminal extension, a catalytic kinase domain, and a
           C-terminal extension, which contains a coiled-coil
           region encompassing a Rho-binding domain (RBD) and a
           pleckstrin homology (PH) domain. ROCK is auto-inhibited
           by the RBD and PH domain interacting with the catalytic
           domain, and is activated via interaction with Rho
           GTPases. ROCK1 is preferentially expressed in the liver,
           lung, spleen, testes, and kidney. It mediates signaling
           from Rho to the actin cytoskeleton. It is implicated in
           the development of cardiac fibrosis, cardiomyocyte
           apoptosis, and hyperglycemia. Mice deficient with ROCK1
           display eyelids open at birth (EOB) and omphalocele
           phenotypes due to the disorganization of actin filaments
           in the eyelids and the umbilical ring.
          Length = 371

 Score = 64.7 bits (157), Expect = 4e-11
 Identities = 61/238 (25%), Positives = 102/238 (42%), Gaps = 31/238 (13%)

Query: 337 FSFLPQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPH--VKTYMQMLLKG 393
           F+  P +V+L   F D   + +V E+M  G L  L+ +      +P    + Y   ++  
Sbjct: 99  FANSPWVVQLFYAFQDDRYLYMVMEYMPGGDLVNLMSN----YDVPEKWARFYTAEVVLA 154

Query: 394 VSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPEL 453
           +  +H    +HRD+KP N+L+DK+G LK+ADFG     + E   +    V +  Y +PE+
Sbjct: 155 LDAIHSMGFIHRDVKPDNMLLDKSGHLKLADFGTCMKMNKEGMVRCDTAVGTPDYISPEV 214

Query: 454 LYAS---RCYDQSVDLWAVGCILGEM---------------------YTNAPLFPGESDI 489
           L +      Y +  D W+VG  L EM                     + N+  FP ++DI
Sbjct: 215 LKSQGGDGYYGRECDWWSVGVFLYEMLVGDTPFYADSLVGTYSKIMNHKNSLTFPDDNDI 274

Query: 490 EQLAMVLHKLGTPTEDSWPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKL 547
            + A  L        +   G   + +  +  F  +D   W T+    +P   DL S +
Sbjct: 275 SKEAKNLICAFLTDREVRLGRNGVEEIKRHLFFKNDQWAWETLRDTVAPVVPDLSSDI 332


>gnl|CDD|173705 cd05614, STKc_MSK2_N, N-terminal catalytic domain of the Protein
           Serine/Threonine Kinase, Mitogen and stress-activated
           kinase 2.  Serine/Threonine Kinases (STKs), Mitogen and
           stress-activated kinase (MSK) subfamily, MSK2,
           N-terminal catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The MSK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. MSKs contain an N-terminal kinase domain (NTD)
           from the AGC family and a C-terminal kinase domain (CTD)
           from the CAMK family, similar to 90 kDa ribosomal
           protein S6 kinases (RSKs). MSKs are activated by two
           major signaling cascades, the Ras-MAPK and p38 stress
           kinase pathways, which trigger phosphorylation in the
           activation loop (A-loop) of the CTD of MSK. The active
           CTD phosphorylates the hydrophobic motif (HM) of NTD,
           which facilitates the phosphorylation of the A-loop and
           activates the NTD, which in turn phosphorylates
           downstream targets. MSK2 and MSK1 play nonredundant
           roles in activating histone H3 kinases, which play
           pivotal roles in compaction of the chromatin fiber. MSK2
           is the required H3 kinase in response to stress stimuli
           and activation of the p38 MAPK pathway. MSK2 also plays
           a role in the pathogenesis of psoriasis.
          Length = 332

 Score = 63.4 bits (154), Expect = 6e-11
 Identities = 58/237 (24%), Positives = 108/237 (45%), Gaps = 28/237 (11%)

Query: 323 TIPHIKTYTYLSDVFSFLPQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIP 381
           T+ H +T   + +     P +V L   F  +  + L+ +++  G ++  L+ +  + +  
Sbjct: 47  TVEHTRTERNVLEHVRQSPFLVTLHYAFQTEAKLHLILDYVSGGEMFTHLYQRD-NFSED 105

Query: 382 HVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTP 441
            V+ Y   ++  + +LH   I++RD+K  N+L+D  G + + DFGL++ F  E   +   
Sbjct: 106 EVRFYSGEIILALEHLHKLGIVYRDIKLENILLDSEGHVVLTDFGLSKEFLSEEKERTYS 165

Query: 442 EVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGT 501
              +  Y APE++     + ++VD W++G ++ E+ T A  F  E +    + V  ++  
Sbjct: 166 FCGTIEYMAPEIIRGKGGHGKAVDWWSLGILIFELLTGASPFTLEGERNTQSEVSRRI-- 223

Query: 502 PTEDSWPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPA 558
                   LK  P           P P         P+  DL+ KLL  D +KRL A
Sbjct: 224 --------LKCDP-----------PFP-----SFIGPEAQDLLHKLLRKDPKKRLGA 256


>gnl|CDD|173765 cd08225, STKc_Nek5, Catalytic domain of the Protein
           Serine/Threonine Kinase, Never In Mitosis gene A-related
           kinase 5.  Serine/Threonine Kinases (STKs), Never In
           Mitosis gene A (NIMA)-related kinase 5 (Nek5) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Nek5 subfamily is
           one of a family of 11 different Neks (Nek1-11). The Nek
           family is part of a larger superfamily that includes the
           catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. Neks are involved in the regulation of
           downstream processes following the activation of Cdc2,
           and many of their functions are cell cycle-related. They
           play critical roles in microtubule dynamics during
           ciliogenesis and mitosis. The specific function of Nek5
           is unknown.
          Length = 257

 Score = 62.7 bits (152), Expect = 7e-11
 Identities = 43/157 (27%), Positives = 82/157 (52%), Gaps = 6/157 (3%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG--LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLH 398
           P IV     F +   + +V E+ D G  +  +   + +  +   + ++   +  G+ ++H
Sbjct: 59  PNIVTFFASFQENGRLFIVMEYCDGGDLMKRINRQRGVLFSEDQILSWFVQISLGLKHIH 118

Query: 399 GKFIMHRDLKPANLLIDKAG-ILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYAS 457
            + I+HRD+K  N+ + K G + K+ DFG+AR  +      YT  V + +Y +PE+   +
Sbjct: 119 DRKILHRDIKSQNIFLSKNGMVAKLGDFGIARQLNDSMELAYTC-VGTPYYLSPEIC-QN 176

Query: 458 RCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAM 494
           R Y+   D+W++GC+L E+ T    F G + + QL +
Sbjct: 177 RPYNNKTDIWSLGCVLYELCTLKHPFEGNN-LHQLVL 212


>gnl|CDD|173637 cd05059, PTKc_Tec_like, Catalytic domain of Tec-like Protein
           Tyrosine Kinases.  Protein Tyrosine Kinase (PTK) family;
           Tyrosine kinase expressed in hepatocellular carcinoma
           (Tec) subfamily; catalytic (c) domain. The Tec subfamily
           is composed of Tec, Btk, Bmx (Etk), Itk (Tsk, Emt), Rlk
           (Txk), and similar proteins. The PTKc family is part of
           a larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Tec kinases are
           cytoplasmic (or nonreceptor) tyr kinases (nRTKs) with
           similarity to Src kinases in that they contain Src
           homology protein interaction domains (SH3, SH2)
           N-terminal to the catalytic tyr kinase domain. Unlike
           Src kinases, most Tec subfamily members (except Rlk)
           also contain an N-terminal pleckstrin homology (PH)
           domain, which binds the products of PI3K and allows
           membrane recruitment and activation. In addition, some
           members contain the Tec homology (TH) domain, which
           contains proline-rich and zinc-binding regions. Tec
           kinases form the second largest subfamily of nRTKs and
           are expressed mainly by haematopoietic cells, although
           Tec and Bmx are also found in endothelial cells. B-cells
           express Btk and Tec, while T-cells express Itk, Txk, and
           Tec. Collectively, Tec kinases are expressed in a
           variety of myeloid cells such as mast cells, platelets,
           macrophages, and dendritic cells. Each Tec kinase shows
           a distinct cell-type pattern of expression. The function
           of Tec kinases in lymphoid cells have been studied
           extensively. They play important roles in the
           development, differentiation, maturation, regulation,
           survival, and function of B-cells and T-cells. Mutations
           in Btk cause the severe B-cell immunodeficiency,
           X-linked agammaglobulinaemia (XLA).
          Length = 256

 Score = 62.5 bits (152), Expect = 7e-11
 Identities = 42/162 (25%), Positives = 79/162 (48%), Gaps = 23/162 (14%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLL-------K 392
           P +V+L      Q  + +V E+M +G L   L ++K        K   + LL       +
Sbjct: 59  PNLVQLYGVCTKQRPIFIVTEYMANGCLLNYLRERK-------GKLGTEWLLDMCSDVCE 111

Query: 393 GVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW---YR 449
            + YL     +HRDL   N L+ +  ++K++DFGLAR + ++   QYT    +++   + 
Sbjct: 112 AMEYLESNGFIHRDLAARNCLVGEDNVVKVSDFGLAR-YVLD--DQYTSSQGTKFPVKWA 168

Query: 450 APELLYASRCYDQSVDLWAVGCILGEMYTNAPL-FPGESDIE 490
            PE+   SR +    D+W+ G ++ E+++   + +   S+ E
Sbjct: 169 PPEVFDYSR-FSSKSDVWSFGVLMWEVFSEGKMPYERFSNSE 209


>gnl|CDD|133181 cd05050, PTKc_Musk, Catalytic domain of the Protein Tyrosine
           Kinase, Muscle-specific kinase.  Protein Tyrosine Kinase
           (PTK) family; Muscle-specific kinase (Musk); catalytic
           (c) domain. The PTKc family is part of a larger
           superfamily that includes the catalytic domains of other
           kinases such as protein serine/threonine kinases, RIO
           kinases, and phosphoinositide 3-kinase (PI3K). PTKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to tyrosine (tyr) residues in protein substrates.
           Musk is a receptor tyr kinase (RTK) containing an
           extracellular region with four immunoglobulin-like
           domains and a cysteine-rich cluster, a transmembrane
           segment, and an intracellular catalytic domain. Musk is
           expressed and concentrated in the postsynaptic membrane
           in skeletal muscle. It is essential for the
           establishment of the neuromuscular junction (NMJ), a
           peripheral synapse that conveys signals from motor
           neurons to muscle cells. Agrin, a large proteoglycan
           released from motor neurons, stimulates Musk
           autophosphorylation and activation, leading to the
           clustering of acetylcholine receptors (AChRs). To date,
           there is no evidence to suggest that agrin binds
           directly to Musk. Mutations in AChR, Musk and other
           partners are responsible for diseases of the NMJ, such
           as the autoimmune syndrome myasthenia gravis.
          Length = 288

 Score = 62.9 bits (153), Expect = 7e-11
 Identities = 47/163 (28%), Positives = 76/163 (46%), Gaps = 28/163 (17%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDK---------------------KIHL 378
           P IVKLL        +CL+FE+M  G L E L  +                      + L
Sbjct: 68  PNIVKLLGVCAVGKPMCLLFEYMAYGDLNEFLRHRSPRAQCSLSHSTSSARKCGLNPLPL 127

Query: 379 TIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLAR---SFDVER 435
           +        + +  G++YL  +  +HRDL   N L+ +  ++KIADFGL+R   S D  +
Sbjct: 128 SCTEQLCIAKQVAAGMAYLSERKFVHRDLATRNCLVGENMVVKIADFGLSRNIYSADYYK 187

Query: 436 WGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYT 478
             +    +  RW   PE ++ +R   +S D+WA G +L E+++
Sbjct: 188 ASE-NDAIPIRWM-PPESIFYNRYTTES-DVWAYGVVLWEIFS 227


>gnl|CDD|173721 cd05632, STKc_GRK5, Catalytic domain of the Protein
           Serine/Threonine Kinase, G protein-coupled Receptor
           Kinase 5.  Serine/Threonine Kinases (STKs), G
           protein-coupled Receptor Kinase (GRK) subfamily, GRK5
           isoform, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The GRK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. GRKs phosphorylate and regulate G
           protein-coupled receptors (GPCRs), the largest
           superfamily of cell surface receptors which regulate
           some part of nearly all physiological functions.
           Phosphorylated GPCRs bind to arrestins, which prevents
           further G protein signaling despite the presence of
           activating ligand. There are seven types of GRKs, named
           GRK1 to GRK7. GRK5 is widely expressed in many tissues.
           It associates with the membrane though an N-terminal
           PIP2 binding domain and also binds phospholipids via its
           C-terminus. GRK5 deficiency is associated with early
           Alzheimer's disease in humans and mouse models. GRK5
           also plays a crucial role in the pathogenesis of
           sporadic Parkinson's disease. It participates in the
           regulation and desensitization of PDGFRbeta, a receptor
           tyrosine kinase involved in a variety of downstream
           cellular effects including cell growth, chemotaxis,
           apoptosis, and angiogenesis. GRK5 also regulates
           Toll-like receptor 4, which is involved in innate and
           adaptive immunity.
          Length = 285

 Score = 62.7 bits (152), Expect = 8e-11
 Identities = 47/154 (30%), Positives = 70/154 (45%), Gaps = 17/154 (11%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHL--------TIPHVKTYMQMLLKGV 394
           +V L   +  +D +CLV   M+ G      D K H+               Y   +L G+
Sbjct: 62  VVNLAYAYETKDALCLVLTIMNGG------DLKFHIYNMGNPGFEEERALFYAAEILCGL 115

Query: 395 SYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELL 454
             LH +  ++RDLKP N+L+D  G ++I+D GLA    +         V +  Y APE+L
Sbjct: 116 EDLHRENTVYRDLKPENILLDDYGHIRISDLGLA--VKIPEGESIRGRVGTVGYMAPEVL 173

Query: 455 YASRCYDQSVDLWAVGCILGEMYTNAPLFPGESD 488
              R Y  S D W +GC++ EM      F G  +
Sbjct: 174 NNQR-YTLSPDYWGLGCLIYEMIEGQSPFRGRKE 206


>gnl|CDD|133171 cd05039, PTKc_Csk_like, Catalytic domain of C-terminal Src
           kinase-like Protein Tyrosine Kinases.  Protein Tyrosine
           Kinase (PTK) family; C-terminal Src kinase (Csk)
           subfamily; catalytic (c) domain. The Csk subfamily is
           composed of Csk, Chk, and similar proteins. The PTKc
           family is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Csk
           subfamily kinases are cytoplasmic (or nonreceptor) tyr
           kinases containing the Src homology domains, SH3 and
           SH2, N-terminal to the catalytic tyr kinase domain. They
           negatively regulate the activity of Src kinases that are
           anchored to the plasma membrane. To inhibit Src kinases,
           Csk and Chk are translocated to the membrane via binding
           to specific transmembrane proteins, G-proteins, or
           adaptor proteins near the membrane. Csk catalyzes the
           tyr phosphorylation of the regulatory C-terminal tail of
           Src kinases, resulting in their inactivation. Chk
           inhibit Src kinases using a noncatalytic mechanism by
           simply binding to them. As negative regulators of Src
           kinases, Csk and Chk play important roles in cell
           proliferation, survival, and differentiation, and
           consequently, in cancer development and progression.
          Length = 256

 Score = 62.4 bits (152), Expect = 8e-11
 Identities = 41/140 (29%), Positives = 75/140 (53%), Gaps = 7/140 (5%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDK-KIHLTIPHVKTYMQMLLKGVSYLH 398
           P +V+LL      + + +V E+M  G L + L  + +  +T+     +   + +G+ YL 
Sbjct: 60  PNLVQLLGVVLQGNPLYIVTEYMAKGSLVDYLRSRGRAVITLAQQLGFALDVCEGMEYLE 119

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR 458
            K  +HRDL   N+L+ +  + K++DFGLA+       GQ + ++  +W  APE L   +
Sbjct: 120 EKNFVHRDLAARNVLVSEDLVAKVSDFGLAKE---ASQGQDSGKLPVKW-TAPEALREKK 175

Query: 459 CYDQSVDLWAVGCILGEMYT 478
              +S D+W+ G +L E+Y+
Sbjct: 176 FSTKS-DVWSFGILLWEIYS 194


>gnl|CDD|132981 cd06650, PKc_MEK1, Catalytic domain of the dual-specificity Protein
           Kinase, MAP/ERK Kinase 1.  Protein kinases (PKs),
           MAP/ERK kinase (MEK) 1 subfamily, catalytic (c) domain.
           PKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine or tyrosine residues on
           protein substrates. The MEK subfamily is part of a
           larger superfamily that includes the catalytic domains
           of other protein serine/threonine kinases, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. The mitogen-activated protein (MAP) kinase
           signaling pathways are important mediators of cellular
           responses to extracellular signals. The pathways involve
           a triple kinase core cascade comprising the MAP kinase
           (MAPK), which is phosphorylated and activated by a MAPK
           kinase (MAPKK or MKK), which itself is phosphorylated
           and activated by a MAPK kinase kinase (MAPKKK or MKKK).
           MEK1 is a dual-specificity PK that phosphorylates and
           activates the downstream targets, extracellular
           signal-regulated kinase (ERK) 1 and ERK2, on specific
           threonine and tyrosine residues. The ERK cascade starts
           with extracellular signals including growth factors,
           hormones, and neurotransmitters, which act through
           receptors and ion channels to initiate intracellular
           signaling that leads to the activation at the MAPKKK
           (Raf-1 or MOS) level, which leads to the transmission of
           signals to MEK1, and finally to ERK1/2. The ERK cascade
           plays an important role in cell proliferation,
           differentiation, oncogenic transformation, and cell
           cycle control, as well as in apoptosis and cell survival
           under certain conditions. Gain-of-function mutations in
           genes encoding ERK cascade proteins, including MEK1,
           cause cardiofaciocutaneous (CFC) syndrome, a condition
           leading to multiple congenital anomalies and mental
           retardation in patients. MEK1 also plays a role in cell
           cycle control.
          Length = 333

 Score = 63.1 bits (153), Expect = 8e-11
 Identities = 59/202 (29%), Positives = 92/202 (45%), Gaps = 16/202 (7%)

Query: 282 KTDEIEMKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPH------IKTYTYLSD 335
           K D+ E K+ +       V     H  SGL  ++  K IHL I        I+    L +
Sbjct: 3   KDDDFE-KISELGAGNGGVVFKVSHKPSGL--IMARKLIHLEIKPAIRNQIIRELQVLHE 59

Query: 336 VFSFLPQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVS 395
             S  P IV     F     + +  EHMD G  + +  K   +    +      ++KG++
Sbjct: 60  CNS--PYIVGFYGAFYSDGEISICMEHMDGGSLDQVLKKAGRIPEQILGKVSIAVIKGLT 117

Query: 396 YLHGKF-IMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELL 454
           YL  K  IMHRD+KP+N+L++  G +K+ DFG++          +   V +R Y +PE L
Sbjct: 118 YLREKHKIMHRDVKPSNILVNSRGEIKLCDFGVSGQLIDSMANSF---VGTRSYMSPERL 174

Query: 455 YASRCYDQSVDLWAVGCILGEM 476
             +  Y    D+W++G  L EM
Sbjct: 175 QGTH-YSVQSDIWSMGLSLVEM 195


>gnl|CDD|173699 cd05608, STKc_GRK1, Catalytic domain of the Protein
           Serine/Threonine Kinase, G protein-coupled Receptor
           Kinase 1.  Serine/Threonine Kinases (STKs), G
           protein-coupled Receptor Kinase (GRK) subfamily, GRK1
           isoform, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The GRK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. GRKs phosphorylate and regulate G
           protein-coupled receptors (GPCRs), the largest
           superfamily of cell surface receptors, which regulate
           some part of nearly all physiological functions.
           Phosphorylated GPCRs bind to arrestins, which prevents
           further G protein signaling despite the presence of
           activating ligand. There are seven types of GRKs, named
           GRK1 to GRK7. GRK1, also called rhodopsin kinase,
           belongs to the visual group of GRKs and is expressed in
           retinal cells. It phosphorylates rhodopsin in rod cells,
           which leads to termination of the phototransduction
           cascade. Mutations in GRK1 are associated to a
           recessively inherited form of stationary nightblindness
           called Oguchi disease.
          Length = 280

 Score = 62.6 bits (152), Expect = 1e-10
 Identities = 50/147 (34%), Positives = 72/147 (48%), Gaps = 24/147 (16%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIH----------LTIPHVKTYMQMLLK 392
           IV L   F  +  +CLV   M+ G      D + H             P    Y   ++ 
Sbjct: 55  IVSLAYAFQTKTDLCLVMTIMNGG------DLRYHIYNVDEENPGFPEPRACFYTAQIIS 108

Query: 393 GVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVE-RWGQYTPE--VASRWYR 449
           G+ +LH + I++RDLKP N+L+D  G ++I+D GLA    VE + GQ   +    +  + 
Sbjct: 109 GLEHLHQRRIIYRDLKPENVLLDNDGNVRISDLGLA----VELKDGQSKTKGYAGTPGFM 164

Query: 450 APELLYASRCYDQSVDLWAVGCILGEM 476
           APELL     YD SVD +A+G  L EM
Sbjct: 165 APELLQGEE-YDFSVDYFALGVTLYEM 190


>gnl|CDD|173675 cd05584, STKc_p70S6K, Catalytic domain of the Protein
           Serine/Threonine Kinase, 70 kDa ribosomal protein S6
           kinase.  Serine/Threonine Kinases (STKs), 70 kDa
           ribosomal protein S6 kinase (p70S6K) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The p70S6K subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. p70S6K (or S6K)
           contains only one catalytic kinase domain, unlike p90
           ribosomal S6 kinases (RSKs). It acts as a downstream
           effector of the STK mTOR (mammalian Target of Rapamycin)
           and plays a role in the regulation of the translation
           machinery during protein synthesis. p70S6K also plays a
           pivotal role in regulating cell size and glucose
           homeostasis. Its targets include S6, the translation
           initiation factor eIF3, and the insulin receptor
           substrate IRS-1, among others. Mammals contain two
           isoforms of p70S6K, named S6K1 and S6K2 (or S6K-beta).
          Length = 323

 Score = 62.9 bits (153), Expect = 1e-10
 Identities = 61/220 (27%), Positives = 99/220 (45%), Gaps = 40/220 (18%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P IV L+  F     + L+ E++  G L+  L  + I +       Y+  +   + +LH 
Sbjct: 60  PFIVDLIYAFQTGGKLYLILEYLSGGELFMHLEREGIFME-DTACFYLSEISLALEHLHQ 118

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPE-VASRWYRAPELLYASR 458
           + I++RDLKP N+L+D  G +K+ DFGL +    E  G  T     +  Y APE+L   R
Sbjct: 119 QGIIYRDLKPENILLDAQGHVKLTDFGLCKESIHE--GTVTHTFCGTIEYMAPEIL--MR 174

Query: 459 C-YDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLH-KLGTPTEDSWPGLKDLPDY 516
             + ++VD W++G ++ +M T AP F  E+  + +  +L  KL  P              
Sbjct: 175 SGHGKAVDWWSLGALMYDMLTGAPPFTAENRKKTIDKILKGKLNLP-------------- 220

Query: 517 NKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRL 556
                            P  +P+  DL+ KLL  +   RL
Sbjct: 221 -----------------PYLTPEARDLLKKLLKRNPSSRL 243


>gnl|CDD|173644 cd05079, PTKc_Jak1_rpt2, Catalytic (repeat 2) domain of the Protein
           Tyrosine Kinase, Janus kinase 1.  Protein Tyrosine
           Kinase (PTK) family; Janus kinase 1 (Jak1); catalytic
           (c) domain (repeat 2). The PTKc family is part of a
           larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Jak1 is a member of the
           Janus kinase (Jak) subfamily of proteins, which are
           cytoplasmic (or nonreceptor) tyr kinases containing an
           N-terminal FERM domain, followed by a Src homology 2
           (SH2) domain, a pseudokinase domain, and a C-terminal
           tyr kinase domain. Jaks are crucial for cytokine
           receptor signaling. They are activated by
           autophosphorylation upon cytokine-induced receptor
           aggregation, and subsequently trigger downstream
           signaling events such as the phosphorylation of signal
           transducers and activators of transcription (STATs).
           Jak1 is widely expressed in many tissues. Many cytokines
           are dependent on Jak1 for signaling, including those
           that use the shared receptor subunits common gamma chain
           (IL-2, IL-4, IL-7, IL-9, IL-15, IL-21) and gp130 (IL-6,
           IL-11, oncostatin M, G-CSF, and IFNs, among others). The
           many varied interactions of Jak1 and its ubiquitous
           expression suggest many biological roles. Jak1 is
           important in neurological development, as well as in
           lymphoid development and function. It also plays a role
           in the pathophysiology of cardiac hypertrophy and heart
           failure. A mutation in the ATP-binding site of Jak1 was
           identified in a human uterine leiomyosarcoma cell line,
           resulting in defective cytokine induction and antigen
           presentation, thus allowing the tumor to evade the
           immune system.
          Length = 284

 Score = 62.3 bits (151), Expect = 1e-10
 Identities = 47/152 (30%), Positives = 74/152 (48%), Gaps = 14/152 (9%)

Query: 358 LVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDK 416
           L+ E + SG L E L   K  + +     Y   + KG+ YL  +  +HRDL   N+L++ 
Sbjct: 85  LIMEFLPSGSLKEYLPRNKNKINLKQQLKYAVQICKGMDYLGSRQYVHRDLAARNVLVES 144

Query: 417 AGILKIADFGLARSFDVERWGQYTP----EVASRWYRAPELLYASRCYDQSVDLWAVGCI 472
              +KI DFGL ++ + ++   YT     +    WY APE L  S+ Y  S D+W+ G  
Sbjct: 145 EHQVKIGDFGLTKAIETDK-EYYTVKDDLDSPVFWY-APECLIQSKFYIAS-DVWSFGVT 201

Query: 473 LGEMYTNAPLFPGESDIEQLAMVLHKLGTPTE 504
           L E+ T       +S+   + + L  +G PT 
Sbjct: 202 LYELLTYC-----DSESSPMTLFLKMIG-PTH 227


>gnl|CDD|173641 cd05072, PTKc_Lyn, Catalytic domain of the Protein Tyrosine Kinase,
           Lyn.  Protein Tyrosine Kinase (PTK) family; Lyn kinase;
           catalytic (c) domain. The PTKc family is part of a
           larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Lyn is a member of the
           Src subfamily of proteins, which are cytoplasmic (or
           non-receptor) tyr kinases. Src kinases contain an
           N-terminal SH4 domain with a myristoylation site,
           followed by SH3 and SH2 domains, a tyr kinase domain,
           and a regulatory C-terminal region containing a
           conserved tyr. They are activated by autophosphorylation
           at the tyr kinase domain, but are negatively regulated
           by phosphorylation at the C-terminal tyr by Csk
           (C-terminal Src Kinase). Src proteins are involved in
           signaling pathways that regulate cytokine and growth
           factor responses, cytoskeleton dynamics, cell
           proliferation, survival, and differentiation. Lyn is
           expressed in B lymphocytes and myeloid cells. It
           exhibits both positive and negative regulatory roles in
           B cell receptor (BCR) signaling. Lyn, as well as Fyn and
           Blk, promotes B cell activation by phosphorylating ITAMs
           (immunoreceptor tyr activation motifs) in CD19 and in Ig
           components of BCR. It negatively regulates signaling by
           its unique ability to phosphorylate ITIMs
           (immunoreceptor tyr inhibition motifs) in cell surface
           receptors like CD22 and CD5. Lyn also plays an important
           role in G-CSF receptor signaling by phosphorylating a
           variety of adaptor molecules.
          Length = 261

 Score = 62.0 bits (150), Expect = 1e-10
 Identities = 44/173 (25%), Positives = 91/173 (52%), Gaps = 10/173 (5%)

Query: 342 QIVKLLDFFPDQDTVCLVFEHMDSG--LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           ++V+L      ++ + ++ E+M  G  L  L  D+   + +P +  +   + +G++Y+  
Sbjct: 62  KLVRLYAVVTKEEPIYIITEYMAKGSLLDFLKSDEGGKVLLPKLIDFSAQIAEGMAYIER 121

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW---YRAPELLYA 456
           K  +HRDL+ AN+L+ ++ + KIADFGLAR  +     +YT    +++   + APE +  
Sbjct: 122 KNYIHRDLRAANVLVSESLMCKIADFGLARVIEDN---EYTAREGAKFPIKWTAPEAINF 178

Query: 457 SRCYDQSVDLWAVGCILGEMYTNAPL-FPGESDIEQLAMVLHKLGTPTEDSWP 508
              +    D+W+ G +L E+ T   + +PG S+ + ++ +      P  ++ P
Sbjct: 179 G-SFTIKSDVWSFGILLYEIVTYGKIPYPGMSNSDVMSALQRGYRMPRMENCP 230


>gnl|CDD|173711 cd05621, STKc_ROCK2, Catalytic domain of the Protein
           Serine/Threonine Kinase, Rho-associated coiled-coil
           containing protein kinase 2.  Serine/Threonine Kinases
           (STKs), ROCK subfamily, ROCK2 (or ROK-alpha) isoform,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The ROCK subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. ROCK contains an
           N-terminal extension, a catalytic kinase domain, and a
           C-terminal extension, which contains a coiled-coil
           region encompassing a Rho-binding domain (RBD) and a
           pleckstrin homology (PH) domain. ROCK is auto-inhibited
           by the RBD and PH domain interacting with the catalytic
           domain, and is activated via interaction with Rho
           GTPases. ROCK2 was the first identified target of
           activated RhoA, and was found to play a role in stress
           fiber and focal adhesion formation. It is prominently
           expressed in the brain, heart, and skeletal muscles. It
           is implicated in vascular and neurological disorders,
           such as hypertension and vasospasm of the coronary and
           cerebral arteries. ROCK2 is also activated by caspase-2
           cleavage, resulting in thrombin-induced microparticle
           generation in response to cell activation. Mice
           deficient in ROCK2 show intrauterine growth retardation
           and embryonic lethality because of placental
           dysfunction.
          Length = 370

 Score = 62.7 bits (152), Expect = 1e-10
 Identities = 48/157 (30%), Positives = 75/157 (47%), Gaps = 10/157 (6%)

Query: 337 FSFLPQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPH--VKTYMQMLLKG 393
           F+  P +V+L   F D   + +V E+M  G L  L+ +      +P    K Y   ++  
Sbjct: 99  FANSPWVVQLFCAFQDDKYLYMVMEYMPGGDLVNLMSN----YDVPEKWAKFYTAEVVLA 154

Query: 394 VSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPEL 453
           +  +H   ++HRD+KP N+L+DK G LK+ADFG     D     +    V +  Y +PE+
Sbjct: 155 LDAIHSMGLIHRDVKPDNMLLDKHGHLKLADFGTCMKMDETGMVRCDTAVGTPDYISPEV 214

Query: 454 LYAS---RCYDQSVDLWAVGCILGEMYTNAPLFPGES 487
           L +      Y +  D W+VG  L EM      F  +S
Sbjct: 215 LKSQGGDGYYGRECDWWSVGVFLFEMLVGDTPFYADS 251


>gnl|CDD|132980 cd06649, PKc_MEK2, Catalytic domain of the dual-specificity Protein
           Kinase, MAP/ERK Kinase 2.  Protein kinases (PKs),
           MAP/ERK Kinase (MEK) 2 subfamily, catalytic (c) domain.
           PKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine or tyrosine residues on
           protein substrates. The MEK subfamily is part of a
           larger superfamily that includes the catalytic domains
           of other protein serine/threonine kinases, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. The mitogen-activated protein (MAP) kinase
           signaling pathways are important mediators of cellular
           responses to extracellular signals. The pathways involve
           a triple kinase core cascade comprising the MAP kinase
           (MAPK), which is phosphorylated and activated by a MAPK
           kinase (MAPKK or MKK), which itself is phosphorylated
           and activated by a MAPK kinase kinase (MAPKKK or MKKK).
           MEK2 is a dual-specificity PK that phosphorylates and
           activates the downstream targets, extracellular
           signal-regulated kinase (ERK) 1 and ERK2, on specific
           threonine and tyrosine residues. The ERK cascade starts
           with extracellular signals including growth factors,
           hormones, and neurotransmitters, which act through
           receptors and ion channels to initiate intracellular
           signaling that leads to the activation at the MAPKKK
           (Raf-1 or MOS) level, which leads to the transmission of
           signals to MEK2, and finally to ERK1/2. The ERK cascade
           plays an important role in cell proliferation,
           differentiation, oncogenic transformation, and cell
           cycle control, as well as in apoptosis and cell survival
           under certain conditions. Gain-of-function mutations in
           genes encoding  ERK cascade proteins, including MEK2,
           cause cardiofaciocutaneous (CFC) syndrome, a condition
           leading to multiple congenital anomalies and mental
           retardation in patients.
          Length = 331

 Score = 62.4 bits (151), Expect = 2e-10
 Identities = 57/182 (31%), Positives = 89/182 (48%), Gaps = 21/182 (11%)

Query: 305 EHMDSGLWELLHDKKIHLTIPH------IKTYTYLSDVFSFLPQIVKLLDFFPDQDTVCL 358
           +H  SGL  ++  K IHL I        I+    L +  S  P IV     F     + +
Sbjct: 25  QHKPSGL--IMARKLIHLEIKPAIRNQIIRELQVLHECNS--PYIVGFYGAFYSDGEISI 80

Query: 359 VFEHMDSG-LWELLHDKKIHLTIPH--VKTYMQMLLKGVSYLHGKF-IMHRDLKPANLLI 414
             EHMD G L ++L + K    IP   +      +L+G++YL  K  IMHRD+KP+N+L+
Sbjct: 81  CMEHMDGGSLDQVLKEAK---RIPEEILGKVSIAVLRGLAYLREKHQIMHRDVKPSNILV 137

Query: 415 DKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILG 474
           +  G +K+ DFG++          +   V +R Y +PE L  +  Y    D+W++G  L 
Sbjct: 138 NSRGEIKLCDFGVSGQLIDSMANSF---VGTRSYMSPERLQGTH-YSVQSDIWSMGLSLV 193

Query: 475 EM 476
           E+
Sbjct: 194 EL 195


>gnl|CDD|173759 cd08219, STKc_Nek3, Catalytic domain of the Protein
           Serine/Threonine Kinase, Never In Mitosis gene A-related
           kinase 3.  Serine/Threonine Kinases (STKs), Never In
           Mitosis gene A (NIMA)-related kinase 3 (Nek3) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The Nek3 subfamily is
           one of a family of 11 different Neks (Nek1-11) that are
           involved in cell cycle control. The Nek family is part
           of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. Nek3 is primarily
           localized in the cytoplasm and shows no cell
           cycle-dependent changes in its activity. It is present
           in the axons of neurons and affects morphogenesis and
           polarity through its regulation of microtubule
           acetylation. Nek3 modulates the signaling of the
           prolactin receptor through its activation of Vav2 and
           contributes to prolactin-mediated motility of breast
           cancer cells.
          Length = 255

 Score = 61.1 bits (148), Expect = 2e-10
 Identities = 44/143 (30%), Positives = 75/143 (52%), Gaps = 10/143 (6%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHL----TIPHVKTYMQMLLKGVS 395
           P IV   + F     + +V E+ D G L + +  ++  L    TI  ++ ++QM L GV 
Sbjct: 58  PNIVAFKESFEADGHLYIVMEYCDGGDLMQKIKLQRGKLFPEDTI--LQWFVQMCL-GVQ 114

Query: 396 YLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLY 455
           ++H K ++HRD+K  N+ + + G +K+ DFG AR   +   G Y        Y  P  ++
Sbjct: 115 HIHEKRVLHRDIKSKNIFLTQNGKVKLGDFGSARL--LTSPGAYACTYVGTPYYVPPEIW 172

Query: 456 ASRCYDQSVDLWAVGCILGEMYT 478
            +  Y+   D+W++GCIL E+ T
Sbjct: 173 ENMPYNNKSDIWSLGCILYELCT 195


>gnl|CDD|173689 cd05598, STKc_LATS, Catalytic domain of the Protein
           Serine/Threonine Kinase, Large Tumor Suppressor.
           Serine/Threonine Kinases (STKs), Large Tumor Suppressor
           (LATS) subfamily, catalytic (c) domain. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           LATS subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. LATS was originally identified in Drosophila
           using a screen for genes whose inactivation led to
           overproliferation of cells. In tetrapods, there are two
           LATS isoforms, LATS1 and LATS2. Inactivation of LATS1 in
           mice results in the development of various tumors,
           including sarcomas and ovarian cancer. LATS functions as
           a tumor suppressor and is implicated in cell cycle
           regulation.
          Length = 376

 Score = 62.1 bits (151), Expect = 2e-10
 Identities = 67/270 (24%), Positives = 94/270 (34%), Gaps = 88/270 (32%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
             +VKL   F D+D +  V +++  G +  LL    I       + Y+  L   +  +H 
Sbjct: 61  EWVVKLYYSFQDKDNLYFVMDYIPGGDMMSLLIRLGI-FEEDLARFYIAELTCAIESVHK 119

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWG-------------QYTPEVASR 446
              +HRD+KP N+LID+ G +K+ DFGL   F   RW              Q + E +  
Sbjct: 120 MGFIHRDIKPDNILIDRDGHIKLTDFGLCTGF---RWTHDSKYYQKGDHHRQDSMEPSEE 176

Query: 447 W--------------------------------YRAPELLYASRCYDQSVDLWAVGCILG 474
           W                                Y APE+L     Y Q  D W+VG IL 
Sbjct: 177 WSEIDRCRLKPLERRRKRQHQRCLAHSLVGTPNYIAPEVL-LRTGYTQLCDWWSVGVILY 235

Query: 475 EMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKITFAPSDPVPWSTML- 533
           EM    P F  +              TP E             K+       + W T L 
Sbjct: 236 EMLVGQPPFLAD--------------TPAETQL----------KV-------INWETTLH 264

Query: 534 ----PNASPDTLDLISKLLLYDGQKRLPAN 559
                  S +  DLI +L     + RL  N
Sbjct: 265 IPSQAKLSREASDLILRLCC-GAEDRLGKN 293


>gnl|CDD|173725 cd06608, STKc_myosinIII_like, Catalytic domain of Class III
           myosin-like Protein Serine/Threonine Kinases.
           Serine/threonine kinases (STKs), Class III myosin-like
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           class III myosin-like subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. Class III myosins are motor
           proteins with an N-terminal kinase catalytic domain and
           a C-terminal actin-binding motor domain. Class III
           myosins are present in the photoreceptors of
           invertebrates and vertebrates and in the auditory hair
           cells of mammals. The kinase domain of myosin III can
           phosphorylate several cytoskeletal proteins,
           conventional myosin regulatory light chains, and can
           autophosphorylate the C-terminal motor domain. Myosin
           III may play an important role in maintaining the
           structural integrity of photoreceptor cell microvilli.
           It may also function as a cargo carrier during
           light-dependent translocation, in photoreceptor cells,
           of proteins such as transducin and arrestin. The
           Drosophila class III myosin, called NinaC (Neither
           inactivation nor afterpotential protein C), is critical
           in normal adaptation and termination of photoresponse.
           Vertebrates contain two isoforms of class III myosin,
           IIIA and IIIB. This subfamily also includes mammalian
           NIK-like embryo-specific kinase (NESK), Traf2- and
           Nck-interacting kinase (TNIK), mitogen-activated protein
           kinase (MAPK) kinase kinase kinase 4 (MAPKKKK4 or
           MAP4K4) and MAPKKKK6 (or MAP4K6). MAP4Ks are involved in
           some MAPK signaling pathways by activating a MAPK kinase
           kinase (MAPKKK or MAP3K or MKKK). Each MAPK cascade is
           activated either by a small GTP-binding protein or by an
           adaptor protein, which transmits the signal either
           directly to a MAP3K to start the triple kinase core
           cascade or indirectly through a mediator kinase, a
           MAP4K. MAPK signaling cascades are important in
           mediating cellular responses to extracellular signals.
          Length = 275

 Score = 61.1 bits (149), Expect = 3e-10
 Identities = 37/138 (26%), Positives = 66/138 (47%), Gaps = 9/138 (6%)

Query: 352 DQDTVCLVFEHMDSG----LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDL 407
           + D + LV E    G    L + L  K   L    +   ++  L+G++YLH   ++HRD+
Sbjct: 80  NDDQLWLVMELCGGGSVTDLVKGLRKKGKRLKEEWIAYILRETLRGLAYLHENKVIHRDI 139

Query: 408 KPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELL----YASRCYDQS 463
           K  N+L+ K   +K+ DFG++   D    G+    + + ++ APE++         YD  
Sbjct: 140 KGQNILLTKNAEVKLVDFGVSAQLDSTL-GRRNTFIGTPYWMAPEVIACDEQPDASYDAR 198

Query: 464 VDLWAVGCILGEMYTNAP 481
            D+W++G    E+    P
Sbjct: 199 SDVWSLGITAIELADGKP 216



 Score = 31.5 bits (72), Expect = 0.91
 Identities = 12/22 (54%), Positives = 17/22 (77%)

Query: 1  QGAHGHVLRARNKSTNQIVAIK 22
          +G +G V +AR+K T Q+VAIK
Sbjct: 16 EGTYGKVYKARHKKTGQLVAIK 37


>gnl|CDD|133204 cd05073, PTKc_Hck, Catalytic domain of the Protein Tyrosine Kinase,
           Hematopoietic cell kinase.  Protein Tyrosine Kinase
           (PTK) family; Hematopoietic cell kinase (Hck); catalytic
           (c) domain. The PTKc family is part of a larger
           superfamily that includes the catalytic domains of other
           kinases such as protein serine/threonine kinases, RIO
           kinases, and phosphoinositide 3-kinase (PI3K). PTKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to tyrosine (tyr) residues in protein substrates.
           Hck is a member of the Src subfamily of proteins, which
           are cytoplasmic (or non-receptor) tyr kinases. Src
           kinases contain an N-terminal SH4 domain with a
           myristoylation site, followed by SH3 and SH2 domains, a
           tyr kinase domain, and a regulatory C-terminal region
           containing a conserved tyr. They are activated by
           autophosphorylation at the tyr kinase domain, but are
           negatively regulated by phosphorylation at the
           C-terminal tyr by Csk (C-terminal Src Kinase). Src
           proteins are involved in signaling pathways that
           regulate cytokine and growth factor responses,
           cytoskeleton dynamics, cell proliferation, survival, and
           differentiation. Hck is present in myeloid and lymphoid
           cells that play a role in the development of cancer. It
           may be important in the oncogenic signaling of the
           protein Tel-Abl, which induces a chronic myelogenous
           leukemia (CML)-like disease. Hck also acts as a negative
           regulator of granulocyte colony-stimulating factor
           (G-CSF)-induced proliferation of granulocytic
           precursors, suggesting a possible role in the
           development of acute myeloid leukemia (AML). In
           addition, Hck is essential in regulating the
           degranulation of polymorphonuclear leukocytes (PMNs).
           Genetic polymorphisms affect the expression level of
           Hck, which affects PMN mediator release and influences
           the development of chronic obstructive pulmonary disease
           (COPD).
          Length = 260

 Score = 60.8 bits (147), Expect = 3e-10
 Identities = 44/162 (27%), Positives = 82/162 (50%), Gaps = 10/162 (6%)

Query: 353 QDTVCLVFEHMDSG--LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPA 410
           ++ + ++ E M  G  L  L  D+     +P +  +   + +G++++  +  +HRDL+ A
Sbjct: 72  KEPIYIITEFMAKGSLLDFLKSDEGSKQPLPKLIDFSAQIAEGMAFIEQRNYIHRDLRAA 131

Query: 411 NLLIDKAGILKIADFGLARSF-DVERWGQYTPEVASRWYRAPELL-YASRCYDQSVDLWA 468
           N+L+  + + KIADFGLAR   D E   +   +   +W  APE + + S  +    D+W+
Sbjct: 132 NILVSASLVCKIADFGLARVIEDNEYTAREGAKFPIKW-TAPEAINFGS--FTIKSDVWS 188

Query: 469 VGCILGEM--YTNAPLFPGESDIEQLAMVLHKLGTPTEDSWP 508
            G +L E+  Y   P +PG S+ E +  +      P  ++ P
Sbjct: 189 FGILLMEIVTYGRIP-YPGMSNPEVIRALERGYRMPRPENCP 229


>gnl|CDD|132971 cd06640, STKc_MST4, Catalytic domain of the Protein
           Serine/Threonine Kinase, Mammalian Ste20-like protein
           kinase 4.  Serine/threonine kinases (STKs), mammalian
           Ste20-like protein kinase 4 (MST4) subfamily, catalytic
           (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The MST4 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. MST4 is sometimes
           referred to as MASK (MST3 and SOK1-related kinase). It
           plays a role in mitogen-activated protein kinase (MAPK)
           signaling during cytoskeletal rearrangement,
           morphogenesis, and apoptosis. It influences cell growth
           and transformation by modulating the extracellular
           signal-regulated kinase (ERK) pathway. MST4 may also
           play a role in tumor formation and progression. It
           localizes in the Golgi apparatus by interacting with the
           Golgi matrix protein GM130 and may play a role in cell
           migration.
          Length = 277

 Score = 61.2 bits (148), Expect = 3e-10
 Identities = 40/124 (32%), Positives = 69/124 (55%), Gaps = 7/124 (5%)

Query: 382 HVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTP 441
            + T ++ +LKG+ YLH +  +HRD+K AN+L+ + G +K+ADFG+A      +  + T 
Sbjct: 102 QIATMLKEILKGLDYLHSEKKIHRDIKAANVLLSEQGDVKLADFGVAGQLTDTQIKRNT- 160

Query: 442 EVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLH--KL 499
            V + ++ APE++  S  YD   D+W++G    E+   A   P  SD+  + ++    K 
Sbjct: 161 FVGTPFWMAPEVIQQS-AYDSKADIWSLGITAIEL---AKGEPPNSDMHPMRVLFLIPKN 216

Query: 500 GTPT 503
             PT
Sbjct: 217 NPPT 220


>gnl|CDD|132976 cd06645, STKc_MAP4K3, Catalytic domain of the Protein
           Serine/Threonine Kinase, Mitogen-activated protein
           kinase kinase kinase kinase 3.  Serine/threonine kinases
           (STKs), mitogen-activated protein kinase (MAPK) kinase
           kinase kinase 3 (MAPKKKK3 or MAP4K3) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The MAP4K3 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. Members of this
           subfamily contain an N-terminal catalytic domain and a
           C-terminal citron homology (CNH) regulatory domain,
           similar to MAP4K4/6. MAP4Ks are involved in some MAPK
           signaling pathways that are important in mediating
           cellular responses to extracellular signals by
           activating a MAPK kinase kinase (MAPKKK or MAP3K or
           MKKK). Each MAPK cascade is activated either by a small
           GTP-binding protein or by an adaptor protein, which
           transmits the signal either directly to a MAP3K to start
           the triple kinase core cascade or indirectly through a
           mediator kinase, a MAP4K. MAP4K3 plays a role in the
           nutrient-responsive pathway of mTOR (mammalian target of
           rapamycin) signaling. MAP4K3 is required in the
           activation of S6 kinase by amino acids and for the
           phosphorylation of the mTOR-regulated inhibitor of
           eukaryotic initiation factor 4E. mTOR regulates ribosome
           biogenesis and protein translation, and is frequently
           deregulated in cancer.
          Length = 267

 Score = 60.8 bits (147), Expect = 3e-10
 Identities = 52/181 (28%), Positives = 82/181 (45%), Gaps = 22/181 (12%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
             IV     +  +D + +  E    G  + ++     L+   +    +  L+G+ YLH K
Sbjct: 66  SNIVAYFGSYLRRDKLWICMEFCGGGSLQDIYHVTGPLSESQIAYVSRETLQGLYYLHSK 125

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASR-------WYRAPEL 453
             MHRD+K AN+L+   G +K+ADFG++         Q T  +A R       ++ APE+
Sbjct: 126 GKMHRDIKGANILLTDNGHVKLADFGVS--------AQITATIAKRKSFIGTPYWMAPEV 177

Query: 454 LYASR--CYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLK 511
               R   Y+Q  D+WAVG    E+   A L P   D+  +  +   L T +    P LK
Sbjct: 178 AAVERKGGYNQLCDIWAVGITAIEL---AELQPPMFDLHPMRALF--LMTKSNFQPPKLK 232

Query: 512 D 512
           D
Sbjct: 233 D 233


>gnl|CDD|133229 cd05098, PTKc_FGFR1, Catalytic domain of the Protein Tyrosine
           Kinase, Fibroblast Growth Factor Receptor 1.  Protein
           Tyrosine Kinase (PTK) family; Fibroblast Growth Factor
           Receptor 1 (FGFR1); catalytic (c) domain. The PTKc
           family is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. FGFR1 is
           part of the FGFR subfamily, which are receptor tyr
           kinases (RTKs) containing an extracellular
           ligand-binding region with three immunoglobulin-like
           domains, a transmembrane segment, and an intracellular
           catalytic domain. The binding of FGFRs to their ligands,
           the FGFs, results in receptor dimerization and
           activation, and intracellular signaling. The binding of
           FGFs to FGFRs is promiscuous, in that a receptor may be
           activated by several ligands and a ligand may bind to
           more that one type of receptor. Alternative splicing of
           FGFR1 transcripts produces a variety of isoforms, which
           are differentially expressed in cells. FGFR1 binds the
           ligands, FGF1 and FGF2, with high affinity and has also
           been reported to bind FGF4, FGF6, and FGF9. FGFR1
           signaling is critical in the control of cell migration
           during embryo development. It promotes cell
           proliferation in fibroblasts. Nuclear FGFR1 plays a role
           in the regulation of transcription. Mutations,
           insertions or deletions of FGFR1 have been identified in
           patients with Kallman's syndrome (KS), an inherited
           disorder characterized by hypogonadotropic hypogonadism
           and loss of olfaction. Aberrant FGFR1 expression has
           been found in some human cancers including 8P11
           myeloproliferative syndrome (EMS), breast cancer, and
           pancreatic adenocarcinoma.
          Length = 307

 Score = 61.2 bits (148), Expect = 3e-10
 Identities = 41/119 (34%), Positives = 64/119 (53%), Gaps = 11/119 (9%)

Query: 392 KGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW---Y 448
           +G+ YL  K  +HRDL   N+L+ +  ++KIADFGLAR  D+     Y      R    +
Sbjct: 151 RGMEYLASKKCIHRDLAARNVLVTEDNVMKIADFGLAR--DIHHIDYYKKTTNGRLPVKW 208

Query: 449 RAPELLYASRCYDQSVDLWAVGCILGEMYT-NAPLFPGESDIEQLAMVL---HKLGTPT 503
            APE L+  R Y    D+W+ G +L E++T     +PG   +E+L  +L   H++  P+
Sbjct: 209 MAPEALF-DRIYTHQSDVWSFGVLLWEIFTLGGSPYPG-VPVEELFKLLKEGHRMDKPS 265


>gnl|CDD|132986 cd06655, STKc_PAK2, Catalytic domain of the Protein
           Serine/Threonine Kinase, p21-activated kinase 2.
           Serine/threonine kinases (STKs), p21-activated kinase
           (PAK) 2, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The PAK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. PAKs are Rho family GTPase-regulated kinases
           that serve as important mediators in the function of
           Cdc42 (cell division cycle 42) and Rac. PAKs from higher
           eukaryotes are classified into two groups (I and II),
           according to their biochemical and structural features.
           PAK2 belongs to group I. Group I PAKs contain a PBD
           (p21-binding domain) overlapping with an AID
           (autoinhibitory domain), a C-terminal catalytic domain,
           SH3 binding sites and a non-classical SH3 binding site
           for PIX (PAK-interacting exchange factor). PAK2 plays a
           role in pro-apoptotic signaling. It is cleaved and
           activated by caspases leading to morphological changes
           during apoptosis. PAK2 is also activated in response to
           a variety of stresses including DNA damage,
           hyperosmolarity, serum starvation, and contact
           inhibition, and may play a role in coordinating the
           stress response. PAK2 also contributes to cancer cell
           invasion through a mechanism distinct from that of PAK1.
          Length = 296

 Score = 60.9 bits (147), Expect = 4e-10
 Identities = 43/163 (26%), Positives = 82/163 (50%), Gaps = 6/163 (3%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P IV  LD F   D + +V E++  G L +++   +  +    +    +  L+ + +LH 
Sbjct: 76  PNIVNFLDSFLVGDELFVVMEYLAGGSLTDVV--TETCMDEAQIAAVCRECLQALEFLHA 133

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRC 459
             ++HRD+K  N+L+   G +K+ DFG       E+  + +  V + ++ APE++   + 
Sbjct: 134 NQVIHRDIKSDNVLLGMDGSVKLTDFGFCAQITPEQ-SKRSTMVGTPYWMAPEVV-TRKA 191

Query: 460 YDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTP 502
           Y   VD+W++G +  EM    P +  E+ +  L ++    GTP
Sbjct: 192 YGPKVDIWSLGIMAIEMVEGEPPYLNENPLRALYLIATN-GTP 233


>gnl|CDD|173687 cd05596, STKc_ROCK, Catalytic domain of the Protein
           Serine/Threonine Kinase, Rho-associated coiled-coil
           containing protein kinase.  Serine/Threonine Kinases
           (STKs), Rho-associated coiled-coil containing protein
           kinase (ROCK) subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The ROCK subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. ROCK is also referred to as Rho-associated
           kinase or simply as Rho kinase. It contains an
           N-terminal extension, a catalytic kinase domain, and a
           long C-terminal extension, which contains a coiled-coil
           region encompassing a Rho-binding domain (RBD) and a
           pleckstrin homology (PH) domain. ROCK is auto-inhibited
           by the RBD and PH domain interacting with the catalytic
           domain. It is activated via interaction with Rho GTPases
           and is involved in many cellular functions including
           contraction, adhesion, migration, motility,
           proliferation, and apoptosis. The ROCK subfamily
           consists of two isoforms, ROCK1 and ROCK2, which may be
           functionally redundant in some systems, but exhibit
           different tissue distributions. Both isoforms are
           ubiquitously expressed in most tissues, but ROCK2 is
           more prominent in brain and skeletal muscle while ROCK1
           is more pronounced in the liver, testes, and kidney.
           Studies in knockout mice result in different phenotypes,
           suggesting that the two isoforms do not compensate for
           each other during embryonic development.
          Length = 370

 Score = 61.3 bits (149), Expect = 4e-10
 Identities = 47/153 (30%), Positives = 72/153 (47%), Gaps = 10/153 (6%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPH--VKTYMQMLLKGVSYL 397
             IV+L   F D   + +V E+M  G L  L+ +  I    P    + Y   ++  +  +
Sbjct: 103 EWIVQLHYAFQDDKYLYMVMEYMPGGDLVNLMSNYDI----PEKWARFYTAEVVLALDAI 158

Query: 398 HGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYAS 457
           H    +HRD+KP N+L+DK+G LK+ADFG     D     +    V +  Y +PE+L + 
Sbjct: 159 HSMGFIHRDVKPDNMLLDKSGHLKLADFGTCMKMDANGMVRCDTAVGTPDYISPEVLKSQ 218

Query: 458 RC---YDQSVDLWAVGCILGEMYTNAPLFPGES 487
                Y +  D W+VG  L EM      F  +S
Sbjct: 219 GGDGYYGRECDWWSVGVFLYEMLVGDTPFYADS 251


>gnl|CDD|240344 PTZ00283, PTZ00283, serine/threonine protein kinase; Provisional.
          Length = 496

 Score = 61.8 bits (150), Expect = 4e-10
 Identities = 53/177 (29%), Positives = 92/177 (51%), Gaps = 44/177 (24%)

Query: 386 YMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLAR------SFDVERWGQY 439
           ++Q+LL  V ++H K ++HRD+K AN+L+   G++K+ DFG ++      S DV R    
Sbjct: 149 FIQVLL-AVHHVHSKHMIHRDIKSANILLCSNGLVKLGDFGFSKMYAATVSDDVGRTFCG 207

Query: 440 TPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKL 499
           TP     +Y APE ++  + Y +  D++++G +L E+ T    F GE ++E+   V+HK 
Sbjct: 208 TP-----YYVAPE-IWRRKPYSKKADMFSLGVLLYELLTLKRPFDGE-NMEE---VMHK- 256

Query: 500 GTPTEDSWPGLKDLPDYNKITFAPS-DPVPWSTMLPNASPDTLDLISKLLLYDGQKR 555
                               T A   DP+P     P+ SP+  ++++ LL  D ++R
Sbjct: 257 --------------------TLAGRYDPLP-----PSISPEMQEIVTALLSSDPKRR 288


>gnl|CDD|173645 cd05084, PTKc_Fes, Catalytic domain of the Protein Tyrosine Kinase,
           Fes.  Protein Tyrosine Kinase (PTK) family; Fes (or Fps)
           kinase subfamily; catalytic (c) domain. The PTKc family
           is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Fes
           subfamily proteins are cytoplasmic (or nonreceptor) tyr
           kinases containing an N-terminal region with FCH
           (Fes/Fer/CIP4 homology) and coiled-coil domains,
           followed by a SH2 domain, and a C-terminal catalytic
           domain. The genes for Fes (feline sarcoma) and Fps
           (Fujinami poultry sarcoma) were first isolated from
           tumor-causing retroviruses. The viral oncogenes encode
           chimeric Fes proteins consisting of Gag sequences at the
           N-termini, resulting in unregulated tyr kinase activity.
           Fes kinase is expressed in myeloid, vascular
           endothelial, epithelial, and neuronal cells. It plays
           important roles in cell growth and differentiation,
           angiogenesis, inflammation and immunity, and
           cytoskeletal regulation. A recent study implicates Fes
           kinase as a tumor suppressor in colorectal cancer.
          Length = 252

 Score = 60.0 bits (145), Expect = 4e-10
 Identities = 41/144 (28%), Positives = 68/144 (47%), Gaps = 11/144 (7%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P IV+L+     +  + +V E +  G     L  +   L +  +   ++    G+ YL  
Sbjct: 53  PNIVRLIGVCTQKQPIYIVMELVQGGDFLTFLRTEGPRLKVKELIQMVENAAAGMEYLES 112

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTP-----EVASRWYRAPELL 454
           K  +HRDL   N L+ +  +LKI+DFG++R    E  G Y       ++  +W  APE L
Sbjct: 113 KHCIHRDLAARNCLVTEKNVLKISDFGMSRE---EEDGVYASTGGMKQIPVKW-TAPEAL 168

Query: 455 YASRCYDQSVDLWAVGCILGEMYT 478
              R Y    D+W+ G +L E ++
Sbjct: 169 NYGR-YSSESDVWSFGILLWEAFS 191


>gnl|CDD|132951 cd06620, PKc_MAPKK_Byr1_like, Catalytic domain of fungal Byr1-like
           dual-specificity MAP kinase kinases.  Protein kinases
           (PKs), MAP kinase kinase (MAPKK) subfamily, fungal
           Byr1-like proteins, catalytic (c) domain. PKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine or tyrosine residues on protein
           substrates. The MAPKK subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein serine/threonine kinases, protein tyrosine
           kinases, RIO kinases, aminoglycoside phosphotransferase,
           choline kinase, and phosphoinositide 3-kinase. The
           mitogen-activated protein (MAP) kinase signaling
           pathways are important mediators of cellular responses
           to extracellular signals. The pathways involve a triple
           kinase core cascade comprising of the MAP kinase (MAPK),
           which is phosphorylated and activated by a MAPK kinase
           (MAPKK or MKK), which itself is phosphorylated and
           activated by a MAPK kinase kinase (MAPKKK or MKKK).
           Members of this group include the MAPKKs Byr1 from
           Schizosaccharomyces pombe, FUZ7 from Ustilago maydis,
           and related proteins. Byr1 phosphorylates its downstream
           target, the MAPK Spk1, and is regulated by the MAPKKK
           Byr2. The Spk1 cascade is pheromone-responsive and is
           essential for sporulation and sexual differentiation in
           fission yeast. FUZ7 phosphorylates and activates its
           target, the MAPK Crk1, which is required in mating and
           virulence in U. maydis.
          Length = 284

 Score = 60.6 bits (147), Expect = 4e-10
 Identities = 39/150 (26%), Positives = 76/150 (50%), Gaps = 17/150 (11%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P IV     F +++ +C+  E MD G  + ++ K   + +  +      +++G++YL+  
Sbjct: 63  PYIVSFYGAFLNENNICMCMEFMDCGSLDRIYKKGGPIPVEILGKIAVAVVEGLTYLYNV 122

Query: 401 F-IMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW-----YRAPELL 454
             IMHRD+KP+N+L++  G +K+ DFG++        G+    +A  +     Y +PE +
Sbjct: 123 HRIMHRDIKPSNILVNSRGQIKLCDFGVS--------GELINSIADTFVGTSTYMSPERI 174

Query: 455 YASRCYDQSVDLWAVGCILGEMYTNAPLFP 484
              + Y    D+W++G  + E+      FP
Sbjct: 175 QGGK-YTVKSDVWSLGISIIELALGK--FP 201


>gnl|CDD|173652 cd05100, PTKc_FGFR3, Catalytic domain of the Protein Tyrosine
           Kinase, Fibroblast Growth Factor Receptor 3.  Protein
           Tyrosine Kinase (PTK) family; Fibroblast Growth Factor
           Receptor 3 (FGFR3); catalytic (c) domain. The PTKc
           family is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. FGFR3 is
           part of the FGFR subfamily, which are receptor tyr
           kinases (RTKs) containing an extracellular
           ligand-binding region with three immunoglobulin-like
           domains, a transmembrane segment, and an intracellular
           catalytic domain. The binding of FGFRs to their ligands,
           the FGFs, results in receptor dimerization and
           activation, and intracellular signaling. The binding of
           FGFs to FGFRs is promiscuous, in that a receptor may be
           activated by several ligands and a ligand may bind to
           more that one type of receptor. Many FGFR3 splice
           variants have been reported with the IIIb and IIIc
           isoforms being the predominant forms. FGFR3 IIIc is the
           isoform expressed in chondrocytes, the cells affected in
           dwarfism, while IIIb is expressed in epithelial cells.
           FGFR3 ligands include FGF1, FGF2, FGF4, FGF8, FGF9, and
           FGF23. It is a negative regulator of long bone growth.
           In the cochlear duct and in the lens, FGFR3 is involved
           in differentiation while it appears to have a role in
           cell proliferation in epithelial cells. Germline
           mutations in FGFR3 are associated with skeletal
           disorders including several forms of dwarfism. Some
           missense mutations are associated with multiple myeloma
           and carcinomas of the bladder and cervix. Overexpression
           of FGFR3 is found in thyroid carcinoma.
          Length = 334

 Score = 60.8 bits (147), Expect = 5e-10
 Identities = 41/118 (34%), Positives = 63/118 (53%), Gaps = 11/118 (9%)

Query: 392 KGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW---Y 448
           +G+ YL  +  +HRDL   N+L+ +  ++KIADFGLAR  DV     Y      R    +
Sbjct: 145 RGMEYLASQKCIHRDLAARNVLVTEDNVMKIADFGLAR--DVHNIDYYKKTTNGRLPVKW 202

Query: 449 RAPELLYASRCYDQSVDLWAVGCILGEMYTNAPL-FPGESDIEQLAMVL---HKLGTP 502
            APE L+  R Y    D+W+ G +L E++T     +PG   +E+L  +L   H++  P
Sbjct: 203 MAPEALF-DRVYTHQSDVWSFGVLLWEIFTLGGSPYPG-IPVEELFKLLKEGHRMDKP 258


>gnl|CDD|132950 cd06619, PKc_MKK5, Catalytic domain of the dual-specificity Protein
           Kinase, MAP kinase kinase 5.  Protein kinases (PKs), MAP
           kinase kinase 5 (MKK5) subfamily, catalytic (c) domain.
           PKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine or tyrosine residues on
           protein substrates. The MKK5 subfamily is part of a
           larger superfamily that includes the catalytic domains
           of other protein serine/threonine kinases, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. The mitogen-activated protein (MAP) kinase
           signaling pathways are important mediators of cellular
           responses to extracellular signals. The pathways involve
           a triple kinase core cascade comprising of the MAP
           kinase (MAPK), which is phosphorylated and activated by
           a MAPK kinase (MAPKK or MKK), which itself is
           phosphorylated and activated by a MAPK kinase kinase
           (MAPKKK or MKKK). MKK5, also referred to as MEK5, is a
           dual-specificity PK that phosphorylates its downstream
           target, extracellular signal-regulated kinase 5 (ERK5),
           on specific threonine and tyrosine residues. MKK5 is
           activated by MEKK2 and MEKK3 in response to mitogenic
           and stress stimuli. The ERK5 cascade promotes cell
           proliferation, differentiation, neuronal survival, and
           neuroprotection. This cascade plays an essential role in
           heart development. Mice deficient in either ERK5 or MKK5
           die around embryonic day 10 due to cardiovascular
           defects including underdevelopment of the myocardium. In
           addition, MKK5 is associated with metastasis and
           unfavorable prognosis in prostate cancer.
          Length = 279

 Score = 60.3 bits (146), Expect = 5e-10
 Identities = 39/138 (28%), Positives = 70/138 (50%), Gaps = 12/138 (8%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIP-HVKTYMQM-LLKGVSYLH 398
           P I+     F  ++ + +  E MD G  +      ++  IP HV   + + ++KG++YL 
Sbjct: 59  PYIIGFYGAFFVENRISICTEFMDGGSLD------VYRKIPEHVLGRIAVAVVKGLTYLW 112

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR 458
              I+HRD+KP+N+L++  G +K+ DFG++          Y   V +  Y APE +   +
Sbjct: 113 SLKILHRDVKPSNMLVNTRGQVKLCDFGVSTQLVNSIAKTY---VGTNAYMAPERISGEQ 169

Query: 459 CYDQSVDLWAVGCILGEM 476
            Y    D+W++G    E+
Sbjct: 170 -YGIHSDVWSLGISFMEL 186


>gnl|CDD|173686 cd05595, STKc_PKB_beta, Catalytic domain of the Protein
           Serine/Threonine Kinase, Protein Kinase B beta.
           Serine/Threonine Kinases (STKs), Protein Kinase B (PKB)
           or Akt subfamily, beta (or Akt2) isoform, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The PKB subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. There are three
           PKB isoforms from different genes, PKB-alpha (or Akt1),
           PKB-beta (or Akt2), and PKB-gamma (or Akt3). PKB
           contains an N-terminal pleckstrin homology (PH) domain
           and a C-terminal catalytic domain. PKB-beta is the
           predominant PKB isoform expressed in insulin-responsive
           tissues. It plays a critical role in the regulation of
           glucose homeostasis. It is also implicated in muscle
           cell differentiation. Mice deficient in PKB-beta display
           normal growth weights but exhibit severe insulin
           resistance and diabetes, accompanied by lipoatrophy and
           B-cell failure.
          Length = 323

 Score = 60.4 bits (146), Expect = 7e-10
 Identities = 42/140 (30%), Positives = 70/140 (50%), Gaps = 10/140 (7%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P +  L   F   D +C V E+ + G       ++   T    + Y   ++  + YLH +
Sbjct: 55  PFLTALKYAFQTHDRLCFVMEYANGGELFFHLSRERVFTEERARFYGAEIVSALEYLHSR 114

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVE----RWGQYTPEVASRWYRAPELLYA 456
            +++RD+K  NL++DK G +KI DFGL +    +    +    TPE     Y APE+L  
Sbjct: 115 DVVYRDIKLENLMLDKDGHIKITDFGLCKEGISDGATMKTFCGTPE-----YLAPEVLED 169

Query: 457 SRCYDQSVDLWAVGCILGEM 476
           +  Y ++VD W +G ++ EM
Sbjct: 170 ND-YGRAVDWWGLGVVMYEM 188


>gnl|CDD|173708 cd05617, STKc_aPKC_zeta, Catalytic domain of the Protein
           Serine/Threonine Kinase, Atypical Protein Kinase C zeta.
            Serine/Threonine Kinases (STKs), Atypical Protein
           Kinase C (aPKC) subfamily, zeta isoform, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The aPKC subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. PKCs are
           classified into three groups (classical, atypical, and
           novel) depending on their mode of activation and the
           structural characteristics of their regulatory domain.
           aPKCs only require phosphatidylserine (PS) for
           activation. There are two aPKC isoforms, zeta and iota.
           PKC-zeta plays a critical role in activating the glucose
           transport response. It is activated by glucose, insulin,
           and exercise through diverse pathways. PKC-zeta also
           plays a central role in maintaining cell polarity in
           yeast and mammalian cells. In addition, it affects actin
           remodeling in muscle cells.
          Length = 327

 Score = 60.4 bits (146), Expect = 7e-10
 Identities = 48/165 (29%), Positives = 83/165 (50%), Gaps = 7/165 (4%)

Query: 313 ELLHDKKIHLTIPHIKTYTYLSDVFSFLPQIVKLLDFFPDQDTVCLVFEHMDSGLWELLH 372
           EL+HD +    I  ++T  ++ +  S  P +V L   F     + LV E+++ G      
Sbjct: 31  ELVHDDE---DIDWVQTEKHVFEQASSNPFLVGLHSCFQTTSRLFLVIEYVNGGDLMFHM 87

Query: 373 DKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFD 432
            ++  L   H + Y   +   +++LH + I++RDLK  N+L+D  G +K+ D+G+ +  +
Sbjct: 88  QRQRKLPEEHARFYAAEICIALNFLHERGIIYRDLKLDNVLLDADGHIKLTDYGMCK--E 145

Query: 433 VERWGQYTPE-VASRWYRAPELLYASRCYDQSVDLWAVGCILGEM 476
               G  T     +  Y APE+L     Y  SVD WA+G ++ EM
Sbjct: 146 GLGPGDTTSTFCGTPNYIAPEILRGEE-YGFSVDWWALGVLMFEM 189


>gnl|CDD|133214 cd05083, PTKc_Chk, Catalytic domain of the Protein Tyrosine Kinase,
           Csk homologous kinase.  Protein Tyrosine Kinase (PTK)
           family; Csk homologous kinase (Chk); catalytic (c)
           domain. The PTKc family is part of a larger superfamily
           that includes the catalytic domains of other kinases
           such as protein serine/threonine kinases, RIO kinases,
           and phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Csk
           subfamily kinases are cytoplasmic (or nonreceptor) tyr
           kinases containing the Src homology domains, SH3 and
           SH2, N-terminal to the catalytic tyr kinase domain. They
           negatively regulate the activity of Src kinases that are
           anchored to the plasma membrane. Chk is also referred to
           as megakaryocyte-associated tyrosine kinase (Matk). To
           inhibit Src kinases, Chk is translocated to the membrane
           via binding to specific transmembrane proteins,
           G-proteins, or adaptor proteins near the membrane. Chk
           inhibit Src kinases using a noncatalytic mechanism by
           simply binding to them. As a negative regulator of Src
           kinases, Chk may play important roles in cell
           proliferation, survival, and differentiation, and
           consequently, in cancer development and progression. Chk
           is expressed in brain and hematopoietic cells. Studies
           in mice reveal that Chk is not functionally redundant
           with Csk and that it plays an important role as a
           regulator of immune responses. Chk also plays a role in
           neural differentiation in a manner independent of Src by
           enhancing Mapk activation via Ras-mediated signaling.
          Length = 254

 Score = 59.6 bits (144), Expect = 7e-10
 Identities = 37/123 (30%), Positives = 67/123 (54%), Gaps = 7/123 (5%)

Query: 358 LVFEHMDSG-LWELLHDK-KIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLID 415
           +V E M  G L   L  + +  +++  +  +   + +G+ YL  K ++HRDL   N+L+ 
Sbjct: 75  IVMELMSKGNLVNFLRTRGRALVSVIQLLQFSLDVAEGMEYLESKKLVHRDLAARNILVS 134

Query: 416 KAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGE 475
           + G+ K++DFGLAR   V   G    ++  +W  APE L   +   +S D+W+ G +L E
Sbjct: 135 EDGVAKVSDFGLAR---VGSMGVDNSKLPVKW-TAPEALKHKKFSSKS-DVWSYGVLLWE 189

Query: 476 MYT 478
           +++
Sbjct: 190 VFS 192


>gnl|CDD|173684 cd05593, STKc_PKB_gamma, Catalytic domain of the Protein
           Serine/Threonine Kinase, Protein Kinase B gamma.
           Serine/Threonine Kinases (STKs), Protein Kinase B (PKB)
           or Akt subfamily, gamma (or Akt3) isoform, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The PKB subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. There are three
           PKB isoforms from different genes, PKB-alpha (or Akt1),
           PKB-beta (or Akt2), and PKB-gamma (or Akt3). PKB
           contains an N-terminal pleckstrin homology (PH) domain
           and a C-terminal catalytic domain. PKB-gamma is
           predominantly expressed in neuronal tissues. Mice
           deficient in PKB-gamma show a reduction in brain weight
           due to the decreases in cell size and cell number.
           PKB-gamma has also been shown to be upregulated in
           estrogen-deficient breast cancer cells,
           androgen-independent prostate cancer cells, and primary
           ovarian tumors. It acts as a key mediator in the genesis
           of ovarian cancer.
          Length = 328

 Score = 60.1 bits (145), Expect = 7e-10
 Identities = 44/140 (31%), Positives = 71/140 (50%), Gaps = 10/140 (7%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P +  L   F  +D +C V E+++ G       ++   +    + Y   ++  + YLH  
Sbjct: 55  PFLTSLKYSFQTKDRLCFVMEYVNGGELFFHLSRERVFSEDRTRFYGAEIVSALDYLHSG 114

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARS--FDVERWGQY--TPEVASRWYRAPELLYA 456
            I++RDLK  NL++DK G +KI DFGL +    D      +  TPE     Y APE+L  
Sbjct: 115 KIVYRDLKLENLMLDKDGHIKITDFGLCKEGITDAATMKTFCGTPE-----YLAPEVLED 169

Query: 457 SRCYDQSVDLWAVGCILGEM 476
           +  Y ++VD W +G ++ EM
Sbjct: 170 ND-YGRAVDWWGLGVVMYEM 188


>gnl|CDD|165476 PHA03210, PHA03210, serine/threonine kinase US3; Provisional.
          Length = 501

 Score = 60.9 bits (147), Expect = 8e-10
 Identities = 53/182 (29%), Positives = 81/182 (44%), Gaps = 10/182 (5%)

Query: 387 MQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASR 446
           M+ LL  V Y+H K ++HRD+K  N+ ++  G + + DFG A  F+ ER       V + 
Sbjct: 273 MKQLLCAVEYIHDKKLIHRDIKLENIFLNCDGKIVLGDFGTAMPFEKEREAFDYGWVGTV 332

Query: 447 WYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFP----GESDIEQLAMVLHKLGTP 502
              +PE+L A   Y +  D+W+ G IL +M ++    P    G    +QL  ++  L   
Sbjct: 333 ATNSPEIL-AGDGYCEITDIWSCGLILLDMLSHD-FCPIGDGGGKPGKQLLKIIDSLSVC 390

Query: 503 TE---DSWPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPAN 559
            E   D    L D  D  +I  A    VP          D    + K+L +D   R  A 
Sbjct: 391 DEEFPDPPCKLFDYIDSAEIDHAGHS-VPPLIRNLGLPADFEYPLVKMLTFDWHLRPGAA 449

Query: 560 EI 561
           E+
Sbjct: 450 EL 451


>gnl|CDD|132987 cd06656, STKc_PAK3, Catalytic domain of the Protein
           Serine/Threonine Kinase, p21-activated kinase 3.
           Serine/threonine kinases (STKs), p21-activated kinase
           (PAK) 3, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The PAK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. PAKs are Rho family GTPase-regulated kinases
           that serve as important mediators in the function of
           Cdc42 (cell division cycle 42) and Rac. PAKs from higher
           eukaryotes are classified into two groups (I and II),
           according to their biochemical and structural features.
           PAK3 belongs to group I. Group I PAKs contain a PBD
           (p21-binding domain) overlapping with an AID
           (autoinhibitory domain), a C-terminal catalytic domain,
           SH3 binding sites and a non-classical SH3 binding site
           for PIX (PAK-interacting exchange factor). PAK3 is
           highly expressed in the brain. It is implicated in
           neuronal plasticity, synapse formation, dendritic spine
           morphogenesis, cell cycle progression, neuronal
           migration, and apoptosis. Inactivating mutations in the
           PAK3 gene cause X-linked non-syndromic mental
           retardation, the severity of which depends on the site
           of the mutation.
          Length = 297

 Score = 59.7 bits (144), Expect = 9e-10
 Identities = 43/167 (25%), Positives = 80/167 (47%), Gaps = 14/167 (8%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-----LWELLHDKKIHLTIPHVKTYMQMLLKGVS 395
           P IV  LD +   D + +V E++  G     + E   D+        +    +  L+ + 
Sbjct: 76  PNIVNYLDSYLVGDELWVVMEYLAGGSLTDVVTETCMDEG------QIAAVCRECLQALD 129

Query: 396 YLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLY 455
           +LH   ++HRD+K  N+L+   G +K+ DFG       E+  + +  V + ++ APE++ 
Sbjct: 130 FLHSNQVIHRDIKSDNILLGMDGSVKLTDFGFCAQITPEQ-SKRSTMVGTPYWMAPEVV- 187

Query: 456 ASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTP 502
             + Y   VD+W++G +  EM    P +  E+ +  L ++    GTP
Sbjct: 188 TRKAYGPKVDIWSLGIMAIEMVEGEPPYLNENPLRALYLIATN-GTP 233


>gnl|CDD|173729 cd06617, PKc_MKK3_6, Catalytic domain of the dual-specificity
           Protein Kinases, MAP kinase kinases 3 and 6.  Protein
           kinases (PKs), MAP kinase kinase 3 (MKK3) and MKK6
           subfamily, catalytic (c) domain. PKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine or tyrosine residues on protein
           substrates. The MKK3 and MKK6 subfamily is part of a
           larger superfamily that includes the catalytic domains
           of other protein serine/threonine kinases, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. The mitogen-activated protein (MAP) kinase
           signaling pathways are important mediators of cellular
           responses to extracellular signals. The pathways involve
           a triple kinase core cascade comprising the MAP kinase
           (MAPK), which is phosphorylated and activated by a MAPK
           kinase (MAPKK or MKK), which itself is phosphorylated
           and activated by a MAPK kinase kinase (MAPKKK or MKKK).
           MKK3 and MKK6 are dual-specificity PKs that
           phosphorylate and activate their downstream target, p38
           MAPK, on specific threonine and tyrosine residues.
           MKK3/6 plays roles in the regulation of cell cycle
           progression, cytokine- and stress-induced apoptosis,
           oncogenic transformation, and adult tissue regeneration.
           In addition, MKK6 plays a critical role in osteoclast
           survival in inflammatory disease while MKK3 is
           associated with tumor invasion, progression, and poor
           patient survival in glioma.
          Length = 283

 Score = 59.4 bits (144), Expect = 9e-10
 Identities = 45/158 (28%), Positives = 78/158 (49%), Gaps = 26/158 (16%)

Query: 356 VCLVFEHMDSGLWEL---LHDKKIHLTIPHVKTYMQMLLKGVSYLHGKF-IMHRDLKPAN 411
           V +  E MD+ L +    ++DK + +    +      ++K + YLH K  ++HRD+KP+N
Sbjct: 75  VWICMEVMDTSLDKFYKKVYDKGLTIPEDILGKIAVSIVKALEYLHSKLSVIHRDVKPSN 134

Query: 412 LLIDKAGILKIADFGLARSFDVERWGQYTPEVA------SRWYRAPELL---YASRCYDQ 462
           +LI++ G +K+ DFG++        G     VA       + Y APE +      + YD 
Sbjct: 135 VLINRNGQVKLCDFGIS--------GYLVDSVAKTIDAGCKPYMAPERINPELNQKGYDV 186

Query: 463 SVDLWAVGCILGEMYTNAPLFPGES---DIEQLAMVLH 497
             D+W++G  + E+ T    FP +S     +QL  V+ 
Sbjct: 187 KSDVWSLGITMIELATGR--FPYDSWKTPFQQLKQVVE 222


>gnl|CDD|133172 cd05040, PTKc_Ack_like, Catalytic domain of the Protein Tyrosine
           Kinase, Activated Cdc42-associated kinase.  Protein
           Tyrosine Kinase (PTK) family; Activated Cdc42-associated
           kinase (Ack) subfamily; catalytic (c) domain. Ack
           subfamily members include Ack1, thirty-eight-negative
           kinase 1 (Tnk1), and similar proteins. The PTKc family
           is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Ack
           subfamily members are cytoplasmic (or nonreceptor) tyr
           kinases containing an N-terminal catalytic domain, an
           SH3 domain, a Cdc42-binding CRIB domain, and a
           proline-rich region. They are mainly expressed in brain
           and skeletal tissues and are involved in the regulation
           of cell adhesion and growth, receptor degradation, and
           axonal guidance. Ack1 is also associated with
           androgen-independent  prostate cancer progression. Tnk1
           regulates TNFalpha signaling and may play an important
           role in cell death.
          Length = 257

 Score = 59.3 bits (144), Expect = 9e-10
 Identities = 41/128 (32%), Positives = 58/128 (45%), Gaps = 11/128 (8%)

Query: 358 LVFE--HMDSGLWELLHDKKI-HLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLI 414
           +V E   + S L + L    + H  I  +  Y   +  G+ YL  K  +HRDL   N+L+
Sbjct: 72  MVTELAPLGS-LLDRLRKDALGHFLISTLCDYAVQIANGMRYLESKRFIHRDLAARNILL 130

Query: 415 DKAGILKIADFGLARSFDVERWGQYTPE----VASRWYRAPELLYASRCYDQSVDLWAVG 470
                +KI DFGL R+        Y  E    V   W  APE L  +R +  + D+W  G
Sbjct: 131 ASDDKVKIGDFGLMRALPQNE-DHYVMEEHLKVPFAWC-APESL-RTRTFSHASDVWMFG 187

Query: 471 CILGEMYT 478
             L EM+T
Sbjct: 188 VTLWEMFT 195


>gnl|CDD|133191 cd05060, PTKc_Syk_like, Catalytic domain of Spleen Tyrosine
           Kinase-like Protein Tyrosine Kinases.  Protein Tyrosine
           Kinase (PTK) family; Spleen Tyrosine Kinase (Syk)
           subfamily; catalytic (c) domain. The Syk subfamily is
           composed of Syk, ZAP-70, Shark, and similar proteins.
           The PTKc family is part of a larger superfamily that
           includes the catalytic domains of other kinases such as
           protein serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Syk
           subfamily kinases are cytoplasmic (or nonreceptor) tyr
           kinases containing two Src homology 2 (SH2) domains
           N-terminal to the catalytic tyr kinase domain. They are
           involved in the signaling downstream of activated
           receptors (including B-cell, T-cell, and Fc receptors)
           that contain ITAMs (immunoreceptor tyr activation
           motifs), leading to processes such as cell
           proliferation, differentiation, survival, adhesion,
           migration, and phagocytosis. Syk is important in B-cell
           receptor (BCR) signaling, while Zap-70 is primarily
           expressed in T-cells and NK cells, and is a crucial
           component in T-cell receptor (TCR) signaling. Syk also
           plays a central role in Fc receptor-mediated
           phagocytosis in the adaptive immune system. Shark is
           exclusively expressed in ectodermally derived epithelia,
           and is localized preferentially to the apical surface of
           the epithelial cells, it may play a role in a signaling
           pathway for epithelial cell polarity.
          Length = 257

 Score = 58.9 bits (143), Expect = 1e-09
 Identities = 52/207 (25%), Positives = 89/207 (42%), Gaps = 25/207 (12%)

Query: 305 EHMDSGLWELLHDKKIHLTIPHIKTYTYLSDVFSFLPQIVKLLDFFPDQDTVCLVFEHMD 364
           EH+ +G  E L +  +   + H              P IV+L+      + + LV E   
Sbjct: 34  EHIAAGKKEFLREASVMAQLDH--------------PCIVRLIGV-CKGEPLMLVMELAP 78

Query: 365 SG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIA 423
            G L + L  ++  + +  +K     +  G++YL  K  +HRDL   N+L+      KI+
Sbjct: 79  LGPLLKYLKKRR-EIPVSDLKELAHQVAMGMAYLESKHFVHRDLAARNVLLVNRHQAKIS 137

Query: 424 DFGLARSFDVERWGQYTPEVASRW---YRAPELLYASRCYDQSVDLWAVGCILGEMYT-N 479
           DFG++R+        Y    A RW   + APE +   + +    D+W+ G  L E ++  
Sbjct: 138 DFGMSRALGAGS-DYYRATTAGRWPLKWYAPECINYGK-FSSKSDVWSYGVTLWEAFSYG 195

Query: 480 APLFPGESDIEQLAMVL--HKLGTPTE 504
           A  +      E +AM+    +L  P E
Sbjct: 196 AKPYGEMKGAEVIAMLESGERLPRPEE 222


>gnl|CDD|173633 cd05052, PTKc_Abl, Catalytic domain of the Protein Tyrosine Kinase,
           Abelson kinase.  Protein Tyrosine Kinase (PTK) family;
           Abelson (Abl) kinase; catalytic (c) domain. The PTKc
           family is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Abl (or
           c-Abl) is a ubiquitously-expressed cytoplasmic (or
           nonreceptor) tyr kinase that contains SH3, SH2, and tyr
           kinase domains in its N-terminal region, as well as
           nuclear localization motifs, a putative DNA-binding
           domain, and F- and G-actin binding domains in its
           C-terminal tail. It also contains a short autoinhibitory
           cap region in its N-terminus. Abl is normally inactive
           and requires phosphorylation and myristoylation for
           activation. Abl function depends on its subcellular
           localization. In the cytoplasm, Abl plays a role in cell
           proliferation and survival. In response to DNA damage or
           oxidative stress, Abl is transported to the nucleus
           where it induces apoptosis. In chronic myelogenous
           leukemia (CML) patients, an aberrant translocation
           results in the replacement of the first exon of Abl with
           the BCR (breakpoint cluster region) gene. The resulting
           BCR-Abl fusion protein is constitutively active and
           associates into tetramers, resulting in a hyperactive
           kinase sending a continuous signal. This leads to
           uncontrolled proliferation, morphological transformation
           and anti-apoptotic effects. BCR-Abl is the target of
           selective inhibitors, such as imatinib (Gleevec), used
           in the treatment of CML. Abl2, also known as ARG
           (Abelson-related gene), is thought to play a cooperative
           role with Abl in the proper development of the nervous
           system. The Tel-ARG fusion protein, resulting from
           reciprocal translocation between chromosomes 1 and 12,
           is associated with acute myeloid leukemia (AML). The TEL
           gene is a frequent fusion partner of other tyr kinase
           oncogenes, including Tel/Abl, Tel/PDGFRbeta, and
           Tel/Jak2, found in patients with leukemia and
           myeloproliferative disorders.
          Length = 263

 Score = 59.1 bits (143), Expect = 1e-09
 Identities = 49/166 (29%), Positives = 78/166 (46%), Gaps = 16/166 (9%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYM-QMLLKGVSYLH 398
           P +V+LL     +    ++ E M  G L + L +         V  YM   +   + YL 
Sbjct: 62  PNLVQLLGVCTREPPFYIITEFMTYGNLLDYLRECNRQEVNAVVLLYMATQISSAMEYLE 121

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW---YRAPELLY 455
            K  +HRDL   N L+ +  ++K+ADFGL+R   +     YT    +++   + APE L 
Sbjct: 122 KKNFIHRDLAARNCLVGENHLVKVADFGLSR---LMTGDTYTAHAGAKFPIKWTAPESL- 177

Query: 456 ASRCYDQSVDLWAVGCILGEM--YTNAPLFPGESDIEQLAMVLHKL 499
           A   +    D+WA G +L E+  Y  +P +PG   I+ L+ V   L
Sbjct: 178 AYNKFSIKSDVWAFGVLLWEIATYGMSP-YPG---ID-LSQVYELL 218


>gnl|CDD|132985 cd06654, STKc_PAK1, Catalytic domain of the Protein
           Serine/Threonine Kinase, p21-activated kinase 1.
           Serine/threonine kinases (STKs), p21-activated kinase
           (PAK) 1, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The PAK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. PAKs are Rho family GTPase-regulated kinases
           that serve as important mediators in the function of
           Cdc42 (cell division cycle 42) and Rac. PAKs from higher
           eukaryotes are classified into two groups (I and II),
           according to their biochemical and structural features.
           PAK1 belongs to group I. Group I PAKs contain a PBD
           (p21-binding domain) overlapping with an AID
           (autoinhibitory domain), a C-terminal catalytic domain,
           SH3 binding sites and a non-classical SH3 binding site
           for PIX (PAK-interacting exchange factor). PAK1 is
           important in the regulation of many cellular processes
           including cytoskeletal dynamics, cell motility, growth,
           and proliferation. Although PAK1 has been regarded
           mainly as a cytosolic protein, recent reports indicate
           that PAK1 also exists in significant amounts in the
           nucleus, where it is involved in transcription
           modulation and in cell cycle regulatory events. PAK1 is
           also involved in transformation and tumorigenesis. Its
           overexpression, hyperactivation and increased nuclear
           accumulation is correlated to breast cancer invasiveness
           and progression. Nuclear accumulation is also linked to
           tamoxifen resistance in breast cancer cells.
          Length = 296

 Score = 59.4 bits (143), Expect = 1e-09
 Identities = 43/167 (25%), Positives = 80/167 (47%), Gaps = 14/167 (8%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-----LWELLHDKKIHLTIPHVKTYMQMLLKGVS 395
           P IV  LD +   D + +V E++  G     + E   D+        +    +  L+ + 
Sbjct: 77  PNIVNYLDSYLVGDELWVVMEYLAGGSLTDVVTETCMDEG------QIAAVCRECLQALE 130

Query: 396 YLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLY 455
           +LH   ++HRD+K  N+L+   G +K+ DFG       E+  + +  V + ++ APE++ 
Sbjct: 131 FLHSNQVIHRDIKSDNILLGMDGSVKLTDFGFCAQITPEQ-SKRSTMVGTPYWMAPEVV- 188

Query: 456 ASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTP 502
             + Y   VD+W++G +  EM    P +  E+ +  L ++    GTP
Sbjct: 189 TRKAYGPKVDIWSLGIMAIEMIEGEPPYLNENPLRALYLIATN-GTP 234


>gnl|CDD|173636 cd05057, PTKc_EGFR_like, Catalytic domain of Epidermal Growth
           Factor Receptor-like Protein Tyrosine Kinases.  Protein
           Tyrosine Kinase (PTK) family; Epidermal Growth Factor
           Receptor (EGFR) subfamily; catalytic (c) domain. EGFR
           (HER, ErbB) subfamily members include EGFR (HER1,
           ErbB1), HER2 (ErbB2), HER3 (ErbB3), HER4 (ErbB4), and
           similar proteins. The PTKc family is part of a larger
           superfamily that includes the catalytic domains of other
           kinases such as protein serine/threonine kinases, RIO
           kinases, and phosphoinositide 3-kinase (PI3K). PTKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to tyrosine (tyr) residues in protein substrates.
           The EGFR proteins are receptor tyr kinases (RTKs)
           containing an extracellular EGF-related ligand-binding
           region, a transmembrane helix, and a cytoplasmic region
           with a tyr kinase domain and a regulatory C-terminal
           tail. Unlike other tyr kinases, phosphorylation of the
           activation loop of EGFR proteins is not critical to
           their activation. Instead, they are activated by
           ligand-induced dimerization, resulting in the
           phosphorylation of tyr residues in the C-terminal tail,
           which serve as binding sites for downstream signaling
           molecules. Collectively, they can recognize a variety of
           ligands including EGF, TGFalpha, and neuregulins, among
           others. All four subfamily members can form homo- or
           heterodimers. HER3 contains an impaired kinase domain
           and depends on its heterodimerization partner for
           activation. EGFR subfamily members are involved in
           signaling pathways leading to a broad range of cellular
           responses including cell proliferation, differentiation,
           migration, growth inhibition, and apoptosis. Gain of
           function alterations, through their overexpression,
           deletions, or point mutations in their kinase domains,
           have been implicated in various cancers. These receptors
           are targets of many small molecule inhibitors and
           monoclonal antibodies used in cancer therapy.
          Length = 279

 Score = 59.0 bits (143), Expect = 1e-09
 Identities = 44/142 (30%), Positives = 72/142 (50%), Gaps = 8/142 (5%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P +V+LL        V L+ + M  G L + + + K ++   ++  +   + KG+SYL  
Sbjct: 69  PHVVRLLGICLSS-QVQLITQLMPLGCLLDYVRNHKDNIGSQYLLNWCVQIAKGMSYLEE 127

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPE---VASRWYRAPELLYA 456
           K ++HRDL   N+L+     +KI DFGLA+  DV+   +Y  E   V  +W  A E +  
Sbjct: 128 KRLVHRDLAARNVLVKTPQHVKITDFGLAKLLDVDE-KEYHAEGGKVPIKWM-ALESIL- 184

Query: 457 SRCYDQSVDLWAVGCILGEMYT 478
            R Y    D+W+ G  + E+ T
Sbjct: 185 HRIYTHKSDVWSYGVTVWELMT 206


>gnl|CDD|133228 cd05097, PTKc_DDR_like, Catalytic domain of Discoidin Domain
           Receptor-like Protein Tyrosine Kinases.  Protein
           Tyrosine Kinase (PTK) family; Discoidin Domain Receptor
           (DDR)-like proteins; catalytic (c) domain. The PTKc
           family is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. DDR-like
           proteins are members of the DDR subfamily, which are
           receptor tyr kinases (RTKs) containing an extracellular
           discoidin homology domain, a transmembrane segment, an
           extended juxtamembrane region, and an intracellular
           catalytic domain. The binding of the ligand, collagen,
           to DDRs results in a slow but sustained receptor
           activation. DDRs regulate cell adhesion, proliferation,
           and extracellular matrix remodeling. They have been
           linked to a variety of human cancers including breast,
           colon, ovarian, brain, and lung. There is no evidence
           showing that DDRs act as transforming oncogenes. They
           are more likely to play a role in the regulation of
           tumor growth and metastasis.
          Length = 295

 Score = 59.2 bits (143), Expect = 1e-09
 Identities = 49/153 (32%), Positives = 74/153 (48%), Gaps = 18/153 (11%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLT------IPHVKT----YMQM 389
           P I++LL      D +C++ E+M++G L + L  ++I  T      IP V      YM +
Sbjct: 77  PNIIRLLGVCVSDDPLCMITEYMENGDLNQFLSQREIESTFTHANNIPSVSIANLLYMAV 136

Query: 390 -LLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLAR---SFDVERWGQYTPEVAS 445
            +  G+ YL     +HRDL   N L+     +KIADFG++R   S D  R  Q    +  
Sbjct: 137 QIASGMKYLASLNFVHRDLATRNCLVGNHYTIKIADFGMSRNLYSGDYYRI-QGRAVLPI 195

Query: 446 RWYRAPELLYASRCYDQSVDLWAVGCILGEMYT 478
           RW     +L     +  + D+WA G  L EM+T
Sbjct: 196 RWMAWESILLGK--FTTASDVWAFGVTLWEMFT 226


>gnl|CDD|173704 cd05613, STKc_MSK1_N, N-terminal catalytic domain of the Protein
           Serine/Threonine Kinase, Mitogen and stress-activated
           kinase 1.  Serine/Threonine Kinases (STKs), Mitogen and
           stress-activated kinase (MSK) subfamily, MSK1,
           N-terminal catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The MSK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. MSKs contain an N-terminal kinase domain (NTD)
           from the AGC family and a C-terminal kinase domain (CTD)
           from the CAMK family, similar to 90 kDa ribosomal
           protein S6 kinases (RSKs). MSKs are activated by two
           major signaling cascades, the Ras-MAPK and p38 stress
           kinase pathways, which trigger phosphorylation in the
           activation loop (A-loop) of the CTD of MSK. The active
           CTD phosphorylates the hydrophobic motif (HM) of NTD,
           which facilitates the phosphorylation of the A-loop and
           activates the NTD, which in turn phosphorylates
           downstream targets. MSK1 plays a role in the regulation
           of translational control and transcriptional activation.
           It phosphorylates the transcription factors, CREB and
           NFkappaB. It also phosphorylates the nucleosomal
           proteins H3 and HMG-14. Increased phosphorylation of
           MEK1 is associated with the development of cerebral
           ischemic/hypoxic preconditioning.
          Length = 290

 Score = 59.2 bits (143), Expect = 1e-09
 Identities = 55/238 (23%), Positives = 105/238 (44%), Gaps = 33/238 (13%)

Query: 323 TIPHIKTYTYLSDVFSFLPQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPH 382
           T  H +T   + +     P +V L   F     + L+ ++++ G       ++       
Sbjct: 47  TTEHTRTERQVLEHIRQSPFLVTLHYAFQTDTKLHLILDYINGGELFTHLSQRERFKEQE 106

Query: 383 VKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSF---DVERWGQY 439
           V+ Y   ++  + +LH   I++RD+K  N+L+D  G + + DFGL++ F   +VER   +
Sbjct: 107 VQIYSGEIVLALEHLHKLGIIYRDIKLENILLDSNGHVVLTDFGLSKEFHEDEVERAYSF 166

Query: 440 TPEVASRWYRAPELLYASRC-YDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHK 498
              +    Y AP+++      +D++VD W++G ++ E+ T A  F  + +    A +  +
Sbjct: 167 CGTIE---YMAPDIVRGGDGGHDKAVDWWSMGVLMYELLTGASPFTVDGEKNSQAEISRR 223

Query: 499 LGTPTEDSWPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRL 556
           +          LK  P Y +                  S    D+I +LL+ D +KRL
Sbjct: 224 I----------LKSEPPYPQ----------------EMSALAKDIIQRLLMKDPKKRL 255


>gnl|CDD|132973 cd06642, STKc_STK25-YSK1, Catalytic domain of the Protein
           Serine/Threonine Kinase, STK25 or Yeast
           Sps1/Ste20-related kinase 1.  Serine/threonine kinases
           (STKs), STK25 subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The STK25 subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. STK25 is also called Ste20/oxidant stress
           response kinase 1 (SOK1) or yeast Sps1/Ste20-related
           kinase 1 (YSK1). STK25 is localized in the Golgi
           apparatus through its interaction with the Golgi matrix
           protein GM130. It may play a role in the regulation of
           cell migration and polarization. STK25 binds and
           phosphorylates CCM3 (cerebral cavernous malformation 3),
           also called PCD10 (programmed cell death 10), and may
           play a role in apoptosis. Human STK25 is a candidate
           gene responsible for pseudopseudohypoparathyroidism
           (PPHP), a disease that shares features with the Albright
           hereditary osteodystrophy (AHO) phenotype.
          Length = 277

 Score = 58.9 bits (142), Expect = 1e-09
 Identities = 34/100 (34%), Positives = 60/100 (60%), Gaps = 2/100 (2%)

Query: 382 HVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTP 441
           ++ T ++ +LKG+ YLH +  +HRD+K AN+L+ + G +K+ADFG+A      +  + T 
Sbjct: 102 YIATILREILKGLDYLHSERKIHRDIKAANVLLSEQGDVKLADFGVAGQLTDTQIKRNT- 160

Query: 442 EVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAP 481
            V + ++ APE++  S  YD   D+W++G    E+    P
Sbjct: 161 FVGTPFWMAPEVIKQS-AYDFKADIWSLGITAIELAKGEP 199


>gnl|CDD|173648 cd05092, PTKc_TrkA, Catalytic domain of the Protein Tyrosine
           Kinase, Tropomyosin Related Kinase A.  Protein Tyrosine
           Kinase (PTK) family; Tropomyosin Related Kinase A
           (TrkA); catalytic (c) domain. The PTKc family is part of
           a larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. TrkA is a member of the
           Trk subfamily of proteins, which are receptor tyr
           kinases (RTKs) containing an extracellular region with
           arrays of leucine-rich motifs flanked by two
           cysteine-rich clusters followed by two
           immunoglobulin-like domains, a transmembrane segment,
           and an intracellular catalytic domain. Binding of TrkA
           to its ligand, nerve growth factor (NGF), results in
           receptor oligomerization and activation of the catalytic
           domain. TrkA is expressed mainly in neural-crest-derived
           sensory and sympathetic neurons of the peripheral
           nervous system, and in basal forebrain cholinergic
           neurons of the central nervous system. It is critical
           for neuronal growth, differentiation and survival.
           Alternative TrkA splicing has been implicated as a
           pivotal regulator of neuroblastoma (NB) behavior. Normal
           TrkA expression is associated with better NB prognosis,
           while the hypoxia-regulated TrkAIII splice variant
           promotes NB pathogenesis and progression. Aberrant TrkA
           expression has also been demonstrated in non-neural
           tumors including prostate, breast, lung, and pancreatic
           cancers.
          Length = 280

 Score = 59.2 bits (143), Expect = 1e-09
 Identities = 45/155 (29%), Positives = 69/155 (44%), Gaps = 21/155 (13%)

Query: 342 QIVKLLDFFPDQDTVCLVFEHMDSG-LWELLH----DKKI----------HLTIPHVKTY 386
            IV+      +   + +VFE+M  G L   L     D KI           LT+  +   
Sbjct: 68  HIVRFYGVCTEGRPLLMVFEYMRHGDLNRFLRSHGPDAKILAGGEDVAPGQLTLGQMLAI 127

Query: 387 MQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLAR---SFDVERWGQYTPEV 443
              +  G+ YL     +HRDL   N L+ +  ++KI DFG++R   S D  R G  T  +
Sbjct: 128 ASQIASGMVYLASLHFVHRDLATRNCLVGQGLVVKIGDFGMSRDIYSTDYYRVGGRT-ML 186

Query: 444 ASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYT 478
             RW     +LY  R +    D+W+ G +L E++T
Sbjct: 187 PIRWMPPESILY--RKFTTESDIWSFGVVLWEIFT 219


>gnl|CDD|234389 TIGR03903, TOMM_kin_cyc, TOMM system kinase/cyclase fusion protein.
            This model represents proteins of 1350 in length, in
           multiple species of Burkholderia, in Acidovorax avenae
           subsp. citrulli AAC00-1 and Delftia acidovorans SPH-1,
           and in multiple copies in Sorangium cellulosum, in
           genomic neighborhoods that include a
           cyclodehydratase/docking scaffold fusion protein
           (TIGR03882) and a member of the thiazole/oxazole
           modified metabolite (TOMM) precursor family TIGR03795.
           It has a kinase domain in the N-terminal 300 amino
           acids, followed by a cyclase homology domain, followed
           by regions without named domain definitions. It is a
           probable bacteriocin-like metabolite biosynthesis
           protein [Cellular processes, Toxin production and
           resistance].
          Length = 1266

 Score = 60.6 bits (147), Expect = 1e-09
 Identities = 56/182 (30%), Positives = 84/182 (46%), Gaps = 23/182 (12%)

Query: 341 PQIVKLLD--FFPDQDTVCLVFEHMDS-GLWELLHDKKIHLTIPHVKTYMQML--LKGVS 395
           P IV LLD    P    +  VFE++    L E+L        +P  +T   ML  L  ++
Sbjct: 38  PNIVALLDSGEAPP-GLLFAVFEYVPGRTLREVLAADGA---LPAGETGRLMLQVLDALA 93

Query: 396 YLHGKFIMHRDLKPANLLIDKAGI---LKIADFGL------ARSFDVERWGQYTPEVASR 446
             H + I+HRDLKP N+++ + G+    K+ DFG+       R  DV    + T  + + 
Sbjct: 94  CAHNQGIVHRDLKPQNIMVSQTGVRPHAKVLDFGIGTLLPGVRDADVATLTRTTEVLGTP 153

Query: 447 WYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDS 506
            Y APE L        S DL+A G I  E  T   +  G S    +A +L++  +P + S
Sbjct: 154 TYCAPEQLRGEPVTPNS-DLYAWGLIFLECLTGQRVVQGAS----VAEILYQQLSPVDVS 208

Query: 507 WP 508
            P
Sbjct: 209 LP 210


>gnl|CDD|173690 cd05599, STKc_NDR_like, Catalytic domain of Nuclear Dbf2-Related
           kinase-like Protein Serine/Threonine Kinases.
           Serine/Threonine Kinases (STKs), Nuclear Dbf2-Related
           (NDR) kinase subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The NDR subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. NDR kinase contains an N-terminal regulatory
           (NTR) domain and an insert within the catalytic domain
           that contains an auto-inhibitory sequence. Like many
           other AGC kinases, NDR kinase requires phosphorylation
           at two sites, the activation loop (A-loop) and the
           hydrophobic motif (HM), for activity. NDR kinases
           regulate mitosis, cell growth, embryonic development,
           and neurological processes. They are also required for
           proper centrosome duplication. Higher eukaryotes contain
           two NDR isoforms, NDR1 and NDR2. This subfamily also
           contains fungal NDR-like kinases.
          Length = 364

 Score = 59.3 bits (144), Expect = 2e-09
 Identities = 48/187 (25%), Positives = 76/187 (40%), Gaps = 38/187 (20%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P +VKL   F D++ + L+ E++  G    L  KK   T    + Y+   +  +  +H  
Sbjct: 61  PWVVKLYYSFQDENYLYLIMEYLPGGDMMTLLMKKDTFTEEETRFYIAETILAIDSIHKL 120

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLA-------RSFDVERWGQYTP------------ 441
             +HRD+KP NLL+D  G +K++DFGL        R+          P            
Sbjct: 121 GYIHRDIKPDNLLLDAKGHIKLSDFGLCTGLKKSHRTEFYRILSHALPSNFLDFISKPMS 180

Query: 442 --EVASRW----------------YRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLF 483
               A  W                Y APE+   +  Y++  D W++G I+ EM    P F
Sbjct: 181 SKRKAETWKRNRRALAYSTVGTPDYIAPEVFLQTG-YNKECDWWSLGVIMYEMLVGYPPF 239

Query: 484 PGESDIE 490
             ++  E
Sbjct: 240 CSDNPQE 246


>gnl|CDD|133202 cd05071, PTKc_Src, Catalytic domain of the Protein Tyrosine Kinase,
           Src.  Protein Tyrosine Kinase (PTK) family; Src kinase;
           catalytic (c) domain. The PTKc family is part of a
           larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Src (or c-Src) is a
           cytoplasmic (or non-receptor) tyr kinase, containing an
           N-terminal SH4 domain with a myristoylation site,
           followed by SH3 and SH2 domains, a tyr kinase domain,
           and a regulatory C-terminal region with a conserved tyr.
           It is activated by autophosphorylation at the tyr kinase
           domain, and is negatively regulated by phosphorylation
           at the C-terminal tyr by Csk (C-terminal Src Kinase).
           c-Src is the vertebrate homolog of the oncogenic protein
           (v-Src) from Rous sarcoma virus. Together with other Src
           subfamily proteins, it is involved in signaling pathways
           that regulate cytokine and growth factor responses,
           cytoskeleton dynamics, cell proliferation, survival, and
           differentiation. Src also play a role in regulating cell
           adhesion, invasion, and motility in cancer cells and
           tumor vasculature, contributing to cancer progression
           and metastasis. Elevated levels of Src kinase activity
           have been reported in a variety of human cancers.
           Several inhibitors of Src have been developed as
           anti-cancer drugs. Src is also implicated in acute
           inflammatory responses and osteoclast function.
          Length = 262

 Score = 58.1 bits (140), Expect = 2e-09
 Identities = 45/162 (27%), Positives = 80/162 (49%), Gaps = 10/162 (6%)

Query: 353 QDTVCLVFEHMDSG-LWELLHDK-KIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPA 410
           ++ + +V E+M  G L + L  +   +L +P +      +  G++Y+     +HRDL+ A
Sbjct: 72  EEPIYIVTEYMSKGSLLDFLKGEMGKYLRLPQLVDMAAQIASGMAYVERMNYVHRDLRAA 131

Query: 411 NLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW---YRAPELLYASRCYDQSVDLW 467
           N+L+ +  + K+ADFGLAR  +     +YT    +++   + APE     R   +S D+W
Sbjct: 132 NILVGENLVCKVADFGLARLIEDN---EYTARQGAKFPIKWTAPEAALYGRFTIKS-DVW 187

Query: 468 AVGCILGEMYTNAPL-FPGESDIEQLAMVLHKLGTPTEDSWP 508
           + G +L E+ T   + +PG  + E L  V      P     P
Sbjct: 188 SFGILLTELTTKGRVPYPGMVNREVLDQVERGYRMPCPPECP 229


>gnl|CDD|133216 cd05085, PTKc_Fer, Catalytic domain of the Protein Tyrosine Kinase,
           Fer.  Protein Tyrosine Kinase (PTK) family; Fer kinase;
           catalytic (c) domain. The PTKc family is part of a
           larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Fer kinase is a member
           of the Fes subfamily of proteins which are cytoplasmic
           (or nonreceptor) tyr kinases containing an N-terminal
           region with FCH (Fes/Fer/CIP4 homology) and coiled-coil
           domains, followed by a SH2 domain, and a C-terminal
           catalytic domain. Fer kinase is expressed in a wide
           variety of tissues, and is found to reside in both the
           cytoplasm and the nucleus. It plays important roles in
           neuronal polarization and neurite development,
           cytoskeletal reorganization, cell migration, growth
           factor signaling, and the regulation of cell-cell
           interactions mediated by adherens junctions and focal
           adhesions. Fer kinase also regulates cell cycle
           progression in malignant cells.
          Length = 250

 Score = 58.1 bits (140), Expect = 2e-09
 Identities = 44/143 (30%), Positives = 69/143 (48%), Gaps = 10/143 (6%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P IVKL+     +  + +V E +  G     L  KK  L    +  +      G++YL  
Sbjct: 52  PNIVKLIGVCTQRQPIYIVMELVPGGDFLSFLRKKKDELKTKQLVKFALDAAAGMAYLES 111

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTP----EVASRWYRAPELLY 455
           K  +HRDL   N L+ +  +LKI+DFG++R    E  G Y+     ++  +W  APE L 
Sbjct: 112 KNCIHRDLAARNCLVGENNVLKISDFGMSRQ---EDDGIYSSSGLKQIPIKW-TAPEALN 167

Query: 456 ASRCYDQSVDLWAVGCILGEMYT 478
             R Y    D+W+ G +L E ++
Sbjct: 168 YGR-YSSESDVWSYGILLWETFS 189


>gnl|CDD|132977 cd06646, STKc_MAP4K5, Catalytic domain of the Protein
           Serine/Threonine Kinase, Mitogen-activated protein
           kinase kinase kinase kinase 5.  Serine/threonine kinases
           (STKs), mitogen-activated protein kinase (MAPK) kinase
           kinase kinase 5 (MAPKKKK5 or MAP4K5) subfamily,
           catalytic (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The MAP4K5 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. Members of this
           subfamily contain an N-terminal catalytic domain and a
           C-terminal citron homology (CNH) regulatory domain,
           similar to MAP4K4/6. MAP4Ks are involved in some MAPK
           signaling pathways that are important in mediating
           cellular responses to extracellular signals by
           activating a MAPK kinase kinase (MAPKKK or MAP3K or
           MKKK). Each MAPK cascade is activated either by a small
           GTP-binding protein or by an adaptor protein, which
           transmits the signal either directly to a MAP3K to start
           the triple kinase core cascade or indirectly through a
           mediator kinase, a MAP4K. MAP4K5, also called germinal
           center kinase-related enzyme (GCKR), has been shown to
           activate the MAPK c-Jun N-terminal kinase (JNK). MAP4K5
           also facilitates Wnt signaling in B cells, and may
           therefore be implicated in the control of cell fate,
           proliferation, and polarity.
          Length = 267

 Score = 58.1 bits (140), Expect = 2e-09
 Identities = 38/105 (36%), Positives = 57/105 (54%), Gaps = 22/105 (20%)

Query: 391 LKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASR---- 446
           L+G++YLH K  MHRD+K AN+L+   G +K+ADFG+A         + T  +A R    
Sbjct: 116 LQGLAYLHSKGKMHRDIKGANILLTDNGDVKLADFGVA--------AKITATIAKRKSFI 167

Query: 447 ---WYRAPELLYASR--CYDQSVDLWAVGCI---LGEMYTNAPLF 483
              ++ APE+    +   Y+Q  D+WAVG     L E+    P+F
Sbjct: 168 GTPYWMAPEVAAVEKNGGYNQLCDIWAVGITAIELAEL--QPPMF 210


>gnl|CDD|133248 cd05148, PTKc_Srm_Brk, Catalytic domain of the Protein Tyrosine
           Kinases, Srm and Brk.  Protein Tyrosine Kinase (PTK)
           family; Src-related kinase lacking C-terminal regulatory
           tyrosine and N-terminal myristylation sites (Srm) and
           breast tumor kinase (Brk, also called protein tyrosine
           kinase 6); catalytic (c) domains. The PTKc family is
           part of a larger superfamily that includes the catalytic
           domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Srm and
           Brk are a member of the Src subfamily of proteins, which
           are cytoplasmic (or non-receptor) tyr kinases. Src
           kinases in general contain an N-terminal SH4 domain with
           a myristoylation site, followed by SH3 and SH2 domains,
           a tyr kinase domain, and a regulatory C-terminal region
           containing a conserved tyr; they are activated by
           autophosphorylation at the tyr kinase domain, but are
           negatively regulated by phosphorylation at the
           C-terminal tyr by Csk (C-terminal Src Kinase). Srm and
           Brk however, lack the N-terminal myristylation sites.
           Src proteins are involved in signaling pathways that
           regulate cytokine and growth factor responses,
           cytoskeleton dynamics, cell proliferation, survival, and
           differentiation. Brk has been found to be overexpressed
           in a majority of breast tumors.
          Length = 261

 Score = 58.2 bits (141), Expect = 2e-09
 Identities = 40/169 (23%), Positives = 79/169 (46%), Gaps = 7/169 (4%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIH-LTIPHVKTYMQMLLKGVSYLH 398
             ++ L       + V ++ E M+ G L   L   +   L +  +      + +G++YL 
Sbjct: 62  KHLISLFAVCSVGEPVYIITELMEKGSLLAFLRSPEGQVLPVASLIDMACQVAEGMAYLE 121

Query: 399 GKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR 458
            +  +HRDL   N+L+ +  + K+ADFGLAR    + +     ++  +W  APE   +  
Sbjct: 122 EQNSIHRDLAARNILVGEDLVCKVADFGLARLIKEDVYLSSDKKIPYKW-TAPEAA-SHG 179

Query: 459 CYDQSVDLWAVGCILGEMYTNAPL-FPGESDIE--QLAMVLHKLGTPTE 504
            +    D+W+ G +L EM+T   + +PG ++ E        +++  P +
Sbjct: 180 TFSTKSDVWSFGILLYEMFTYGQVPYPGMNNHEVYDQITAGYRMPCPAK 228


>gnl|CDD|132947 cd06616, PKc_MKK4, Catalytic domain of the dual-specificity Protein
           Kinase, MAP kinase kinase 4.  Protein kinases (PKs), MAP
           kinase kinase 4 (MKK4) subfamily, catalytic (c) domain.
           PKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine or tyrosine residues on
           protein substrates. The MKK4 subfamily is part of a
           larger superfamily that includes the catalytic domains
           of other protein serine/threonine kinases, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. The mitogen-activated protein (MAP) kinase
           signaling pathways are important mediators of cellular
           responses to extracellular signals. The pathways involve
           a triple kinase core cascade comprising of the MAP
           kinase (MAPK), which is phosphorylated and activated by
           a MAPK kinase (MAPKK or MKK), which itself is
           phosphorylated and activated by a MAPK kinase kinase
           (MAPKKK or MKKK). MKK4 is a dual-specificity PK that
           phosphorylates and activates the downstream targets,
           c-Jun N-terminal kinase (JNK) and p38 MAPK, on specific
           threonine and tyrosine residues. JNK and p38 are
           collectively known as stress-activated MAPKs, as they
           are activated in response to a variety of environmental
           stresses and pro-inflammatory cytokines. Their
           activation is associated with the induction of cell
           death. Mice deficient in MKK4 die during embryogenesis
           and display anemia, severe liver hemorrhage, and
           abnormal hepatogenesis. MKK4 may also play roles in the
           immune system and in cardiac hypertrophy. It plays a
           major role in cancer as a tumor and metastasis
           suppressor. Under certain conditions, MKK4 is
           pro-oncogenic.
          Length = 288

 Score = 58.5 bits (142), Expect = 2e-09
 Identities = 38/109 (34%), Positives = 62/109 (56%), Gaps = 6/109 (5%)

Query: 391 LKGVSYLHGKF-IMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYR 449
           +K ++YL  +  I+HRD+KP+N+L+D+ G +K+ DFG++    V+   + T +   R Y 
Sbjct: 117 VKALNYLKEELKIIHRDVKPSNILLDRNGNIKLCDFGISGQL-VDSIAK-TRDAGCRPYM 174

Query: 450 APELLYASRC--YDQSVDLWAVGCILGEMYTNAPLFPG-ESDIEQLAMV 495
           APE +  S    YD   D+W++G  L E+ T    +P   S  +QL  V
Sbjct: 175 APERIDPSARDGYDVRSDVWSLGITLYEVATGKFPYPKWNSVFDQLTQV 223


>gnl|CDD|173682 cd05591, STKc_nPKC_epsilon, Catalytic domain of the Protein
           Serine/Threonine Kinase, Novel Protein Kinase C epsilon.
            Serine/Threonine Kinases (STKs), Novel Protein Kinase C
           (nPKC), epsilon isoform, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The nPKC subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. PKCs are classified into three groups
           (classical, atypical, and novel) depending on their mode
           of activation and the structural characteristics of
           their regulatory domain. nPKCs are calcium-independent,
           but require DAG (1,2-diacylglycerol) and
           phosphatidylserine (PS) for activity. There are four
           nPKC isoforms, delta, epsilon, eta, and theta.
           PKC-epsilon has been shown to behave as an oncoprotein.
           Its overexpression contributes to neoplastic
           transformation depending on the cell type. It
           contributes to oncogenesis by inducing disordered cell
           growth and inhibiting cell death. It also plays a role
           in tumor invasion and metastasis. PKC-epsilon has also
           been found to confer cardioprotection against ischemia
           and reperfusion-mediated damage. Other cellular
           functions include the regulation of gene expression,
           cell adhesion, and cell motility.
          Length = 321

 Score = 58.3 bits (141), Expect = 3e-09
 Identities = 43/157 (27%), Positives = 73/157 (46%), Gaps = 2/157 (1%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P +  L   F  +D +  V E+++ G       +      P  + Y   +   + +LH  
Sbjct: 56  PFLTALHCCFQTKDRLFFVMEYVNGGDLMFQIQRSRKFDEPRSRFYAAEVTLALMFLHRH 115

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCY 460
            +++RDLK  N+L+D  G  K+ADFG+ +   +      T    +  Y APE+L     Y
Sbjct: 116 GVIYRDLKLDNILLDAEGHCKLADFGMCKE-GILNGVTTTTFCGTPDYIAPEILQELE-Y 173

Query: 461 DQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLH 497
             SVD WA+G ++ EM    P F  +++ +    +LH
Sbjct: 174 GPSVDWWALGVLMYEMMAGQPPFEADNEDDLFESILH 210


>gnl|CDD|133232 cd05101, PTKc_FGFR2, Catalytic domain of the Protein Tyrosine
           Kinase, Fibroblast Growth Factor Receptor 2.  Protein
           Tyrosine Kinase (PTK) family; Fibroblast Growth Factor
           Receptor 2 (FGFR2); catalytic (c) domain. The PTKc
           family is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. FGFR2 is
           part of the FGFR subfamily, which are receptor tyr
           kinases (RTKs) containing an extracellular
           ligand-binding region with three immunoglobulin-like
           domains, a transmembrane segment, and an intracellular
           catalytic domain. The binding of FGFRs to their ligands,
           the FGFs, results in receptor dimerization and
           activation, and intracellular signaling. The binding of
           FGFs to FGFRs is promiscuous, in that a receptor may be
           activated by several ligands and a ligand may bind to
           more that one type of receptor. There are many splice
           variants of FGFR2 which show differential expression and
           binding to FGF ligands. Disruption of either FGFR2 or
           FGFR2b is lethal in mice, due to defects in the placenta
           or severe impairment of tissue development including
           lung, limb, and thyroid, respectively. Disruption of
           FGFR2c in mice results in defective bone and skull
           development. Genetic alterations of FGFR2 are associated
           with many human skeletal disorders including Apert
           syndrome, Crouzon syndrome, Jackson-Weiss syndrome, and
           Pfeiffer syndrome.
          Length = 304

 Score = 58.5 bits (141), Expect = 3e-09
 Identities = 40/120 (33%), Positives = 64/120 (53%), Gaps = 11/120 (9%)

Query: 390 LLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW-- 447
           + +G+ YL  +  +HRDL   N+L+ +  ++KIADFGLAR  DV     Y      R   
Sbjct: 146 VARGMEYLASQKCIHRDLAARNVLVTENNVMKIADFGLAR--DVNNIDYYKKTTNGRLPV 203

Query: 448 -YRAPELLYASRCYDQSVDLWAVGCILGEMYT-NAPLFPGESDIEQLAMVL---HKLGTP 502
            + APE L+  R Y    D+W+ G ++ E++T     +PG   +E+L  +L   H++  P
Sbjct: 204 KWMAPEALF-DRVYTHQSDVWSFGVLMWEIFTLGGSPYPG-IPVEELFKLLKEGHRMDKP 261


>gnl|CDD|133201 cd05070, PTKc_Fyn_Yrk, Catalytic domain of the Protein Tyrosine
           Kinases, Fyn and Yrk.  Protein Tyrosine Kinase (PTK)
           family; Fyn and Yrk kinases; catalytic (c) domain. The
           PTKc family is part of a larger superfamily that
           includes the catalytic domains of other kinases such as
           protein serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Fyn and
           Yrk are members of the Src subfamily of proteins, which
           are cytoplasmic (or non-receptor) tyr kinases. Src
           kinases contain an N-terminal SH4 domain with a
           myristoylation site, followed by SH3 and SH2 domains, a
           tyr kinase domain, and a regulatory C-terminal region
           containing a conserved tyr. They are activated by
           autophosphorylation at the tyr kinase domain, but are
           negatively regulated by phosphorylation at the
           C-terminal tyr by Csk (C-terminal Src Kinase). Src
           proteins are involved in signaling pathways that
           regulate cytokine and growth factor responses,
           cytoskeleton dynamics, cell proliferation, survival, and
           differentiation. Fyn, together with Lck, plays a
           critical role in T-cell signal transduction by
           phosphorylating ITAM (immunoreceptor tyr activation
           motif) sequences on T-cell receptors, ultimately leading
           to the proliferation and differentiation of T-cells. In
           addition, Fyn is involved in the myelination of neurons,
           and is implicated in Alzheimer's and Parkinson's
           diseases. Yrk has been detected only in chickens. It is
           primarily found in neuronal and epithelial cells and in
           macrophages. It may play a role in inflammation and in
           response to injury.
          Length = 260

 Score = 57.7 bits (139), Expect = 3e-09
 Identities = 50/166 (30%), Positives = 83/166 (50%), Gaps = 7/166 (4%)

Query: 353 QDTVCLVFEHMDSG-LWELLHDKK-IHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPA 410
           ++ + +V E+M  G L + L D +   L +P++      +  G++Y+     +HRDL+ A
Sbjct: 72  EEPIYIVTEYMSKGSLLDFLKDGEGRALKLPNLVDMAAQVAAGMAYIERMNYIHRDLRSA 131

Query: 411 NLLIDKAGILKIADFGLARSF-DVERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAV 469
           N+L+    + KIADFGLAR   D E   +   +   +W  APE     R   +S D+W+ 
Sbjct: 132 NILVGDGLVCKIADFGLARLIEDNEYTARQGAKFPIKW-TAPEAALYGRFTIKS-DVWSF 189

Query: 470 GCILGEMYTNAPL-FPGESDIEQLAMVLHKLGTPT-EDSWPGLKDL 513
           G +L E+ T   + +PG ++ E L  V      P  +D    L +L
Sbjct: 190 GILLTELVTKGRVPYPGMNNREVLEQVERGYRMPCPQDCPISLHEL 235


>gnl|CDD|132972 cd06641, STKc_MST3, Catalytic domain of the Protein
           Serine/Threonine Kinase, Mammalian Ste20-like protein
           kinase 3.  Serine/threonine kinases (STKs), mammalian
           Ste20-like protein kinase 3 (MST3) subfamily, catalytic
           (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The MST3 subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. MST3
           phosphorylates the STK NDR and may play a role in cell
           cycle progression and cell morphology. It may also
           regulate paxillin and consequently, cell migration. MST3
           is present in human placenta, where it plays an
           essential role in the oxidative stress-induced apoptosis
           of trophoblasts in normal spontaneous delivery.
           Dysregulation of trophoblast apoptosis may result in
           pregnancy complications such as preeclampsia and
           intrauterine growth retardation.
          Length = 277

 Score = 58.2 bits (140), Expect = 3e-09
 Identities = 33/100 (33%), Positives = 58/100 (58%), Gaps = 2/100 (2%)

Query: 382 HVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTP 441
            + T ++ +LKG+ YLH +  +HRD+K AN+L+ + G +K+ADFG+A     +   +   
Sbjct: 102 QIATILREILKGLDYLHSEKKIHRDIKAANVLLSEHGEVKLADFGVAGQL-TDTQIKRNT 160

Query: 442 EVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAP 481
            V + ++ APE++  S  YD   D+W++G    E+    P
Sbjct: 161 FVGTPFWMAPEVIKQS-AYDSKADIWSLGITAIELAKGEP 199


>gnl|CDD|133230 cd05099, PTKc_FGFR4, Catalytic domain of the Protein Tyrosine
           Kinase, Fibroblast Growth Factor Receptor 4.  Protein
           Tyrosine Kinase (PTK) family; Fibroblast Growth Factor
           Receptor 4 (FGFR4); catalytic (c) domain. The PTKc
           family is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. FGFR4 is
           part of the FGFR subfamily, which are receptor tyr
           kinases (RTKs) containing an extracellular
           ligand-binding region with three immunoglobulin-like
           domains, a transmembrane segment, and an intracellular
           catalytic domain. The binding of FGFRs to their ligands,
           the FGFs, results in receptor dimerization and
           activation, and intracellular signaling. The binding of
           FGFs to FGFRs is promiscuous, in that a receptor may be
           activated by several ligands and a ligand may bind to
           more that one type of receptor. Unlike other FGFRs,
           there is only one splice form of FGFR4. It binds FGF1,
           FGF2, FGF6, FGF19, and FGF23. FGF19 is a selective
           ligand for FGFR4. Although disruption of FGFR4 in mice
           causes no obvious phenotype, in vivo inhibition of FGFR4
           in cultured skeletal muscle cells resulted in an arrest
           of muscle progenitor differentiation. FGF6 and FGFR4 are
           uniquely expressed in myofibers and satellite cells.
           FGF6/FGFR4 signaling appears to play a key role in the
           regulation of muscle regeneration. A polymorphism in
           FGFR4 is found in head and neck squamous cell carcinoma.
          Length = 314

 Score = 58.4 bits (141), Expect = 3e-09
 Identities = 39/132 (29%), Positives = 73/132 (55%), Gaps = 9/132 (6%)

Query: 378 LTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSF-DVERW 436
           L+   + +    + +G+ YL  +  +HRDL   N+L+ +  ++KIADFGLAR   D++ +
Sbjct: 131 LSFKDLVSCAYQVARGMEYLESRRCIHRDLAARNVLVTEDNVMKIADFGLARGVHDIDYY 190

Query: 437 GQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYT--NAPLFPGESDIEQLAM 494
            + +       + APE L+  R Y    D+W+ G ++ E++T   +P +PG   +E+L  
Sbjct: 191 KKTSNGRLPVKWMAPEALF-DRVYTHQSDVWSFGILMWEIFTLGGSP-YPG-IPVEELFK 247

Query: 495 VL---HKLGTPT 503
           +L   H++  P+
Sbjct: 248 LLREGHRMDKPS 259


>gnl|CDD|88519 cd05618, STKc_aPKC_iota, Catalytic domain of the Protein
           Serine/Threonine Kinase, Atypical Protein Kinase C iota.
            Serine/Threonine Kinases (STKs), Atypical Protein
           Kinase C (aPKC) subfamily, iota isoform, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The aPKC subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. PKCs are
           classified into three groups (classical, atypical, and
           novel) depending on their mode of activation and the
           structural characteristics of their regulatory domain.
           aPKCs only require phosphatidylserine (PS) for
           activation. There are two aPKC isoforms, zeta and iota.
           PKC-iota is directly implicated in carcinogenesis. It is
           critical to oncogenic signaling mediated by Ras and
           Bcr-Abl. The PKC-iota gene is the target of
           tumor-specific gene amplification in many human cancers,
           and has been identified as a human oncogene. In addition
           to its role in transformed growth, PKC-iota also
           promotes invasion, chemoresistance, and tumor cell
           survival. Expression profiling of PKC-iota is a
           prognostic marker of poor clinical outcome in several
           human cancers. PKC-iota also plays a role in
           establishing cell polarity, and has critical embryonic
           functions.
          Length = 329

 Score = 58.1 bits (140), Expect = 3e-09
 Identities = 53/182 (29%), Positives = 86/182 (47%), Gaps = 15/182 (8%)

Query: 313 ELLHDKKIHLTIPHIKTYTYLSDVFSFLPQIVKLLDFFPDQDTVCLVFEHMDSGLWELLH 372
           EL++D +    I  ++T  ++ +  S  P +V L   F  +  +  V E+++ G      
Sbjct: 31  ELVNDDE---DIDWVQTEKHVFEQASNHPFLVGLHSCFQTESRLFFVIEYVNGGDLMFHM 87

Query: 373 DKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLA---- 428
            ++  L   H + Y   +   ++YLH + I++RDLK  N+L+D  G +K+ D+G+     
Sbjct: 88  QRQRKLPEEHARFYSAEISLALNYLHERGIIYRDLKLDNVLLDSEGHIKLTDYGMCKEGL 147

Query: 429 RSFDVERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFP--GE 486
           R  D       TP      Y APE+L     Y  SVD WA+G ++ EM      F   G 
Sbjct: 148 RPGDTTSTFCGTPN-----YIAPEILRGED-YGFSVDWWALGVLMFEMMAGRSPFDIVGS 201

Query: 487 SD 488
           SD
Sbjct: 202 SD 203


>gnl|CDD|132990 cd06659, STKc_PAK6, Catalytic domain of the Protein
           Serine/Threonine Kinase, p21-activated kinase 6.
           Serine/threonine kinases (STKs), p21-activated kinase
           (PAK) 6, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The PAK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. PAKs are Rho family GTPase-regulated kinases
           that serve as important mediators in the function of
           Cdc42 (cell division cycle 42) and Rac. PAKs from higher
           eukaryotes are classified into two groups (I and II),
           according to their biochemical and structural features.
           PAK6 belongs to group II. Group II PAKs contain a PBD
           (p21-binding domain) and a C-terminal catalytic domain,
           but do not harbor an AID (autoinhibitory domain) or SH3
           binding sites. PAK6 may play a role in stress responses
           through its activation by the mitogen-activated protein
           kinase (MAPK) p38 and MAPK kinase 6 (MKK6) pathway. PAK6
           is highly expressed in the brain. It is not required for
           viability, but together with PAK5, it is required for
           normal levels of locomotion and activity, and for
           learning and memory. Increased expression of PAK6 is
           found in primary and metastatic prostate cancer. PAK6
           may play a role in the regulation of motility.
          Length = 297

 Score = 58.1 bits (140), Expect = 3e-09
 Identities = 45/189 (23%), Positives = 84/189 (44%), Gaps = 33/189 (17%)

Query: 375 KIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLAR--SFD 432
           +  L    + T  + +L+ + YLH + ++HRD+K  ++L+   G +K++DFG     S D
Sbjct: 111 QTRLNEEQIATVCESVLQALCYLHSQGVIHRDIKSDSILLTLDGRVKLSDFGFCAQISKD 170

Query: 433 VERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQL 492
           V +       V + ++ APE++ +   Y   VD+W++G ++ EM    P +  +S ++  
Sbjct: 171 VPKRKSL---VGTPYWMAPEVI-SRTPYGTEVDIWSLGIMVIEMVDGEPPYFSDSPVQ-- 224

Query: 493 AMVLHKLGTPTEDSWPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDG 552
                            +K L D          P P        SP   D + ++L  + 
Sbjct: 225 ----------------AMKRLRD---------SPPPKLKNAHKISPVLRDFLERMLTREP 259

Query: 553 QKRLPANEI 561
           Q+R  A E+
Sbjct: 260 QERATAQEL 268


>gnl|CDD|173681 cd05590, STKc_nPKC_eta, Catalytic domain of the Protein
           Serine/Threonine Kinase, Novel Protein Kinase C eta.
           Serine/Threonine Kinases (STKs), Novel Protein Kinase C
           (nPKC), eta isoform, catalytic (c) domain. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           nPKC subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. PKCs are classified into three groups
           (classical, atypical, and novel) depending on their mode
           of activation and the structural characteristics of
           their regulatory domain. nPKCs are calcium-independent,
           but require DAG (1,2-diacylglycerol) and
           phosphatidylserine (PS) for activity. There are four
           nPKC isoforms, delta, epsilon, eta, and theta. PKC-eta
           is predominantly expressed in squamous epithelia, where
           it plays a crucial role in the signaling of cell-type
           specific differentiation. It is also expressed in pro-B
           cells and early-stage thymocytes, and acts as a key
           regulator in early B-cell development. PKC-eta increases
           glioblastoma multiforme (GBM) proliferation and
           resistance to radiation, and is being developed as a
           therapeutic target for the management of GBM.
          Length = 320

 Score = 58.0 bits (140), Expect = 4e-09
 Identities = 47/160 (29%), Positives = 74/160 (46%), Gaps = 10/160 (6%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P + +L   F   D +  V E ++ G       K         + Y   +   + +LH K
Sbjct: 56  PFLTQLYCCFQTPDRLFFVMEFVNGGDLMFHIQKSRRFDEARARFYAAEITSALMFLHDK 115

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARS--FDVERWGQY--TPEVASRWYRAPELLYA 456
            I++RDLK  N+L+D  G  K+ADFG+ +   F+ +    +  TP+     Y APE+L  
Sbjct: 116 GIIYRDLKLDNVLLDHEGHCKLADFGMCKEGIFNGKTTSTFCGTPD-----YIAPEIL-Q 169

Query: 457 SRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVL 496
              Y  SVD WA+G +L EM      F  E++ +    +L
Sbjct: 170 EMLYGPSVDWWAMGVLLYEMLCGHAPFEAENEDDLFEAIL 209


>gnl|CDD|173640 cd05067, PTKc_Lck_Blk, Catalytic domain of the Protein Tyrosine
           Kinases, Lymphocyte-specific kinase and Blk.  Protein
           Tyrosine Kinase (PTK) family; Lck and Blk kinases;
           catalytic (c) domain. The PTKc family is part of a
           larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Lck (lymphocyte-specific
           kinase) and Blk are members of the Src subfamily of
           proteins, which are cytoplasmic (or non-receptor) tyr
           kinases. Src kinases contain an N-terminal SH4 domain
           with a myristoylation site, followed by SH3 and SH2
           domains, a tyr kinase domain, and a regulatory
           C-terminal region containing a conserved tyr. They are
           activated by autophosphorylation at the tyr kinase
           domain, but are negatively regulated by phosphorylation
           at the C-terminal tyr by Csk (C-terminal Src Kinase).
           Src proteins are involved in signaling pathways that
           regulate cytokine and growth factor responses,
           cytoskeleton dynamics, cell proliferation, survival, and
           differentiation. Lck is expressed in T-cells and natural
           killer (NK) cells. It plays a critical role in T-cell
           maturation, activation, and T-cell receptor (TCR)
           signaling. Lck phosphorylates ITAM (immunoreceptor tyr
           activation motif) sequences on several subunits of TCRs,
           leading to the activation of different second messenger
           cascades. Phosphorylated ITAMs serve as binding sites
           for other signaling factor such as Syk and ZAP-70,
           leading to their activation and propagation of
           downstream events. In addition, Lck regulates
           drug-induced apoptosis by interfering with the
           mitochondrial death pathway. The apototic role of Lck is
           independent of its primary function in T-cell signaling.
           Blk is expressed specifically in B-cells. It is involved
           in pre-BCR (B-cell receptor) signaling.
          Length = 260

 Score = 57.2 bits (138), Expect = 5e-09
 Identities = 46/164 (28%), Positives = 87/164 (53%), Gaps = 12/164 (7%)

Query: 353 QDTVCLVFEHMDSG-LWELLH-DKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPA 410
           Q+ + ++ E+M++G L + L   + I LTI  +      + +G++++  K  +HRDL+ A
Sbjct: 72  QEPIYIITEYMENGSLVDFLKTPEGIKLTINKLIDMAAQIAEGMAFIERKNYIHRDLRAA 131

Query: 411 NLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW---YRAPELL-YASRCYDQSVDL 466
           N+L+ +    KIADFGLAR  +     +YT    +++   + APE + Y +  +    D+
Sbjct: 132 NILVSETLCCKIADFGLARLIEDN---EYTAREGAKFPIKWTAPEAINYGT--FTIKSDV 186

Query: 467 WAVGCILGEMYTNAPL-FPGESDIEQLAMVLHKLGTPTEDSWPG 509
           W+ G +L E+ T   + +PG ++ E +  +      P  D+ P 
Sbjct: 187 WSFGILLTEIVTYGRIPYPGMTNPEVIQNLERGYRMPRPDNCPE 230


>gnl|CDD|173634 cd05053, PTKc_FGFR, Catalytic domain of the Protein Tyrosine
           Kinases, Fibroblast Growth Factor Receptors.  Protein
           Tyrosine Kinase (PTK) family; Fibroblast Growth Factor
           Receptor (FGFR) subfamily; catalytic (c) domain. The
           FGFR subfamily consists of FGFR1, FGFR2, FGFR3, FGFR4,
           and similar proteins. The PTKc family is part of a
           larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K).PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. FGFR subfamily members
           are receptor tyr kinases (RTKs) containing an
           extracellular ligand-binding region with three
           immunoglobulin-like domains, a transmembrane segment,
           and an intracellular catalytic domain. The binding of
           FGFRs to their ligands, the FGFs, and to heparin/heparan
           sulfate (HS) results in the formation of a ternary
           complex, which leads to receptor dimerization and
           activation, and intracellular signaling. There are at
           least 23 FGFs and four types of FGFRs. The binding of
           FGFs to FGFRs is promiscuous, in that a receptor may be
           activated by several ligands and a ligand may bind to
           more that one type of receptor. FGF/FGFR signaling is
           important in the regulation of embryonic development,
           homeostasis, and regenerative processes. Depending on
           the cell type and stage, FGFR signaling produces diverse
           cellular responses including proliferation, growth
           arrest, differentiation, and apoptosis. Aberrant
           signaling leads to many human diseases such as skeletal,
           olfactory, and metabolic disorders, as well as cancer.
          Length = 293

 Score = 57.4 bits (139), Expect = 5e-09
 Identities = 36/105 (34%), Positives = 56/105 (53%), Gaps = 8/105 (7%)

Query: 378 LTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWG 437
           LT   + ++   + +G+ +L  K  +HRDL   N+L+ +  ++KIADFGLAR  D+    
Sbjct: 129 LTQKDLVSFAYQVARGMEFLASKKCIHRDLAARNVLVTEDHVMKIADFGLAR--DIHHID 186

Query: 438 QYTPEVASR----WYRAPELLYASRCYDQSVDLWAVGCILGEMYT 478
            Y      R    W  APE L+  R Y    D+W+ G +L E++T
Sbjct: 187 YYRKTTNGRLPVKWM-APEALF-DRVYTHQSDVWSFGVLLWEIFT 229


>gnl|CDD|173639 cd05066, PTKc_EphR_A, Catalytic domain of the Protein Tyrosine
           Kinases, Class EphA Ephrin Receptors.  Protein Tyrosine
           Kinase (PTK) family; Ephrin Receptor (EphR) subfamily;
           most class EphA receptors including EphA3, EphA4, EphA5,
           and EphA7, but excluding EphA1, EphA2 and EphA10;
           catalytic (c) domain. The PTKc family is part of a
           larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. EphRs comprise the
           largest subfamily of receptor tyr kinases (RTKs). In
           general, class EphA receptors bind GPI-anchored ephrin-A
           ligands. There are ten vertebrate EphA receptors
           (EphA1-10), which display promiscuous interactions with
           six ephrin-A ligands. One exception is EphA4, which also
           binds ephrins-B2/B3. EphRs contain an ephrin-binding
           domain and two fibronectin repeats extracellularly, a
           transmembrane segment, and a cytoplasmic tyr kinase
           domain. Binding of the ephrin ligand to EphR requires
           cell-cell contact since both are anchored to the plasma
           membrane. The resulting downstream signals occur
           bidirectionally in both EphR-expressing cells (forward
           signaling) and ephrin-expressing cells (reverse
           signaling). Ephrin/EphR interaction mainly results in
           cell-cell repulsion or adhesion, making it important in
           neural development and plasticity, cell morphogenesis,
           cell-fate determination, embryonic development, tissue
           patterning, and angiogenesis. EphARs and ephrin-A
           ligands are expressed in multiple areas of the
           developing brain, especially in the retina and tectum.
           They are part of a system controlling retinotectal
           mapping.
          Length = 267

 Score = 56.8 bits (137), Expect = 6e-09
 Identities = 39/140 (27%), Positives = 70/140 (50%), Gaps = 6/140 (4%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P I+ L         V +V E+M++G L   L       T+  +   ++ +  G+ YL  
Sbjct: 65  PNIIHLEGVVTKSKPVMIVTEYMENGSLDAFLRKHDGQFTVIQLVGMLRGIASGMKYLSD 124

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTP---EVASRWYRAPELLYA 456
              +HRDL   N+L++   + K++DFGL+R  + +    YT    ++  RW  APE + A
Sbjct: 125 MGYVHRDLAARNILVNSNLVCKVSDFGLSRVLEDDPEAAYTTRGGKIPIRW-TAPEAI-A 182

Query: 457 SRCYDQSVDLWAVGCILGEM 476
            R +  + D+W+ G ++ E+
Sbjct: 183 YRKFTSASDVWSYGIVMWEV 202


>gnl|CDD|132949 cd06618, PKc_MKK7, Catalytic domain of the dual-specificity Protein
           Kinase, MAP kinase kinase 7.  Protein kinases (PKs), MAP
           kinase kinase 7 (MKK7) subfamily, catalytic (c) domain.
           PKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine or tyrosine residues on
           protein substrates. The MKK7 subfamily is part of a
           larger superfamily that includes the catalytic domains
           of other protein serine/threonine kinases, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. The mitogen-activated protein (MAP) kinase
           signaling pathways are important mediators of cellular
           responses to extracellular signals. The pathways involve
           a triple kinase core cascade comprising the MAP kinase
           (MAPK), which is phosphorylated and activated by a MAPK
           kinase (MAPKK or MKK), which itself is phosphorylated
           and activated by a MAPK kinase kinase (MAPKKK or MKKK).
           MKK7 is a dual-specificity PK that phosphorylates and
           activates its downstream target, c-Jun N-terminal kinase
           (JNK), on specific threonine and tyrosine residues.
           Although MKK7 is capable of dual phosphorylation, it
           prefers to phosphorylate the threonine residue of JNK.
           Thus, optimal activation of JNK requires both MKK4 (not
           included in this subfamily) and MKK7. MKK7 is primarily
           activated by cytokines. MKK7 is essential for liver
           formation during embryogenesis. It plays roles in G2/M
           cell cycle arrest and cell growth. In addition, it is
           involved in the control of programmed cell death, which
           is crucial in oncogenesis, cancer chemoresistance, and
           antagonism to TNFalpha-induced killing, through its
           inhibition by Gadd45beta and the subsequent suppression
           of the JNK cascade.
          Length = 296

 Score = 57.4 bits (139), Expect = 6e-09
 Identities = 52/166 (31%), Positives = 84/166 (50%), Gaps = 17/166 (10%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIP-HVKTYMQM-LLKGVSYL- 397
           P IVK   +F     V +  E M + L +LL  K+I   IP  +   M + ++K + YL 
Sbjct: 74  PYIVKCYGYFITDSDVFICMELMSTCLDKLL--KRIQGPIPEDILGKMTVAIVKALHYLK 131

Query: 398 --HGKFIMHRDLKPANLLIDKAGILKIADFGLA-RSFDVERWGQYTPEVASRWYRAPELL 454
             HG  ++HRD+KP+N+L+D +G +K+ DFG++ R  D +     T       Y APE +
Sbjct: 132 EKHG--VIHRDVKPSNILLDASGNVKLCDFGISGRLVDSK---AKTRSAGCAAYMAPERI 186

Query: 455 YASRC---YDQSVDLWAVGCILGEMYTNAPLFPG-ESDIEQLAMVL 496
                   YD   D+W++G  L E+ T    +   +++ E L  +L
Sbjct: 187 DPPDPNPKYDIRADVWSLGISLVELATGQFPYKNCKTEFEVLTKIL 232


>gnl|CDD|133234 cd05103, PTKc_VEGFR2, Catalytic domain of the Protein Tyrosine
           Kinase, Vascular Endothelial Growth Factor Receptor 2.
           Protein Tyrosine Kinase (PTK) family; Vascular
           Endothelial Growth Factor Receptor 2 (VEGFR2); catalytic
           (c) domain. The PTKc family is part of a larger
           superfamily that includes the catalytic domains of other
           kinases such as protein serine/threonine kinases, RIO
           kinases, and phosphoinositide 3-kinase (PI3K). PTKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to tyrosine (tyr) residues in protein substrates.
           VEGFR2 (or Flk1) is a member of the VEGFR subfamily of
           proteins, which are receptor tyr kinases (RTKs)
           containing an extracellular ligand-binding region with
           seven immunoglobulin (Ig)-like domains, a transmembrane
           segment, and an intracellular catalytic domain. The
           binding of VEGFRs to their ligands, the VEGFs, leads to
           receptor dimerization, activation, and intracellular
           signaling. The carboxyl terminus of VEGFR2 plays an
           important role in its autophosphorylation and
           activation. VEGFR2 binds the ligands VEGFA, VEGFC, VEGFD
           and VEGFE. VEGFR2 signaling is implicated in all aspects
           of normal and pathological vascular endothelial cell
           biology. It induces a variety of cellular effects
           including migration, survival, and proliferation. It is
           critical in regulating embryonic vascular development
           and angiogenesis. VEGFR2 is the major signal transducer
           in pathological angiogenesis including cancer and
           diabetic retinopathy, and is a target for inhibition in
           cancer therapy.
          Length = 343

 Score = 57.3 bits (138), Expect = 6e-09
 Identities = 52/180 (28%), Positives = 84/180 (46%), Gaps = 29/180 (16%)

Query: 378 LTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWG 437
           LT+  +  Y   + KG+ +L  +  +HRDL   N+L+ +  ++KI DFGLAR  D+ +  
Sbjct: 176 LTLEDLICYSFQVAKGMEFLASRKCIHRDLAARNILLSENNVVKICDFGLAR--DIYKDP 233

Query: 438 QYTPEVASRW---YRAPELLYASRCYDQSVDLWAVGCILGEMYT-NAPLFPGESDIEQLA 493
            Y  +  +R    + APE ++  R Y    D+W+ G +L E+++  A  +PG    E+  
Sbjct: 234 DYVRKGDARLPLKWMAPETIF-DRVYTIQSDVWSFGVLLWEIFSLGASPYPGVKIDEEFC 292

Query: 494 MVLHKLGTPTEDSWPGLKDLPDYNKITFAPSDPVPWSTML------PNASPDTLDLISKL 547
             L K GT            PDY       + P  + TML      P+  P   +L+  L
Sbjct: 293 RRL-KEGTRMR--------APDY-------TTPEMYQTMLDCWHGEPSQRPTFSELVEHL 336


>gnl|CDD|133212 cd05081, PTKc_Jak2_Jak3_rpt2, Catalytic (repeat 2) domain of the
           Protein Tyrosine Kinases, Janus kinases 2 and 3.
           Protein Tyrosine Kinase (PTK) family; Janus kinase 2
           (Jak2) and Jak3; catalytic (c) domain (repeat 2). The
           PTKc family is part of a larger superfamily that
           includes the catalytic domains of other kinases such as
           protein serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Jak2 and
           Jak3 are members of the Janus kinase (Jak) subfamily of
           proteins, which are cytoplasmic (or nonreceptor) tyr
           kinases containing an N-terminal FERM domain, followed
           by a Src homology 2 (SH2) domain, a pseudokinase domain,
           and a C-terminal catalytic tyr kinase domain. Jaks are
           crucial for cytokine receptor signaling. They are
           activated by autophosphorylation upon cytokine-induced
           receptor aggregation, and subsequently trigger
           downstream signaling events such as the phosphorylation
           of signal transducers and activators of transcription
           (STATs). Jak2 is widely expressed in many tissues while
           Jak3 is expressed only in hematopoietic cells. Jak2 is
           essential for the signaling of hormone-like cytokines
           such as growth hormone, erythropoietin, thrombopoietin,
           and prolactin, as well as some IFNs and cytokines that
           signal through the IL-3 and gp130 receptors. Jak3 binds
           the shared receptor subunit common gamma chain and thus,
           is essential in the signaling of cytokines that use it
           such as IL-2, IL-4, IL-7, IL-9, IL-15, and IL-21.
           Disruption of Jak2 in mice results in an embryonic
           lethal phenotype with multiple defects including
           erythropoietic and cardiac abnormalities. It is the only
           Jak gene that results in a lethal phenotype when
           disrupted in mice. A mutation in the pseudokinase domain
           of Jak2, V617F, is present in many myeloproliferative
           diseases, including almost all patients with
           polycythemia vera, and 50% of patients with essential
           thrombocytosis and myelofibrosis. Jak3 is important in
           lymphoid development and myeloid cell differentiation.
           Inactivating mutations in Jak3 have been reported in
           humans with severe combined immunodeficiency (SCID).
          Length = 284

 Score = 56.7 bits (137), Expect = 7e-09
 Identities = 43/125 (34%), Positives = 63/125 (50%), Gaps = 6/125 (4%)

Query: 358 LVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDK 416
           LV E++  G L + L   +  L    +  Y   + KG+ YL  K  +HRDL   N+L++ 
Sbjct: 84  LVMEYLPYGSLRDYLQKHRERLDHRKLLLYASQICKGMEYLGSKRYVHRDLATRNILVES 143

Query: 417 AGILKIADFGLARSF--DVERWGQYTP-EVASRWYRAPELLYASRCYDQSVDLWAVGCIL 473
              +KI DFGL +    D E +    P E    WY APE L  S+    S D+W+ G +L
Sbjct: 144 ENRVKIGDFGLTKVLPQDKEYYKVREPGESPIFWY-APESLTESKFSVAS-DVWSFGVVL 201

Query: 474 GEMYT 478
            E++T
Sbjct: 202 YELFT 206


>gnl|CDD|133180 cd05049, PTKc_Trk, Catalytic domain of the Protein Tyrosine
           Kinases, Tropomyosin Related Kinases.  Protein Tyrosine
           Kinase (PTK) family; Tropomyosin Related Kinase (Trk)
           subfamily; catalytic (c) domain. The Trk subfamily
           consists of TrkA, TrkB, TrkC, and similar proteins. The
           PTKc family is part of a larger superfamily that
           includes the catalytic domains of other kinases such as
           protein serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Trk
           subfamily members are receptor tyr kinases (RTKs)
           containing an extracellular region with arrays of
           leucine-rich motifs flanked by two cysteine-rich
           clusters followed by two immunoglobulin-like domains, a
           transmembrane segment, and an intracellular catalytic
           domain. Binding to their ligands, the nerve growth
           factor (NGF) family of neutrotrophins, leads to Trk
           receptor oligomerization and activation of the catalytic
           domain. Trk receptors are mainly expressed in the
           peripheral and central nervous systems. They play
           important roles in cell fate determination, neuronal
           survival and differentiation, as well as in the
           regulation of synaptic plasticity. Altered expression of
           Trk receptors is associated with many human diseases.
          Length = 280

 Score = 56.7 bits (137), Expect = 8e-09
 Identities = 43/153 (28%), Positives = 70/153 (45%), Gaps = 20/153 (13%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSG-LWELL--HD-----------KKIHLTIPHVKTYMQ 388
           IVK      + D   +VFE+M+ G L + L  H                LT+  +     
Sbjct: 70  IVKFYGVCTEGDPPIMVFEYMEHGDLNKFLRSHGPDAAFLKSPDSPMGELTLSQLLQIAV 129

Query: 389 MLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLAR---SFDVERWGQYTPEVAS 445
            +  G+ YL  +  +HRDL   N L+    ++KI DFG++R   + D  R G +T  +  
Sbjct: 130 QIASGMVYLASQHFVHRDLATRNCLVGYDLVVKIGDFGMSRDVYTTDYYRVGGHT-MLPI 188

Query: 446 RWYRAPELLYASRCYDQSVDLWAVGCILGEMYT 478
           RW     ++Y  R +    D+W+ G +L E++T
Sbjct: 189 RWMPPESIMY--RKFTTESDVWSFGVVLWEIFT 219


>gnl|CDD|173616 PTZ00426, PTZ00426, cAMP-dependent protein kinase catalytic
           subunit; Provisional.
          Length = 340

 Score = 56.9 bits (137), Expect = 9e-09
 Identities = 34/89 (38%), Positives = 49/89 (55%), Gaps = 7/89 (7%)

Query: 396 YLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQY-TPEVASRWYRAPELL 454
           YL    I++RDLKP NLL+DK G +K+ DFG A+  D   +    TPE     Y APE+L
Sbjct: 146 YLQSLNIVYRDLKPENLLLDKDGFIKMTDFGFAKVVDTRTYTLCGTPE-----YIAPEIL 200

Query: 455 YASRCYDQSVDLWAVGCILGEMYTNAPLF 483
             +  + ++ D W +G  + E+    P F
Sbjct: 201 L-NVGHGKAADWWTLGIFIYEILVGCPPF 228


>gnl|CDD|133221 cd05090, PTKc_Ror1, Catalytic domain of the Protein Tyrosine
           Kinase, Receptor tyrosine kinase-like Orphan Receptor 1.
            Protein Tyrosine Kinase (PTK) family; Receptor tyrosine
           kinase-like Orphan Receptor 1 (Ror1); catalytic (c)
           domain. The PTKc family is part of a larger superfamily
           that includes the catalytic domains of other kinases
           such as protein serine/threonine kinases, RIO kinases,
           and phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Ror
           proteins are orphan receptor tyr kinases (RTKs)
           containing an extracellular region with
           immunoglobulin-like, cysteine-rich, and kringle domains,
           a transmembrane segment, and an intracellular catalytic
           domain. Ror RTKs are unrelated to the nuclear receptor
           subfamily called retinoid-related orphan receptors
           (RORs). RTKs are usually activated through ligand
           binding, which causes dimerization and
           autophosphorylation of the intracellular tyr kinase
           catalytic domain. Ror kinases are expressed in many
           tissues during development. Avian Ror1 was found to be
           involved in late limb development. Studies in mice
           reveal that Ror1 is important in the regulation of
           neurite growth in central neurons, as well as in
           respiratory development. Loss of Ror1 also enhances the
           heart and skeletal abnormalities found in Ror2-deficient
           mice.
          Length = 283

 Score = 56.6 bits (136), Expect = 9e-09
 Identities = 48/190 (25%), Positives = 88/190 (46%), Gaps = 26/190 (13%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELL--------------HDKKIHLTIPHVKT 385
           P IV LL     +  VC++FE+++ G L E L               D  +  ++ H   
Sbjct: 67  PNIVCLLGVVTQEQPVCMLFEYLNQGDLHEFLIMRSPHSDVGCSSDEDGTVKSSLDH-GD 125

Query: 386 YMQMLLK---GVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPE 442
           ++ + ++   G+ YL   F +H+DL   N+LI +   +KI+D GL+R      + +  P+
Sbjct: 126 FLHIAIQIAAGMEYLSSHFFVHKDLAARNILIGEQLHVKISDLGLSREIYSADYYRVQPK 185

Query: 443 --VASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNA--PLFPGESDIEQLAMVLHK 498
             +  RW     ++Y    +    D+W+ G +L E+++    P + G S+ E + MV  +
Sbjct: 186 SLLPIRWMPPEAIMYGK--FSSDSDIWSFGVVLWEIFSFGLQPYY-GFSNQEVIEMVRKR 242

Query: 499 LGTPTEDSWP 508
              P  +  P
Sbjct: 243 QLLPCSEDCP 252


>gnl|CDD|173679 cd05588, STKc_aPKC, Catalytic domain of the Protein
           Serine/Threonine Kinase, Atypical Protein Kinase C.
           Serine/Threonine Kinases (STKs), Atypical Protein Kinase
           C (aPKC) subfamily, catalytic (c) domain. STKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           aPKC subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. PKCs are classified into three groups
           (classical, atypical, and novel) depending on their mode
           of activation and the structural characteristics of
           their regulatory domain. aPKCs only require
           phosphatidylserine (PS) for activation. They contain a
           C2-like region, instead of a calcium-binding (C2) region
           found in classical PKCs, in their regulatory domain.
           There are two aPKC isoforms, zeta and iota. aPKCs are
           involved in many cellular functions including
           proliferation, migration, apoptosis, polarity
           maintenance and cytoskeletal regulation. They also play
           a critical role in the regulation of glucose metabolism
           and in the pathogenesis of type 2 diabetes.
          Length = 329

 Score = 56.8 bits (137), Expect = 1e-08
 Identities = 48/168 (28%), Positives = 80/168 (47%), Gaps = 13/168 (7%)

Query: 313 ELLHDKKIHLTIPHIKTYTYLSDVFSFLPQIVKLLDFFPDQDTVCLVFEHMDSGLWELLH 372
           EL++D +    I  ++T  ++ +  S  P +V L   F  +  +  V E +  G      
Sbjct: 31  ELVNDDE---DIDWVQTEKHVFETASNHPFLVGLHSCFQTESRLFFVIEFVSGGDLMFHM 87

Query: 373 DKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLA---- 428
            ++  L   H + Y   +   +++LH + I++RDLK  N+L+D  G +K+ D+G+     
Sbjct: 88  QRQRKLPEEHARFYSAEISLALNFLHERGIIYRDLKLDNVLLDAEGHIKLTDYGMCKEGI 147

Query: 429 RSFDVERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEM 476
           R  D       TP      Y APE+L     Y  SVD WA+G ++ EM
Sbjct: 148 RPGDTTSTFCGTPN-----YIAPEILRGED-YGFSVDWWALGVLMFEM 189


>gnl|CDD|173720 cd05631, STKc_GRK4, Catalytic domain of the Protein
           Serine/Threonine Kinase, G protein-coupled Receptor
           Kinase 4.  Serine/Threonine Kinases (STKs), G
           protein-coupled Receptor Kinase (GRK) subfamily, GRK4
           isoform, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The GRK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. GRKs phosphorylate and regulate G
           protein-coupled receptors (GPCRs), the largest
           superfamily of cell surface receptors which regulate
           some part of nearly all physiological functions.
           Phosphorylated GPCRs bind to arrestins, which prevents
           further G protein signaling despite the presence of
           activating ligand. There are seven types of GRKs, named
           GRK1 to GRK7. GRK4 has a limited tissue distribution. It
           is mainly found in the testis, but is also present in
           the cerebellum and kidney. It is expressed as multiple
           splice variants with different domain architectures. It
           is post-translationally palmitoylated and localized in
           the membrane. GRK4 polymorphisms are associated with
           hypertension and salt sensitivity, as they cause
           hyperphosphorylation, desensitization, and
           internalization of the dopamine 1 (D1) receptor while
           increasing the expression of the angiotensin II type 1
           receptor. GRK4 plays a crucial role in the D1 receptor
           regulation of sodium excretion and blood pressure.
          Length = 285

 Score = 56.2 bits (135), Expect = 1e-08
 Identities = 43/142 (30%), Positives = 66/142 (46%), Gaps = 17/142 (11%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHL--------TIPHVKTYMQMLLKGV 394
           +V L   +  +D +CLV   M+ G      D K H+               Y   L  G+
Sbjct: 62  VVSLAYAYETKDALCLVLTIMNGG------DLKFHIYNMGNPGFDEQRAIFYAAELCCGL 115

Query: 395 SYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELL 454
             L  + I++RDLKP N+L+D  G ++I+D GLA    +         V +  Y APE++
Sbjct: 116 EDLQRERIVYRDLKPENILLDDRGHIRISDLGLA--VQIPEGETVRGRVGTVGYMAPEVI 173

Query: 455 YASRCYDQSVDLWAVGCILGEM 476
             +  Y  S D W +GC++ EM
Sbjct: 174 -NNEKYTFSPDWWGLGCLIYEM 194


>gnl|CDD|173502 PTZ00266, PTZ00266, NIMA-related protein kinase; Provisional.
          Length = 1021

 Score = 57.8 bits (139), Expect = 1e-08
 Identities = 38/130 (29%), Positives = 63/130 (48%), Gaps = 27/130 (20%)

Query: 388 QMLLKGVSYLH-------GKFIMHRDLKPANLLIDKA-----------------GILKIA 423
           + LL  ++Y H       G+ ++HRDLKP N+ +                     I KI 
Sbjct: 125 RQLLHALAYCHNLKDGPNGERVLHRDLKPQNIFLSTGIRHIGKITAQANNLNGRPIAKIG 184

Query: 424 DFGLARSFDVERWGQYTPEVASRWYRAPELL-YASRCYDQSVDLWAVGCILGEMYTNAPL 482
           DFGL+++  +E        V + +Y +PELL + ++ YD   D+WA+GCI+ E+ +    
Sbjct: 185 DFGLSKNIGIESMAHSC--VGTPYYWSPELLLHETKSYDDKSDMWALGCIIYELCSGKTP 242

Query: 483 FPGESDIEQL 492
           F   ++  QL
Sbjct: 243 FHKANNFSQL 252


>gnl|CDD|132967 cd06636, STKc_MAP4K4_6, Catalytic domain of the Protein
           Serine/Threonine Kinases, Mitogen-Activated Protein
           Kinase Kinase Kinase Kinase 4 and 6.  Serine/threonine
           kinases (STKs), mitogen-activated protein kinase (MAPK)
           kinase kinase kinase 4 (MAPKKKK4 or MAP4K4) and MAPKKKK6
           (or MAP4K6) subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The MAP4K4/MAP4K6 subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. Members of this subfamily
           contain an N-terminal catalytic domain and a C-terminal
           citron homology (CNH) regulatory domain. MAP4Ks (or
           MAPKKKKs) are involved in MAPK signaling pathways that
           are important in mediating cellular responses to
           extracellular signals by activating a MAPK kinase kinase
           (MAPKKK or MAP3K or MKKK). Each MAPK cascade is
           activated either by a small GTP-binding protein or by an
           adaptor protein, which transmits the signal either
           directly to a MAP3K to start the triple kinase core
           cascade or indirectly through a mediator kinase, a
           MAP4K. MAP4K4 is also called Nck Interacting kinase
           (NIK). It facilitates the activation of the MAPKs,
           extracellular signal-regulated kinase (ERK) 1, ERK2, and
           c-Jun N-terminal kinase (JNK), by phosphorylating and
           activating MEKK1. MAP4K4 plays a role in tumor necrosis
           factor (TNF) alpha-induced insulin resistance. MAP4K4
           silencing in skeletal muscle cells from type II diabetic
           patients restores insulin-mediated glucose uptake.
           MAP4K4, through JNK, also plays a broad role in cell
           motility, which impacts inflammation, homeostasis, as
           well as the invasion and spread of cancer. MAP4K4 is
           found to be highly expressed in most tumor cell lines
           relative to normal tissue. MAP4K6 (also called MINK for
           Misshapen/NIKs-related kinase) is activated after Ras
           induction and mediates activation of p38 MAPK. MAP4K6
           plays a role in cell cycle arrest, cytoskeleton
           organization, cell adhesion, and cell motility.
          Length = 282

 Score = 55.8 bits (134), Expect = 1e-08
 Identities = 43/171 (25%), Positives = 88/171 (51%), Gaps = 8/171 (4%)

Query: 317 DKKIHLTIPHIKTYTYLSDVFSFLPQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKK 375
           +++I L I  +K Y++  ++ ++    +K      D D + LV E   +G + +L+ + K
Sbjct: 56  EEEIKLEINMLKKYSHHRNIATYYGAFIKKSPPGHD-DQLWLVMEFCGAGSVTDLVKNTK 114

Query: 376 IHLTIPHVKTYM-QMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVE 434
            +        Y+ + +L+G+++LH   ++HRD+K  N+L+ +   +K+ DFG++   D  
Sbjct: 115 GNALKEDWIAYICREILRGLAHLHAHKVIHRDIKGQNVLLTENAEVKLVDFGVSAQLD-R 173

Query: 435 RWGQYTPEVASRWYRAPELLYASR----CYDQSVDLWAVGCILGEMYTNAP 481
             G+    + + ++ APE++         YD   D+W++G    EM   AP
Sbjct: 174 TVGRRNTFIGTPYWMAPEVIACDENPDATYDYRSDIWSLGITAIEMAEGAP 224


>gnl|CDD|173649 cd05093, PTKc_TrkB, Catalytic domain of the Protein Tyrosine
           Kinase, Tropomyosin Related Kinase B.  Protein Tyrosine
           Kinase (PTK) family; Tropomyosin Related Kinase B
           (TrkB); catalytic (c) domain. The PTKc family is part of
           a larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. TrkB is a member of the
           Trk subfamily of proteins, which are receptor tyr
           kinases (RTKs) containing an extracellular region with
           arrays of leucine-rich motifs flanked by two
           cysteine-rich clusters followed by two
           immunoglobulin-like domains, a transmembrane segment,
           and an intracellular catalytic domain. Binding of TrkB
           to its ligands, brain-derived neurotrophic factor (BDNF)
           or neurotrophin 4 (NT4), results in receptor
           oligomerization and activation of the catalytic domain.
           TrkB is broadly expressed in the nervous system and in
           some non-neural tissues. It plays important roles in
           cell proliferation, differentiation, and survival.
           BDNF/Trk signaling plays a key role in regulating
           activity-dependent synaptic plasticity. TrkB also
           contributes to protection against gp120-induced neuronal
           cell death. TrkB overexpression is associated with poor
           prognosis in neuroblastoma (NB) and other human cancers.
           It acts as a suppressor of anoikis (detachment-induced
           apoptosis) and contributes to tumor metastasis.
          Length = 288

 Score = 55.8 bits (134), Expect = 1e-08
 Identities = 44/153 (28%), Positives = 73/153 (47%), Gaps = 19/153 (12%)

Query: 342 QIVKLLDFFPDQDTVCLVFEHMDSG-LWELLH------------DKKIHLTIPHVKTYMQ 388
            IVK      + D + +VFE+M  G L + L             ++   LT   +    Q
Sbjct: 68  HIVKFYGVCVEGDPLIMVFEYMKHGDLNKFLRAHGPDAVLMAEGNRPAELTQSQMLHIAQ 127

Query: 389 MLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLAR---SFDVERWGQYTPEVAS 445
            +  G+ YL  +  +HRDL   N L+ +  ++KI DFG++R   S D  R G +T  +  
Sbjct: 128 QIAAGMVYLASQHFVHRDLATRNCLVGENLLVKIGDFGMSRDVYSTDYYRVGGHT-MLPI 186

Query: 446 RWYRAPELLYASRCYDQSVDLWAVGCILGEMYT 478
           RW     ++Y  R +    D+W++G +L E++T
Sbjct: 187 RWMPPESIMY--RKFTTESDVWSLGVVLWEIFT 217


>gnl|CDD|132988 cd06657, STKc_PAK4, Catalytic domain of the Protein
           Serine/Threonine Kinase, p21-activated kinase 4.
           Serine/threonine kinases (STKs), p21-activated kinase
           (PAK) 4, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The PAK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. PAKs are Rho family GTPase-regulated kinases
           that serve as important mediators in the function of
           Cdc42 (cell division cycle 42) and Rac. PAKs from higher
           eukaryotes are classified into two groups (I and II),
           according to their biochemical and structural features.
           PAK4 belongs to group II. Group II PAKs contain a PBD
           (p21-binding domain) and a C-terminal catalytic domain,
           but do not harbor an AID (autoinhibitory domain) or SH3
           binding sites. PAK4 regulates cell morphology and
           cytoskeletal organization. It is essential for embryonic
           viability and proper neural development. Mice lacking
           PAK4 die due to defects in the fetal heart. In addition,
           their spinal cord motor neurons showed failure to
           differentiate and migrate. PAK4 also plays a role in
           cell survival and tumorigenesis. It is overexpressed in
           many primary tumors including colon, esophageal, and
           mammary tumors. PAK4 has also been implicated in viral
           and bacterial infection pathways.
          Length = 292

 Score = 55.8 bits (134), Expect = 1e-08
 Identities = 54/222 (24%), Positives = 98/222 (44%), Gaps = 36/222 (16%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTI--PHVKTYMQMLLKGVSYLHGK 400
           +V++ + +   D + +V E ++ G    L D   H  +    +      +LK +S LH +
Sbjct: 79  VVEMYNSYLVGDELWVVMEFLEGGA---LTDIVTHTRMNEEQIAAVCLAVLKALSVLHAQ 135

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRC- 459
            ++HRD+K  ++L+   G +K++DFG       E   +    V + ++ APEL+  SR  
Sbjct: 136 GVIHRDIKSDSILLTHDGRVKLSDFGFCAQVSKEV-PRRKSLVGTPYWMAPELI--SRLP 192

Query: 460 YDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKI 519
           Y   VD+W++G ++ EM    P +  E  ++ + M+   L        P LK+       
Sbjct: 193 YGPEVDIWSLGIMVIEMVDGEPPYFNEPPLKAMKMIRDNLP-------PKLKN------- 238

Query: 520 TFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRLPANEI 561
                        L   SP     + +LL+ D  +R  A E+
Sbjct: 239 -------------LHKVSPSLKGFLDRLLVRDPAQRATAAEL 267


>gnl|CDD|133200 cd05069, PTKc_Yes, Catalytic domain of the Protein Tyrosine Kinase,
           Yes.  Protein Tyrosine Kinase (PTK) family; Yes kinase;
           catalytic (c) domain. The PTKc family is part of a
           larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Yes (or c-Yes) is a
           member of the Src subfamily of proteins, which are
           cytoplasmic (or non-receptor) tyr kinases. Src kinases
           contain an N-terminal SH4 domain with a myristoylation
           site, followed by SH3 and SH2 domains, a tyr kinase
           domain, and a regulatory C-terminal region containing a
           conserved tyr. They are activated by autophosphorylation
           at the tyr kinase domain, but are negatively regulated
           by phosphorylation at the C-terminal tyr by Csk
           (C-terminal Src Kinase). Src proteins are involved in
           signaling pathways that regulate cytokine and growth
           factor responses, cytoskeleton dynamics, cell
           proliferation, survival, and differentiation. c-Yes
           kinase is the cellular homolog of the oncogenic protein
           (v-Yes) encoded by the Yamaguchi 73 and Esh sarcoma
           viruses. It displays functional overlap with other Src
           subfamily members, particularly Src. It also shows some
           unique functions such as binding to occludins,
           transmembrane proteins that regulate extracellular
           interactions in tight junctions. Yes also associates
           with a number of proteins in different cell types that
           Src does not interact with, like JAK2 and gp130 in
           pre-adipocytes, and Pyk2 in treated pulmonary vein
           endothelial cells. Although the biological function of
           Yes remains unclear, it appears to have a role in
           regulating cell-cell interactions and vesicle
           trafficking in polarized cells.
          Length = 260

 Score = 55.4 bits (133), Expect = 2e-08
 Identities = 48/163 (29%), Positives = 79/163 (48%), Gaps = 12/163 (7%)

Query: 353 QDTVCLVFEHMDSG-LWELLH--DKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKP 409
           ++ + +V E M  G L + L   D K +L +P +      +  G++Y+     +HRDL+ 
Sbjct: 72  EEPIYIVTEFMGKGSLLDFLKEGDGK-YLKLPQLVDMAAQIADGMAYIERMNYIHRDLRA 130

Query: 410 ANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW---YRAPELLYASRCYDQSVDL 466
           AN+L+    + KIADFGLAR  +     +YT    +++   + APE     R   +S D+
Sbjct: 131 ANILVGDNLVCKIADFGLARLIEDN---EYTARQGAKFPIKWTAPEAALYGRFTIKS-DV 186

Query: 467 WAVGCILGEMYTNAPL-FPGESDIEQLAMVLHKLGTPTEDSWP 508
           W+ G +L E+ T   + +PG  + E L  V      P     P
Sbjct: 187 WSFGILLTELVTKGRVPYPGMVNREVLEQVERGYRMPCPQGCP 229


>gnl|CDD|133165 cd05033, PTKc_EphR, Catalytic domain of Ephrin Receptor Protein
           Tyrosine Kinases.  Protein Tyrosine Kinase (PTK) family;
           Ephrin Receptor (EphR) subfamily; catalytic (c) domain.
           The PTKc family is part of a larger superfamily that
           includes the catalytic domains of other kinases such as
           protein serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. EphRs
           comprise the largest subfamily of receptor tyr kinases
           (RTKs). They can be classified into two classes (EphA
           and EphB), according to their extracellular sequences,
           which largely correspond to binding preferences for
           either GPI-anchored ephrin-A ligands or transmembrane
           ephrin-B ligands. Vertebrates have ten EphA and six EhpB
           receptors, which display promiscuous ligand interactions
           within each class. EphRs contain an ephrin binding
           domain and two fibronectin repeats extracellularly, a
           transmembrane segment, and a cytoplasmic tyr kinase
           domain. Binding of the ephrin ligand to EphR requires
           cell-cell contact since both are anchored to the plasma
           membrane. This allows ephrin/EphR dimers to form,
           leading to the activation of the intracellular tyr
           kinase domain. The resulting downstream signals occur
           bidirectionally in both EphR-expressing cells (forward
           signaling) and ephrin-expressing cells (reverse
           signaling). The main effect of ephrin/EphR interaction
           is cell-cell repulsion or adhesion. Ephrin/EphR
           signaling is important in neural development and
           plasticity, cell morphogenesis and proliferation,
           cell-fate determination, embryonic development, tissue
           patterning, and angiogenesis.
          Length = 266

 Score = 55.4 bits (134), Expect = 2e-08
 Identities = 41/144 (28%), Positives = 71/144 (49%), Gaps = 17/144 (11%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELL--HDKKIHLTIPHVKTYMQML---LKGV 394
           P I++L         V ++ E+M++G L + L  +D K  +        + ML     G+
Sbjct: 65  PNIIRLEGVVTKSRPVMIITEYMENGSLDKFLRENDGKFTVG-----QLVGMLRGIASGM 119

Query: 395 SYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTP---EVASRWYRAP 451
            YL     +HRDL   N+L++   + K++DFGL+R    +    YT    ++  RW  AP
Sbjct: 120 KYLSEMNYVHRDLAARNILVNSNLVCKVSDFGLSR-RLEDSEATYTTKGGKIPIRW-TAP 177

Query: 452 ELLYASRCYDQSVDLWAVGCILGE 475
           E + A R +  + D+W+ G ++ E
Sbjct: 178 EAI-AYRKFTSASDVWSFGIVMWE 200


>gnl|CDD|132978 cd06647, STKc_PAK_I, Catalytic domain of the Protein
           Serine/Threonine Kinase, Group I p21-activated kinase.
           Serine/threonine kinases (STKs), p21-activated kinase
           (PAK) subfamily, Group I, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The PAK subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. PAKs are Rho family GTPase-regulated kinases
           that serve as important mediators in the function of
           Cdc42 (cell division cycle 42) and Rac. PAKs are
           implicated in the regulation of many cellular processes
           including growth factor receptor-mediated proliferation,
           cell polarity, cell motility, cell death and survival,
           and actin cytoskeleton organization. PAKs from higher
           eukaryotes are classified into two groups (I and II),
           according to their biochemical and structural features.
           Group I PAKs, also called conventional PAKs, include
           PAK1, PAK2, and PAK3. Group I PAKs contain a PBD
           (p21-binding domain) overlapping with an AID
           (autoinhibitory domain), a C-terminal catalytic domain,
           SH3 binding sites and a non-classical SH3 binding site
           for PIX (PAK-interacting exchange factor). They interact
           with the SH3 domain containing proteins Nck, Grb2 and
           PIX. Binding of group I PAKs to activated GTPases leads
           to conformational changes that destabilize the AID,
           allowing autophosphorylation and full activation of the
           kinase domain. Known group I PAK substrates include
           MLCK, Bad, Raf, MEK1, LIMK, Merlin, Vimentin, Myc,
           Stat5a, and Aurora A, among others.
          Length = 293

 Score = 55.7 bits (134), Expect = 2e-08
 Identities = 44/173 (25%), Positives = 79/173 (45%), Gaps = 26/173 (15%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQM----------- 389
           P IV  LD +   D + +V E++  G            ++  V T   M           
Sbjct: 76  PNIVNYLDSYLVGDELWVVMEYLAGG------------SLTDVVTETCMDEGQIAAVCRE 123

Query: 390 LLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYR 449
            L+ + +LH   ++HRD+K  N+L+   G +K+ DFG       E+  + +  V + ++ 
Sbjct: 124 CLQALEFLHSNQVIHRDIKSDNILLGMDGSVKLTDFGFCAQITPEQ-SKRSTMVGTPYWM 182

Query: 450 APELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTP 502
           APE++   + Y   VD+W++G +  EM    P +  E+ +  L ++    GTP
Sbjct: 183 APEVV-TRKAYGPKVDIWSLGIMAIEMVEGEPPYLNENPLRALYLIATN-GTP 233


>gnl|CDD|133246 cd05115, PTKc_Zap-70, Catalytic domain of the Protein Tyrosine
           Kinase, Zeta-chain-associated protein of 70kDa.  Protein
           Tyrosine Kinase (PTK) family; Zeta-chain-associated
           protein of 70kDa (Zap-70); catalytic (c) domain. The
           PTKc family is part of a larger superfamily that
           includes the catalytic domains of other kinases such as
           protein serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Zap-70 is
           a member of the Syk subfamily of kinases, which are
           cytoplasmic (or nonreceptor) tyr kinases containing two
           Src homology 2 (SH2) domains N-terminal to the catalytic
           tyr kinase domain. Zap-70 is primarily expressed in
           T-cells and NK cells, and is a crucial component in
           T-cell receptor (TCR) signaling. Zap-70 binds the
           phosphorylated ITAM (immunoreceptor tyr activation
           motif) sequences of the activated TCR zeta-chain through
           its SH2 domains, leading to its phosphorylation and
           activation. It then phosphorylates target proteins,
           which propagate the signals to downstream pathways.
           Zap-70 is hardly detected in normal peripheral B-cells,
           but is present in some B-cell malignancies. It is used
           as a diagnostic marker for chronic lymphocytic leukemia
           (CLL) as it is associated with the more aggressive
           subtype of the disease.
          Length = 257

 Score = 55.0 bits (132), Expect = 2e-08
 Identities = 42/142 (29%), Positives = 72/142 (50%), Gaps = 7/142 (4%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P IV+++    + + + LV E    G L + L  KK  +T+ +V   M  +  G+ YL G
Sbjct: 55  PYIVRMIGVC-EAEALMLVMEMASGGPLNKFLSGKKDEITVSNVVELMHQVSMGMKYLEG 113

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW---YRAPELLYA 456
           K  +HRDL   N+L+      KI+DFGL+++   +    Y    A +W   + APE +  
Sbjct: 114 KNFVHRDLAARNVLLVNQHYAKISDFGLSKALGADD-SYYKARSAGKWPLKWYAPECINF 172

Query: 457 SRCYDQSVDLWAVGCILGEMYT 478
            +   +S D+W+ G  + E ++
Sbjct: 173 RKFSSRS-DVWSYGITMWEAFS 193


>gnl|CDD|133233 cd05102, PTKc_VEGFR3, Catalytic domain of the Protein Tyrosine
           Kinase, Vascular Endothelial Growth Factor Receptor 3.
           Protein Tyrosine Kinase (PTK) family; Vascular
           Endothelial Growth Factor Receptor 3 (VEGFR3); catalytic
           (c) domain. The PTKc family is part of a larger
           superfamily that includes the catalytic domains of other
           kinases such as protein serine/threonine kinases, RIO
           kinases, and phosphoinositide 3-kinase (PI3K). PTKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to tyrosine (tyr) residues in protein substrates.
           VEGFR3 (or Flt4) is a member of the VEGFR subfamily of
           proteins, which are receptor tyr kinases (RTKs)
           containing an extracellular ligand-binding region with
           seven immunoglobulin (Ig)-like domains, a transmembrane
           segment, and an intracellular catalytic domain. In
           VEGFR3, the fifth Ig-like domain is replaced by a
           disulfide bridge. The binding of VEGFRs to their
           ligands, the VEGFs, leads to receptor dimerization,
           activation, and intracellular signaling. VEGFR3
           preferentially binds the ligands VEGFC and VEGFD. VEGFR3
           is essential for lymphatic endothelial cell (EC)
           development and function. It has been shown to regulate
           adaptive immunity during corneal transplantation. VEGFR3
           is upregulated on blood vascular ECs in pathological
           conditions such as vascular tumors and the periphery of
           solid tumors. It plays a role in cancer progression and
           lymph node metastasis. Missense mutations in the VEGFR3
           gene are associated with primary human lymphedema.
          Length = 338

 Score = 55.4 bits (133), Expect = 3e-08
 Identities = 34/112 (30%), Positives = 63/112 (56%), Gaps = 7/112 (6%)

Query: 378 LTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWG 437
           LT+  +  Y   + +G+ +L  +  +HRDL   N+L+ +  ++KI DFGLAR  D+ +  
Sbjct: 171 LTMEDLICYSFQVARGMEFLASRKCIHRDLAARNILLSENNVVKICDFGLAR--DIYKDP 228

Query: 438 QYTPEVASRW---YRAPELLYASRCYDQSVDLWAVGCILGEMYT-NAPLFPG 485
            Y  + ++R    + APE ++  + Y    D+W+ G +L E+++  A  +PG
Sbjct: 229 DYVRKGSARLPLKWMAPESIF-DKVYTTQSDVWSFGVLLWEIFSLGASPYPG 279


>gnl|CDD|132989 cd06658, STKc_PAK5, Catalytic domain of the Protein
           Serine/Threonine Kinase, p21-activated kinase 5.
           Serine/threonine kinases (STKs), p21-activated kinase
           (PAK) 5, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The PAK
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. PAKs are Rho family GTPase-regulated kinases
           that serve as important mediators in the function of
           Cdc42 (cell division cycle 42) and Rac. PAKs from higher
           eukaryotes are classified into two groups (I and II),
           according to their biochemical and structural features.
           PAK5 belongs to group II. Group II PAKs contain a PBD
           (p21-binding domain) and a C-terminal catalytic domain,
           but do not harbor an AID (autoinhibitory domain) or SH3
           binding sites. PAK5 is mainly expressed in the brain. It
           is not required for viability, but together with PAK6,
           it is required for normal levels of locomotion and
           activity, and for learning and memory. PAK5 cooperates
           with Inca (induced in neural crest by AP2) in the
           regulation of cell adhesion and cytoskeletal
           organization in the embryo and in neural crest cells
           during craniofacial development. PAK5 may also play a
           role in controlling the signaling of Raf-1, an effector
           of Ras, at the mitochondria.
          Length = 292

 Score = 55.0 bits (132), Expect = 3e-08
 Identities = 44/163 (26%), Positives = 79/163 (48%), Gaps = 23/163 (14%)

Query: 354 DTVCLVFEHMDSGLWELLHDKKIHLTI--PHVKTYMQMLLKGVSYLHGKFIMHRDLKPAN 411
           D + +V E ++ G    L D   H  +    + T    +L+ +SYLH + ++HRD+K  +
Sbjct: 92  DELWVVMEFLEGGA---LTDIVTHTRMNEEQIATVCLSVLRALSYLHNQGVIHRDIKSDS 148

Query: 412 LLIDKAGILKIADFGLARSFDVERWGQYTPEVASR-------WYRAPELLYASRC-YDQS 463
           +L+   G +K++DFG           Q + EV  R       ++ APE++  SR  Y   
Sbjct: 149 ILLTSDGRIKLSDFGFC--------AQVSKEVPKRKSLVGTPYWMAPEVI--SRLPYGTE 198

Query: 464 VDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDS 506
           VD+W++G ++ EM    P +  E  ++ +  +   L    +DS
Sbjct: 199 VDIWSLGIMVIEMIDGEPPYFNEPPLQAMRRIRDNLPPRVKDS 241


>gnl|CDD|132968 cd06637, STKc_TNIK, Catalytic domain of the Protein
           Serine/Threonine Kinase, Traf2- and Nck-interacting
           kinase.  Serine/threonine kinases (STKs), Traf2- and
           Nck-interacting kinase (TNIK) subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The TNIK subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. Members of this
           subfamily contain an N-terminal catalytic domain and a
           C-terminal citron homology (CNH) regulatory domain,
           similar to mitogen-activated protein kinase (MAPK),
           kinase kinase kinase 4 (MAP4K4), and MAP4K6. MAP4Ks
           participate in some MAPK signaling pathways by
           activating a MAPK kinase kinase (MAPKKK or MAP3K or
           MKKK). TNIK is an effector of Rap2, a small GTP-binding
           protein from the Ras family. TNIK specifically activates
           the c-Jun N-terminal kinase (JNK) pathway and plays a
           role in regulating the actin cytoskeleton.
          Length = 272

 Score = 54.7 bits (131), Expect = 3e-08
 Identities = 30/96 (31%), Positives = 53/96 (55%), Gaps = 5/96 (5%)

Query: 390 LLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYR 449
           +L+G+S+LH   ++HRD+K  N+L+ +   +K+ DFG++   D    G+    + + ++ 
Sbjct: 120 ILRGLSHLHQHKVIHRDIKGQNVLLTENAEVKLVDFGVSAQLD-RTVGRRNTFIGTPYWM 178

Query: 450 APELLYASR----CYDQSVDLWAVGCILGEMYTNAP 481
           APE++         YD   DLW++G    EM   AP
Sbjct: 179 APEVIACDENPDATYDFKSDLWSLGITAIEMAEGAP 214


>gnl|CDD|132938 cd06607, STKc_TAO, Catalytic domain of the Protein Serine/Threonine
           Kinase, Thousand-and-one amino acids proteins.
           Serine/threonine kinases (STKs), thousand-and-one amino
           acids (TAO) subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The TAO subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. TAO proteins possess mitogen-activated protein
           kinase (MAPK) kinase kinase (MAPKKK or MAP3K or MKKK)
           activity. They activate the MAPKs, p38 and c-Jun
           N-terminal kinase (JNK), by phosphorylating and
           activating the respective MAP/ERK kinases (MEKs, also
           known as MKKs or MAPKKs), MEK3/MEK6 and MKK4/MKK7. MAPK
           signaling cascades are important in mediating cellular
           responses to extracellular signals. Vertebrates contain
           three TAO subfamily members, named TAO1, TAO2, and TAO3.
          Length = 307

 Score = 55.2 bits (133), Expect = 3e-08
 Identities = 37/98 (37%), Positives = 54/98 (55%), Gaps = 12/98 (12%)

Query: 391 LKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRA 450
           L+G++YLH    +HRD+K  N+L+ + G +K+ADFG A           TP     ++ A
Sbjct: 125 LQGLAYLHSHERIHRDIKAGNILLTEPGTVKLADFGSASLVSPANSFVGTP-----YWMA 179

Query: 451 PELLYA--SRCYDQSVDLWAVG--CI-LGEMYTNAPLF 483
           PE++ A     YD  VD+W++G  CI L E     PLF
Sbjct: 180 PEVILAMDEGQYDGKVDVWSLGITCIELAE--RKPPLF 215



 Score = 34.4 bits (79), Expect = 0.14
 Identities = 14/44 (31%), Positives = 28/44 (63%)

Query: 2  GAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
          G+ G V  AR+  TN++VAIK++    + ++    D+++E++ L
Sbjct: 26 GSFGAVYFARDVRTNEVVAIKKMSYSGKQSNEKWQDIIKEVRFL 69


>gnl|CDD|132966 cd06635, STKc_TAO1, Catalytic domain of the Protein
           Serine/Threonine Kinase, Thousand-and-one amino acids 1.
            Serine/threonine kinases (STKs), thousand-and-one amino
           acids 1 (TAO1) subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The TAO subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. TAO proteins possess mitogen-activated protein
           kinase (MAPK) kinase kinase (MAPKKK or MAP3K or MKKK)
           activity. MAPK signaling cascades are important in
           mediating cellular responses to extracellular signals.
           TAO1 is sometimes referred to as prostate-derived
           sterile 20-like kinase 2 (PSK2). TAO1 activates the p38
           MAPK through direct interaction with and activation of
           MEK3. TAO1 is highly expressed in the brain and may play
           a role in neuronal apoptosis. TAO1 interacts with the
           checkpoint proteins BubR1 and Mad2, and plays an
           important role in regulating mitotic progression, which
           is required for both chromosome congression and
           checkpoint-induced anaphase delay. TAO1 may play a role
           in protecting genomic stability.
          Length = 317

 Score = 55.1 bits (132), Expect = 3e-08
 Identities = 40/131 (30%), Positives = 63/131 (48%), Gaps = 7/131 (5%)

Query: 353 QDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANL 412
           + T  LV E+      +LL   K  L    +       L+G++YLH   ++HRD+K  N+
Sbjct: 97  EHTAWLVMEYCLGSASDLLEVHKKPLQEVEIAAITHGALQGLAYLHSHNMIHRDIKAGNI 156

Query: 413 LIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYA--SRCYDQSVDLWAVG 470
           L+ + G +K+ADFG A           TP     ++ APE++ A     YD  VD+W++G
Sbjct: 157 LLTEPGQVKLADFGSASIASPANSFVGTP-----YWMAPEVILAMDEGQYDGKVDVWSLG 211

Query: 471 CILGEMYTNAP 481
               E+    P
Sbjct: 212 ITCIELAERKP 222



 Score = 30.4 bits (68), Expect = 2.1
 Identities = 15/45 (33%), Positives = 28/45 (62%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
           G+ G V  AR+  TN++VAIK++    + ++    D+++E+K L
Sbjct: 35 HGSFGAVYFARDVRTNEVVAIKKMSYSGKQSNEKWQDIIKEVKFL 79


>gnl|CDD|133194 cd05063, PTKc_EphR_A2, Catalytic domain of the Protein Tyrosine
           Kinase, Ephrin Receptor A2.  Protein Tyrosine Kinase
           (PTK) family; Ephrin Receptor (EphR) subfamily; EphA2
           receptor; catalytic (c) domain. The PTKc family is part
           of a larger superfamily that includes the catalytic
           domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. EphRs
           comprise the largest subfamily of receptor tyr kinases
           (RTKs). In general, class EphA receptors bind
           GPI-anchored ephrin-A ligands. There are ten vertebrate
           EphA receptors (EphA1-10), which display promiscuous
           interactions with six ephrin-A ligands. EphRs contain an
           ephrin binding domain and two fibronectin repeats
           extracellularly, a transmembrane segment, and a
           cytoplasmic tyr kinase domain. Binding of the ephrin
           ligand to EphR requires cell-cell contact since both are
           anchored to the plasma membrane. The resulting
           downstream signals occur bidirectionally in both
           EphR-expressing cells (forward signaling) and
           ephrin-expressing cells (reverse signaling). Ephrin/EphR
           interaction mainly results in cell-cell repulsion or
           adhesion, making it important in neural development and
           plasticity, cell morphogenesis, cell-fate determination,
           embryonic development, tissue patterning, and
           angiogenesis. The EphA2 receptor is overexpressed in
           tumor cells and tumor blood vessels in a variety of
           cancers including breast, prostate, lung, and colon. As
           a result, it is an attractive target for drug design
           since its inhibition could affect several aspects of
           tumor progression.
          Length = 268

 Score = 54.6 bits (131), Expect = 3e-08
 Identities = 35/125 (28%), Positives = 67/125 (53%), Gaps = 6/125 (4%)

Query: 358 LVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDK 416
           ++ E+M++G L + L D     +   +   ++ +  G+ YL     +HRDL   N+L++ 
Sbjct: 83  IITEYMENGALDKYLRDHDGEFSSYQLVGMLRGIAAGMKYLSDMNYVHRDLAARNILVNS 142

Query: 417 AGILKIADFGLARSFDVERWGQYTP---EVASRWYRAPELLYASRCYDQSVDLWAVGCIL 473
               K++DFGL+R  + +  G YT    ++  RW  APE + A R +  + D+W+ G ++
Sbjct: 143 NLECKVSDFGLSRVLEDDPEGTYTTSGGKIPIRW-TAPEAI-AYRKFTSASDVWSFGIVM 200

Query: 474 GEMYT 478
            E+ +
Sbjct: 201 WEVMS 205


>gnl|CDD|173685 cd05594, STKc_PKB_alpha, Catalytic domain of the Protein
           Serine/Threonine Kinase, Protein Kinase B alpha.
           Serine/Threonine Kinases (STKs), Protein Kinase B (PKB)
           or Akt subfamily, alpha (or Akt1) isoform, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The PKB subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. There are three
           PKB isoforms from different genes, PKB-alpha (or Akt1),
           PKB-beta (or Akt2), and PKB-gamma (or Akt3). PKB
           contains an N-terminal pleckstrin homology (PH) domain
           and a C-terminal catalytic domain. PKB-alpha is
           predominantly expressed in endothelial cells. It is
           critical for the regulation of angiogenesis and the
           maintenance of vascular integrity. It also plays a role
           in adipocyte differentiation. Mice deficient in
           PKB-alpha exhibit perinatal morbidity, growth
           retardation, reduction in body weight accompanied by
           reduced sizes of multiple organs, and enhanced apoptosis
           in some cell types. PKB-alpha activity has been reported
           to be frequently elevated in breast and prostate
           cancers. In some cancer cells, PKB-alpha may act as a
           suppressor of metastasis.
          Length = 325

 Score = 55.0 bits (132), Expect = 3e-08
 Identities = 40/137 (29%), Positives = 68/137 (49%), Gaps = 3/137 (2%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG- 399
           P +  L   F   D +C V E+ + G       ++   +    + Y   ++  + YLH  
Sbjct: 55  PFLTALKYSFQTHDRLCFVMEYANGGELFFHLSRERVFSEDRARFYGAEIVSALDYLHSE 114

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRC 459
           K +++RDLK  NL++DK G +KI DFGL +   ++          +  Y APE+L  +  
Sbjct: 115 KNVVYRDLKLENLMLDKDGHIKITDFGLCKE-GIKDGATMKTFCGTPEYLAPEVLEDND- 172

Query: 460 YDQSVDLWAVGCILGEM 476
           Y ++VD W +G ++ EM
Sbjct: 173 YGRAVDWWGLGVVMYEM 189


>gnl|CDD|173713 cd05624, STKc_MRCK_beta, Catalytic domain of the Protein
           Serine/Threonine Kinase, DMPK-related cell division
           control protein 42 binding kinase beta.
           Serine/Threonine Kinases (STKs), DMPK-like subfamily,
           DMPK-related cell division control protein 42 (Cdc42)
           binding kinase (MRCK) beta isoform, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The DMPK-like subfamily
           is part of a larger superfamily that includes the
           catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. MRCK is activated via interaction with the
           small GTPase Cdc42. MRCK/Cdc42 signaling mediates
           myosin-dependent cell motility. MRCKbeta is expressed
           ubiquitously in many tissues.
          Length = 331

 Score = 55.0 bits (132), Expect = 4e-08
 Identities = 41/153 (26%), Positives = 73/153 (47%), Gaps = 5/153 (3%)

Query: 350 FPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLK 408
           F D++ + LV ++   G L  LL   +  L     + Y+  ++  +  +H    +HRD+K
Sbjct: 70  FQDENYLYLVMDYYVGGDLLTLLSKFEDRLPEDMARFYIAEMVLAIHSIHQLHYVHRDIK 129

Query: 409 PANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR----CYDQSV 464
           P N+L+D  G +++ADFG     + +   Q +  V +  Y +PE+L A       Y    
Sbjct: 130 PDNVLLDMNGHIRLADFGSCLKMNQDGTVQSSVAVGTPDYISPEILQAMEDGMGKYGPEC 189

Query: 465 DLWAVGCILGEMYTNAPLFPGESDIEQLAMVLH 497
           D W++G  + EM      F  ES +E    +++
Sbjct: 190 DWWSLGVCMYEMLYGETPFYAESLVETYGKIMN 222


>gnl|CDD|132964 cd06633, STKc_TAO3, Catalytic domain of the Protein
           Serine/Threonine Kinase, Thousand-and-one amino acids 3.
            Serine/threonine kinases (STKs), thousand-and-one amino
           acids 3 (TAO3) subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The TAO subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. TAO proteins possess mitogen-activated protein
           kinase (MAPK) kinase kinase (MAPKKK or MAP3K or MKKK)
           activity. MAPK signaling cascades are important in
           mediating cellular responses to extracellular signals.
           TAO3 is also known as JIK (JNK inhibitory kinase) or KFC
           (kinase from chicken). It specifically activates c-Jun
           N-terminal kinase (JNK), presumably by phosphorylating
           and activating MKK4/MKK7. In Saccharomyces cerevisiae,
           TAO3 is a component of the RAM (regulation of Ace2p
           activity and cellular morphogenesis) signaling pathway.
           TAO3 is upregulated in retinal ganglion cells after
           axotomy, and may play a role in apoptosis.
          Length = 313

 Score = 54.6 bits (131), Expect = 4e-08
 Identities = 41/143 (28%), Positives = 67/143 (46%), Gaps = 7/143 (4%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P  ++    +  + T  LV E+      +LL   K  L    +       L+G++YLH  
Sbjct: 81  PNTIEYKGCYLKEHTAWLVMEYCLGSASDLLEVHKKPLQEVEIAAITHGALQGLAYLHSH 140

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYA--SR 458
            ++HRD+K  N+L+ + G +K+ADFG A           TP     ++ APE++ A    
Sbjct: 141 NMIHRDIKAGNILLTEPGQVKLADFGSASKSSPANSFVGTP-----YWMAPEVILAMDEG 195

Query: 459 CYDQSVDLWAVGCILGEMYTNAP 481
            YD  VD+W++G    E+    P
Sbjct: 196 QYDGKVDVWSLGITCIELAERKP 218



 Score = 32.7 bits (74), Expect = 0.53
 Identities = 15/45 (33%), Positives = 27/45 (60%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
           G+ G V  A N  TN++VA+K++    + T+    D+++E+K L
Sbjct: 31 HGSFGAVYFATNSHTNEVVAVKKMSYSGKQTNEKWQDIIKEVKFL 75


>gnl|CDD|173635 cd05054, PTKc_VEGFR, Catalytic domain of the Protein Tyrosine
           Kinases, Vascular Endothelial Growth Factor Receptors.
           Protein Tyrosine Kinase (PTK) family; Vascular
           Endothelial Growth Factor Receptor (VEGFR) subfamily;
           catalytic (c) domain. The VEGFR subfamily consists of
           VEGFR1 (Flt1), VEGFR2 (Flk1), VEGFR3 (Flt4), and similar
           proteins. The PTKc family is part of a larger
           superfamily that includes the catalytic domains of other
           kinases such as protein serine/threonine kinases, RIO
           kinases, and phosphoinositide 3-kinase (PI3K). PTKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to tyrosine (tyr) residues in protein substrates.
           VEGFR subfamily members are receptor tyr kinases (RTKs)
           containing an extracellular ligand-binding region with
           seven immunoglobulin (Ig)-like domains, a transmembrane
           segment, and an intracellular catalytic domain. In
           VEGFR3, the fifth Ig-like domain is replaced by a
           disulfide bridge. The binding of VEGFRs to their
           ligands, the VEGFs, leads to receptor dimerization,
           activation, and intracellular signaling. There are five
           VEGF ligands in mammals, which bind, in an overlapping
           pattern to the three VEGFRs, which can form homo or
           heterodimers. VEGFRs regulate the cardiovascular system.
           They are critical for vascular development during
           embryogenesis and blood vessel formation in adults. They
           induce cellular functions common to other growth factor
           receptors such as cell migration, survival, and
           proliferation. VEGFR1 binds VEGFA, VEGFB, and placenta
           growth factor (PLGF). It regulates monocyte and
           macrophage migration, vascular permeability,
           haematopoiesis, and the recruitment of haematopietic
           progenitor cells from the bone marrow.
          Length = 337

 Score = 54.9 bits (132), Expect = 5e-08
 Identities = 35/115 (30%), Positives = 64/115 (55%), Gaps = 7/115 (6%)

Query: 375 KIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVE 434
           K  LT+  + +Y   + +G+ +L  +  +HRDL   N+L+ +  ++KI DFGLAR  D+ 
Sbjct: 167 KEPLTLEDLISYSFQVARGMEFLASRKCIHRDLAARNILLSENNVVKICDFGLAR--DIY 224

Query: 435 RWGQYTPEVASRW---YRAPELLYASRCYDQSVDLWAVGCILGEMYT-NAPLFPG 485
           +   Y  +  +R    + APE ++  + Y    D+W+ G +L E+++  A  +PG
Sbjct: 225 KDPDYVRKGDARLPLKWMAPESIF-DKVYTTQSDVWSFGVLLWEIFSLGASPYPG 278


>gnl|CDD|132965 cd06634, STKc_TAO2, Catalytic domain of the Protein
           Serine/Threonine Kinase, Thousand-and-one amino acids 2.
            Serine/threonine kinases (STKs), thousand-and-one amino
           acids 2 (TAO2) subfamily, catalytic (c) domain. STKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to serine/threonine residues on protein substrates.
           The TAO subfamily is part of a larger superfamily that
           includes the catalytic domains of other protein STKs,
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. TAO proteins possess mitogen-activated protein
           kinase (MAPK) kinase kinase (MAPKKK or MAP3K or MKKK)
           activity. MAPK signaling cascades are important in
           mediating cellular responses to extracellular signals.
           Human TAO2 is also known as prostate-derived Ste20-like
           kinase (PSK) and was identified in a screen for
           overexpressed RNAs in prostate cancer. TAO2 activates
           both p38 and c-Jun N-terminal kinase (JNK), by
           phosphorylating and activating the respective MAP/ERK
           kinases (MEKs, also known as MKKs or MAPKKs), MEK3/MEK6
           and MKK4/MKK7. TAO2 contains a long C-terminal extension
           with autoinhibitory segments. It is activated by the
           release of this inhibition and the phosphorylation of
           its activation loop serine. TAO2 functions as a
           regulator of actin cytoskeletal and microtubule
           organization. In addition, it regulates the transforming
           growth factor-activated kinase 1 (TAK1), which is a
           MAPKKK that plays an essential role in the signaling
           pathways of tumor necrosis factor (TNF), interleukin 1
           (IL-1), and Toll-like receptor (TLR).
          Length = 308

 Score = 54.3 bits (130), Expect = 5e-08
 Identities = 45/148 (30%), Positives = 71/148 (47%), Gaps = 12/148 (8%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P  ++    +  + T  LV E+      +LL   K  L    +       L+G++YLH  
Sbjct: 75  PNTIQYRGCYLREHTAWLVMEYCLGSASDLLEVHKKPLQEVEIAAVTHGALQGLAYLHSH 134

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYA--SR 458
            ++HRD+K  N+L+ + G++K+ DFG A           TP     ++ APE++ A    
Sbjct: 135 NMIHRDVKAGNILLSEPGLVKLGDFGSASIMAPANXFVGTP-----YWMAPEVILAMDEG 189

Query: 459 CYDQSVDLWAVG--CI-LGEMYTNAPLF 483
            YD  VD+W++G  CI L E     PLF
Sbjct: 190 QYDGKVDVWSLGITCIELAE--RKPPLF 215



 Score = 30.8 bits (69), Expect = 2.0
 Identities = 12/45 (26%), Positives = 27/45 (60%)

Query: 1  QGAHGHVLRARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTL 45
           G+ G V  AR+   +++VAIK++    + ++    D+++E++ L
Sbjct: 25 HGSFGAVYFARDVRNSEVVAIKKMSYSGKQSNEKWQDIIKEVRFL 69


>gnl|CDD|132953 cd06622, PKc_MAPKK_PBS2_like, Catalytic domain of fungal PBS2-like
           dual-specificity MAP kinase kinases.  Protein kinases
           (PKs), MAP kinase kinase (MAPKK) subfamily, fungal
           PBS2-like proteins, catalytic (c) domain. PKs catalyze
           the transfer of the gamma-phosphoryl group from ATP to
           serine/threonine or tyrosine residues on protein
           substrates. The MAPKK subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein serine/threonine kinases, protein tyrosine
           kinases, RIO kinases, aminoglycoside phosphotransferase,
           choline kinase, and phosphoinositide 3-kinase. The
           mitogen-activated protein (MAP) kinase signaling
           pathways are important mediators of cellular responses
           to extracellular signals. The pathways involve a triple
           kinase core cascade comprising of the MAP kinase (MAPK),
           which is phosphorylated and activated by a MAPK kinase
           (MAPKK or MKK), which itself is phosphorylated and
           activated by a MAPK kinase kinase (MAPKKK or MKKK).
           Members of this group include the MAPKKs Polymyxin B
           resistance protein 2 (PBS2) from Saccharomyces
           cerevisiae, Wis1 from Schizosaccharomyces pombe, and
           related proteins. PBS2 and Wis1 are components of
           stress-activated MAPK cascades in budding and fission
           yeast, respectively. PBS2 is the specific activator of
           the MAPK Hog1, which plays a central role in the
           response of budding yeast to stress including exposure
           to arsenite and hyperosmotic environments. Wis1
           phosphorylates and activates the MAPK Sty1 (also called
           Spc1 or Phh1), which stimulates a transcriptional
           response to a wide range of cellular insults through the
           bZip transcription factors Atf1, Pcr1, and Pap1.
          Length = 286

 Score = 54.1 bits (130), Expect = 5e-08
 Identities = 46/189 (24%), Positives = 82/189 (43%), Gaps = 32/189 (16%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTI---PHVKTYMQMLLKGVSYL 397
           P IV     F  +  V +  E+MD+G  + L+   +         ++     ++KG+ +L
Sbjct: 59  PYIVDFYGAFFIEGAVYMCMEYMDAGSLDKLYAGGVATEGIPEDVLRRITYAVVKGLKFL 118

Query: 398 HGKF-IMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVAS-----RWYRAP 451
             +  I+HRD+KP N+L++  G +K+ DFG++        G     +A      + Y AP
Sbjct: 119 KEEHNIIHRDVKPTNVLVNGNGQVKLCDFGVS--------GNLVASLAKTNIGCQSYMAP 170

Query: 452 ELL-----YASRCYDQSVDLWAVGCILGEMYTNAPLFPGESD---IEQLAMVLHKLGTPT 503
           E +       +  Y    D+W++G  + EM      +P E+      QL+ ++   G P 
Sbjct: 171 ERIKSGGPNQNPTYTVQSDVWSLGLSILEMALGRYPYPPETYANIFAQLSAIVD--GDP- 227

Query: 504 EDSWPGLKD 512
               P L  
Sbjct: 228 ----PTLPS 232


>gnl|CDD|133211 cd05080, PTKc_Tyk2_rpt2, Catalytic (repeat 2) domain of the Protein
           Tyrosine Kinase, Tyrosine kinase 2.  Protein Tyrosine
           Kinase (PTK) family; Tyrosine kinase 2 (Tyk2); catalytic
           (c) domain (repeat 2). The PTKc family is part of a
           larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Tyk2 is a member of the
           Janus kinase (Jak) subfamily of proteins, which are
           cytoplasmic (or nonreceptor) tyr kinases containing an
           N-terminal FERM domain, followed by a Src homology 2
           (SH2) domain, a pseudokinase domain, and a C-terminal
           tyr kinase catalytic domain. Jaks are crucial for
           cytokine receptor signaling. They are activated by
           autophosphorylation upon cytokine-induced receptor
           aggregation, and subsequently trigger downstream
           signaling events such as the phosphorylation of signal
           transducers and activators of transcription (STATs).
           Tyk2 is widely expressed in many tissues. It is involved
           in signaling via the cytokine receptors IFN-alphabeta,
           IL-6, IL-10, IL-12, IL-13, and IL-23. It mediates cell
           surface urokinase receptor (uPAR) signaling and plays a
           role in modulating vascular smooth muscle cell (VSMC)
           functional behavior in response to injury. Tyk2 is also
           important in dendritic cell function and T helper (Th)1
           cell differentiation. A homozygous mutation of Tyk2 was
           found in a patient with hyper-IgE syndrome (HIES), a
           primary immunodeficiency characterized by recurrent skin
           abscesses, pneumonia, and elevated serum IgE. This
           suggests that Tyk2 may play important roles in multiple
           cytokine signaling involved in innate and adaptive
           immunity.
          Length = 283

 Score = 53.7 bits (129), Expect = 6e-08
 Identities = 35/115 (30%), Positives = 57/115 (49%), Gaps = 21/115 (18%)

Query: 375 KIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVE 434
           K  L +  +  + Q + +G++YLH +  +HRDL   N+L+D   ++KI DFGLA++    
Sbjct: 101 KHKLNLAQLLLFAQQICEGMAYLHSQHYIHRDLAARNVLLDNDRLVKIGDFGLAKA---- 156

Query: 435 RWGQYTPEVASRWYR------APELLYASRCYDQ-----SVDLWAVGCILGEMYT 478
                 PE    +YR      +P   YA  C  +     + D+W+ G  L E+ T
Sbjct: 157 -----VPE-GHEYYRVREDGDSPVFWYAVECLKENKFSYASDVWSFGVTLYELLT 205


>gnl|CDD|173650 cd05094, PTKc_TrkC, Catalytic domain of the Protein Tyrosine
           Kinase, Tropomyosin Related Kinase C.  Protein Tyrosine
           Kinase (PTK) family; Tropomyosin Related Kinase C
           (TrkC); catalytic (c) domain. The PTKc family is part of
           a larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. TrkC is a member of the
           Trk subfamily of proteins, which are receptor tyr
           kinases (RTKs) containing an extracellular region with
           arrays of leucine-rich motifs flanked by two
           cysteine-rich clusters followed by two
           immunoglobulin-like domains, a transmembrane segment,
           and an intracellular catalytic domain. Binding of TrkC
           to its ligand, neurotrophin 3 (NT3), results in receptor
           oligomerization and activation of the catalytic domain.
           TrkC is broadly expressed in the nervous system and in
           some non-neural tissues including the developing heart.
           NT3/TrkC signaling plays an important role in the
           innervation of the cardiac conducting system and the
           development of smooth muscle cells. Mice deficient with
           NT3 and TrkC have multiple heart defects. NT3/TrkC
           signaling is also critical for the development and
           maintenance of enteric neurons that are important for
           the control of gut peristalsis.
          Length = 291

 Score = 53.9 bits (129), Expect = 7e-08
 Identities = 45/156 (28%), Positives = 69/156 (44%), Gaps = 22/156 (14%)

Query: 342 QIVKLLDFFPDQDTVCLVFEHMDSG-LWELLH---------------DKKIHLTIPHVKT 385
            IVK      D D + +VFE+M  G L + L                  K  L +  +  
Sbjct: 68  HIVKFYGVCGDGDPLIMVFEYMKHGDLNKFLRAHGPDAMILVDGQPRQAKGELGLSQMLH 127

Query: 386 YMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLAR---SFDVERWGQYTPE 442
               +  G+ YL  +  +HRDL   N L+    ++KI DFG++R   S D  R G +T  
Sbjct: 128 IASQIASGMVYLASQHFVHRDLATRNCLVGANLLVKIGDFGMSRDVYSTDYYRVGGHT-M 186

Query: 443 VASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYT 478
           +  RW     ++Y  R +    D+W+ G IL E++T
Sbjct: 187 LPIRWMPPESIMY--RKFTTESDVWSFGVILWEIFT 220


>gnl|CDD|88524 cd05623, STKc_MRCK_alpha, Catalytic domain of the Protein
           Serine/Threonine Kinase, DMPK-related cell division
           control protein 42 binding kinase alpha.
           Serine/Threonine Kinases (STKs), DMPK-like subfamily,
           DMPK-related cell division control protein 42 (Cdc42)
           binding kinase (MRCK) alpha isoform, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The DMPK-like subfamily
           is part of a larger superfamily that includes the
           catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. MRCK is activated via interaction with the
           small GTPase Cdc42. MRCK/Cdc42 signaling mediates
           myosin-dependent cell motility. MRCKalpha is expressed
           ubiquitously in many tissues. It plays a role in the
           regulation of peripheral actin reorganization and
           neurite outgrowth. It may also play a role in the
           transferrin iron uptake pathway.
          Length = 332

 Score = 54.3 bits (130), Expect = 7e-08
 Identities = 41/153 (26%), Positives = 72/153 (47%), Gaps = 5/153 (3%)

Query: 350 FPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLK 408
           F D++ + LV ++   G L  LL   +  L     + Y+  ++  +  +H    +HRD+K
Sbjct: 70  FQDENNLYLVMDYYVGGDLLTLLSKFEDRLPEDMARFYLAEMVIAIDSVHQLHYVHRDIK 129

Query: 409 PANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR----CYDQSV 464
           P N+L+D  G +++ADFG       +   Q +  V +  Y +PE+L A       Y    
Sbjct: 130 PDNILMDMNGHIRLADFGSCLKLMEDGTVQSSVAVGTPDYISPEILQAMEDGKGKYGPEC 189

Query: 465 DLWAVGCILGEMYTNAPLFPGESDIEQLAMVLH 497
           D W++G  + EM      F  ES +E    +++
Sbjct: 190 DWWSLGVCMYEMLYGETPFYAESLVETYGKIMN 222


>gnl|CDD|173717 cd05628, STKc_NDR1, Catalytic domain of the Protein
           Serine/Threonine Kinase, Nuclear Dbf2-Related kinase 1. 
           Serine/Threonine Kinases (STKs), NDR kinase subfamily,
           NDR1 isoform, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The NDR
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. NDR kinase contains an N-terminal regulatory
           (NTR) domain and an insert within the catalytic domain
           that contains an auto-inhibitory sequence. Like many
           other AGC kinases, NDR kinase requires phosphorylation
           at two sites, the activation loop (A-loop) and the
           hydrophobic motif (HM), for activity. Higher eukaryotes
           contain two NDR isoforms, NDR1 and NDR2. Both isoforms
           play a role in proper centrosome duplication. NDR1 is
           highly expressed in thymus, muscle, lung and spleen. It
           is not an essential protein because mice deficient of
           NDR1 remain viable and fertile. However, these mice
           develop T-cell lymphomas and appear to be hypersenstive
           to carcinogenic treatment. NDR1 appears to act as a
           tumor suppressor. NDR1 is also called STK38.
          Length = 363

 Score = 53.9 bits (129), Expect = 9e-08
 Identities = 48/189 (25%), Positives = 79/189 (41%), Gaps = 35/189 (18%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFI 402
           +VK+   F D+  + L+ E +  G    L  KK  LT    + Y+   +  +  +H    
Sbjct: 63  VVKMFYSFQDKLNLYLIMEFLPGGDMMTLLMKKDTLTEEETQFYIAETVLAIDSIHQLGF 122

Query: 403 MHRDLKPANLLIDKAGILKIADFGLARSF-----------------------------DV 433
           +HRD+KP NLL+D  G +K++DFGL                                   
Sbjct: 123 IHRDIKPDNLLLDSKGHVKLSDFGLCTGLKKAHRTEFYRNLNHSLPSDFTFQNMNSKRKA 182

Query: 434 ERWGQYTPEVA-----SRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESD 488
           E W +   ++A     +  Y APE ++    Y++  D W++G I+ EM    P F  E+ 
Sbjct: 183 ETWKRNRRQLAFSTVGTPDYIAPE-VFMQTGYNKLCDWWSLGVIMYEMLIGYPPFCSETP 241

Query: 489 IEQLAMVLH 497
            E    V++
Sbjct: 242 QETYKKVMN 250


>gnl|CDD|133189 cd05058, PTKc_Met_Ron, Catalytic domain of the Protein Tyrosine
           Kinases, Met and Ron.  Protein Tyrosine Kinase (PTK)
           family; Met and Ron; catalytic (c) domain. The PTKc
           family is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Met and
           Ron are receptor tyr kinases (RTKs) composed of an
           alpha-beta heterodimer. The extracellular alpha chain is
           disulfide linked to the beta chain, which contains an
           extracellular ligand-binding region with a sema domain,
           a PSI domain and four IPT repeats, a transmembrane
           segment, and an intracellular catalytic domain. Binding
           to their ligands leads to receptor dimerization,
           autophosphorylation, activation, and intracellular
           signaling. Met binds to the ligand, hepatocyte growth
           factor/scatter factor (HGF/SF), and is also called the
           HGF receptor. HGF/Met signaling plays a role in growth,
           transformation, cell motility, invasion, metastasis,
           angiogenesis, wound healing, and tissue regeneration.
           Aberrant expression of Met through mutations or gene
           amplification is associated with many human cancers
           including hereditary papillary renal and gastric
           carcinomas. The ligand for Ron is macrophage stimulating
           protein (MSP). Ron signaling is important in regulating
           cell motility, adhesion, proliferation, and apoptosis.
           Aberrant Ron expression is implicated in tumorigenesis
           and metastasis.
          Length = 262

 Score = 53.2 bits (128), Expect = 9e-08
 Identities = 56/187 (29%), Positives = 89/187 (47%), Gaps = 24/187 (12%)

Query: 318 KKIHLTIPHIKTYTYLSDVFSFL-----------PQIVKLLDF-FPDQDTVCLVFEHMDS 365
           +KIH  +  +   T L +V  FL           P ++ LL    P + +  +V  +M  
Sbjct: 22  QKIHCAVKSLNRITDLEEVEQFLKEGIIMKDFSHPNVLSLLGICLPSEGSPLVVLPYMKH 81

Query: 366 GLWELLHDKKIHLTIPHVKTYMQMLL---KGVSYLHGKFIMHRDLKPANLLIDKAGILKI 422
           G  +L +  +     P VK  +   L   KG+ YL  K  +HRDL   N ++D++  +K+
Sbjct: 82  G--DLRNFIRSETHNPTVKDLIGFGLQVAKGMEYLASKKFVHRDLAARNCMLDESFTVKV 139

Query: 423 ADFGLARS-FDVERWGQYTPEVAS---RWYRAPELLYASRCYDQSVDLWAVGCILGEMYT 478
           ADFGLAR  +D E +  +    A    +W  A E L   +   +S D+W+ G +L E+ T
Sbjct: 140 ADFGLARDIYDKEYYSVHNHTGAKLPVKWM-ALESLQTQKFTTKS-DVWSFGVLLWELMT 197

Query: 479 -NAPLFP 484
             AP +P
Sbjct: 198 RGAPPYP 204


>gnl|CDD|140307 PTZ00284, PTZ00284, protein kinase; Provisional.
          Length = 467

 Score = 54.2 bits (130), Expect = 1e-07
 Identities = 60/199 (30%), Positives = 93/199 (46%), Gaps = 42/199 (21%)

Query: 396 YLHGKF-IMHRDLKPANLLIDKAGI----------------LKIADFGLARSFDVERWGQ 438
           Y H +  +MH DLKP N+L++ +                  ++I D G       ER  +
Sbjct: 246 YFHTELHLMHTDLKPENILMETSDTVVDPVTNRALPPDPCRVRICDLGGCCD---ERHSR 302

Query: 439 YTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHK 498
            T  V++R YR+PE++     +  S D+W++GCI+ E+YT   L+    ++E L ++   
Sbjct: 303 -TAIVSTRHYRSPEVVL-GLGWMYSTDMWSMGCIIYELYTGKLLYDTHDNLEHLHLMEKT 360

Query: 499 LGT-PTEDSWPG------LKDLPDYNKI-TFAP-SDP-----VPWSTMLPNASPDTL--D 542
           LG  P+E  W G       + L  YN      P +DP     +  +  +     D L  D
Sbjct: 361 LGRLPSE--WAGRCGTEEARLL--YNSAGQLRPCTDPKHLARIARARPVREVIRDDLLCD 416

Query: 543 LISKLLLYDGQKRLPANEI 561
           LI  LL YD QKRL A ++
Sbjct: 417 LIYGLLHYDRQKRLNARQM 435


>gnl|CDD|173651 cd05095, PTKc_DDR2, Catalytic domain of the Protein Tyrosine
           Kinase, Discoidin Domain Receptor 2.  Protein Tyrosine
           Kinase (PTK) family; mammalian Discoidin Domain Receptor
           2 (DDR2) and homologs; catalytic (c) domain. The PTKc
           family is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. DDR2 is a
           member of the DDR subfamily, which are receptor tyr
           kinases (RTKs) containing an extracellular discoidin
           homology domain, a transmembrane segment, an extended
           juxtamembrane region, and an intracellular catalytic
           domain. The binding of the ligand, collagen, to DDRs
           results in a slow but sustained receptor activation.
           DDR2 binds mostly to fibrillar collagens. More recently,
           it has been reported to also bind collagen X. DDR2 is
           widely expressed in many tissues with the highest levels
           found in skeletal muscle, skin, kidney and lung. It is
           important in cell proliferation and development. Mice,
           with a deletion of DDR2, suffer from dwarfism and
           delayed healing of epidermal wounds. DDR2 also
           contributes to collagen (type I) regulation by
           inhibiting fibrillogenesis and altering the morphology
           of collagen fibers. It is also expressed in immature
           dendritic cells (DCs), where it plays a role in DC
           activation and function.
          Length = 296

 Score = 53.4 bits (128), Expect = 1e-07
 Identities = 49/166 (29%), Positives = 76/166 (45%), Gaps = 22/166 (13%)

Query: 327 IKTYTYLSDVFSFLPQIVKLLDFFPDQDTVCLVFEHMDSG-LWELL--HDKKIHLTIPHV 383
           IK  + L D     P I++LL      D +C++ E+M++G L + L  H+ +       V
Sbjct: 70  IKIMSRLKD-----PNIIRLLAVCITSDPLCMITEYMENGDLNQFLSRHEPQEAAEKADV 124

Query: 384 KT-------YMQ-MLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSF---D 432
            T       +M   +  G+ YL     +HRDL   N L+ K   +KIADFG++R+    D
Sbjct: 125 VTISYSTLIFMATQIASGMKYLSSLNFVHRDLATRNCLVGKNYTIKIADFGMSRNLYSGD 184

Query: 433 VERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYT 478
             R  Q    +  RW     +L     +  + D+WA G  L E+ T
Sbjct: 185 YYRI-QGRAVLPIRWMSWESILLGK--FTTASDVWAFGVTLWEILT 227


>gnl|CDD|173412 PTZ00121, PTZ00121, MAEBL; Provisional.
          Length = 2084

 Score = 54.4 bits (130), Expect = 1e-07
 Identities = 60/213 (28%), Positives = 97/213 (45%), Gaps = 17/213 (7%)

Query: 86   EIDKKKHDTL----AAKKKGDKKPKYIQSLLKQAERRKQENERR--NERQVQLEREKEGE 139
            E DKKK D L    AAKKK D+  K  +   K  E +K+  E +  +E + + E  K+ E
Sbjct: 1401 EEDKKKADELKKAAAAKKKADEAKKKAEEKKKADEAKKKAEEAKKADEAKKKAEEAKKAE 1460

Query: 140  EFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEE 199
            E K K     +   KK +E KK  EE ++ D  +   + AK++          +    ++
Sbjct: 1461 EAKKK-----AEEAKKADEAKKKAEEAKKADEAKKKAEEAKKKA-----DEAKKAAEAKK 1510

Query: 200  DSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESL 259
             + + KK  E   +DE+K    AK+++     E  K     KK E+  ++  K+   E+ 
Sbjct: 1511 KADEAKKAEEAKKADEAKKAEEAKKADEAKKAEEKKKADELKKAEELKKAEEKKKAEEAK 1570

Query: 260  DEETDKTRGDKKQDSETPKKKKKTDEIEMKLLD 292
              E DK    +K + E  K ++   E  MKL +
Sbjct: 1571 KAEEDKNMALRKAE-EAKKAEEARIEEVMKLYE 1602



 Score = 53.6 bits (128), Expect = 3e-07
 Identities = 60/282 (21%), Positives = 119/282 (42%), Gaps = 24/282 (8%)

Query: 9    RARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSDRYEQTNMAEKRQAKLDME 68
              RN    +     R+    R  +++K +  R+   L    ++ ++ + A+K + K   +
Sbjct: 1247 EERNNEEIRKFEEARMAHFARRQAAIKAEEARKADELKKAEEK-KKADEAKKAEEKKKAD 1305

Query: 69   RALAEDPTVYQYDEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNER 128
             A  +     + DE   + ++ K    AAKKK ++  K  ++   +AE    E E   E+
Sbjct: 1306 EAKKKAEEAKKADEAKKKAEEAKKKADAAKKKAEEAKKAAEAAKAEAEAAADEAEAAEEK 1365

Query: 129  QVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEE-RRMDMLEDIGDVAKQQDLSGF 187
                E++KE  + K       +  +KK +E KK  EE+ ++ D L+      K+ D    
Sbjct: 1366 AEAAEKKKEEAKKKADAAKKKAEEKKKADEAKKKAEEDKKKADELKKAAAAKKKAD---- 1421

Query: 188  YRHLYQTTVGEEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQS 247
                          + KKK  E   +DE+K K+     E +  DE  K  + +KK E+  
Sbjct: 1422 --------------EAKKKAEEKKKADEAKKKA----EEAKKADEAKKKAEEAKKAEEAK 1463

Query: 248  RSYRKRNRSESLDEETDKTRGDKKQDSETPKKKKKTDEIEMK 289
            +   +  +++   ++ ++ +   +   +  + KKK DE +  
Sbjct: 1464 KKAEEAKKADEAKKKAEEAKKADEAKKKAEEAKKKADEAKKA 1505



 Score = 53.2 bits (127), Expect = 4e-07
 Identities = 57/243 (23%), Positives = 104/243 (42%), Gaps = 20/243 (8%)

Query: 53   EQTNMAEKRQAKLDMERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLL 112
            E+   AE+ + K +  +   E     +  +  DE  KK  +   AKKK D+  K  ++  
Sbjct: 1454 EEAKKAEEAKKKAEEAKKADEAKKKAEEAKKADEAKKKAEE---AKKKADEAKKAAEAKK 1510

Query: 113  KQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDE-------- 164
            K  E +K E  ++ +   + E  K+ +E K  E    +   KK EE KK +E        
Sbjct: 1511 KADEAKKAEEAKKADEAKKAEEAKKADEAKKAEEKKKADELKKAEELKKAEEKKKAEEAK 1570

Query: 165  -EERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESKNKSIAK 223
              E   +M     + AK+ + +   R      + EE+ K K ++ + +   + K + + K
Sbjct: 1571 KAEEDKNMALRKAEEAKKAEEA---RIEEVMKLYEEEKKMKAEEAKKAEEAKIKAEELKK 1627

Query: 224  QSEGRSTDEPIKHKKSS--KKGE---KQSRSYRKRNRSESLDEETDKTRGDKKQDSETPK 278
              E +   E +K K++   KK E   K     + +   E+   E DK + ++ + +E  +
Sbjct: 1628 AEEEKKKVEQLKKKEAEEKKKAEELKKAEEENKIKAAEEAKKAEEDKKKAEEAKKAEEDE 1687

Query: 279  KKK 281
            KK 
Sbjct: 1688 KKA 1690



 Score = 50.1 bits (119), Expect = 3e-06
 Identities = 43/186 (23%), Positives = 80/186 (43%), Gaps = 13/186 (6%)

Query: 113  KQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDML 172
            K  E RK E+ R+ E   + E E++ EE +  E    +   KK EE KK  EE ++ +  
Sbjct: 1189 KAEELRKAEDARKAEAARKAEEERKAEEARKAEDAKKAEAVKKAEEAKKDAEEAKKAEEE 1248

Query: 173  EDIGDVAKQQDLSGFYRHLYQTTVGEEDSK---------DKKKDTEHSSSDESKNKSIAK 223
             +  ++ K ++    +    Q  +  E+++         +KKK  E   ++E K    AK
Sbjct: 1249 RNNEEIRKFEEARMAHFARRQAAIKAEEARKADELKKAEEKKKADEAKKAEEKKKADEAK 1308

Query: 224  Q--SEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQDSETPKKKK 281
            +   E +  DE  K  + +KK  K   + +K   ++   E           ++E  ++K 
Sbjct: 1309 KKAEEAKKADEAKKKAEEAKK--KADAAKKKAEEAKKAAEAAKAEAEAAADEAEAAEEKA 1366

Query: 282  KTDEIE 287
            +  E +
Sbjct: 1367 EAAEKK 1372



 Score = 43.6 bits (102), Expect = 3e-04
 Identities = 50/257 (19%), Positives = 104/257 (40%), Gaps = 29/257 (11%)

Query: 28   RRHTSSVKTDVMREIKTLLSVSDRYEQTNMAEKRQAKLDMERALAEDPTVYQYDEVYDEI 87
             ++ +  K +  ++ +       R E+     + + K+  E A   +    + +E+    
Sbjct: 1575 DKNMALRKAEEAKKAE-----EARIEEVMKLYEEEKKMKAEEAKKAEEAKIKAEELKKAE 1629

Query: 88   DKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKEGEEFKDKETF 147
            ++KK      KK+ ++K        K+AE  K+  E    +  +  ++ E ++ K +E  
Sbjct: 1630 EEKKKVEQLKKKEAEEK--------KKAEELKKAEEENKIKAAEEAKKAEEDKKKAEEAK 1681

Query: 148  -VTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKK 206
                  +K  E  KK  EE ++ + L+      K        +   +    EE++K K +
Sbjct: 1682 KAEEDEKKAAEALKKEAEEAKKAEELKKKEAEEK--------KKAEELKKAEEENKIKAE 1733

Query: 207  DTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKT 266
            + +  + ++ K    AK+ E        K K +  K E++ ++   R   E++ EE    
Sbjct: 1734 EAKKEAEEDKKKAEEAKKDEEE------KKKIAHLKKEEEKKAEEIRKEKEAVIEEELDE 1787

Query: 267  RGDKKQDSETPKKKKKT 283
              D+K+  E  KK K  
Sbjct: 1788 E-DEKRRMEVDKKIKDI 1803



 Score = 38.6 bits (89), Expect = 0.010
 Identities = 57/269 (21%), Positives = 117/269 (43%), Gaps = 17/269 (6%)

Query: 41   EIKTLLSVSDRYEQTNMAEKRQAKLDMERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKK 100
            E+K    +    E+    E ++A+ D   AL +     + +E   E   K ++    K K
Sbjct: 1550 ELKKAEELKKAEEKKKAEEAKKAEEDKNMALRKAEEAKKAEEARIEEVMKLYEE-EKKMK 1608

Query: 101  GDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKE---GEEFKDKETFVT---SSYRK 154
             ++  K  ++ +K  E +K E E++   Q++ +  +E    EE K  E       +   K
Sbjct: 1609 AEEAKKAEEAKIKAEELKKAEEEKKKVEQLKKKEAEEKKKAEELKKAEEENKIKAAEEAK 1668

Query: 155  KLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSK---DKKKDTEHS 211
            K EE KK  EE ++ +  ED     +++      +   +    EE  K   ++KK  E  
Sbjct: 1669 KAEEDKKKAEEAKKAE--ED-----EKKAAEALKKEAEEAKKAEELKKKEAEEKKKAEEL 1721

Query: 212  SSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKK 271
               E +NK  A++++  + ++  K +++ K  E++ +    +   E   EE  K +    
Sbjct: 1722 KKAEEENKIKAEEAKKEAEEDKKKAEEAKKDEEEKKKIAHLKKEEEKKAEEIRKEKEAVI 1781

Query: 272  QDSETPKKKKKTDEIEMKLLDFFPDQDTV 300
            ++    + +K+  E++ K+ D F +   +
Sbjct: 1782 EEELDEEDEKRRMEVDKKIKDIFDNFANI 1810



 Score = 36.3 bits (83), Expect = 0.053
 Identities = 40/228 (17%), Positives = 92/228 (40%), Gaps = 21/228 (9%)

Query: 53   EQTNMAEKRQAKLDMERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLL 112
            E    A +   K   E   AE+    + +E     + KK +     K  + K +  +   
Sbjct: 1685 EDEKKAAEALKKEAEEAKKAEELKKKEAEEKKKAEELKKAEEENKIKAEEAKKEAEEDKK 1744

Query: 113  KQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDML 172
            K  E +K E E++    ++ E EK+ EE + ++  V      + +E ++++ +++  D+ 
Sbjct: 1745 KAEEAKKDEEEKKKIAHLKKEEEKKAEEIRKEKEAVIEEELDEEDEKRRMEVDKKIKDIF 1804

Query: 173  EDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDE 232
            ++  ++ +                      +  K+ E S     K  + +K  +    D 
Sbjct: 1805 DNFANIIEGGKEGNLV-------------INDSKEMEDS---AIKEVADSKNMQLEEADA 1848

Query: 233  PIKHK-----KSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQDSE 275
              KHK     ++ + G K++   ++++  E  +EE ++    +K D +
Sbjct: 1849 FEKHKFNKNNENGEDGNKEADFNKEKDLKEDDEEEIEEADEIEKIDKD 1896



 Score = 35.5 bits (81), Expect = 0.091
 Identities = 48/257 (18%), Positives = 98/257 (38%), Gaps = 33/257 (12%)

Query: 33   SVKTDVMREIKTLLSVSDRYEQTNMAEKRQAKLDMERALAEDPTVYQYDEVYDEIDKKKH 92
            +   +   E       + + E     E R+A+   ++A  ED    +     ++  K + 
Sbjct: 1087 NRADEATEEAFGKAEEAKKTETGKAEEARKAEEAKKKA--EDARKAEEARKAEDARKAEE 1144

Query: 93   DTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSY 152
               A   K  +  +  +   K  E RK E+ ++ E   + E  ++ EE +  E    +  
Sbjct: 1145 ARKAEDAKRVEIARKAEDARKAEEARKAEDAKKAEAARKAEEVRKAEELRKAEDARKAEA 1204

Query: 153  RKKLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSS 212
             +K EE +K  EE R+ +  +    V K ++                    KK   E   
Sbjct: 1205 ARKAEEERKA-EEARKAEDAKKAEAVKKAEEA-------------------KKDAEEAKK 1244

Query: 213  SDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQ 272
            ++E +N    ++ E        + + + K  E +        +++ L +  +K + D+ +
Sbjct: 1245 AEEERNNEEIRKFEEARMAHFARRQAAIKAEEAR--------KADELKKAEEKKKADEAK 1296

Query: 273  DSETPKKKKKTDEIEMK 289
             +E   +KKK DE + K
Sbjct: 1297 KAE---EKKKADEAKKK 1310



 Score = 32.8 bits (74), Expect = 0.62
 Identities = 38/232 (16%), Positives = 92/232 (39%), Gaps = 12/232 (5%)

Query: 60   KRQAKLDMERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRK 119
            + +A +  +  L      + +D   D       +         ++ K  ++   +  R+ 
Sbjct: 1061 EAKAHVGQDEGLKPSYKDFDFDAKEDNRAD---EATEEAFGKAEEAKKTETGKAEEARKA 1117

Query: 120  QENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVA 179
            +E +++ E   + E  ++ E+ +  E    +   K++E  +K  E+ R+ +      D  
Sbjct: 1118 EEAKKKAEDARKAEEARKAEDARKAEEARKAEDAKRVEIARKA-EDARKAEEARKAEDAK 1176

Query: 180  KQQDLSGFYRHLYQTTVGEEDSKD---KKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKH 236
            K +      R   +    EE  K    +K +    + +E K +   K  + +  +   K 
Sbjct: 1177 KAEAA----RKAEEVRKAEELRKAEDARKAEAARKAEEERKAEEARKAEDAKKAEAVKKA 1232

Query: 237  KKSSKKGEKQSRSYRKRNRSESLD-EETDKTRGDKKQDSETPKKKKKTDEIE 287
            +++ K  E+  ++  +RN  E    EE       ++Q +   ++ +K DE++
Sbjct: 1233 EEAKKDAEEAKKAEEERNNEEIRKFEEARMAHFARRQAAIKAEEARKADELK 1284


>gnl|CDD|173716 cd05627, STKc_NDR2, Catalytic domain of the Protein
           Serine/Threonine Kinase, Nuclear Dbf2-Related kinase 2. 
           Serine/Threonine Kinases (STKs), NDR kinase subfamily,
           NDR2 isoform, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The NDR
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. NDR kinase contains an N-terminal regulatory
           (NTR) domain and an insert within the catalytic domain
           that contains an auto-inhibitory sequence. Like many
           other AGC kinases, NDR kinase requires phosphorylation
           at two sites, the activation loop (A-loop) and the
           hydrophobic motif (HM), for activity. Higher eukaryotes
           contain two NDR isoforms, NDR1 and NDR2. Both isoforms
           play a role in proper centrosome duplication. In
           addition, NDR2 plays a role in regulating neuronal
           growth and differentiation, as well as in facilitating
           neurite outgrowth. It is also implicated in fear
           conditioning as it contributes to the coupling of
           neuronal morphological changes with fear-memory
           consolidation. NDR2 is also referred to as STK38-like.
          Length = 360

 Score = 53.5 bits (128), Expect = 1e-07
 Identities = 47/189 (24%), Positives = 78/189 (41%), Gaps = 35/189 (18%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFI 402
           +VK+   F D+  + L+ E +  G    L  KK  L+    + Y+   +  +  +H    
Sbjct: 63  VVKMFYSFQDKRNLYLIMEFLPGGDMMTLLMKKDTLSEEATQFYIAETVLAIDAIHQLGF 122

Query: 403 MHRDLKPANLLIDKAGILKIADFGLARSF-----------------------------DV 433
           +HRD+KP NLL+D  G +K++DFGL                                   
Sbjct: 123 IHRDIKPDNLLLDAKGHVKLSDFGLCTGLKKAHRTEFYRNLTHNPPSDFSFQNMNSKRKA 182

Query: 434 ERWGQYTPEVASRW-----YRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESD 488
           E W +   ++A        Y APE ++    Y++  D W++G I+ EM    P F  E+ 
Sbjct: 183 ETWKKNRRQLAYSTVGTPDYIAPE-VFMQTGYNKLCDWWSLGVIMYEMLIGYPPFCSETP 241

Query: 489 IEQLAMVLH 497
            E    V++
Sbjct: 242 QETYRKVMN 250


>gnl|CDD|173688 cd05597, STKc_DMPK_like, Catalytic domain of Myotonic Dystrophy
           protein kinase-like Protein Serine/Threonine Kinases.
           Serine/Threonine Kinases (STKs), Myotonic Dystrophy
           protein kinase (DMPK)-like subfamily, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The DMPK-like subfamily
           is part of a larger superfamily that includes the
           catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. The DMPK-like subfamily is composed of DMPK
           and DMPK-related cell division control protein 42
           (Cdc42) binding kinase (MRCK). Three isoforms of MRCK
           are known, named alpha, beta and gamma. The DMPK gene is
           implicated in myotonic dystrophy 1 (DM1), an inherited
           multisystemic disorder with symptoms that include muscle
           hyperexcitability, progressive muscle weakness and
           wasting, cataract development, testicular atrophy, and
           cardiac conduction defects. The genetic basis for DM1 is
           the mutational expansion of a CTG repeat in the 3'-UTR
           of DMPK. DMPK is expressed in skeletal and cardiac
           muscles, and in central nervous tissues. The functional
           role of DMPK is not fully understood. It may play a role
           in the signal transduction and homeostasis of calcium.
           MRCK is activated via interaction with the small GTPase
           Cdc42. MRCK/Cdc42 signaling mediates myosin-dependent
           cell motility. MRCKgamma is expressed in heart and
           skeletal muscles, unlike MRCKalpha and MRCKbeta, which
           are expressed ubiquitously.
          Length = 331

 Score = 53.2 bits (128), Expect = 1e-07
 Identities = 42/153 (27%), Positives = 72/153 (47%), Gaps = 5/153 (3%)

Query: 350 FPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLK 408
           F D++ + LV ++   G L  LL   +  L     + Y+  ++  +  +H    +HRD+K
Sbjct: 70  FQDENNLYLVMDYYVGGDLLTLLSKFEDRLPEDMARFYLAEMVLAIDSVHQLGYVHRDIK 129

Query: 409 PANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR----CYDQSV 464
           P N+L+DK G +++ADFG       +   Q    V +  Y +PE+L A       Y    
Sbjct: 130 PDNVLLDKNGHIRLADFGSCLRLLADGTVQSNVAVGTPDYISPEILQAMEDGKGRYGPEC 189

Query: 465 DLWAVGCILGEMYTNAPLFPGESDIEQLAMVLH 497
           D W++G  + EM      F  ES +E    +++
Sbjct: 190 DWWSLGVCMYEMLYGETPFYAESLVETYGKIMN 222


>gnl|CDD|173714 cd05625, STKc_LATS1, Catalytic domain of the Protein
           Serine/Threonine Kinase, Large Tumor Suppressor 1.
           Serine/Threonine Kinases (STKs), Large Tumor Suppressor
           (LATS) subfamily, LATS1 isoform, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The LATS subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. LATS functions as a tumor
           suppressor and is implicated in cell cycle regulation.
           Inactivation of LATS1 in mice results in the development
           of various tumors, including sarcomas and ovarian
           cancer. Promoter methylation, loss of heterozygosity,
           and missense mutations targeting the LATS1 gene have
           also been found in human sarcomas and ovarian cancers.
           In addition, decreased expression of LATS1 is associated
           with an aggressive phenotype and poor prognosis. LATS1
           induces G2 arrest and promotes cytokinesis. It may be a
           component of the mitotic exit network in higher
           eukaryotes.
          Length = 382

 Score = 53.1 bits (127), Expect = 2e-07
 Identities = 50/197 (25%), Positives = 77/197 (39%), Gaps = 53/197 (26%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFI 402
           +V+L   F D+D +  V +++  G    L  +         + Y+  L   V  +H    
Sbjct: 63  VVRLYYSFQDKDNLYFVMDYIPGGDMMSLLIRMGIFPEDLARFYIAELTCAVESVHKMGF 122

Query: 403 MHRDLKPANLLIDKAGILKIADFGLARSFDVERWG-------------QYTPEVASRW-- 447
           +HRD+KP N+LID+ G +K+ DFGL   F   RW              Q + + ++ W  
Sbjct: 123 IHRDIKPDNILIDRDGHIKLTDFGLCTGF---RWTHDSKYYQSGDHVRQDSMDFSNEWGD 179

Query: 448 ----------------------------------YRAPELLYASRCYDQSVDLWAVGCIL 473
                                             Y APE+L  +  Y Q  D W+VG IL
Sbjct: 180 PANCRCGDRLKPLERRAARQHQRCLAHSLVGTPNYIAPEVLLRTG-YTQLCDWWSVGVIL 238

Query: 474 GEMYTNAPLFPGESDIE 490
            EM    P F  ++ +E
Sbjct: 239 YEMLVGQPPFLAQTPLE 255


>gnl|CDD|173631 cd05045, PTKc_RET, Catalytic domain of the Protein Tyrosine Kinase,
           REarranged during Transfection protein.  Protein
           Tyrosine Kinase (PTK) family; RET (REarranged during
           Transfection) protein; catalytic (c) domain. The PTKc
           family is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. RET is a
           receptor tyr kinase (RTK) containing an extracellular
           region with four cadherin-like repeats, a
           calcium-binding site, and a cysteine-rich domain, a
           transmembrane segment, and an intracellular catalytic
           domain. It is part of a multisubunit complex that binds
           glial-derived neurotropic factor (GDNF) family ligands
           (GFLs) including GDNF, neurturin, artemin, and
           persephin. GFLs bind RET along with four GPI-anchored
           coreceptors, bringing two RET molecules together,
           leading to autophosphorylation, activation, and
           intracellular signaling. RET is essential for the
           development of the sympathetic, parasympathetic and
           enteric nervous systems, and the kidney. RET disruption
           by germline mutations causes diseases in humans
           including congenital aganglionosis of the
           gastrointestinal tract (Hirschsprung's disease) and
           three related inherited cancers: multiple endocrine
           neoplasia type 2A (MEN2A), MEN2B, and familial medullary
           thyroid carcinoma (FMTC).
          Length = 290

 Score = 52.3 bits (125), Expect = 2e-07
 Identities = 35/120 (29%), Positives = 58/120 (48%), Gaps = 7/120 (5%)

Query: 370 LLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLAR 429
           L +  +  LT+  + ++   + +G+ YL    ++HRDL   N+L+ +   +KI+DFGL+R
Sbjct: 116 LDNPDERALTMGDLISFAWQISRGMQYLAEMKLVHRDLAARNVLVAEGRKMKISDFGLSR 175

Query: 430 SFDVERWGQYTPEVASRW---YRAPELLYASRCYDQSVDLWAVGCILGEMYT-NAPLFPG 485
             DV     Y      R    + A E L     Y    D+W+ G +L E+ T     +PG
Sbjct: 176 --DVYEEDSYVKRSKGRIPVKWMAIESL-FDHIYTTQSDVWSFGVLLWEIVTLGGNPYPG 232


>gnl|CDD|133235 cd05104, PTKc_Kit, Catalytic domain of the Protein Tyrosine Kinase,
           Kit.  Protein Tyrosine Kinase (PTK) family; Kit (or
           c-Kit); catalytic (c) domain. The PTKc family is part of
           a larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Kit is a member of the
           Platelet Derived Growth Factor Receptor (PDGFR)
           subfamily of proteins, which are receptor tyr kinases
           (RTKs) containing an extracellular ligand-binding region
           with five immunoglobulin-like domains, a transmembrane
           segment, and an intracellular catalytic domain. The
           binding of Kit to its ligand, the stem-cell factor
           (SCF), leads to receptor dimerization, trans
           phosphorylation and activation, and intracellular
           signaling. Kit is important in the development of
           melanocytes, germ cells, mast cells, hematopoietic stem
           cells, the interstitial cells of Cajal, and the
           pacemaker cells of the GI tract. Kit signaling is
           involved in major cellular functions including cell
           survival, proliferation, differentiation, adhesion, and
           chemotaxis. Mutations in Kit, which result in
           constitutive ligand-independent activation, are found in
           human cancers such as gastrointestinal stromal tumor
           (GIST) and testicular germ cell tumor (TGCT). The
           aberrant expression of Kit and/or SCF is associated with
           other tumor types such as systemic mastocytosis and
           cancers of the breast, neurons, lung, prostate, colon,
           and rectum.  Although the structure of the human Kit
           catalytic domain is known, it is excluded from this
           specific alignment model because it contains a deletion
           in its sequence.
          Length = 375

 Score = 52.6 bits (126), Expect = 2e-07
 Identities = 39/123 (31%), Positives = 67/123 (54%), Gaps = 11/123 (8%)

Query: 369 ELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLA 428
           E+L + ++ L    + ++   + KG+S+L  K  +HRDL   N+L+    I KI DFGLA
Sbjct: 202 EILEEDELALDTEDLLSFSYQVAKGMSFLASKNCIHRDLAARNILLTHGRITKICDFGLA 261

Query: 429 RSFDVERWGQYTPEVASRW---YRAPELLYASRC-YDQSVDLWAVGCILGEMYT--NAPL 482
           R  D+     Y  +  +R    + APE ++   C Y    D+W+ G +L E+++  ++P 
Sbjct: 262 R--DIRNDSNYVVKGNARLPVKWMAPESIF--NCVYTFESDVWSYGILLWEIFSLGSSP- 316

Query: 483 FPG 485
           +PG
Sbjct: 317 YPG 319


>gnl|CDD|133179 cd05048, PTKc_Ror, Catalytic Domain of the Protein Tyrosine
           Kinases, Receptor tyrosine kinase-like Orphan Receptors.
            Protein Tyrosine Kinase (PTK) family; Receptor tyrosine
           kinase-like Orphan Receptor (Ror) subfamily; catalytic
           (c) domain. The Ror subfamily consists of Ror1, Ror2,
           and similar proteins. The PTKc family is part of a
           larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Ror proteins are orphan
           receptor tyr kinases (RTKs) containing an extracellular
           region with immunoglobulin-like, cysteine-rich, and
           kringle domains, a transmembrane segment, and an
           intracellular catalytic domain. Ror RTKs are unrelated
           to the nuclear receptor subfamily called
           retinoid-related orphan receptors (RORs). RTKs are
           usually activated through ligand binding, which causes
           dimerization and autophosphorylation of the
           intracellular tyr kinase catalytic domain. Ror kinases
           are expressed in many tissues during development. They
           play important roles in bone and heart formation.
           Mutations in human Ror2 result in two different bone
           development genetic disorders, recessive Robinow
           syndrome and brachydactyly type B. Drosophila Ror is
           expressed only in the developing nervous system during
           neurite outgrowth and neuronal differentiation,
           suggesting a role for Drosophila Ror in neural
           development. More recently, mouse Ror1 and Ror2 have
           also been found to play an important role in regulating
           neurite growth in central neurons. Ror1 and Ror2 are
           believed to have some overlapping and redundant
           functions.
          Length = 283

 Score = 52.1 bits (125), Expect = 3e-07
 Identities = 44/157 (28%), Positives = 68/157 (43%), Gaps = 22/157 (14%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIH---------LTIPHVKTYMQML 390
           P IV LL     +   C++FE++  G L E L     H          T+         L
Sbjct: 68  PNIVCLLGVCTKEQPTCMLFEYLAHGDLHEFLVRNSPHSDVGAESGDETVKSSLDCSDFL 127

Query: 391 ------LKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLAR---SFDVERWGQYTP 441
                   G+ YL     +HRDL   N L+ +   +KI+DFGL+R   S D  R    + 
Sbjct: 128 HIAIQIAAGMEYLSSHHFVHRDLAARNCLVGEGLTVKISDFGLSRDIYSADYYRVQSKSL 187

Query: 442 EVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYT 478
            +  RW   PE +   +   +S D+W+ G +L E+++
Sbjct: 188 -LPVRWM-PPEAILYGKFTTES-DIWSFGVVLWEIFS 221


>gnl|CDD|132970 cd06639, STKc_myosinIIIB, Catalytic domain of the Protein
           Serine/Threonine Kinase, Class IIIB myosin.
           Serine/threonine kinases (STKs), class IIIB myosin
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           class III myosin subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. Class III myosins are motor
           proteins containing an N-terminal kinase catalytic
           domain and a C-terminal actin-binding domain. Class III
           myosins may play an important role in maintaining the
           structural integrity of photoreceptor cell microvilli.
           They may also function as cargo carriers during
           light-dependent translocation, in photoreceptor cells,
           of proteins such as transducin and arrestin. Class IIIB
           myosin is expressed highly in retina. It is also present
           in the brain and testis. The human class IIIB myosin
           gene maps to a region that overlaps the locus for
           Bardet-Biedl syndrome, which is characterized by
           dysmorphic extremities, retinal dystrophy, obesity, male
           hypogenitalism, and renal abnormalities.
          Length = 291

 Score = 51.9 bits (124), Expect = 3e-07
 Identities = 32/98 (32%), Positives = 54/98 (55%), Gaps = 6/98 (6%)

Query: 391 LKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRA 450
           L G+ +LH   I+HRD+K  N+L+   G +K+ DFG++      R  + T  V + ++ A
Sbjct: 138 LLGLQHLHNNRIIHRDVKGNNILLTTEGGVKLVDFGVSAQLTSTRLRRNT-SVGTPFWMA 196

Query: 451 PELLYASRCYDQS----VDLWAVGCILGEMYT-NAPLF 483
           PE++   + YD S     D+W++G    E+   + PLF
Sbjct: 197 PEVIACEQQYDYSYDARCDVWSLGITAIELGDGDPPLF 234


>gnl|CDD|223069 PHA03390, pk1, serine/threonine-protein kinase 1; Provisional.
          Length = 267

 Score = 51.8 bits (125), Expect = 3e-07
 Identities = 54/218 (24%), Positives = 89/218 (40%), Gaps = 35/218 (16%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P  +KL           L+ +++  G L++LL  K+  L+   VK  ++ L++ ++ LH 
Sbjct: 69  PNFIKLYYSVTTLKGHVLIMDYIKDGDLFDLLK-KEGKLSEAEVKKIIRQLVEALNDLHK 127

Query: 400 KFIMHRDLKPANLLIDKAGI-LKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASR 458
             I+H D+K  N+L D+A   + + D+GL +          T +     Y +PE +    
Sbjct: 128 HNIIHNDIKLENVLYDRAKDRIYLCDYGLCKIIGTPSCYDGTLD-----YFSPEKI-KGH 181

Query: 459 CYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNK 518
            YD S D WAVG +  E+ T    F  + D E     L K                   K
Sbjct: 182 NYDVSFDWWAVGVLTYELLTGKHPFKEDEDEELDLESLLKR---------------QQKK 226

Query: 519 ITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKRL 556
           + F           + N S +  D +  +L Y+   RL
Sbjct: 227 LPF-----------IKNVSKNANDFVQSMLKYNINYRL 253


>gnl|CDD|133186 cd05055, PTKc_PDGFR, Catalytic domain of the Protein Tyrosine
           Kinases, Platelet Derived Growth Factor Receptors.
           Protein Tyrosine Kinase (PTK) family; Platelet Derived
           Growth Factor Receptor (PDGFR) subfamily; catalytic (c)
           domain. The PDGFR subfamily consists of PDGFR alpha,
           PDGFR beta, KIT, CSF-1R, the mammalian FLT3, and similar
           proteins. The PTKc family is part of a larger
           superfamily that includes the catalytic domains of other
           kinases such as protein serine/threonine kinases, RIO
           kinases, and phosphoinositide 3-kinase (PI3K). PTKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to tyrosine (tyr) residues in protein substrates.
           PDGFR subfamily members are receptor tyr kinases (RTKs)
           containing an extracellular ligand-binding region with
           five immunoglobulin-like domains, a transmembrane
           segment, and an intracellular catalytic domain. PDGFR
           kinase domains are autoinhibited by their juxtamembrane
           regions containing tyr residues. The binding to their
           ligands leads to receptor dimerization, trans
           phosphorylation and activation, and intracellular
           signaling. PDGFR subfamily receptors are important in
           the development of a variety of cells. PDGFRs are
           expressed in a many cells including fibroblasts,
           neurons, endometrial cells, mammary epithelial cells,
           and vascular smooth muscle cells. PDGFR signaling is
           critical in normal embryonic development, angiogenesis,
           and wound healing. PDGFRs transduce mitogenic signals
           for connective tissue cells and are important for cell
           shape and motility. Kit is important in the development
           of melanocytes, germ cells, mast cells, hematopoietic
           stem cells, the interstitial cells of Cajal, and the
           pacemaker cells of the GI tract. CSF-1R signaling is
           critical in the regulation of macrophages and
           osteoclasts. Mammalian FLT3 plays an important role in
           the survival, proliferation, and differentiation of stem
           cells.
          Length = 302

 Score = 51.7 bits (124), Expect = 3e-07
 Identities = 42/141 (29%), Positives = 71/141 (50%), Gaps = 8/141 (5%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKK-IHLTIPHVKTYMQMLLKGVSYLHGK 400
           IV LL        + ++ E+   G L   L  K+   LT+  + ++   + KG+++L  K
Sbjct: 101 IVNLLGACTIGGPILVITEYCCYGDLLNFLRRKRESFLTLEDLLSFSYQVAKGMAFLASK 160

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW---YRAPELLYAS 457
             +HRDL   N+L+    I+KI DFGLAR  D+     Y  +  +R    + APE ++  
Sbjct: 161 NCIHRDLAARNVLLTHGKIVKICDFGLAR--DIMNDSNYVVKGNARLPVKWMAPESIFNC 218

Query: 458 RCYDQSVDLWAVGCILGEMYT 478
             Y    D+W+ G +L E+++
Sbjct: 219 -VYTFESDVWSYGILLWEIFS 238


>gnl|CDD|133238 cd05107, PTKc_PDGFR_beta, Catalytic domain of the Protein Tyrosine
           Kinase, Platelet Derived Growth Factor Receptor beta.
           Protein Tyrosine Kinase (PTK) family; Platelet Derived
           Growth Factor Receptor (PDGFR) beta; catalytic (c)
           domain. The PTKc family is part of a larger superfamily
           that includes the catalytic domains of other kinases
           such as protein serine/threonine kinases, RIO kinases,
           and phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. PDGFR
           beta is a receptor tyr kinase (RTK) containing an
           extracellular ligand-binding region with five
           immunoglobulin-like domains, a transmembrane segment,
           and an intracellular catalytic domain. The binding to
           its ligands, the PDGFs, leads to receptor dimerization,
           trans phosphorylation and activation, and intracellular
           signaling. PDGFR beta forms homodimers or heterodimers
           with PDGFR alpha, depending on the nature of the PDGF
           ligand. PDGF-BB and PDGF-DD induce PDGFR beta
           homodimerization. PDGFR signaling plays many roles in
           normal embryonic development and adult physiology. PDGFR
           beta signaling leads to a variety of cellular effects
           including the stimulation of cell growth and chemotaxis,
           as well as the inhibition of apoptosis and GAP
           junctional communication. It is critical in normal
           angiogenesis as it is involved in the recruitment of
           pericytes and smooth muscle cells essential for vessel
           stability. Aberrant PDGFR beta expression is associated
           with some human cancers. The continuously-active fusion
           proteins of PDGFR beta with COL1A1 and TEL are
           associated with dermatofibrosarcoma protuberans (DFSP)
           and a subset of chronic myelomonocytic leukemia (CMML),
           respectively.
          Length = 401

 Score = 52.3 bits (125), Expect = 3e-07
 Identities = 34/104 (32%), Positives = 57/104 (54%), Gaps = 14/104 (13%)

Query: 385 TYMQML------LKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQ 438
           +YM ++        G+ +L  K  +HRDL   N+LI +  ++KI DFGLAR  D+ R   
Sbjct: 237 SYMDLVGFSYQVANGMEFLASKNCVHRDLAARNVLICEGKLVKICDFGLAR--DIMRDSN 294

Query: 439 YTPEVAS----RWYRAPELLYASRCYDQSVDLWAVGCILGEMYT 478
           Y  + ++    +W  APE ++ +  Y    D+W+ G +L E++T
Sbjct: 295 YISKGSTFLPLKWM-APESIFNN-LYTTLSDVWSFGILLWEIFT 336


>gnl|CDD|133240 cd05109, PTKc_HER2, Catalytic domain of the Protein Tyrosine
           Kinase, HER2.  Protein Tyrosine Kinase (PTK) family;
           HER2 (ErbB2, HER2/neu); catalytic (c) domain. The PTKc
           family is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. HER2 is a
           member of the EGFR (HER, ErbB) subfamily of proteins,
           which are receptor tyr kinases (RTKs) containing an
           extracellular EGF-related ligand-binding region, a
           transmembrane helix, and a cytoplasmic region with a tyr
           kinase domain and a regulatory C-terminal tail. Unlike
           other tyr kinases, phosphorylation of the activation
           loop of EGFR proteins is not critical to their
           activation. Instead, they are activated by
           ligand-induced dimerization, leading to the
           phosphorylation of tyr residues in the C-terminal tail,
           which serve as binding sites for downstream signaling
           molecules. HER2 does not bind to any known EGFR
           subfamily ligands, but contributes to the kinase
           activity of all possible heterodimers. It acts as the
           preferred partner with other ligand-bound EGFR proteins
           and functions as a signal amplifier, with the HER2-HER3
           heterodimer being the most potent pair in mitogenic
           signaling. HER2 plays an important role in cell
           development, proliferation, survival and motility.
           Overexpression of HER2 results in its activation and
           downstream signaling, even in the absence of ligand.
           HER2 overexpression, mainly due to gene amplification,
           has been shown in a variety of human cancers. Its role
           in breast cancer is especially well-documented. HER2 is
           up-regulated in about 25% of breast tumors and is
           associated with increases in tumor aggressiveness,
           recurrence and mortality. HER2 is a target for
           monoclonal antibodies and small molecule inhibitors,
           which are being developed as treatments for cancer. The
           first humanized antibody approved for clinical use is
           Trastuzumab (Herceptin), which is being used in
           combination with other therapies to improve the survival
           rates of patients with HER2-overexpressing breast
           cancer.
          Length = 279

 Score = 51.6 bits (123), Expect = 4e-07
 Identities = 37/127 (29%), Positives = 63/127 (49%), Gaps = 5/127 (3%)

Query: 355 TVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLL 413
           TV LV + M  G L + + + K  +    +  +   + KG+SYL    ++HRDL   N+L
Sbjct: 82  TVQLVTQLMPYGCLLDYVRENKDRIGSQDLLNWCVQIAKGMSYLEEVRLVHRDLAARNVL 141

Query: 414 IDKAGILKIADFGLARSFDVERWGQYTP--EVASRWYRAPELLYASRCYDQSVDLWAVGC 471
           +     +KI DFGLAR  D++    +    +V  +W     +L+  R +    D+W+ G 
Sbjct: 142 VKSPNHVKITDFGLARLLDIDETEYHADGGKVPIKWMALESILH--RRFTHQSDVWSYGV 199

Query: 472 ILGEMYT 478
            + E+ T
Sbjct: 200 TVWELMT 206


>gnl|CDD|173715 cd05626, STKc_LATS2, Catalytic domain of the Protein
           Serine/Threonine Kinase, Large Tumor Suppressor 2.
           Serine/Threonine Kinases (STKs), Large Tumor Suppressor
           (LATS) subfamily, LATS2 isoform, catalytic (c) domain.
           STKs catalyze the transfer of the gamma-phosphoryl group
           from ATP to serine/threonine residues on protein
           substrates. The LATS subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. LATS functions as a tumor
           suppressor and is implicated in cell cycle regulation.
           LATS2 is an essential mitotic regulator responsible for
           coordinating accurate cytokinesis completion and
           governing the stabilization of other mitotic regulators.
           It is also critical in the maintenance of proper
           chromosome number, genomic stability, mitotic fidelity,
           and the integrity of centrosome duplication.
           Downregulation of LATS2 is associated with poor
           prognosis in acute lymphoblastic leukemia and breast
           cancer.
          Length = 381

 Score = 51.9 bits (124), Expect = 4e-07
 Identities = 65/257 (25%), Positives = 96/257 (37%), Gaps = 85/257 (33%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHV--KTYMQMLLKGVSYLHG 399
           +VKL   F D+D +  V +++  G +  LL   ++    P V  + Y+  L   +  +H 
Sbjct: 63  VVKLYYSFQDKDNLYFVMDYIPGGDMMSLLIRMEV---FPEVLARFYIAELTLAIESVHK 119

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWG-------------QYTPEVASR 446
              +HRD+KP N+LID  G +K+ DFGL   F   RW              Q + E +  
Sbjct: 120 MGFIHRDIKPDNILIDLDGHIKLTDFGLCTGF---RWTHNSKYYQKGSHIRQDSMEPSDL 176

Query: 447 W------------------------------------YRAPELLYASRCYDQSVDLWAVG 470
           W                                    Y APE+L   + Y Q  D W+VG
Sbjct: 177 WDDVSNCRCGDRLKTLEQRATKQHQRCLAHSLVGTPNYIAPEVLL-RKGYTQLCDWWSVG 235

Query: 471 CILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDLPDYNKITFAPSDPVPWS 530
            IL EM    P F   +  E    V+         +W     +P   K+           
Sbjct: 236 VILFEMLVGQPPFLAPTPTETQLKVI---------NWENTLHIPPQVKL----------- 275

Query: 531 TMLPNASPDTLDLISKL 547
                 SP+ +DLI+KL
Sbjct: 276 ------SPEAVDLITKL 286


>gnl|CDD|173653 cd05105, PTKc_PDGFR_alpha, Catalytic domain of the Protein Tyrosine
           Kinase, Platelet Derived Growth Factor Receptor alpha.
           Protein Tyrosine Kinase (PTK) family; Platelet Derived
           Growth Factor Receptor (PDGFR) alpha; catalytic (c)
           domain. The PTKc family is part of a larger superfamily
           that includes the catalytic domains of other kinases
           such as protein serine/threonine kinases, RIO kinases,
           and phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. PDGFR
           alpha is a receptor tyr kinase (RTK) containing an
           extracellular ligand-binding region with five
           immunoglobulin-like domains, a transmembrane segment,
           and an intracellular catalytic domain. The binding to
           its ligands, the PDGFs, leads to receptor dimerization,
           trans phosphorylation and activation, and intracellular
           signaling. PDGFR alpha forms homodimers or heterodimers
           with PDGFR beta, depending on the nature of the PDGF
           ligand. PDGF-AA, PDGF-AB, and PDGF-CC induce PDGFR alpha
           homodimerization. PDGFR signaling plays many roles in
           normal embryonic development and adult physiology. PDGFR
           alpha signaling is important in the formation of lung
           alveoli, intestinal villi, mesenchymal dermis, and hair
           follicles, as well as in the development of
           oligodendrocytes, retinal astrocytes, neural crest
           cells, and testicular cells. Aberrant PDGFR alpha
           expression is associated with some human cancers.
           Mutations in PDGFR alpha have been found within a subset
           of gastrointestinal stromal tumors (GISTs). An active
           fusion protein FIP1L1-PDGFR alpha, derived from
           interstitial deletion, is associated with idiopathic
           hypereosinophilic syndrome (HES) and chronic
           eosinophilic leukemia (CEL).
          Length = 400

 Score = 51.6 bits (123), Expect = 6e-07
 Identities = 34/113 (30%), Positives = 60/113 (53%), Gaps = 9/113 (7%)

Query: 378 LTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWG 437
           LT   + ++   + +G+ +L  K  +HRDL   N+L+ +  I+KI DFGLAR  D+    
Sbjct: 234 LTTLDLLSFTYQVARGMEFLASKNCVHRDLAARNVLLAQGKIVKICDFGLAR--DIMHDS 291

Query: 438 QYTPEVAS----RWYRAPELLYASRCYDQSVDLWAVGCILGEMYT-NAPLFPG 485
            Y  + ++    +W  APE ++    Y    D+W+ G +L E+++     +PG
Sbjct: 292 NYVSKGSTFLPVKWM-APESIF-DNLYTTLSDVWSYGILLWEIFSLGGTPYPG 342


>gnl|CDD|133213 cd05082, PTKc_Csk, Catalytic domain of the Protein Tyrosine Kinase,
           C-terminal Src kinase.  Protein Tyrosine Kinase (PTK)
           family; C-terminal Src kinase (Csk); catalytic (c)
           domain. The PTKc family is part of a larger superfamily
           that includes the catalytic domains of other kinases
           such as protein serine/threonine kinases, RIO kinases,
           and phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. The Csk
           subfamily kinases are cytoplasmic (or nonreceptor) tyr
           kinases containing the Src homology domains, SH3 and
           SH2, N-terminal to the catalytic tyr kinase domain. They
           negatively regulate the activity of Src kinases that are
           anchored to the plasma membrane. To inhibit Src kinases,
           Csk is translocated to the membrane via binding to
           specific transmembrane proteins, G-proteins, or adaptor
           proteins near the membrane. Csk catalyzes the tyr
           phosphorylation of the regulatory C-terminal tail of Src
           kinases, resulting in their inactivation. Csk is
           expressed in a wide variety of tissues. As a negative
           regulator of Src, Csk plays a role in cell
           proliferation, survival, and differentiation, and
           consequently, in cancer development and progression. In
           addition, Csk also shows Src-independent functions. It
           is a critical component in G-protein signaling, and
           plays a role in cytoskeletal reorganization and cell
           migration.
          Length = 256

 Score = 50.0 bits (119), Expect = 1e-06
 Identities = 27/87 (31%), Positives = 47/87 (54%), Gaps = 5/87 (5%)

Query: 392 KGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAP 451
           + + YL     +HRDL   N+L+ +  + K++DFGL +        Q T ++  +W  AP
Sbjct: 113 EAMEYLEANNFVHRDLAARNVLVSEDNVAKVSDFGLTKEASST---QDTGKLPVKW-TAP 168

Query: 452 ELLYASRCYDQSVDLWAVGCILGEMYT 478
           E L   +   +S D+W+ G +L E+Y+
Sbjct: 169 EALREKKFSTKS-DVWSFGILLWEIYS 194


>gnl|CDD|173655 cd05110, PTKc_HER4, Catalytic domain of the Protein Tyrosine
           Kinase, HER4.  Protein Tyrosine Kinase (PTK) family;
           HER4 (ErbB4); catalytic (c) domain. The PTKc family is
           part of a larger superfamily that includes the catalytic
           domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. HER4 is a
           member of the EGFR (HER, ErbB) subfamily of proteins,
           which are receptor tyr kinases (RTKs) containing an
           extracellular EGF-related ligand-binding region, a
           transmembrane helix, and a cytoplasmic region with a tyr
           kinase domain and a regulatory C-terminal tail. Unlike
           other tyr kinases, phosphorylation of the activation
           loop of EGFR proteins is not critical to their
           activation. Instead, they are activated by
           ligand-induced dimerization, leading to the
           phosphorylation of tyr residues in the C-terminal tail,
           which serve as binding sites for downstream signaling
           molecules. Ligands that bind HER4 fall into two groups,
           the neuregulins (or heregulins) and some EGFR (HER1)
           ligands including betacellulin, HBEGF, and epiregulin.
           All four neuregulins (NRG1-4) interact with HER4. Upon
           ligand binding, HER4 forms homo- or heterodimers with
           other HER proteins. HER4 is essential in embryonic
           development. It is implicated in mammary gland, cardiac,
           and neural development. As a postsynaptic receptor of
           NRG1, HER4 plays an important role in synaptic
           plasticity and maturation. The impairment of NRG1/HER4
           signaling may contribute to schizophrenia.
          Length = 303

 Score = 50.1 bits (119), Expect = 1e-06
 Identities = 41/141 (29%), Positives = 72/141 (51%), Gaps = 6/141 (4%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P +V+LL       T+ LV + M  G L + +H+ K ++    +  +   + KG+ YL  
Sbjct: 69  PHLVRLLGVCLSP-TIQLVTQLMPHGCLLDYVHEHKDNIGSQLLLNWCVQIAKGMMYLEE 127

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSF--DVERWGQYTPEVASRWYRAPELLYAS 457
           + ++HRDL   N+L+     +KI DFGLAR    D + +     ++  +W  A E ++  
Sbjct: 128 RRLVHRDLAARNVLVKSPNHVKITDFGLARLLEGDEKEYNADGGKMPIKWM-ALECIHYR 186

Query: 458 RCYDQSVDLWAVGCILGEMYT 478
           +   QS D+W+ G  + E+ T
Sbjct: 187 KFTHQS-DVWSYGVTIWELMT 206


>gnl|CDD|173642 cd05075, PTKc_Axl, Catalytic domain of the Protein Tyrosine Kinase,
           Axl.  Protein Tyrosine Kinase (PTK) family; Axl;
           catalytic (c) domain. The PTKc family is part of a
           larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Axl is a member of the
           Axl subfamily, which is composed of receptor tyr kinases
           (RTKs) containing an extracellular ligand-binding region
           with two immunoglobulin-like domains followed by two
           fibronectin type III repeats, a transmembrane segment,
           and an intracellular catalytic domain. Binding to their
           ligands, Gas6 and protein S, leads to receptor
           dimerization, autophosphorylation, activation, and
           intracellular signaling. Axl is widely expressed in a
           variety of organs and cells including epithelial,
           mesenchymal, hematopoietic, as well as non-transformed
           cells. Axl signaling is important in many cellular
           functions such as survival, anti-apoptosis,
           proliferation, migration, and adhesion. Axl was
           originally isolated from patients with chronic
           myelogenous leukemia and a chronic myeloproliferative
           disorder. Axl is overexpressed in many human cancers
           including colon, squamous cell, thyroid, breast, and
           lung carcinomas.
          Length = 272

 Score = 49.6 bits (118), Expect = 2e-06
 Identities = 35/128 (27%), Positives = 60/128 (46%), Gaps = 7/128 (5%)

Query: 367 LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFG 426
           L+  L D   +L    +  +M  +  G+ YL  K  +HRDL   N ++++   + +ADFG
Sbjct: 98  LYSRLGDCPQYLPTQMLVKFMTDIASGMEYLSSKSFIHRDLAARNCMLNENMNVCVADFG 157

Query: 427 LARSF---DVERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPL- 482
           L++     D  R G+   ++  +W     L  A R Y    D+W+ G  + E+ T     
Sbjct: 158 LSKKIYNGDYYRQGRIA-KMPVKWIAIESL--ADRVYTTKSDVWSFGVTMWEIATRGQTP 214

Query: 483 FPGESDIE 490
           +PG  + E
Sbjct: 215 YPGVENSE 222


>gnl|CDD|133219 cd05088, PTKc_Tie2, Catalytic domain of the Protein Tyrosine
           Kinase, Tie2.  Protein Tyrosine Kinase (PTK) family;
           Tie2; catalytic (c) domain. The PTKc family is part of a
           larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Tie2 is a receptor tyr
           kinase (RTK) containing an extracellular region, a
           transmembrane segment, and an intracellular catalytic
           domain. The extracellular region contains an
           immunoglobulin (Ig)-like domain, three epidermal growth
           factor (EGF)-like domains, a second Ig-like domain, and
           three fibronectin type III repeats. Tie2 is expressed
           mainly in endothelial cells and hematopoietic stem
           cells. It is also found in a subset of tumor-associated
           monocytes and eosinophils. The angiopoietins (Ang-1 to
           Ang-4) serve as ligands for Tie2. The binding of Ang-1
           to Tie2 leads to receptor autophosphorylation and
           activation, promoting cell migration and survival. In
           contrast, Ang-2 binding to Tie2 does not result in the
           same response, suggesting that Ang-2 may function as an
           antagonist. Tie2 signaling plays key regulatory roles in
           vascular integrity and quiescence, and in inflammation.
          Length = 303

 Score = 49.2 bits (117), Expect = 2e-06
 Identities = 29/87 (33%), Positives = 47/87 (54%), Gaps = 3/87 (3%)

Query: 392 KGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAP 451
           +G+ YL  K  +HRDL   N+L+ +  + KIADFGL+R  +V    +    +  RW    
Sbjct: 135 RGMDYLSQKQFIHRDLAARNILVGENYVAKIADFGLSRGQEVYV-KKTMGRLPVRWMAIE 193

Query: 452 ELLYASRCYDQSVDLWAVGCILGEMYT 478
            L Y+   Y  + D+W+ G +L E+ +
Sbjct: 194 SLNYS--VYTTNSDVWSYGVLLWEIVS 218


>gnl|CDD|132969 cd06638, STKc_myosinIIIA, Catalytic domain of the Protein
           Serine/Threonine Kinase, Class IIIA myosin.
           Serine/threonine kinases (STKs), class IIIA myosin
           subfamily, catalytic (c) domain. STKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           serine/threonine residues on protein substrates. The
           class III myosin subfamily is part of a larger
           superfamily that includes the catalytic domains of other
           protein STKs, protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. Class III myosins are motor
           proteins containing an N-terminal kinase catalytic
           domain and a C-terminal actin-binding domain. Class III
           myosins may play an important role in maintaining the
           structural integrity of photoreceptor cell microvilli.
           In photoreceptor cells, they may also function as cargo
           carriers during light-dependent translocation of
           proteins such as transducin and arrestin. Class IIIA
           myosin is highly expressed in retina and in inner ear
           hair cells. It is localized to the distal ends of
           actin-bundled structures. Mutations in human myosin IIIA
           are responsible for progressive nonsyndromic hearing
           loss. Human myosin IIIA possesses ATPase and kinase
           activities, and the ability to move actin filaments in a
           motility assay. It may function as a cellular
           transporter capable of moving along actin bundles in
           sensory cells.
          Length = 286

 Score = 48.9 bits (116), Expect = 3e-06
 Identities = 44/169 (26%), Positives = 70/169 (41%), Gaps = 32/169 (18%)

Query: 391 LKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRA 450
           L G+ +LH    +HRD+K  N+L+   G +K+ DFG++      R  + T  V + ++ A
Sbjct: 134 LMGLQHLHVNKTIHRDVKGNNILLTTEGGVKLVDFGVSAQLTSTRLRRNT-SVGTPFWMA 192

Query: 451 PELLYASR----CYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLGTPTEDS 506
           PE++   +     YD   D+W++G    E+        G+ D                  
Sbjct: 193 PEVIACEQQLDSTYDARCDVWSLGITAIEL--------GDGD------------------ 226

Query: 507 WPGLKDLPDYNKITFAPSDPVPWSTMLPNASPDTLDLISKLLLYDGQKR 555
            P L DL     +   P +P P        S +  D I K L  D +KR
Sbjct: 227 -PPLADLHPMRALFKIPRNPPPTLHQPELWSNEFNDFIRKCLTKDYEKR 274


>gnl|CDD|173654 cd05108, PTKc_EGFR, Catalytic domain of the Protein Tyrosine
           Kinase, Epidermal Growth Factor Receptor.  Protein
           Tyrosine Kinase (PTK) family; Epidermal Growth Factor
           Receptor (EGFR); catalytic (c) domain. The PTKc family
           is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. EGFR
           (HER1, ErbB1) is a member of the EGFR (HER, ErbB)
           subfamily of proteins, which are receptor tyr kinases
           (RTKs) containing an extracellular EGF-related
           ligand-binding region, a transmembrane helix, and a
           cytoplasmic region with a tyr kinase domain and a
           regulatory C-terminal tail. Unlike other tyr kinases,
           phosphorylation of the activation loop of EGFR proteins
           is not critical to their activation. Instead, they are
           activated by ligand-induced dimerization, leading to the
           phosphorylation of tyr residues in the C-terminal tail,
           which serve as binding sites for downstream signaling
           molecules. Ligands for EGFR include EGF, heparin binding
           EGF-like growth factor (HBEGF), epiregulin,
           amphiregulin, TGFalpha, and betacellulin. Upon ligand
           binding, EGFR can form homo- or heterodimers with other
           EGFR subfamily members. The EGFR signaling pathway is
           one of the most important pathways regulating cell
           proliferation, differentiation, survival, and growth.
           Overexpression and mutation in the kinase domain of EGFR
           have been implicated in the development and progression
           of a variety of cancers. A number of monoclonal
           antibodies and small molecule inhibitors have been
           developed that target EGFR, including the antibodies
           Cetuximab and Panitumumab, which are used in combination
           with other therapies for the treatment of colorectal
           cancer and non-small cell lung carcinoma (NSCLC). The
           small molecule inhibitors Gefitinib (Iressa) and
           Erlotinib (Tarceva), already used for NSCLC, are
           undergoing clinical trials for other types of cancer
           including gastrointestinal, breast, head and neck, and
           bladder.
          Length = 316

 Score = 48.8 bits (116), Expect = 3e-06
 Identities = 36/128 (28%), Positives = 65/128 (50%), Gaps = 7/128 (5%)

Query: 355 TVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLL 413
           TV L+ + M  G L + + + K ++   ++  +   + KG++YL  + ++HRDL   N+L
Sbjct: 82  TVQLITQLMPFGCLLDYVREHKDNIGSQYLLNWCVQIAKGMNYLEERRLVHRDLAARNVL 141

Query: 414 IDKAGILKIADFGLARSFDVERWGQYTPE---VASRWYRAPELLYASRCYDQSVDLWAVG 470
           +     +KI DFGLA+    +   +Y  E   V  +W     +L+  R Y    D+W+ G
Sbjct: 142 VKTPQHVKITDFGLAKLLGADE-KEYHAEGGKVPIKWMALESILH--RIYTHQSDVWSYG 198

Query: 471 CILGEMYT 478
             + E+ T
Sbjct: 199 VTVWELMT 206


>gnl|CDD|133187 cd05056, PTKc_FAK, Catalytic domain of the Protein Tyrosine Kinase,
           Focal Adhesion Kinase.  Protein Tyrosine Kinase (PTK)
           family; Focal Adhesion Kinase (FAK); catalytic (c)
           domain. The PTKc family is part of a larger superfamily
           that includes the catalytic domains of other kinases
           such as protein serine/threonine kinases, RIO kinases,
           and phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. FAK is a
           cytoplasmic (or nonreceptor) tyr kinase that contains an
           autophosphorylation site and a FERM domain at the
           N-terminus, a central tyr kinase domain, proline-rich
           regions, and a C-terminal FAT (focal adhesion targeting)
           domain. FAK activity is dependent on integrin-mediated
           cell adhesion, which facilitates N-terminal
           autophosphorylation. Full activation is achieved by the
           phosphorylation of its two adjacent A-loop tyrosines.
           FAK is important in mediating signaling initiated at
           sites of cell adhesions and at growth factor receptors.
           Through diverse molecular interactions, FAK functions as
           a biosensor or integrator to control cell motility. It
           is a key regulator of cell survival, proliferation,
           migration and invasion, and thus plays an important role
           in the development and progression of cancer. Src binds
           to autophosphorylated FAK forming the FAK-Src dual
           kinase complex, which is activated in a wide variety of
           tumor cells and generates signals promoting growth and
           metastasis. FAK is being developed as a target for
           cancer therapy.
          Length = 270

 Score = 48.2 bits (115), Expect = 4e-06
 Identities = 50/191 (26%), Positives = 79/191 (41%), Gaps = 22/191 (11%)

Query: 310 GLWELLHDKKIHLTIPHIKTYTYLSDVFSFL-----------PQIVKLLDFFPDQDTVCL 358
           G++    ++KI + +   K  T  S    FL           P IVKL+    + + V +
Sbjct: 25  GVYMSPENEKIAVAVKTCKNCTSPSVREKFLQEAYIMRQFDHPHIVKLIGVITE-NPVWI 83

Query: 359 VFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKA 417
           V E    G L   L   K  L +  +  Y   L   ++YL  K  +HRD+   N+L+   
Sbjct: 84  VMELAPLGELRSYLQVNKYSLDLASLILYSYQLSTALAYLESKRFVHRDIAARNVLVSSP 143

Query: 418 GILKIADFGLARSFDVERWGQYTPEVAS---RWYRAPELLYASRCYDQSVDLWAVGCILG 474
             +K+ DFGL+R  + E +  Y         +W  APE +   R +  + D+W  G  + 
Sbjct: 144 DCVKLGDFGLSRYLEDESY--YKASKGKLPIKWM-APESINFRR-FTSASDVWMFGVCMW 199

Query: 475 E--MYTNAPLF 483
           E  M    P  
Sbjct: 200 EILMLGVKPFQ 210


>gnl|CDD|173701 cd05610, STKc_MASTL, Catalytic domain of the Protein
           Serine/Threonine Kinase, Microtubule-associated
           serine/threonine-like kinase.  Serine/Threonine Kinases
           (STKs), Microtubule-associated serine/threonine (MAST)
           kinase subfamily, MAST-like (MASTL) kinases, catalytic
           (c) domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The MAST kinase
           subfamily is part of a larger superfamily that includes
           the catalytic domains of other protein STKs, protein
           tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. MAST kinases contain an N-terminal domain of
           unknown function, a central catalytic domain, and a
           C-terminal PDZ domain that mediates protein-protein
           interactions. The MASTL kinases in this group carry only
           a catalytic domain, which contains a long insertion
           relative to MAST kinases. The human MASTL gene has also
           been labelled FLJ14813. A missense mutation in FLJ14813
           is associated with autosomal dominant thrombocytopenia.
           To date, the function of MASTL is unknown.
          Length = 669

 Score = 48.7 bits (116), Expect = 7e-06
 Identities = 33/95 (34%), Positives = 47/95 (49%), Gaps = 12/95 (12%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLH-----DKKIHLTIPHVKTYMQMLLKGV 394
           P IV L       + V LV E++  G +  LLH     D+           Y+  +   +
Sbjct: 64  PFIVHLYYSLQSANNVYLVMEYLIGGDVKSLLHIYGYFDE------EMAVKYISEVALAL 117

Query: 395 SYLHGKFIMHRDLKPANLLIDKAGILKIADFGLAR 429
            YLH   I+HRDLKP N+LI   G +K+ DFGL++
Sbjct: 118 DYLHRHGIIHRDLKPDNMLISNEGHIKLTDFGLSK 152



 Score = 31.8 bits (72), Expect = 1.00
 Identities = 17/40 (42%), Positives = 22/40 (55%), Gaps = 1/40 (2%)

Query: 448 YRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGES 487
           Y APELL   + +  +VD WA+G  L E  T  P F  E+
Sbjct: 546 YLAPELLL-GKPHGPAVDWWALGVCLFEFLTGIPPFNDET 584


>gnl|CDD|133227 cd05096, PTKc_DDR1, Catalytic domain of the Protein Tyrosine
           Kinase, Discoidin Domain Receptor 1.  Protein Tyrosine
           Kinase (PTK) family; mammalian Discoidin Domain Receptor
           1 (DDR1) and homologs; catalytic (c) domain. The PTKc
           family is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. DDR1 is a
           member of the DDR subfamily, which are receptor tyr
           kinases (RTKs) containing an extracellular discoidin
           homology domain, a transmembrane segment, an extended
           juxtamembrane region, and an intracellular catalytic
           domain. The binding of the ligand, collagen, to DDRs
           results in a slow but sustained receptor activation.
           DDR1 binds to all collagens tested to date (types I-IV).
           It is widely expressed in many tissues. It is abundant
           in the brain and is also found in keratinocytes, colonic
           mucosa epithelium, lung epithelium, thyroid follicles,
           and the islets of Langerhans. During embryonic
           development, it is found in the developing
           neuroectoderm. DDR1 is a key regulator of cell
           morphogenesis, differentiation and proliferation. It is
           important in the development of the mammary gland, the
           vasculator and the kidney. DDR1 is also found in human
           leukocytes, where it facilitates cell adhesion,
           migration, maturation, and cytokine production.
          Length = 304

 Score = 47.6 bits (113), Expect = 9e-06
 Identities = 46/172 (26%), Positives = 78/172 (45%), Gaps = 30/172 (17%)

Query: 327 IKTYTYLSDVFSFLPQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIH-------- 377
           +K  + L D     P I++LL    D+D +C++ E+M++G L + L    +         
Sbjct: 70  VKILSRLKD-----PNIIRLLGVCVDEDPLCMITEYMENGDLNQFLSSHHLDDKEENGND 124

Query: 378 -------LTIPHVKTYMQMLLK---GVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGL 427
                  L      + + + L+   G+ YL     +HRDL   N L+ +   +KIADFG+
Sbjct: 125 AVPPAHCLPAISYSSLLHVALQIASGMKYLSSLNFVHRDLATRNCLVGENLTIKIADFGM 184

Query: 428 ARSF---DVERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEM 476
           +R+    D  R  Q    +  RW  A E +   + +  + D+WA G  L E+
Sbjct: 185 SRNLYAGDYYRI-QGRAVLPIRWM-AWECILMGK-FTTASDVWAFGVTLWEI 233


>gnl|CDD|173638 cd05065, PTKc_EphR_B, Catalytic domain of the Protein Tyrosine
           Kinases, Class EphB Ephrin Receptors.  Protein Tyrosine
           Kinase (PTK) family; Ephrin Receptor (EphR) subfamily;
           class EphB receptors; catalytic (c) domain. The PTKc
           family is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. EphRs
           comprise the largest subfamily of receptor tyr kinases
           (RTKs). Class EphB receptors bind to transmembrane
           ephrin-B ligands. There are six vertebrate EhpB
           receptors (EphB1-6), which display promiscuous
           interactions with three ephrin-B ligands. One exception
           is EphB2, which also interacts with ephrin A5. EphRs
           contain an ephrin-binding domain and two fibronectin
           repeats extracellularly, a transmembrane segment, and a
           cytoplasmic tyr kinase domain. Binding of the ephrin
           ligand to EphR requires cell-cell contact since both are
           anchored to the plasma membrane. The resulting
           downstream signals occur bidirectionally in both
           EphR-expressing cells (forward signaling) and
           ephrin-expressing cells (reverse signaling). Ephrin/EphR
           interaction mainly results in cell-cell repulsion or
           adhesion. EphBRs play important roles in synapse
           formation and plasticity, spine morphogenesis, axon
           guidance, and angiogenesis. In the intestinal
           epithelium, EphBRs are Wnt signaling target genes that
           control cell compartmentalization. They function as
           suppressors of color cancer progression.
          Length = 269

 Score = 47.2 bits (112), Expect = 1e-05
 Identities = 38/142 (26%), Positives = 69/142 (48%), Gaps = 8/142 (5%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
           P I+ L         V ++ E M++G L   L       T+  +   ++ +  G+ YL  
Sbjct: 65  PNIIHLEGVVTKSRPVMIITEFMENGALDSFLRQNDGQFTVIQLVGMLRGIAAGMKYLSE 124

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWG-QYTP----EVASRWYRAPELL 454
              +HRDL   N+L++   + K++DFGL+R  + +     YT     ++  RW  APE +
Sbjct: 125 MNYVHRDLAARNILVNSNLVCKVSDFGLSRFLEDDTSDPTYTSSLGGKIPIRW-TAPEAI 183

Query: 455 YASRCYDQSVDLWAVGCILGEM 476
            A R +  + D+W+ G ++ E+
Sbjct: 184 -AYRKFTSASDVWSYGIVMWEV 204


>gnl|CDD|178763 PLN03224, PLN03224, probable serine/threonine protein kinase;
           Provisional.
          Length = 507

 Score = 47.0 bits (111), Expect = 2e-05
 Identities = 22/46 (47%), Positives = 30/46 (65%)

Query: 383 VKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLA 428
           +K  M+ +L G+  LH   I+HRD+KP NLL+   G +KI DFG A
Sbjct: 311 IKGVMRQVLTGLRKLHRIGIVHRDIKPENLLVTVDGQVKIIDFGAA 356


>gnl|CDD|183880 PRK13184, pknD, serine/threonine-protein kinase; Reviewed.
          Length = 932

 Score = 47.5 bits (113), Expect = 2e-05
 Identities = 38/142 (26%), Positives = 60/142 (42%), Gaps = 23/142 (16%)

Query: 383 VKTYMQMLLK---GVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQY 439
           V  ++ +  K    + Y+H K ++HRDLKP N+L+   G + I D+G A    +E     
Sbjct: 112 VGAFLSIFHKICATIEYVHSKGVLHRDLKPDNILLGLFGEVVILDWGAAIFKKLEEEDLL 171

Query: 440 TPEVASRW-----------------YRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPL 482
             +V  R                  Y APE L       +S D++A+G IL +M T +  
Sbjct: 172 DIDVDERNICYSSMTIPGKIVGTPDYMAPERLLGVPA-SESTDIYALGVILYQMLTLS-- 228

Query: 483 FPGESDIEQLAMVLHKLGTPTE 504
           FP      +       + +P E
Sbjct: 229 FPYRRKKGRKISYRDVILSPIE 250


>gnl|CDD|133237 cd05106, PTKc_CSF-1R, Catalytic domain of the Protein Tyrosine
           Kinase, Colony-Stimulating Factor-1 Receptor.  Protein
           Tyrosine Kinase (PTK) family; Colony-Stimulating
           Factor-1 Receptor (CSF-1R); catalytic (c) domain. The
           PTKc family is part of a larger superfamily that
           includes the catalytic domains of other kinases such as
           protein serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. CSF-1R,
           also called c-Fms, is a member of the Platelet Derived
           Growth Factor Receptor (PDGFR) subfamily of proteins,
           which are receptor tyr kinases (RTKs) containing an
           extracellular ligand-binding region with five
           immunoglobulin-like domains, a transmembrane segment,
           and an intracellular catalytic domain. The binding of
           CSF-1R to its ligand, CSF-1, leads to receptor
           dimerization, trans phosphorylation and activation, and
           intracellular signaling. CSF-1R signaling is critical in
           the regulation of macrophages and osteoclasts. It leads
           to increases in gene transcription and protein
           translation, and induces cytoskeletal remodeling. CSF-1R
           signaling leads to a variety of cellular responses
           including survival, proliferation, and differentiation
           of target cells. It plays an important role in innate
           immunity, tissue development and function, and the
           pathogenesis of some diseases including atherosclerosis
           and cancer. CSF-1R signaling is also implicated in
           mammary gland development during pregnancy and
           lactation. Aberrant CSF-1/CSF-1R expression correlates
           with tumor cell invasiveness, poor clinical prognosis,
           and bone metastasis in breast cancer. Although the
           structure of the human CSF-1R catalytic domain is known,
           it is excluded from this specific alignment model
           because it contains a deletion in its sequence.
          Length = 374

 Score = 46.8 bits (111), Expect = 2e-05
 Identities = 29/90 (32%), Positives = 49/90 (54%), Gaps = 6/90 (6%)

Query: 392 KGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRW---Y 448
           +G+ +L  K  +HRD+   N+L+    + KI DFGLAR  D+     Y  +  +R    +
Sbjct: 223 QGMDFLASKNCIHRDVAARNVLLTDGRVAKICDFGLAR--DIMNDSNYVVKGNARLPVKW 280

Query: 449 RAPELLYASRCYDQSVDLWAVGCILGEMYT 478
            APE ++      QS D+W+ G +L E+++
Sbjct: 281 MAPESIFDCVYTVQS-DVWSYGILLWEIFS 309


>gnl|CDD|133175 cd05043, PTK_Ryk, Pseudokinase domain of Ryk (Receptor related to
           tyrosine kinase).  Protein Tyrosine Kinase (PTK) family;
           Receptor related to tyrosine kinase (Ryk); pseudokinase
           domain. The PTKc (catalytic domain) family to which this
           subfamily belongs, is part of a larger superfamily that
           includes the catalytic domains of other kinases such as
           protein serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Ryk is a
           receptor tyr kinase (RTK) containing an extracellular
           region with two leucine-rich motifs, a transmembrane
           segment, and an intracellular inactive pseudokinase
           domain. The extracellular region of Ryk shows homology
           to the N-terminal domain of Wnt inhibitory factor-1
           (WIF) and serves as the ligand (Wnt) binding domain of
           Ryk. Ryk is expressed in many different tissues both
           during development and in adults, suggesting a
           widespread function. It acts as a chemorepulsive axon
           guidance receptor of Wnt glycoproteins and is
           responsible for the establishment of axon tracts during
           the development of the central nervous system. In
           addition, studies in mice reveal that Ryk is essential
           in skeletal, craniofacial, and cardiac development.
           Thus, it appears Ryk is involved in signal transduction
           despite its lack of kinase activity. Ryk may function as
           an accessory protein that modulates the signals coming
           from catalytically active partner RTKs such as the Eph
           receptors.
          Length = 280

 Score = 46.3 bits (110), Expect = 2e-05
 Identities = 33/110 (30%), Positives = 54/110 (49%), Gaps = 10/110 (9%)

Query: 392 KGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSF---DVERWG--QYTPEVASR 446
            G+SYLH + ++H+D+   N +ID+   +KI D  L+R     D    G  +  P    +
Sbjct: 128 CGMSYLHKRGVIHKDIAARNCVIDEELQVKITDNALSRDLFPMDYHCLGDNENRP---VK 184

Query: 447 WYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVL 496
           W  A E L  ++ Y  + D+W+ G +L E+ T       E D  ++A  L
Sbjct: 185 WM-ALESL-VNKEYSSASDVWSFGVLLWELMTLGQTPYVEIDPFEMAAYL 232


>gnl|CDD|133220 cd05089, PTKc_Tie1, Catalytic domain of the Protein Tyrosine
           Kinase, Tie1.  Protein Tyrosine Kinase (PTK) family;
           Tie1; catalytic (c) domain. The PTKc family is part of a
           larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Tie1 is a receptor tyr
           kinase (RTK) containing an extracellular region, a
           transmembrane segment, and an intracellular catalytic
           domain. The extracellular region contains an
           immunoglobulin (Ig)-like domain, three epidermal growth
           factor (EGF)-like domains, a second Ig-like domain, and
           three fibronectin type III repeats. Tie receptors are
           specifically expressed in endothelial cells and
           hematopoietic stem cells. No specific ligand has been
           identified for Tie1, although the angiopoietin, Ang-1,
           binds to Tie1 through integrins at high concentrations.
           In vivo studies of Tie1 show that it is critical in
           vascular development.
          Length = 297

 Score = 45.8 bits (108), Expect = 3e-05
 Identities = 29/86 (33%), Positives = 44/86 (51%), Gaps = 3/86 (3%)

Query: 393 GVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPE 452
           G+ YL  K  +HRDL   N+L+ +    KIADFGL+R  +V    +    +  RW     
Sbjct: 131 GMQYLSEKQFIHRDLAARNVLVGENLASKIADFGLSRGEEVYV-KKTMGRLPVRWMAIES 189

Query: 453 LLYASRCYDQSVDLWAVGCILGEMYT 478
           L Y+   Y    D+W+ G +L E+ +
Sbjct: 190 LNYS--VYTTKSDVWSFGVLLWEIVS 213


>gnl|CDD|173632 cd05051, PTKc_DDR, Catalytic domain of the Protein Tyrosine
           Kinases, Discoidin Domain Receptors.  Protein Tyrosine
           Kinase (PTK) family; Discoidin Domain Receptor (DDR)
           subfamily; catalytic (c) domain. The DDR subfamily
           consists of homologs of mammalian DDR1, DDR2, and
           similar proteins. The PTKc family is part of a larger
           superfamily that includes the catalytic domains of other
           kinases such as protein serine/threonine kinases, RIO
           kinases, and phosphoinositide 3-kinase (PI3K). PTKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to tyrosine (tyr) residues in protein substrates.
           DDR subfamily members are receptor tyr kinases (RTKs)
           containing an extracellular discoidin homology domain, a
           transmembrane segment, an extended juxtamembrane region,
           and an intracellular catalytic domain. The binding of
           the ligand, collagen, to DDRs results in a slow but
           sustained receptor activation. DDRs regulate cell
           adhesion, proliferation, and extracellular matrix
           remodeling. They have been linked to a variety of human
           cancers including breast, colon, ovarian, brain, and
           lung. There is no evidence showing that DDRs act as
           transforming oncogenes. They are more likely to play a
           role in the regulation of tumor growth and metastasis.
          Length = 296

 Score = 45.8 bits (109), Expect = 3e-05
 Identities = 46/169 (27%), Positives = 75/169 (44%), Gaps = 28/169 (16%)

Query: 327 IKTYTYLSDVFSFLPQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLH-------DKKIHL 378
           +K  + LSD     P I +LL        +C++ E+M++G L + L            + 
Sbjct: 70  VKILSRLSD-----PNIARLLGVCTVDPPLCMIMEYMENGDLNQFLQKHVAETSGLACNS 124

Query: 379 TIPHVKTYMQMLLK---GVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARS----- 430
                 T + M  +   G+ YL     +HRDL   N L+ K   +KIADFG++R+     
Sbjct: 125 KSLSFSTLLYMATQIASGMRYLESLNFVHRDLATRNCLVGKNYTIKIADFGMSRNLYSSD 184

Query: 431 -FDVERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYT 478
            + V+  G+    +  RW  A E +   + +    D+WA G  L E+ T
Sbjct: 185 YYRVQ--GR--APLPIRWM-AWESVLLGK-FTTKSDVWAFGVTLWEILT 227


>gnl|CDD|133247 cd05116, PTKc_Syk, Catalytic domain of the Protein Tyrosine Kinase,
           Spleen tyrosine kinase.  Protein Tyrosine Kinase (PTK)
           family; Spleen tyrosine kinase (Syk); catalytic (c)
           domain. The PTKc family is part of a larger superfamily
           that includes the catalytic domains of other kinases
           such as protein serine/threonine kinases, RIO kinases,
           and phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Syk,
           together with Zap-70, form the Syk subfamily of kinases
           which are cytoplasmic (or nonreceptor) tyr kinases
           containing two Src homology 2 (SH2) domains N-terminal
           to the catalytic tyr kinase domain. Syk was first cloned
           from the spleen, and its function in hematopoietic cells
           is well-established. Syk is involved in the signaling
           downstream of activated receptors (including B-cell and
           Fc receptors) that contain ITAMs (immunoreceptor tyr
           activation motifs), leading to processes such as cell
           proliferation, differentiation, survival, adhesion,
           migration, and phagocytosis. More recently, Syk
           expression has been detected in other cell types
           (including epithelial cells, vascular endothelial cells,
           neurons, hepatocytes, and melanocytes), suggesting a
           variety of biological functions in non-immune cells. Syk
           plays a critical role in maintaining vascular integrity
           and in wound healing during embryogenesis. It also
           regulates Vav3, which is important in osteoclast
           function including bone development. In breast
           epithelial cells, where Syk acts as a negative regulator
           for epidermal growth factor receptor (EGFR) signaling,
           loss of Syk expression is associated with abnormal
           proliferation during cancer development suggesting a
           potential role as a tumor suppressor. In mice, Syk has
           been shown to inhibit malignant transformation of
           mammary epithelial cells induced with murine mammary
           tumor virus (MMTV).
          Length = 257

 Score = 45.3 bits (107), Expect = 4e-05
 Identities = 35/143 (24%), Positives = 65/143 (45%), Gaps = 10/143 (6%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P IV+++    + ++  LV E  + G       K  H+T  ++   +  +  G+ YL   
Sbjct: 56  PYIVRMIGIC-EAESWMLVMELAELGPLNKFLQKNKHVTEKNITELVHQVSMGMKYLEET 114

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRC- 459
             +HRDL   N+L+      KI+DFGL+++   +    Y  +   +W   P   YA  C 
Sbjct: 115 NFVHRDLAARNVLLVTQHYAKISDFGLSKALGADE-NYYKAKTHGKW---PVKWYAPECM 170

Query: 460 ----YDQSVDLWAVGCILGEMYT 478
               +    D+W+ G ++ E ++
Sbjct: 171 NYYKFSSKSDVWSFGVLMWEAFS 193


>gnl|CDD|133192 cd05061, PTKc_InsR, Catalytic domain of the Protein Tyrosine
           Kinase, Insulin Receptor.  Protein Tyrosine Kinase (PTK)
           family; Insulin Receptor (InsR); catalytic (c) domain.
           The PTKc family is part of a larger superfamily that
           includes the catalytic domains of other kinases such as
           protein serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. InsR is a
           receptor tyr kinase (RTK) that is composed of two
           alphabeta heterodimers. Binding of the insulin ligand to
           the extracellular alpha subunit activates the
           intracellular tyr kinase domain of the transmembrane
           beta subunit. Receptor activation leads to
           autophosphorylation, stimulating downstream kinase
           activities, which initiate signaling cascades and
           biological function. InsR signaling plays an important
           role in many cellular processes including glucose
           homeostasis, glycogen synthesis, lipid and protein
           metabolism, ion and amino acid transport, cell cycle and
           proliferation, cell differentiation, gene transcription,
           and nitric oxide synthesis. Insulin resistance, caused
           by abnormalities in InsR signaling, has been described
           in diabetes, hypertension, cardiovascular disease,
           metabolic syndrome, heart failure, and female
           infertility.
          Length = 288

 Score = 45.3 bits (107), Expect = 4e-05
 Identities = 34/106 (32%), Positives = 53/106 (50%), Gaps = 9/106 (8%)

Query: 381 PHVKTYMQM---LLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSF---DVE 434
           P ++  +QM   +  G++YL+ K  +HRDL   N ++     +KI DFG+ R     D  
Sbjct: 116 PTLQEMIQMAAEIADGMAYLNAKKFVHRDLAARNCMVAHDFTVKIGDFGMTRDIYETDYY 175

Query: 435 RWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNA 480
           R G     +  RW  APE L     +  S D+W+ G +L E+ + A
Sbjct: 176 RKGG-KGLLPVRWM-APESL-KDGVFTTSSDMWSFGVVLWEITSLA 218


>gnl|CDD|133205 cd05074, PTKc_Tyro3, Catalytic domain of the Protein Tyrosine
           Kinase, Tyro3.  Protein Tyrosine Kinase (PTK) family;
           Tyro3; catalytic (c) domain. The PTKc family is part of
           a larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Tyro3 (or Sky) is a
           member of the Axl subfamily, which is composed of
           receptor tyr kinases (RTKs) containing an extracellular
           ligand-binding region with two immunoglobulin-like
           domains followed by two fibronectin type III repeats, a
           transmembrane segment, and an intracellular catalytic
           domain. Binding to their ligands, Gas6 and protein S,
           leads to receptor dimerization, autophosphorylation,
           activation, and intracellular signaling. Tyro3 is
           predominantly expressed in the central nervous system
           and the brain, and functions as a neurotrophic factor.
           It is also expressed in osteoclasts and has a role in
           bone resorption.
          Length = 273

 Score = 44.9 bits (106), Expect = 5e-05
 Identities = 30/111 (27%), Positives = 54/111 (48%), Gaps = 6/111 (5%)

Query: 371 LHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLAR- 429
           + ++   L +  +  +M  +  G+ YL  K  +HRDL   N ++++   + +ADFGL++ 
Sbjct: 103 IGEEPFTLPLQTLVRFMIDIASGMEYLSSKNFIHRDLAARNCMLNENMTVCVADFGLSKK 162

Query: 430 --SFDVERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYT 478
             S D  R G  + ++  +W     L  A   Y    D+WA G  + E+ T
Sbjct: 163 IYSGDYYRQGCAS-KLPVKWLALESL--ADNVYTTHSDVWAFGVTMWEIMT 210


>gnl|CDD|88330 cd05047, PTKc_Tie, Catalytic domain of Tie Protein Tyrosine
           Kinases.  Protein Tyrosine Kinase (PTK) family; Tie
           subfamily; catalytic (c) domain. The Tie subfamily
           consists of Tie1 and Tie2. The PTKc family is part of a
           larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Tie proteins are
           receptor tyr kinases (RTKs) containing an extracellular
           region, a transmembrane segment, and an intracellular
           catalytic domain. The extracellular region contains an
           immunoglobulin (Ig)-like domain, three epidermal growth
           factor (EGF)-like domains, a second Ig-like domain, and
           three fibronectin type III repeats. Tie receptors are
           specifically expressed in endothelial cells and
           hematopoietic stem cells. The angiopoietins (Ang-1 to
           Ang-4) serve as ligands for Tie2, while no specific
           ligand has been identified for Tie1. The binding of
           Ang-1 to Tie2 leads to receptor autophosphorylation and
           activation, promoting cell migration and survival. In
           contrast, Ang-2 binding to Tie2 does not result in the
           same response, suggesting that Ang-2 may function as an
           antagonist. In vivo studies of Tie1 show that it is
           critical in vascular development.
          Length = 270

 Score = 45.1 bits (106), Expect = 5e-05
 Identities = 29/86 (33%), Positives = 46/86 (53%), Gaps = 3/86 (3%)

Query: 393 GVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPE 452
           G+ YL  K  +HRDL   N+L+ +  + KIADFGL+R  +V    +    +  RW     
Sbjct: 124 GMDYLSQKQFIHRDLAARNILVGENYVAKIADFGLSRGQEVYV-KKTMGRLPVRWMAIES 182

Query: 453 LLYASRCYDQSVDLWAVGCILGEMYT 478
           L Y+   Y  + D+W+ G +L E+ +
Sbjct: 183 LNYS--VYTTNSDVWSYGVLLWEIVS 206


>gnl|CDD|173718 cd05629, STKc_NDR_like_fungal, Catalytic domain of Fungal Nuclear
           Dbf2-Related kinase-like Protein Serine/Threonine
           Kinases.  Serine/Threonine Kinases (STKs), NDR kinase
           subfamily, fungal NDR-like proteins, catalytic (c)
           domain. STKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to serine/threonine
           residues on protein substrates. The NDR subfamily is
           part of a larger superfamily that includes the catalytic
           domains of other protein STKs, protein tyrosine kinases,
           RIO kinases, aminoglycoside phosphotransferase, choline
           kinase, and phosphoinositide 3-kinase. This group is
           composed of fungal NDR-like proteins including
           Saccharomyces cerevisiae CBK1 (or CBK1p),
           Schizosaccharomyces pombe Orb6 (or Orb6p), Ustilago
           maydis Ukc1 (or Ukc1p), and Neurospora crassa Cot1. Like
           NDR kinase, group members contain an N-terminal
           regulatory (NTR) domain and an insert within the
           catalytic domain that contains an auto-inhibitory
           sequence. CBK1 is an essential component in the RAM
           (regulation of Ace2p activity and cellular
           morphogenesis) network. CBK1 and Orb6 play similar roles
           in coordinating cell morphology with cell cycle
           progression. Ukc1 is involved in morphogenesis,
           pathogenicity, and pigment formation. Cot1 plays a role
           in polar tip extension.
          Length = 377

 Score = 45.2 bits (107), Expect = 6e-05
 Identities = 28/91 (30%), Positives = 46/91 (50%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGK 400
           P +V L   F D   + L+ E +  G    +  K    +    + YM   +  +  +H  
Sbjct: 61  PWVVSLYYSFQDAQYLYLIMEFLPGGDLMTMLIKYDTFSEDVTRFYMAECVLAIEAVHKL 120

Query: 401 FIMHRDLKPANLLIDKAGILKIADFGLARSF 431
             +HRD+KP N+LID+ G +K++DFGL+  F
Sbjct: 121 GFIHRDIKPDNILIDRGGHIKLSDFGLSTGF 151


>gnl|CDD|133167 cd05035, PTKc_Axl_like, Catalytic Domain of Axl-like Protein
           Tyrosine Kinases.  Protein Tyrosine Kinase (PTK) family;
           Axl subfamily; catalytic (c) domain. The PTKc family is
           part of a larger superfamily that includes the catalytic
           domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). The Axl subfamily
           consists of Axl, Tyro3 (or Sky), Mer (or Mertk), and
           similar proteins. PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Axl subfamily members
           are receptor tyr kinases (RTKs) containing an
           extracellular ligand-binding region with two
           immunoglobulin-like domains followed by two fibronectin
           type III repeats, a transmembrane segment, and an
           intracellular catalytic domain. Binding to their
           ligands, Gas6 and protein S, leads to receptor
           dimerization, autophosphorylation, activation, and
           intracellular signaling. Axl subfamily members are
           implicated in a variety of cellular effects including
           survival, proliferation, migration, and phagocytosis.
           They are also associated with several types of cancer as
           well as inflammatory, autoimmune, vascular, and kidney
           diseases. Mer is named after its original reported
           expression pattern (monocytes, epithelial, and
           reproductive tissues). It is required for the ingestion
           of apoptotic cells by phagocytes such as macrophages,
           retinal pigment epithelial cells, and dendritic cells.
           Mer is also important in maintaining immune homeostasis.
          Length = 273

 Score = 43.3 bits (102), Expect = 2e-04
 Identities = 40/132 (30%), Positives = 63/132 (47%), Gaps = 18/132 (13%)

Query: 387 MQMLLK-------GVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLAR---SFDVERW 436
           +Q LLK       G+ YL  +  +HRDL   N ++ +   + +ADFGL++   S D  R 
Sbjct: 112 LQTLLKFMVDIALGMEYLSNRNFIHRDLAARNCMLREDMTVCVADFGLSKKIYSGDYYRQ 171

Query: 437 GQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYT--NAPLFPG--ESDIEQL 492
           G+   ++  +W  A E L A R Y    D+WA G  + E+ T    P +PG    +I   
Sbjct: 172 GRIA-KMPVKWI-AIESL-ADRVYTSKSDVWAFGVTMWEIATRGQTP-YPGVENHEIYDY 227

Query: 493 AMVLHKLGTPTE 504
               ++L  P +
Sbjct: 228 LRHGNRLKQPED 239


>gnl|CDD|133193 cd05062, PTKc_IGF-1R, Catalytic domain of the Protein Tyrosine
           Kinase, Insulin-like Growth Factor-1 Receptor.  Protein
           Tyrosine Kinase (PTK) family; Insulin-like Growth
           Factor-1 Receptor (IGF-1R); catalytic (c) domain. The
           PTKc family is part of a larger superfamily that
           includes the catalytic domains of other kinases such as
           protein serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. IGF-1R is
           a receptor tyr kinases (RTK) that is composed of two
           alphabeta heterodimers. Binding of the ligand (IGF-1 or
           IGF-2) to the extracellular alpha subunit activates the
           intracellular tyr kinase domain of the transmembrane
           beta subunit. Receptor activation leads to
           autophosphorylation, which stimulates downstream kinase
           activities and biological function. IGF-1R signaling is
           important in the differentiation, growth, and survival
           of normal cells. In cancer cells, where it is frequently
           overexpressed, IGF-1R is implicated in proliferation,
           the suppression of apoptosis, invasion, and metastasis.
           IGF-1R is being developed as a therapeutic target in
           cancer treatment.
          Length = 277

 Score = 43.1 bits (101), Expect = 2e-04
 Identities = 42/145 (28%), Positives = 65/145 (44%), Gaps = 20/145 (13%)

Query: 378 LTIPHVKTYMQM---LLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSF--- 431
              P +K  +QM   +  G++YL+    +HRDL   N ++ +   +KI DFG+ R     
Sbjct: 113 QAPPSLKKMIQMAGEIADGMAYLNANKFVHRDLAARNCMVAEDFTVKIGDFGMTRDIYET 172

Query: 432 DVERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMYTNAPL-FPGESDIE 490
           D  R G     +  RW  +PE L     +    D+W+ G +L E+ T A   + G S+ +
Sbjct: 173 DYYRKGG-KGLLPVRWM-SPESL-KDGVFTTYSDVWSFGVVLWEIATLAEQPYQGMSNEQ 229

Query: 491 QLAMVLHKLGTPTEDSWPGLKDLPD 515
            L  V+            GL D PD
Sbjct: 230 VLRFVMEG----------GLLDKPD 244


>gnl|CDD|215638 PLN03225, PLN03225, Serine/threonine-protein kinase SNT7;
           Provisional.
          Length = 566

 Score = 42.5 bits (100), Expect = 5e-04
 Identities = 18/47 (38%), Positives = 28/47 (59%), Gaps = 1/47 (2%)

Query: 383 VKTYMQMLLKGVSYLHGKFIMHRDLKPANLLID-KAGILKIADFGLA 428
           ++T M+ +L  +  LH   I+HRD+KP N++    +G  KI D G A
Sbjct: 257 IQTIMRQILFALDGLHSTGIVHRDVKPQNIIFSEGSGSFKIIDLGAA 303


>gnl|CDD|133178 cd05046, PTK_CCK4, Pseudokinase domain of the Protein Tyrosine
           Kinase, Colon Carcinoma Kinase 4.  Protein Tyrosine
           Kinase (PTK) family; Colon Carcinoma Kinase 4 (CCK4);
           pseudokinase domain. The PTKc (catalytic domain) family,
           to which this subfamily belongs, includes the catalytic
           domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. CCK4,
           also called protein tyrosine kinase 7 (PTK7), is an
           orphan receptor tyr kinase (RTK) containing an
           extracellular region with seven immunoglobulin domains,
           a transmembrane segment, and an intracellular inactive
           pseudokinase domain. Studies in mice reveal that CCK4 is
           essential for neural development. Mouse embryos
           containing a truncated CCK4 die perinatally and display
           craniorachischisis, a severe form of neural tube defect.
           The mechanism of action of the CCK4 pseudokinase is
           still unknown. Other pseudokinases such as HER3 rely on
           the activity of partner RTKs.
          Length = 275

 Score = 41.7 bits (98), Expect = 5e-04
 Identities = 38/164 (23%), Positives = 69/164 (42%), Gaps = 13/164 (7%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELL--------HDKKIHLTIPHVKTYMQMLL 391
             +V+LL    + +   ++ E+ D G L + L          K   L+          + 
Sbjct: 68  KNVVRLLGLCREAEPHYMILEYTDLGDLKQFLRATKSKDEKLKPPPLSTKQKVALCTQIA 127

Query: 392 KGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARS-FDVERWGQYTPEVASRWYRA 450
            G+ +L     +HRDL   N L+     +K++   L++  ++ E +      +  RW  A
Sbjct: 128 LGMDHLSNARFVHRDLAARNCLVSSQREVKVSLLSLSKDVYNSEYYKLRNALIPLRWL-A 186

Query: 451 PELLYASRCYDQSVDLWAVGCILGEMYTNAPL-FPGESDIEQLA 493
           PE +     +    D+W+ G ++ E++T   L F G SD E L 
Sbjct: 187 PEAVQEDD-FSTKSDVWSFGVLMWEVFTQGELPFYGLSDEEVLN 229


>gnl|CDD|133168 cd05036, PTKc_ALK_LTK, Catalytic domain of the Protein Tyrosine
           Kinases, Anaplastic Lymphoma Kinase and Leukocyte
           Tyrosine Kinase.  Protein Tyrosine Kinase (PTK) family;
           Anaplastic Lymphoma Kinase (ALK) and Leukocyte Tyrosine
           (tyr) Kinase (LTK); catalytic (c) domain. The PTKc
           family is part of a larger superfamily that includes the
           catalytic domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to tyr
           residues in protein substrates. ALK and LTK are orphan
           receptor tyr kinases (RTKs) whose ligands are not yet
           well-defined. RTKs contain an extracellular
           ligand-binding domain, a transmembrane region, and an
           intracellular tyr kinase domain. They are usually
           activated through ligand binding, which causes
           dimerization and autophosphorylation of the
           intracellular tyr kinase catalytic domain. ALK appears
           to play an important role in mammalian neural
           development as well as visceral muscle differentiation
           in Drosophila. ALK is aberrantly expressed as fusion
           proteins, due to chromosomal translocations, in about
           60% of anaplastic large cell lymphomas (ALCLs). ALK
           fusion proteins are also found in rare cases of diffuse
           large B cell lymphomas (DLBCLs). LTK is mainly expressed
           in B lymphocytes and neuronal tissues. It is important
           in cell proliferation and survival. Transgenic mice
           expressing TLK display retarded growth and high
           mortality rate. In addition, a polymorphism in mouse and
           human LTK is implicated in the pathogenesis of systemic
           lupus erythematosus.
          Length = 277

 Score = 41.7 bits (98), Expect = 6e-04
 Identities = 45/178 (25%), Positives = 75/178 (42%), Gaps = 35/178 (19%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLL-------K 392
             IV+L+    ++    ++ E M  G L   L + +     P   T M+ LL       K
Sbjct: 69  QNIVRLIGVSFERLPRFILLELMAGGDLKSFLRENRPRPERPSSLT-MKDLLFCARDVAK 127

Query: 393 GVSYLHGKFIMHRDLKPANLLIDKAG---ILKIADFGLARSFDVERWGQYTPEVASRWYR 449
           G  YL     +HRD+   N L+   G   + KIADFG+AR  D+ R         + +YR
Sbjct: 128 GCKYLEENHFIHRDIAARNCLLTCKGPGRVAKIADFGMAR--DIYR---------ASYYR 176

Query: 450 -----------APELLYASRCYDQSVDLWAVGCILGEMYTNAPL-FPGESDIEQLAMV 495
                       P   +    +    D+W+ G +L E+++   + +PG ++ E +  V
Sbjct: 177 KGGRAMLPIKWMPPEAFLDGIFTSKTDVWSFGVLLWEIFSLGYMPYPGRTNQEVMEFV 234


>gnl|CDD|173766 cd08226, PK_STRAD_beta, Pseudokinase domain of STE20-related kinase
           adapter protein beta.  Protein Kinase family,
           STE20-related kinase adapter protein (STRAD) beta
           subfamily, pseudokinase domain. The STRAD-beta subfamily
           is part of a larger superfamily that includes the
           catalytic domains of serine/threonine kinases (STKs),
           protein tyrosine kinases, RIO kinases, aminoglycoside
           phosphotransferase, choline kinase, and phosphoinositide
           3-kinase. The pseudokinase domain shows similarity to
           protein kinases but lacks crucial residues for catalytic
           activity. STRAD forms a complex with the scaffolding
           protein MO25, and the STK, LKB1, resulting in the
           activation of the kinase. In the complex, LKB1
           phosphorylates and activates adenosine
           monophosphate-activated protein kinases (AMPKs), which
           regulate cell energy metabolism and cell polarity. LKB1
           is a tumor suppressor linked to the rare inherited
           disease, Peutz-Jeghers syndrome, which is characterized
           by a predisposition to benign polyps and
           hyperpigmentation of the buccal mucosa. There are two
           forms of STRAD, alpha and beta, that complex with LKB1
           and MO25. STRAD-beta is also referred to as ALS2CR2
           (Amyotrophic lateral sclerosis 2 chromosomal region
           candidate gene 2 protein), since the human gene encoding
           it is located within the juvenile ALS2 critical region
           on chromosome 2q33-q34. It is not linked to the
           development of ALS2.
          Length = 328

 Score = 41.5 bits (97), Expect = 7e-04
 Identities = 35/127 (27%), Positives = 63/127 (49%), Gaps = 16/127 (12%)

Query: 391 LKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYT------PEVA 444
           L+G++YLH    +HR++K +++LI   G++ ++  GL+  + + R GQ        P+ +
Sbjct: 111 LRGLNYLHQNGYIHRNIKASHILISGDGLVSLS--GLSHLYSLVRNGQKAKVVYDFPQFS 168

Query: 445 SR---WYRAPELLYAS-RCYDQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKLG 500
           +    W  +PELL      Y+   D+++VG    E+ T    F    D+ +  M+L KL 
Sbjct: 169 TSVLPWL-SPELLRQDLYGYNVKSDIYSVGITACELATGRVPF---QDMLRTQMLLQKLK 224

Query: 501 TPTEDSW 507
            P     
Sbjct: 225 GPPYSPL 231


>gnl|CDD|173656 cd05111, PTK_HER3, Pseudokinase domain of the Protein Tyrosine
           Kinase, HER3.  Protein Tyrosine Kinase (PTK) family;
           HER3 (ErbB3); pseudokinase domain. The PTKc (catalytic
           domain) family to which this subfamily belongs, is part
           of a larger superfamily that includes the catalytic
           domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. HER3 is a
           member of the EGFR (HER, ErbB) subfamily of proteins,
           which are receptor tyr kinases (RTKs) containing an
           extracellular EGF-related ligand-binding region, a
           transmembrane helix, and a cytoplasmic region with a tyr
           kinase domain and a regulatory C-terminal tail. Unlike
           other tyr kinases, phosphorylation of the activation
           loop of EGFR proteins is not critical to their
           activation. Instead, they are activated by
           ligand-induced dimerization, leading to the
           phosphorylation of tyr residues in the C-terminal tail,
           which serve as binding sites for downstream signaling
           molecules. HER3 binds the neuregulin ligands, NRG1 and
           NRG2. HER3 contains an impaired tyr kinase domain and
           relies on its heterodimerization partners for activity
           following ligand binding. The HER2-HER3 heterodimer
           constitutes a high affinity co-receptor capable of
           potent mitogenic signaling. HER3 participates in a
           signaling pathway involved in the proliferation,
           survival, adhesion, and motility of tumor cells.
          Length = 279

 Score = 39.6 bits (92), Expect = 0.003
 Identities = 35/141 (24%), Positives = 65/141 (46%), Gaps = 6/141 (4%)

Query: 341 PQIVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHG 399
             IV+LL   P   ++ LV +    G L + +   +  L    +  +   + KG+ YL  
Sbjct: 69  AYIVRLLGICPGA-SLQLVTQLSPLGSLLDHVRQHRDSLDPQRLLNWCVQIAKGMYYLEE 127

Query: 400 KFIMHRDLKPANLLIDKAGILKIADFGLARSF--DVERWGQYTPEVASRWYRAPELLYAS 457
             ++HR+L   N+L+    I++IADFG+A     D +++     +   +W     +L+  
Sbjct: 128 HRMVHRNLAARNILLKSDSIVQIADFGVADLLYPDDKKYFYSEHKTPIKWMALESILFGR 187

Query: 458 RCYDQSVDLWAVGCILGEMYT 478
             Y    D+W+ G  + EM +
Sbjct: 188 --YTHQSDVWSYGVTVWEMMS 206


>gnl|CDD|173647 cd05091, PTKc_Ror2, Catalytic domain of the Protein Tyrosine
           Kinase, Receptor tyrosine kinase-like Orphan Receptor 2.
            Protein Tyrosine Kinase (PTK) family; Receptor tyrosine
           kinase-like Orphan Receptor 2 (Ror2); catalytic (c)
           domain. The PTKc family is part of a larger superfamily
           that includes the catalytic domains of other kinases
           such as protein serine/threonine kinases, RIO kinases,
           and phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Ror
           proteins are orphan receptor tyr kinases (RTKs)
           containing an extracellular region with
           immunoglobulin-like, cysteine-rich, and kringle domains,
           a transmembrane segment, and an intracellular catalytic
           domain. Ror RTKs are unrelated to the nuclear receptor
           subfamily called retinoid-related orphan receptors
           (RORs). RTKs are usually activated through ligand
           binding, which causes dimerization and
           autophosphorylation of the intracellular tyr kinase
           catalytic domain. Ror2 plays important roles in skeletal
           and heart formation. Ror2-deficient mice show widespread
           bone abnormalities, ventricular defects in the heart,
           and respiratory dysfunction. Mutations in human Ror2
           result in two different bone development genetic
           disorders, recessive Robinow syndrome and brachydactyly
           type B. Ror2 is also implicated in neural development.
          Length = 283

 Score = 36.9 bits (85), Expect = 0.018
 Identities = 33/121 (27%), Positives = 60/121 (49%), Gaps = 9/121 (7%)

Query: 393 GVSYLHGKFIMHRDLKPANLLI-DKAGILKIADFGLARSFDVERWGQYTPE--VASRWYR 449
           G+ +L    ++H+DL   N+L+ DK  + KI+D GL R      + +      +  RW  
Sbjct: 136 GMEFLSSHHVVHKDLATRNVLVFDKLNV-KISDLGLFREVYAADYYKLMGNSLLPIRWM- 193

Query: 450 APELLYASRCYDQSVDLWAVGCILGEMYTNAPLFP--GESDIEQLAMVLHKLGTPTEDSW 507
           +PE +   +    S D+W+ G +L E+++   L P  G S+ + + M+ ++   P  D  
Sbjct: 194 SPEAIMYGKFSIDS-DIWSYGVVLWEVFSYG-LQPYCGYSNQDVIEMIRNRQVLPCPDDC 251

Query: 508 P 508
           P
Sbjct: 252 P 252


>gnl|CDD|173756 cd08216, PK_STRAD, Pseudokinase domain of STE20-related kinase
           adapter protein.  Protein Kinase family, STE20-related
           kinase adapter protein (STRAD) subfamily, pseudokinase
           domain. The STRAD subfamily is part of a larger
           superfamily that includes the catalytic domains of
           serine/threonine kinases (STKs), protein tyrosine
           kinases, RIO kinases, aminoglycoside phosphotransferase,
           choline kinase, and phosphoinositide 3-kinase. The
           pseudokinase domain shows similarity to protein kinases
           but lacks crucial residues for catalytic activity. STRAD
           forms a complex with the scaffolding protein MO25, and
           the STK, LKB1, resulting in the activation of the
           kinase. In the complex, LKB1 phosphorylates and
           activates adenosine monophosphate-activated protein
           kinases (AMPKs), which regulate cell energy metabolism
           and cell polarity. LKB1 is a tumor suppressor linked to
           the rare inherited disease, Peutz-Jeghers syndrome,
           which is characterized by a predisposition to benign
           polyps and hyperpigmentation of the buccal mucosa. There
           are two forms of STRAD, alpha and beta, that complex
           with LKB1 and MO25. The structure of STRAD-alpha is
           available and shows that this protein binds ATP, has an
           ordered activation loop, and adopts a closed
           conformation typical of fully active protein kinases. It
           does not possess activity due to nonconservative
           substitutions of essential catalytic residues. ATP
           binding enhances the affinity of STRAD for MO25.  The
           conformation of STRAD-alpha stabilized through ATP and
           MO25 may be needed to activate LKB1.
          Length = 314

 Score = 36.9 bits (86), Expect = 0.019
 Identities = 44/223 (19%), Positives = 87/223 (39%), Gaps = 22/223 (9%)

Query: 296 DQDTVCLVFEHMDSGLWELLHDKKIHLTIPHIKTYTYLSD--VFSFL---PQIVKLLDFF 350
           +   +  + +H  +    L+  KKI+L     +    L    + S     P I+  +  F
Sbjct: 11  EDLMIVHLAKHKPTN--TLVAVKKINLDSCSKEDLKLLQQEIITSRQLQHPNILPYVTSF 68

Query: 351 PDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHV--KTYMQMLLKGVSYLHGKFIMHRDLK 408
                + +V   M  G  E L        +P +     ++ +L  + Y+H K  +HR +K
Sbjct: 69  IVDSELYVVSPLMAYGSCEDLLKTHFPEGLPELAIAFILKDVLNALDYIHSKGFIHRSVK 128

Query: 409 PANLLIDKAGILKIADFGLARSFDVERWGQYTP-------EVASRWYRAPELLYAS-RCY 460
            +++L+   G + ++    + S       Q               W  +PE+L  + + Y
Sbjct: 129 ASHILLSGDGKVVLSGLRYSVSMIKHGKRQRVVHDFPKSSVKNLPWL-SPEVLQQNLQGY 187

Query: 461 DQSVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKL-GTP 502
           ++  D+++VG    E+      F    D+    M+L K+ GT 
Sbjct: 188 NEKSDIYSVGITACELANGHVPF---KDMPATQMLLEKVRGTV 227


>gnl|CDD|225381 COG2825, HlpA, Outer membrane protein [Cell envelope biogenesis,
           outer membrane].
          Length = 170

 Score = 35.8 bits (83), Expect = 0.021
 Identities = 26/115 (22%), Positives = 45/115 (39%), Gaps = 13/115 (11%)

Query: 56  NMAEKRQAKLDMERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKKGDKKPKY-----IQS 110
             A  + A +++ R   E P   +     +    KK      K + + K K         
Sbjct: 21  AQAAPKIAIVNLGRIFQESPQAKKVSADLESE-FKKRQKELQKMQKELKAKEAKLQDDGK 79

Query: 111 LLKQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEE 165
           +   ++R K E E + E+ V    +K+ E  KD         R++ EE +KL E+
Sbjct: 80  MEALSDRAKAEAEIKKEKLVNAFNKKQQEYEKDLN-------RREAEEEQKLLEK 127


>gnl|CDD|227596 COG5271, MDN1, AAA ATPase containing von Willebrand factor type A
            (vWA) domain [General function prediction only].
          Length = 4600

 Score = 37.7 bits (87), Expect = 0.021
 Identities = 38/205 (18%), Positives = 83/205 (40%), Gaps = 44/205 (21%)

Query: 86   EIDKKKHDTLAAKKKGDKKPKYIQ-SLLKQAERRKQENERRNERQVQLEREKEGEEFKDK 144
            E ++K ++  AA  + D   K      L+  +R+++E+E      V ++ E + +  ++ 
Sbjct: 3918 ETEQKSNEQSAANNESDLVSKEDDNKALEDKDRQEKEDEEEMSDDVGIDDEIQPDIQENN 3977

Query: 145  ETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDK 204
                  +    L E  KLDE+E         GDV+K  DL                    
Sbjct: 3978 SQPPPENEDLDLPEDLKLDEKE---------GDVSKDSDLE------------------- 4009

Query: 205  KKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETD 264
              D +  ++DE+K ++ A++ E    ++P++   +  +  +Q             D+ +D
Sbjct: 4010 --DMDMEAADENKEEADAEKDEPMQDEDPLEENNTLDEDIQQ-------------DDFSD 4054

Query: 265  KTRGDKKQDSETPKKKKKTDEIEMK 289
                D+K + +  ++  + +E   +
Sbjct: 4055 LAEDDEKMNEDGFEENVQENEESTE 4079


>gnl|CDD|224117 COG1196, Smc, Chromosome segregation ATPases [Cell division and
           chromosome partitioning].
          Length = 1163

 Score = 37.4 bits (87), Expect = 0.024
 Identities = 47/260 (18%), Positives = 110/260 (42%), Gaps = 16/260 (6%)

Query: 35  KTDVMREIKTLLSVSDRYE-QTNMAEKRQAKLDMERALAEDPTVYQYDEVYDEIDKKKHD 93
             D++ E++  L   ++ E Q   AE+ Q      R L     + +  E+  E+++ + +
Sbjct: 191 LEDLLEELEKQL---EKLERQAEKAERYQELKAELRELELALLLAKLKELRKELEELEEE 247

Query: 94  TLAAKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLERE--KEGEEFKDKETFVTSS 151
               +++ ++  + ++   K+ E  K E E   E   +L+ E  +  EE ++ E    S 
Sbjct: 248 LSRLEEELEELQEELEEAEKEIEELKSELEELREELEELQEELLELKEEIEELEG-EISL 306

Query: 152 YRKKLEE--FKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTE 209
            R++LEE   +  + EER  ++ E I  + ++ +         +  + E +   ++ + +
Sbjct: 307 LRERLEELENELEELEERLEELKEKIEALKEELEERETLLEELEQLLAELEEAKEELEEK 366

Query: 210 ---HSSSDESKNKSI-AKQSEGRSTDEPIKHKKSSKKGEKQS---RSYRKRNRSESLDEE 262
                   E   +++  + +E  +    I+++    K E +S   R  R   R E L EE
Sbjct: 367 LSALLEELEELFEALREELAELEAELAEIRNELEELKREIESLEERLERLSERLEDLKEE 426

Query: 263 TDKTRGDKKQDSETPKKKKK 282
             +   + ++     ++  +
Sbjct: 427 LKELEAELEELQTELEELNE 446



 Score = 28.9 bits (65), Expect = 9.5
 Identities = 27/161 (16%), Positives = 61/161 (37%), Gaps = 4/161 (2%)

Query: 9   RARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSDRYEQTNMAEKRQAKLDME 68
               K   ++ ++K  L             + E++  L    R       E  Q +  +E
Sbjct: 681 AQLEKLEEELKSLKNELRSLEDLLEELRRQLEELERQLEELKRELAALEEELEQLQSRLE 740

Query: 69  RALAEDPTVYQYDEVY-DEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNE 127
               E   + +  E   + +++ + +  + ++   K  + I+ L    E+R+   E   E
Sbjct: 741 ELEEELEELEEELEELQERLEELEEELESLEEALAKLKEEIEEL---EEKRQALQEELEE 797

Query: 128 RQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERR 168
            + +LE  +   +  ++E       R++LE+  +  EEE  
Sbjct: 798 LEEELEEAERRLDALERELESLEQRRERLEQEIEELEEEIE 838


>gnl|CDD|165211 PHA02882, PHA02882, putative serine/threonine kinase; Provisional.
          Length = 294

 Score = 36.5 bits (84), Expect = 0.032
 Identities = 29/101 (28%), Positives = 49/101 (48%), Gaps = 10/101 (9%)

Query: 381 PHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVE-RWGQY 439
             +K  M+ +L  + Y+H   I H D+KP N+++D      I D+G+A  F +  +  +Y
Sbjct: 126 KLIKNIMKDMLTTLEYIHEHGISHGDIKPENIMVDGNNRGYIIDYGIASHFIIHGKHIEY 185

Query: 440 TPEVASRWYRAPELLYAS------RCYDQSVDLWAVG-CIL 473
           + E     +R   L YA        C  +  DL ++G C+L
Sbjct: 186 SKE-QKDLHRG-TLYYAGLDAHNGACVTRRGDLESLGYCML 224


>gnl|CDD|215590 PLN03123, PLN03123, poly [ADP-ribose] polymerase; Provisional.
          Length = 981

 Score = 36.7 bits (85), Expect = 0.033
 Identities = 29/119 (24%), Positives = 51/119 (42%), Gaps = 22/119 (18%)

Query: 211 SSSDESKNKSIAKQS-EGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGD 269
           S SD+     + K+S      ++  + K+ SKKG        KR +  S D+++ K + D
Sbjct: 172 SDSDQEAVLPLVKKSPSEAKEEKAEERKQESKKG-------AKRKKDASGDDKSKKAKTD 224

Query: 270 KKQDSETPKKKKKTDEIEMKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHIK 328
           +   + T   +KK+ ++E KL              E     LW L  D K H++   ++
Sbjct: 225 RDVSTSTAASQKKSSDLESKL--------------EAQSKELWSLKDDLKKHVSTAELR 269


>gnl|CDD|133174 cd05042, PTKc_Aatyk, Catalytic domain of the Protein Tyrosine
           Kinases, Apoptosis-associated tyrosine kinases.  Protein
           Tyrosine Kinase (PTK) family; Apoptosis-associated
           tyrosine kinase (Aatyk) subfamily; catalytic (c) domain.
           The Aatyk subfamily is also referred to as the lemur
           tyrosine kinase (Lmtk) subfamily. It consists of Aatyk1
           (Lmtk1), Aatyk2 (Lmtk2, Brek), Aatyk3 (Lmtk3), and
           similar proteins. The PTKc family is part of a larger
           superfamily that includes the catalytic domains of other
           kinases such as protein serine/threonine kinases, RIO
           kinases, and phosphoinositide 3-kinase (PI3K). PTKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to tyrosine (tyr) residues in protein substrates.
           Aatyk proteins are mostly receptor tyr kinases (RTKs)
           containing a transmembrane segment and a long C-terminal
           cytoplasmic tail with a catalytic domain. Aatyk1 does
           not contain a transmembrane segment and is a cytoplasmic
           (or nonreceptor) kinase. Aatyk proteins are classified
           as tyr kinases based on overall sequence similarity and
           the phylogenetic tree. However, analysis of catalytic
           residues suggests that Aatyk proteins may be
           multispecific kinases, functioning also as
           serine/threonine kinases. They are involved in neural
           differentiation, nerve growth factor (NGF) signaling,
           apoptosis, and spermatogenesis.
          Length = 269

 Score = 35.6 bits (82), Expect = 0.042
 Identities = 40/154 (25%), Positives = 64/154 (41%), Gaps = 17/154 (11%)

Query: 358 LVFEHMDSG-LWELLHDKKIHLT-IPHVKTYMQM---LLKGVSYLHGKFIMHRDLKPANL 412
           LV E    G L   L   +  +  +       +M   +  G+ +LH    +H DL   N 
Sbjct: 72  LVLEFCPLGDLKNYLRSNRGMVAQMAQKDVLQRMACEVASGLLWLHQADFIHSDLALRNC 131

Query: 413 LIDKAGILKIADFGLARSFDVERWGQYTPE--VASRWYRAPELLYASRCYD-------QS 463
            +     +KI D+GLA     E +        V  RW  APEL+   R  D       + 
Sbjct: 132 QLTADLSVKIGDYGLALEQYPEDYYITKDCHAVPLRWL-APELV-EIRGQDLLPKDQTKK 189

Query: 464 VDLWAVGCILGEMYTNAPL-FPGESDIEQLAMVL 496
            ++W++G  + E++T A   +P  SD + L  V+
Sbjct: 190 SNIWSLGVTMWELFTAADQPYPDLSDEQVLKQVV 223


>gnl|CDD|235250 PRK04195, PRK04195, replication factor C large subunit;
           Provisional.
          Length = 482

 Score = 36.1 bits (84), Expect = 0.045
 Identities = 30/161 (18%), Positives = 69/161 (42%), Gaps = 21/161 (13%)

Query: 23  RILIRRRHTSSVKTDVMREIKTLLSVSDRYEQTNMAEKRQAKLDMERALAEDPTVYQYD- 81
           R+L + +     +  + ++I   L  S R  +  +       L     + +         
Sbjct: 336 RLLSKTKEKRETRDSIAKKIAEKLHTSKRKVRREV-------LPFLSIIFKHNPELAARL 388

Query: 82  EVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKEGEEF 141
             + E+ +++ + L   KK  KK   I+ ++++AE++++E           ++EK+ + F
Sbjct: 389 AAFLELTEEEIEFLTGSKKATKK---IKKIVEKAEKKREE----------EKKEKKKKAF 435

Query: 142 KDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQQ 182
             K+        K+ +E +K +EEE   +  E+  +  K+Q
Sbjct: 436 AGKKKEEEEEEEKEKKEEEKEEEEEEAEEEKEEEEEKKKKQ 476


>gnl|CDD|227666 COG5374, COG5374, Uncharacterized conserved protein [Function
           unknown].
          Length = 192

 Score = 35.2 bits (81), Expect = 0.050
 Identities = 17/55 (30%), Positives = 26/55 (47%), Gaps = 2/55 (3%)

Query: 87  IDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNE--RQVQLEREKEGE 139
           IDK + D+   K +  K    ++ L K  E   +  ++ NE   QVQ E  K+ E
Sbjct: 138 IDKMEADSTDLKARLRKAQILLEGLQKNQEELFKLLDKYNELREQVQKESSKKKE 192


>gnl|CDD|114011 pfam05262, Borrelia_P83, Borrelia P83/100 protein.  This family
           consists of several Borrelia P83/P100 antigen proteins.
          Length = 489

 Score = 35.7 bits (82), Expect = 0.070
 Identities = 31/161 (19%), Positives = 74/161 (45%), Gaps = 10/161 (6%)

Query: 22  KRILIRRRHTSSVKTDVMREIKTLLSVSDRYEQTNMAEKRQAKLDMERALAE-DPTVYQY 80
           K+++   R  +    +  R++     + +R  Q +    +Q K ++++   + D    + 
Sbjct: 180 KKVVEALREDNEKGVNFRRDM---TDLKERESQEDAKRAQQLKEELDKKQIDADKAQQKA 236

Query: 81  DEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKEGEE 140
           D   D  DK++ +    +++    PK   +   + +++  EN++R   + Q+E +K  EE
Sbjct: 237 DFAQDNADKQRDEVRQKQQEAKNLPKPADTSSPKEDKQVAENQKREIEKAQIEIKKNDEE 296

Query: 141 F-KDKETFVTSSYRK-----KLEEFKKLDEEERRMDMLEDI 175
             K K+       ++     K  E K+L+ +++R  + ED+
Sbjct: 297 ALKAKDHKAFDLKQESKASEKEAEDKELEAQKKREPVAEDL 337



 Score = 28.8 bits (64), Expect = 8.3
 Identities = 29/174 (16%), Positives = 70/174 (40%), Gaps = 34/174 (19%)

Query: 102 DKKPKYIQSLLKQAERRKQENERRNER----QVQLEREKEGEEFKDKETFVTSSYRKKLE 157
           D K +  Q   K+A++ K+E +++       Q + +  ++  + +  E       R+K +
Sbjct: 202 DLKERESQEDAKRAQQLKEELDKKQIDADKAQQKADFAQDNADKQRDEV------RQKQQ 255

Query: 158 EFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESK 217
           E K L +        ED                       ++ ++++K++ E +  +  K
Sbjct: 256 EAKNLPKPADTSSPKED-----------------------KQVAENQKREIEKAQIEIKK 292

Query: 218 NKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKK 271
           N   A +++     +  +  K+S+K  +      ++ R E + E+  KT+   +
Sbjct: 293 NDEEALKAKDHKAFDLKQESKASEKEAEDKELEAQKKR-EPVAEDLQKTKPQVE 345


>gnl|CDD|240159 cd05120, APH_ChoK_like, Aminoglycoside 3'-phosphotransferase (APH)
           and Choline Kinase (ChoK) family. The APH/ChoK family is
           part of a larger superfamily that includes the catalytic
           domains of other kinases, such as the typical
           serine/threonine/tyrosine protein kinases (PKs), RIO
           kinases, actin-fragmin kinase (AFK), and
           phosphoinositide 3-kinase (PI3K). The family is composed
           of APH, ChoK, ethanolamine kinase (ETNK), macrolide
           2'-phosphotransferase (MPH2'), an unusual homoserine
           kinase, and uncharacterized proteins with similarity to
           the N-terminal domain of acyl-CoA dehydrogenase 10
           (ACAD10). The members of this family catalyze the
           transfer of the gamma-phosphoryl group from ATP (or CTP)
           to small molecule substrates such as aminoglycosides,
           macrolides, choline, ethanolamine, and homoserine.
           Phosphorylation of the antibiotics, aminoglycosides and
           macrolides, leads to their inactivation and to bacterial
           antibiotic resistance. Phosphorylation of choline,
           ethanolamine, and homoserine serves as precursors to the
           synthesis of important biological compounds, such as the
           major phospholipids, phosphatidylcholine and
           phosphatidylethanolamine and the amino acids, threonine,
           methionine, and isoleucine.
          Length = 155

 Score = 33.9 bits (78), Expect = 0.086
 Identities = 19/104 (18%), Positives = 39/104 (37%), Gaps = 7/104 (6%)

Query: 329 TYTYLSDVFSFLPQIVKLLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQ 388
               L+     +P++   L          L+ E ++    + + +++       +   + 
Sbjct: 44  ILQLLARKGLPVPKV---LASGESDGWSYLLMEWIEGETLDEVSEEEKEDIAEQLAELLA 100

Query: 389 MLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFD 432
            L + +  L    + H DL P N+L+D   IL I D+  A    
Sbjct: 101 KLHQ-LPLLV---LCHGDLHPGNILVDDGKILGIIDWEYAGYGP 140


>gnl|CDD|130141 TIGR01069, mutS2, MutS2 family protein.  Function of MutS2 is
           unknown. It should not be considered a DNA mismatch
           repair protein. It is likely a DNA mismatch binding
           protein of unknown cellular function [DNA metabolism,
           Other].
          Length = 771

 Score = 35.6 bits (82), Expect = 0.089
 Identities = 21/89 (23%), Positives = 43/89 (48%), Gaps = 4/89 (4%)

Query: 80  YDEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKEGE 139
           Y E  +EI+       A +K+ ++K ++++ LLK+ E  K + E   E +   ERE+  +
Sbjct: 506 YGEFKEEINVLIEKLSALEKELEQKNEHLEKLLKEQE--KLKKELEQEMEELKERERNKK 563

Query: 140 EFKDKETFVTSSYRKKLEEFKKLDEEERR 168
              +KE     + +   +E + +  E + 
Sbjct: 564 LELEKE--AQEALKALKKEVESIIRELKE 590


>gnl|CDD|237177 PRK12704, PRK12704, phosphodiesterase; Provisional.
          Length = 520

 Score = 35.1 bits (82), Expect = 0.094
 Identities = 24/110 (21%), Positives = 52/110 (47%), Gaps = 9/110 (8%)

Query: 82  EVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAE----RRKQENERRNER--QVQLERE 135
           E  +EI K +++     ++   + + ++  L Q E    R+ +  E+R E   + + E E
Sbjct: 61  EAKEEIHKLRNEFEKELRERRNELQKLEKRLLQKEENLDRKLELLEKREEELEKKEKELE 120

Query: 136 KEGEEFKDKETFV---TSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQQ 182
           ++ +E + KE  +        ++LE    L  EE +  +LE + + A+ +
Sbjct: 121 QKQQELEKKEEELEELIEEQLQELERISGLTAEEAKEILLEKVEEEARHE 170


>gnl|CDD|240271 PTZ00108, PTZ00108, DNA topoisomerase 2-like protein; Provisional.
          Length = 1388

 Score = 35.4 bits (82), Expect = 0.097
 Identities = 42/283 (14%), Positives = 84/283 (29%), Gaps = 21/283 (7%)

Query: 12   NKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSDRYEQTNMAEKRQA-KLDMERA 70
            N    +       L       + K   + ++       +  E+    E  +  +L  +  
Sbjct: 1108 NAELEKKEKELEKLKNT----TPKDMWLEDLDKFEEALEEQEEVEEKEIAKEQRLKSKTK 1163

Query: 71   LAEDPTVYQYDEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNERQV 130
                       +  ++  KK     + K       K + S  K+    K +N++ N    
Sbjct: 1164 GKASKLRKPKLKKKEKKKKKSSADKSKKASVVGNSKRVDSDEKRKLDDKPDNKKSNSSGS 1223

Query: 131  QLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRH 190
              E ++E +    K +      +K        D +E   D L   G            ++
Sbjct: 1224 DQEDDEEQKTKPKKSSVKRLKSKKNNSSKSSEDNDEFSSDDLSKEGKPKNAPKRVSAVQY 1283

Query: 191  LYQTTVGEED------------SKDKKKDTEHSSSDESKNKSIAKQSEGR--STDEPIKH 236
                     D            +K K K     S    K K  +++   R   +   +K 
Sbjct: 1284 SPPPPSKRPDGESNGGSKPSSPTKKKVKKRLEGSLAALKKKKKSEKKTARKKKSKTRVKQ 1343

Query: 237  KKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQDSETPKK 279
              +S+      R  +K++ S S D+  D +  D  +D +    
Sbjct: 1344 ASASQSSRLLRRPRKKKSDSSSEDD--DDSEVDDSEDEDDEDD 1384


>gnl|CDD|223733 COG0661, AarF, Predicted unusual protein kinase [General function
           prediction only].
          Length = 517

 Score = 34.2 bits (79), Expect = 0.17
 Identities = 14/50 (28%), Positives = 24/50 (48%), Gaps = 7/50 (14%)

Query: 383 VKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFD 432
           V+ +++ LL+      G    H D  P N+L+   G + + DFG+    D
Sbjct: 274 VRAFLRQLLR-----DG--FFHADPHPGNILVRSDGRIVLLDFGIVGRLD 316


>gnl|CDD|173646 cd05087, PTKc_Aatyk1_Aatyk3, Catalytic domain of the Protein
           Tyrosine Kinases, Apoptosis-associated tyrosine kinases
           1 and 3.  Protein Tyrosine Kinase (PTK) family;
           Apoptosis-associated tyrosine kinase 1 (Aatyk1) and
           Aatyk3; catalytic (c) domain. The PTKc family is part of
           a larger superfamily that includes the catalytic domains
           of other kinases such as protein serine/threonine
           kinases, RIO kinases, and phosphoinositide 3-kinase
           (PI3K). PTKs catalyze the transfer of the
           gamma-phosphoryl group from ATP to tyrosine (tyr)
           residues in protein substrates. Aatyk1 and Aatyk3 are
           members of the Aatyk subfamily of proteins. Aatyk3 is a
           receptor kinase containing a transmembrane segment and a
           long C-terminal cytoplasmic tail with a catalytic
           domain. Aatyk1 has a similar domain arrangement but
           without the transmembrane segment and is thus, a
           cytoplasmic (or nonreceptor) kinase. The expression of
           Aatyk1 (also referred simply as Aatyk) is upregulated
           during growth arrest and apoptosis in myeloid cells.
           Aatyk1 has been implicated in neural differentiation,
           and is a regulator of the Na-K-2Cl cotransporter, a
           membrane protein involved in cell proliferation and
           survival, epithelial transport, and blood pressure
           control. The function of Aatyk3 is still unknown.
          Length = 269

 Score = 33.8 bits (77), Expect = 0.20
 Identities = 41/157 (26%), Positives = 68/157 (43%), Gaps = 26/157 (16%)

Query: 374 KKIHLTIPHVKTYMQM---LLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARS 430
           +K  L  P   T  +M   +  G+ +LH    +H DL   N L+     +KI D+GL+ +
Sbjct: 90  RKAELMTPDPTTLQRMACEIALGLLHLHKNNFIHSDLALRNCLLTADLTVKIGDYGLSHN 149

Query: 431 FDVERWGQYTPE---VASRWYRAPELLYASR----CYDQS--VDLWAVGCILGEMYT--N 479
              E +   TP+   V  RW  APEL+          DQ+   ++W++G  + E++   +
Sbjct: 150 KYKEDY-YVTPDQLWVPLRWI-APELVDEVHGNLLVVDQTKESNVWSLGVTIWELFELGS 207

Query: 480 APLFPGESDIEQLAMVLH---------KLGTPTEDSW 507
            P +   SD + L   +          +L  P  D W
Sbjct: 208 QP-YRHLSDEQVLTYTVREQQLKLPKPRLKLPLSDRW 243


>gnl|CDD|220648 pfam10243, MIP-T3, Microtubule-binding protein MIP-T3.  This
           protein, which interacts with both microtubules and
           TRAF3 (tumour necrosis factor receptor-associated factor
           3), is conserved from worms to humans. The N-terminal
           region is the microtubule binding domain and is
           well-conserved; the C-terminal 100 residues, also
           well-conserved, constitute the coiled-coil region which
           binds to TRAF3. The central region of the protein is
           rich in lysine and glutamic acid and carries KKE motifs
           which may also be necessary for tubulin-binding, but
           this region is the least well-conserved.
          Length = 506

 Score = 34.1 bits (78), Expect = 0.22
 Identities = 20/90 (22%), Positives = 34/90 (37%)

Query: 198 EEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSE 257
           EE+ + ++   E     E   +    +       E    K+  K+ EK+    R R   +
Sbjct: 105 EEEKEKEQVKEEKKKKKEKPKEEPKDRKPKEEAKEKRPPKEKEKEKEKKVEEPRDREEEK 164

Query: 258 SLDEETDKTRGDKKQDSETPKKKKKTDEIE 287
             +    K+R  K    + P KKK+  E E
Sbjct: 165 KRERVRAKSRPKKPPKKKPPNKKKEPPEEE 194



 Score = 31.0 bits (70), Expect = 1.7
 Identities = 25/88 (28%), Positives = 37/88 (42%), Gaps = 9/88 (10%)

Query: 89  KKKHDTLAAKKKGDKKPKYIQSLLKQAE-----RRKQENERRNERQV----QLEREKEGE 139
           K+K      KKK  +KPK      K  E     R  +E E+  E++V      E EK+ E
Sbjct: 108 KEKEQVKEEKKKKKEKPKEEPKDRKPKEEAKEKRPPKEKEKEKEKKVEEPRDREEEKKRE 167

Query: 140 EFKDKETFVTSSYRKKLEEFKKLDEEER 167
             + K        +K   + K+  EEE+
Sbjct: 168 RVRAKSRPKKPPKKKPPNKKKEPPEEEK 195



 Score = 29.9 bits (67), Expect = 3.8
 Identities = 29/174 (16%), Positives = 56/174 (32%), Gaps = 29/174 (16%)

Query: 115 AERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLED 174
             +  +E +  + ++ + E+E+  EE K K+         K  + K+  +E+R       
Sbjct: 91  KTKPAKEPKNESGKEEEKEKEQVKEEKKKKK--EKPKEEPKDRKPKEEAKEKRP------ 142

Query: 175 IGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKD---TEHSSSDESKNKSIAKQSEGRSTD 231
                                  +E  K  ++     E    +  + KS  K+   +   
Sbjct: 143 ------------------PKEKEKEKEKKVEEPRDREEEKKRERVRAKSRPKKPPKKKPP 184

Query: 232 EPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQDSETPKKKKKTDE 285
              K     +K  + +R   K    E    E  +   D  +D ET     + DE
Sbjct: 185 NKKKEPPEEEKQRQAAREAVKGKPEEPDVNEEREKEEDDGKDRETTTSPMEEDE 238


>gnl|CDD|225288 COG2433, COG2433, Uncharacterized conserved protein [Function
           unknown].
          Length = 652

 Score = 33.9 bits (78), Expect = 0.24
 Identities = 20/110 (18%), Positives = 45/110 (40%), Gaps = 11/110 (10%)

Query: 68  ERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNE 127
           E     +    + +E  +    +K      ++  ++  +    L ++ E  K+E E+   
Sbjct: 399 EEERPREKEGTEEEERREITVYEK-RIKKLEETVERLEEENSELKRELEELKREIEKLES 457

Query: 128 RQVQLEREKEGEEFKDKETFVTSSYRKKLEEF----KKLDEEERRMDMLE 173
              +  RE   +  KD+E       R +        K+L+E+++R++ LE
Sbjct: 458 ELERFRREVRDKVRKDRE------IRARDRRIERLEKELEEKKKRVEELE 501


>gnl|CDD|223496 COG0419, SbcC, ATPase involved in DNA repair [DNA replication,
           recombination, and repair].
          Length = 908

 Score = 34.0 bits (78), Expect = 0.27
 Identities = 50/246 (20%), Positives = 98/246 (39%), Gaps = 27/246 (10%)

Query: 49  SDRYEQTNMAEKRQAKLDMERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKKGDKKPKYI 108
            ++YE+ +   K   K    +A  E+      +    E+ +   D L A ++  K+ K +
Sbjct: 166 LEKYEKLSELLKEVIK--EAKAKIEE-----LEGQLSELLEDIEDLLEALEEELKELKKL 218

Query: 109 QSLLKQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFK----KLDE 164
           + + ++ E  + E E     +   E E+E E  ++ +  +      +LE  K    +L E
Sbjct: 219 EEIQEEQEEEELEQEIEALEERLAELEEEKERLEELKARLLEIESLELEALKIREEELRE 278

Query: 165 EERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESKNKSIAKQ 224
            ER ++ LE+     K + L    R + +    EE+ +  +   E       K KS+ ++
Sbjct: 279 LERLLEELEE-----KIERLEELEREIEEL---EEELEGLRALLEELEELLEKLKSLEER 330

Query: 225 SEGRSTD--------EPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQDSET 276
            E             E +  +K+      + R      R E L++E +K     KQ  E 
Sbjct: 331 LEKLEEKLEKLESELEELAEEKNELAKLLEERLKELEERLEELEKELEKALERLKQLEEA 390

Query: 277 PKKKKK 282
            ++ K+
Sbjct: 391 IQELKE 396



 Score = 29.3 bits (66), Expect = 5.9
 Identities = 28/166 (16%), Positives = 67/166 (40%), Gaps = 4/166 (2%)

Query: 90  KKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKEGEEFKDKETFVT 149
           ++      K+  +     ++ L ++  R K+E E R E + +LE+E    E +  E    
Sbjct: 465 QELPEEHEKELLELYELELEELEEELSREKEEAELREEIE-ELEKELRELEEELIELLEL 523

Query: 150 SSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTE 209
               K+  E +KL++ E  ++ LE++ +  + Q L    R L       ++  ++ +   
Sbjct: 524 EEALKEELE-EKLEKLENLLEELEELKEKLQLQQLKEELRQLEDRLQELKELLEELRLLR 582

Query: 210 HSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNR 255
               +  + +   +  E +   + ++ + S  +   QS    +   
Sbjct: 583 TRKEELEELRE--RLKELKKKLKELEERLSQLEELLQSLELSEAEN 626


>gnl|CDD|234750 PRK00409, PRK00409, recombination and DNA strand exchange inhibitor
           protein; Reviewed.
          Length = 782

 Score = 33.6 bits (78), Expect = 0.32
 Identities = 35/150 (23%), Positives = 70/150 (46%), Gaps = 28/150 (18%)

Query: 98  KKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLE 157
           +++ ++K +  ++LLK+AE+ K+E E + E+  Q E +K  EE + +        ++ ++
Sbjct: 529 ERELEQKAEEAEALLKEAEKLKEELEEKKEKL-QEEEDKLLEEAEKE-------AQQAIK 580

Query: 158 EFKK-LDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSS--D 214
           E KK  DE  + +  L+  G                  +V   +  + +K    ++   +
Sbjct: 581 EAKKEADEIIKELRQLQKGG----------------YASVKAHELIEARKRLNKANEKKE 624

Query: 215 ESKNKSIAKQSEGRSTDEPIKHKKSSKKGE 244
           + K K   KQ E +  DE +K+    +KGE
Sbjct: 625 KKKKKQKEKQEELKVGDE-VKYLSLGQKGE 653


>gnl|CDD|236586 PRK09605, PRK09605, bifunctional UGMP family
           protein/serine/threonine protein kinase; Validated.
          Length = 535

 Score = 33.3 bits (77), Expect = 0.40
 Identities = 19/82 (23%), Positives = 37/82 (45%), Gaps = 11/82 (13%)

Query: 348 DFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDL 407
           D  P++ T  +V E+        +  K +   +      ++ + + V+ LH   I+H DL
Sbjct: 405 DVDPEEKT--IVMEY--------IGGKDLKDVLEGNPELVRKVGEIVAKLHKAGIVHGDL 454

Query: 408 KPANLLIDKAGILKIADFGLAR 429
             +N ++    +  I DFGL +
Sbjct: 455 TTSNFIVRDDRLYLI-DFGLGK 475


>gnl|CDD|173767 cd08227, PK_STRAD_alpha, Pseudokinase domain of STE20-related
           kinase adapter protein alpha.  Protein Kinase family,
           STE20-related kinase adapter protein (STRAD) alpha
           subfamily, pseudokinase domain. The STRAD alpha
           subfamily is part of a larger superfamily that includes
           the catalytic domains of serine/threonine kinases
           (STKs), protein tyrosine kinases, RIO kinases,
           aminoglycoside phosphotransferase, choline kinase, and
           phosphoinositide 3-kinase. The pseudokinase domain shows
           similarity to protein kinases but lacks crucial residues
           for catalytic activity. STRAD forms a complex with the
           scaffolding protein MO25, and the STK, LKB1, resulting
           in the activation of the kinase. In the complex, LKB1
           phosphorylates and activates adenosine
           monophosphate-activated protein kinases (AMPKs), which
           regulate cell energy metabolism and cell polarity. LKB1
           is a tumor suppressor linked to the rare inherited
           disease, Peutz-Jeghers syndrome, which is characterized
           by a predisposition to benign polyps and
           hyperpigmentation of the buccal mucosa. There are two
           forms of STRAD, alpha and beta, that complex with LKB1
           and MO25. The structure of STRAD-alpha is available and
           shows that this protein binds ATP, has an ordered
           activation loop, and adopts a closed conformation
           typical of fully active protein kinases. It does not
           possess activity due to nonconservative substitutions of
           essential catalytic residues. ATP binding enhances the
           affinity of STRAD for MO25.  The conformation of
           STRAD-alpha, stabilized through ATP and MO25, may be
           needed to activate LKB1. A mutation which results in a
           truncation of a C-terminal part of the human STRAD-alpha
           pseudokinase domain and disrupts its association with
           LKB1, leads to PMSE (polyhydramnios, megalencephaly,
           symptomatic epilepsy) syndrome. Several splice variants
           of STRAD-alpha exist which exhibit different effects on
           the localization and activation of LKB1.
          Length = 327

 Score = 33.0 bits (75), Expect = 0.41
 Identities = 40/157 (25%), Positives = 70/157 (44%), Gaps = 30/157 (19%)

Query: 353 QDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANL 412
           +D +C    H   G+ EL         I ++   +Q +LK + Y+H    +HR +K +++
Sbjct: 87  KDLIC---THFMDGMSEL--------AIAYI---LQGVLKALDYIHHMGYVHRSVKASHI 132

Query: 413 LIDKAGILKIADFGLARSFDVERWGQYT------PEVASR---WYRAPELLYAS-RCYDQ 462
           LI   G  K+   GL  +  +   GQ        P+ + +   W  +PE+L  + + YD 
Sbjct: 133 LISVDG--KVYLSGLRSNLSMINHGQRLRVVHDFPKYSVKVLPWL-SPEVLQQNLQGYDA 189

Query: 463 SVDLWAVGCILGEMYTNAPLFPGESDIEQLAMVLHKL 499
             D+++VG    E+      F    D+    M+L KL
Sbjct: 190 KSDIYSVGITACELANGHVPF---KDMPATQMLLEKL 223


>gnl|CDD|218883 pfam06075, DUF936, Plant protein of unknown function (DUF936).
           This family consists of several hypothetical proteins
           from Arabidopsis thaliana and Oryza sativa. The function
           of this family is unknown.
          Length = 564

 Score = 33.3 bits (76), Expect = 0.43
 Identities = 19/106 (17%), Positives = 36/106 (33%), Gaps = 5/106 (4%)

Query: 185 SGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGE 244
           SG  R    +      +  +KK    S+  +  ++S   +S  R+     K    S    
Sbjct: 204 SGGRRSSIGSRRLRGSASLRKKVAVLSAPRKPGSRSSDCKSSPRARSSSAKSPFKSSIQR 263

Query: 245 KQSRSYRKRNRSESLDEE-----TDKTRGDKKQDSETPKKKKKTDE 285
           K +++  K +   S  +      ++     K +       KK TD 
Sbjct: 264 KATKALSKLSLRASPKDTSKSSKSEVAPPKKSEAKVPSSSKKWTDG 309


>gnl|CDD|173643 cd05077, PTK_Jak1_rpt1, Pseudokinase (repeat 1) domain of the
           Protein Tyrosine Kinase, Janus kinase 1.  Protein
           Tyrosine Kinase (PTK) family; Janus kinase 1 (Jak1);
           pseudokinase domain (repeat 1). The PTKc (catalytic
           domain) family to which this subfamily belongs, is part
           of a larger superfamily that includes the catalytic
           domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Jak1 is a
           member of the Janus kinase (Jak) subfamily of proteins,
           which are cytoplasmic (or nonreceptor) tyr kinases
           containing an N-terminal FERM domain, followed by a Src
           homology 2 (SH2) domain, a pseudokinase domain, and a
           C-terminal tyr kinase domain. The pseudokinase domain
           shows similarity to tyr kinases but lacks crucial
           residues for catalytic activity and ATP binding. It
           modulates the kinase activity of the C-terminal
           catalytic domain. Jaks are crucial for cytokine receptor
           signaling. They are activated by autophosphorylation
           upon cytokine-induced receptor aggregation, and
           subsequently trigger downstream signaling events such as
           the phosphorylation of signal transducers and activators
           of transcription (STATs). Jak1 is widely expressed in
           many tissues. Many cytokines are dependent on Jak1 for
           signaling, including those that use the shared receptor
           subunits common gamma chain (IL-2, IL-4, IL-7, IL-9,
           IL-15, IL-21) and gp130 (IL-6, IL-11, oncostatin M,
           G-CSF, and IFNs, among others). The many varied
           interactions of Jak1 and its ubiquitous expression
           suggest many biological roles. Jak1 is important in
           neurological development, as well as in lymphoid
           development and function. It also plays a role in the
           pathophysiology of cardiac hypertrophy and heart
           failure. A mutation in the ATP-binding site of Jak1 was
           identified in a human uterine leiomyosarcoma cell line,
           resulting in defective cytokine induction and antigen
           presentation, thus allowing the tumor to evade the
           immune system.
          Length = 262

 Score = 32.6 bits (74), Expect = 0.43
 Identities = 38/135 (28%), Positives = 62/135 (45%), Gaps = 23/135 (17%)

Query: 358 LVFEHMDSGLWEL-LHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDK 416
           +V E ++ G  +L +H K   LT P      + L   +SYL  K ++H ++   N+L+ +
Sbjct: 81  MVEEFVEFGPLDLFMHRKSDVLTTPWKFKVAKQLASALSYLEDKDLVHGNVCTKNILLAR 140

Query: 417 AGI-------LKIADFG-----LARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQSV 464
            GI       +K++D G     L+R   VER     P +      APE +  S+    + 
Sbjct: 141 EGIDGECGPFIKLSDPGIPITVLSRQECVER----IPWI------APECVEDSKNLSIAA 190

Query: 465 DLWAVGCILGEMYTN 479
           D W+ G  L E+  N
Sbjct: 191 DKWSFGTTLWEICYN 205


>gnl|CDD|176962 CHL00019, atpF, ATP synthase CF0 B subunit.
          Length = 184

 Score = 32.1 bits (74), Expect = 0.46
 Identities = 15/67 (22%), Positives = 33/67 (49%), Gaps = 14/67 (20%)

Query: 116 ERRKQENERRNERQVQLER-EKEGEEFK---------DKETFVTSSYR--KKLEEFKK-- 161
           ERR++  E+  + + +L + E E +E +         +KE  +  +    ++LE +K   
Sbjct: 69  ERREEAIEKLEKARARLRQAELEADEIRVNGYSEIEREKENLINQAKEDLERLENYKNET 128

Query: 162 LDEEERR 168
           +  E++R
Sbjct: 129 IRFEQQR 135


>gnl|CDD|233191 TIGR00927, 2A1904, K+-dependent Na+/Ca+ exchanger.  [Transport and
           binding proteins, Cations and iron carrying compounds].
          Length = 1096

 Score = 33.0 bits (75), Expect = 0.48
 Identities = 38/203 (18%), Positives = 85/203 (41%), Gaps = 19/203 (9%)

Query: 85  DEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKEGEEFKDK 144
           +   ++       + +G +    I++     E  + E+E   E + + E E EG+    K
Sbjct: 709 ETEAEEVEHEGETEAEGTEDEGEIET---GEEGEEVEDEGEGEAEGKHEVETEGDR---K 762

Query: 145 ETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDK 204
           ET        + +E    DE+E  +   ED G++   +   G   H  +T  GE+D    
Sbjct: 763 ETEHEGETEAEGKE----DEDEGEIQAGED-GEMKGDEGAEGKVEHEGETEAGEKD---- 813

Query: 205 KKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETD 264
               EH    E++      + E    +   +++  +K+ EK        +  +S +EE +
Sbjct: 814 ----EHEGQSETQADDTEVKDETGEQELNAENQGEAKQDEKGVDGGGGSDGGDSEEEEEE 869

Query: 265 KTRGDKKQDSETPKKKKKTDEIE 287
           +   +++++ E  +++++ +  E
Sbjct: 870 EEEEEEEEEEEEEEEEEEEENEE 892


>gnl|CDD|217051 pfam02463, SMC_N, RecF/RecN/SMC N terminal domain.  This domain is
            found at the N terminus of SMC proteins. The SMC
            (structural maintenance of chromosomes) superfamily
            proteins have ATP-binding domains at the N- and
            C-termini, and two extended coiled-coil domains separated
            by a hinge in the middle. The eukaryotic SMC proteins
            form two kind of heterodimers: the SMC1/SMC3 and the
            SMC2/SMC4 types. These heterodimers constitute an
            essential part of higher order complexes, which are
            involved in chromatin and DNA dynamics. This family also
            includes the RecF and RecN proteins that are involved in
            DNA metabolism and recombination.
          Length = 1162

 Score = 33.0 bits (75), Expect = 0.50
 Identities = 41/263 (15%), Positives = 89/263 (33%), Gaps = 18/263 (6%)

Query: 41   EIKTLLSVSDRYEQTNMAEKRQAKLDMERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKK 100
              +  L+  +   +    E+ + +    +A  E+    + +   +    ++   L  +++
Sbjct: 772  LKEKELAEEEEKTEKLKVEEEKEEK--LKAQEEELRALEEELKEEAELLEEEQLLIEQEE 829

Query: 101  GDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFK 160
              K+ +    L + A   K+E +     + +LER +E E  K++         ++LEE K
Sbjct: 830  KIKEEE----LEELALELKEEQKLEKLAEEELERLEE-EITKEELLQELLLKEEELEEQK 884

Query: 161  KLDEE---ERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESK 217
              DE    E +    +   +   Q+D     +        EE   ++        S+  +
Sbjct: 885  LKDELESKEEKEKEEKKELEEESQKDNLLEEKE----NEIEERIAEEAIILLKYESEPEE 940

Query: 218  NKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRN----RSESLDEETDKTRGDKKQD 273
                    + +  D   + ++ +K+           N          EE       KK+ 
Sbjct: 941  LLLEEADEKEKEEDNKEEEEERNKRLLLAKEELGNVNLMAIAEFEEKEERYNKDELKKER 1000

Query: 274  SETPKKKKKTDEIEMKLLDFFPD 296
             E  KK+   + IE     F   
Sbjct: 1001 LEEEKKELLREIIEETCQRFKEF 1023



 Score = 32.6 bits (74), Expect = 0.67
 Identities = 37/193 (19%), Positives = 71/193 (36%), Gaps = 29/193 (15%)

Query: 97  AKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKL 156
            KK+  KK       L +     +E +         +  K  E+ K           +  
Sbjct: 171 KKKERLKKLIEETENLAELIIDLEELKL--------QELKLKEQAKKAL--------EYY 214

Query: 157 EEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDES 216
           +  +KL+ EE  +  L+ +    ++ DL             +E  +D++++ E S  +  
Sbjct: 215 QLKEKLELEEENLLYLDYLKLNEERIDLL------------QELLRDEQEEIESSKQELE 262

Query: 217 KNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQDSET 276
           K + I  Q   +   E  K KK  ++  K      +  +SE L  E  K   ++K     
Sbjct: 263 KEEEILAQVL-KENKEEEKEKKLQEEELKLLAKEEEELKSELLKLERRKVDDEEKLKESE 321

Query: 277 PKKKKKTDEIEMK 289
            + KK   E++ +
Sbjct: 322 KELKKLEKELKKE 334


>gnl|CDD|233503 TIGR01642, U2AF_lg, U2 snRNP auxilliary factor, large subunit,
           splicing factor.  These splicing factors consist of an
           N-terminal arginine-rich low complexity domain followed
           by three tandem RNA recognition motifs (pfam00076). The
           well-characterized members of this family are auxilliary
           components of the U2 small nuclear ribonuclearprotein
           splicing factor (U2AF). These proteins are closely
           related to the CC1-like subfamily of splicing factors
           (TIGR01622). Members of this subfamily are found in
           plants, metazoa and fungi.
          Length = 509

 Score = 32.6 bits (74), Expect = 0.54
 Identities = 23/88 (26%), Positives = 34/88 (38%), Gaps = 11/88 (12%)

Query: 199 EDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSES 258
           EDS+ + +    S S  S   S    S  RS D P +  +S +  E+  R  R R+ S  
Sbjct: 48  EDSRPRDRRRYDSRSPRSLRYS----SVRRSRDRPRRRSRSVRSIEQHRRRLRDRSPSNQ 103

Query: 259 LDEETDKTRGDKKQDSETPKKKKKTDEI 286
                   R D K+ S    K    + +
Sbjct: 104 -------WRKDDKKRSLWDIKPPGYELV 124



 Score = 29.1 bits (65), Expect = 7.4
 Identities = 13/87 (14%), Positives = 28/87 (32%), Gaps = 5/87 (5%)

Query: 198 EEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSE 257
           EE  ++++K       D S  +   ++S  RS       +   +   + SR   +R    
Sbjct: 3   EEPDREREKSRGRDR-DRSSERP-RRRSRDRSRFRDRHRRSRERSYREDSRPRDRRRYD- 59

Query: 258 SLDEETDKTRGDKKQDSETPKKKKKTD 284
                    R    + S    +++   
Sbjct: 60  --SRSPRSLRYSSVRRSRDRPRRRSRS 84


>gnl|CDD|173627 cd05037, PTK_Jak_rpt1, Pseudokinase (repeat 1) domain of the
           Protein Tyrosine Kinases, Janus kinases.  Protein
           Tyrosine Kinase (PTK) family; Janus kinase (Jak)
           subfamily; pseudokinase domain (repeat1). The Jak
           subfamily is composed of Jak1, Jak2, Jak3, TYK2, and
           similar proteins. The PTKc (catalytic domain) family to
           which this subfamily belongs, is part of a larger
           superfamily that includes the catalytic domains of other
           kinases such as protein serine/threonine kinases, RIO
           kinases, and phosphoinositide 3-kinase (PI3K). PTKs
           catalyze the transfer of the gamma-phosphoryl group from
           ATP to tyrosine (tyr) residues in protein substrates.
           Jak subfamily proteins are cytoplasmic (or nonreceptor)
           tyr kinases containing an N-terminal FERM domain,
           followed by a Src homology 2 (SH2) domain, a
           pseudokinase domain, and a C-terminal catalytic tyr
           kinase domain. The pseudokinase domain shows similarity
           to tyr kinases but lacks crucial residues for catalytic
           activity and ATP binding. It modulates the kinase
           activity of the C-terminal catalytic domain. Most Jaks
           are expressed in a wide variety of tissues, except for
           Jak3, which is expressed only in hematopoietic cells.
           Jaks are crucial for cytokine receptor signaling. They
           are activated by autophosphorylation upon
           cytokine-induced receptor aggregation, and subsequently
           trigger downstream signaling events such as the
           phosphorylation of signal transducers and activators of
           transcription (STATs). Jaks are also involved in
           regulating the surface expression of some cytokine
           receptors. The Jak-STAT pathway is involved in many
           biological processes including hematopoiesis,
           immunoregulation, host defense, fertility, lactation,
           growth, and embryogenesis.
          Length = 259

 Score = 32.4 bits (74), Expect = 0.56
 Identities = 30/125 (24%), Positives = 54/125 (43%), Gaps = 23/125 (18%)

Query: 371 LHDKKIHLTIPHVKTY-MQMLLKGVSYLHGKFIMHRDLKPANLLIDKAGI-------LKI 422
           LH +K ++++ H K    + L   + YL  K ++H ++   N+L+ + G+       +K+
Sbjct: 91  LHREKNNVSL-HWKLDVAKQLASALHYLEDKKLVHGNVCGKNILVARYGLNEGYVPFIKL 149

Query: 423 ADFG-----LARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQSVDLWAVGCILGEMY 477
           +D G     L+R   VER     P +A    R             + D W+ G  L E+ 
Sbjct: 150 SDPGIPITVLSREERVER----IPWIAPECIRNG-----QASLTIAADKWSFGTTLLEIC 200

Query: 478 TNAPL 482
           +N   
Sbjct: 201 SNGEE 205


>gnl|CDD|215521 PLN02967, PLN02967, kinase.
          Length = 581

 Score = 32.7 bits (74), Expect = 0.61
 Identities = 23/133 (17%), Positives = 54/133 (40%), Gaps = 9/133 (6%)

Query: 136 KEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTT 195
             GE ++ +  F+ ++  +K  E     +EE      ++ G V+K++      R   +T 
Sbjct: 31  FRGERWRLQNKFLLAAGSRKKIESALAVDEEP-----DENGAVSKKKPTRSVKRATKKTV 85

Query: 196 V----GEEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYR 251
           V      E+  +   + + +   ESK      + +  +    ++ +K+ KK  K+ +  +
Sbjct: 86  VEISEPLEEGSELVVNEDAALDKESKKTPRRTRRKAAAASSDVEEEKTEKKVRKRRKVKK 145

Query: 252 KRNRSESLDEETD 264
                E    E++
Sbjct: 146 MDEDVEDQGSESE 158


>gnl|CDD|203738 pfam07716, bZIP_2, Basic region leucine zipper. 
          Length = 54

 Score = 29.1 bits (66), Expect = 0.61
 Identities = 12/48 (25%), Positives = 30/48 (62%)

Query: 88  DKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLERE 135
           D+++ +  AA++  +KK +  + L ++ +  ++EN +  ++  QLE+E
Sbjct: 7   DRRRRNNEAARRSREKKKQREEELEERVKELEEENAQLRQKVEQLEKE 54


>gnl|CDD|237748 PRK14537, PRK14537, 50S ribosomal protein L20/unknown domain fusion
           protein; Provisional.
          Length = 230

 Score = 31.9 bits (72), Expect = 0.61
 Identities = 22/133 (16%), Positives = 47/133 (35%), Gaps = 11/133 (8%)

Query: 63  AKLDMERALAED------PTVYQYDEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAE 116
           AK+D+ R +  D          QY E+  +   +   T   K K     + +Q       
Sbjct: 86  AKVDINRKVLSDLAHLQPEVFVQYVELAKKFLSQFQSTTITKPKKVLINEVLQEKTINQN 145

Query: 117 RRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIG 176
             K   +       +L  EK   E + +         +  E+   ++  +    +L+++ 
Sbjct: 146 EEKTSLQNEKVLSPELSEEKSDSELETQ-----PQKTQLKEKKPSIEHIDLSKMLLKELK 200

Query: 177 DVAKQQDLSGFYR 189
            +AK+  +  F +
Sbjct: 201 KLAKEHKIPNFNK 213


>gnl|CDD|217502 pfam03343, SART-1, SART-1 family.  SART-1 is a protein involved in
           cell cycle arrest and pre-mRNA splicing. It has been
           shown to be a component of U4/U6 x U5 tri-snRNP complex
           in human, Schizosaccharomyces pombe and Saccharomyces
           cerevisiae. SART-1 is a known tumour antigen in a range
           of cancers recognised by T cells.
          Length = 603

 Score = 32.4 bits (74), Expect = 0.62
 Identities = 33/186 (17%), Positives = 71/186 (38%), Gaps = 25/186 (13%)

Query: 121 ENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAK 180
           E E+  +  ++L+++K   +  D + F   S   K +E  +  +++       D G    
Sbjct: 175 EKEKDKKN-LELKKKKPDYDPDDDDKFNKRSILSKYDEEIEGKKKKSDNLFTLDSGG--- 230

Query: 181 QQDLSGFYRHLYQTTVGEEDSKDKK--KDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKK 238
                        +T  E + K ++  K  + ++     + +    S+     E +K KK
Sbjct: 231 -------------STDDEAEKKRQEVKKKLKINNVSLDDDSTETPASDYYDVSEMVKFKK 277

Query: 239 SSKKGEKQSRSYRKRNRSESLDEET------DKTRGDKKQDSETPKKKKKTDEIEMKLLD 292
             KK +K+ +  +  +  E   E          +R D ++++   +   K  + E +  D
Sbjct: 278 PKKKKKKKKKRRKDLDEDELEPEAEGLGSSDSGSRKDVEEENARLEDSPKKRKEEQEDDD 337

Query: 293 FFPDQD 298
           F  D D
Sbjct: 338 FVEDDD 343


>gnl|CDD|218215 pfam04696, Pinin_SDK_memA, pinin/SDK/memA/ protein conserved
           region.  Members of this family have very varied
           localisations within the eukaryotic cell. pinin is known
           to localise at the desmosomes and is implicated in
           anchoring intermediate filaments to the desmosomal
           plaque. SDK2/3 is a dynamically localised nuclear
           protein thought to be involved in modulation of
           alternative pre-mRNA splicing. memA is a tumour marker
           preferentially expressed in human melanoma cell lines. A
           common feature of the members of this family is that
           they may all participate in regulating protein-protein
           interactions.
          Length = 131

 Score = 30.9 bits (70), Expect = 0.64
 Identities = 19/62 (30%), Positives = 28/62 (45%), Gaps = 3/62 (4%)

Query: 110 SLLKQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRM 169
           S L   E+R+ E E++ E Q + ERE+  +E   K        RK+LE  K   + E   
Sbjct: 28  SRLTSKEKRRAEIEQKLEEQEKQEREELRKE---KRELFEERRRKQLELRKLEQKMEDEK 84

Query: 170 DM 171
             
Sbjct: 85  LQ 86


>gnl|CDD|236081 PRK07735, PRK07735, NADH dehydrogenase subunit C; Validated.
          Length = 430

 Score = 32.3 bits (73), Expect = 0.64
 Identities = 38/174 (21%), Positives = 67/174 (38%), Gaps = 20/174 (11%)

Query: 113 KQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDML 172
           + A R K+E  +R   +   E  K  EE ++KE  +  +    +EE K+      +    
Sbjct: 13  EAARRAKEEARKRLVAKHGAEISKLEEENREKEKALPKNDDMTIEEAKRRAAAAAK---- 68

Query: 173 EDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESKNKSIAKQ----SEGR 228
                 AK   L+   R   +    EE +K K K    +   ++K  ++AKQ    +E  
Sbjct: 69  ------AKAAALAKQKREGTEEVTEEEKAKAKAKAAAAA---KAKAAALAKQKREGTEEV 119

Query: 229 STDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQDSETPKKKKK 282
           + +E    K  +    K   +   + + E  +E T++       D E  K K  
Sbjct: 120 TEEEKAAAKAKAAAAAKAKAAALAKQKREGTEEVTEEEEET---DKEKAKAKAA 170


>gnl|CDD|234017 TIGR02794, tolA_full, TolA protein.  TolA couples the inner
           membrane complex of itself with TolQ and TolR to the
           outer membrane complex of TolB and OprL (also called
           Pal). Most of the length of the protein consists of
           low-complexity sequence that may differ in both length
           and composition from one species to another,
           complicating efforts to discriminate TolA (the most
           divergent gene in the tol-pal system) from paralogs such
           as TonB. Selection of members of the seed alignment and
           criteria for setting scoring cutoffs are based largely
           conserved operon struction. //The Tol-Pal complex is
           required for maintaining outer membrane integrity. Also
           involved in transport (uptake) of colicins and
           filamentous DNA, and implicated in pathogenesis.
           Transport is energized by the proton motive force. TolA
           is an inner membrane protein that interacts with
           periplasmic TolB and with outer membrane porins ompC,
           phoE and lamB [Transport and binding proteins, Other,
           Cellular processes, Pathogenesis].
          Length = 346

 Score = 32.1 bits (73), Expect = 0.67
 Identities = 27/116 (23%), Positives = 52/116 (44%), Gaps = 3/116 (2%)

Query: 53  EQTNMAEKRQAKLDMERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLL 112
           E+    E++  + + +RA  +            E   K+ +  AAK+  +K+ +  ++  
Sbjct: 68  ERQKKLEQQAEEAEKQRAAEQARQKELEQRAAAEKAAKQAEQ-AAKQAEEKQKQAEEAKA 126

Query: 113 KQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERR 168
           KQA   K + E   E++ + E +K+ EE    +    +  +KK  E KK  E E +
Sbjct: 127 KQAAEAKAKAEAEAEKKAKEEAKKQAEEEAKAKA--AAEAKKKAAEAKKKAEAEAK 180


>gnl|CDD|234331 TIGR03724, arch_bud32, Kae1-associated kinase Bud32.  Members of
           this protein family are the Bud32 protein associated
           with Kae1 (kinase-associated endopeptidase 1) in the
           Archaea. In many Archaeal genomes, Kae1 and Bud32 are
           fused. The complex is homologous to the Kae1 and Bud32
           subunits of the eukaryotic KEOPS complex, an apparently
           ancient protein kinase-containing molecular machine
           [Unknown function, General].
          Length = 199

 Score = 31.8 bits (73), Expect = 0.69
 Identities = 23/90 (25%), Positives = 43/90 (47%), Gaps = 11/90 (12%)

Query: 346 LLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHR 405
           + D  PD  T  +V E+++    + L D    +        ++ + + V  LH   I+H 
Sbjct: 64  VYDVDPDNKT--IVMEYIEG---KPLKD----VIEEGNDELLREIGRLVGKLHKAGIVHG 114

Query: 406 DLKPANLLIDKAGILKIADFGLAR-SFDVE 434
           DL  +N+++    +  I DFGL + S ++E
Sbjct: 115 DLTTSNIIVRDDKLYLI-DFGLGKYSDEIE 143


>gnl|CDD|202096 pfam02029, Caldesmon, Caldesmon. 
          Length = 431

 Score = 32.3 bits (73), Expect = 0.70
 Identities = 41/199 (20%), Positives = 78/199 (39%), Gaps = 22/199 (11%)

Query: 96  AAKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKE---GEEFKDKETFVTSSY 152
           A +++ + KP      L +  RR QE+       V+ E ++E     E  ++   VT S 
Sbjct: 77  ALERQKEFKPTSTDQSLSEPSRRMQEDSGAENETVEEEEKEESREEREEVEETEGVTKSE 136

Query: 153 RKKL--EEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEH 210
           +K    +  +   EE+      E+       ++ +G            E    K K TE+
Sbjct: 137 QKNDWRDAEECQKEEKEPEPEEEEKPKRGSLEENNG------------EFMTHKLKHTEN 184

Query: 211 SSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDK 270
           + S      +   Q E     E +K K+     E +    ++  R + L+EE  + + ++
Sbjct: 185 TFSRGGAEGA---QVEAGKEFEKLKQKQQEAALELEELKKKREERRKVLEEEEQRRKQEE 241

Query: 271 KQDS--ETPKKKKKTDEIE 287
                 E  +K++  +EIE
Sbjct: 242 ADRKSREEEEKRRLKEEIE 260


>gnl|CDD|133217 cd05086, PTKc_Aatyk2, Catalytic domain of the Protein Tyrosine
           Kinase, Apoptosis-associated tyrosine kinase 2.  Protein
           Tyrosine Kinase (PTK) family; Apoptosis-associated
           tyrosine kinase 2 (Aatyk2); catalytic (c) domain. The
           PTKc family is part of a larger superfamily that
           includes the catalytic domains of other kinases such as
           protein serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Aatyk2 is
           a member of the Aatyk subfamily of proteins, which are
           receptor kinases containing a transmembrane segment and
           a long C-terminal cytoplasmic tail with a catalytic
           domain. Aatyk2 is also called lemur tyrosine kinase 2
           (Lmtk2) or brain-enriched kinase (Brek). It is expressed
           at high levels in early postnatal brain, and has been
           shown to play a role in nerve growth factor (NGF)
           signaling. Studies with knockout mice reveal that Aatyk2
           is essential for late stage spermatogenesis. Although it
           is classified as a tyr kinase based on sequence
           similarity and the phylogenetic tree, Aatyk2 has been
           characterized as a serine/threonine kinase.
          Length = 268

 Score = 32.2 bits (73), Expect = 0.71
 Identities = 35/133 (26%), Positives = 59/133 (44%), Gaps = 19/133 (14%)

Query: 393 GVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPE--VASRWYRA 450
           GV+++H    +H DL   N  +     +K+ D+G+  S   E + +   +  V  RW  A
Sbjct: 111 GVTHMHKHNFLHSDLALRNCFLTSDLTVKVGDYGIGPSRYKEDYIETEDDKCVPLRWL-A 169

Query: 451 PELLYASR----CYDQS--VDLWAVGCILGEMYTNAPL-FPGESDIEQLAMVLH------ 497
           PEL+          +Q+   ++WA+G  L E++ NA   +   SD E L  V+       
Sbjct: 170 PELVGEFHGGLITAEQTKPSNVWALGVTLWELFENAAQPYSHLSDREVLNHVIKDQQVKL 229

Query: 498 ---KLGTPTEDSW 507
              +L  P  + W
Sbjct: 230 FKPQLELPYSERW 242


>gnl|CDD|227507 COG5180, PBP1, Protein interacting with poly(A)-binding protein
           [RNA processing and modification].
          Length = 654

 Score = 32.4 bits (73), Expect = 0.71
 Identities = 34/197 (17%), Positives = 66/197 (33%), Gaps = 44/197 (22%)

Query: 133 EREKEGEEFKD-KETFVTSSY--RKKLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYR 189
           E+EK+ +E K     +  + +   K L E  K   +      L DI     +        
Sbjct: 310 EKEKQIKEKKSFSYGWKHTKFDSSKNLLEVIKSKFKS-----LFDISSGELKWG------ 358

Query: 190 HLYQTTVGEEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRS 249
                +    ++K     T+ S   +   +S +K ++   + +      +S +       
Sbjct: 359 -----SKPPWEAKAVSIATKVSKPKKESVRSGSKAAKKSPSTKHTTRSSTSLRRRNHGSF 413

Query: 250 YRKRNR-----------------SESLDEETDKTRGDKKQDSETP---KKKKKT-----D 284
           +  +N                   +S +   +K +GD   ++  P   +K   T     +
Sbjct: 414 FGAKNPHTNDAKRVLFGKSFNMFIKSKEAHDEKKKGDDASENMEPFFIEKPYFTAPTWLN 473

Query: 285 EIEMKLLDFFPDQDTVC 301
            IE     FFPD+DT  
Sbjct: 474 TIEESYKTFFPDEDTAI 490


>gnl|CDD|218752 pfam05793, TFIIF_alpha, Transcription initiation factor IIF, alpha
           subunit (TFIIF-alpha).  Transcription initiation factor
           IIF, alpha subunit (TFIIF-alpha) or RNA polymerase
           II-associating protein 74 (RAP74) is the large subunit
           of transcription factor IIF (TFIIF), which is essential
           for accurate initiation and stimulates elongation by RNA
           polymerase II.
          Length = 528

 Score = 32.2 bits (73), Expect = 0.72
 Identities = 31/157 (19%), Positives = 56/157 (35%), Gaps = 12/157 (7%)

Query: 135 EKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQT 194
            ++G+E K K+     +  KK    K  D+++ +    +D  +     D           
Sbjct: 233 GEDGDEEKSKKKKKKLAKNKK----KLDDDKKGKRGGDDDADE--YDSDDGDDEGREEDY 286

Query: 195 TVGEEDSKDKKKDTEHSSSDESKNKSIAKQ---SEGRSTDEPIKHKKSSKKGEKQSRSYR 251
                 S +  ++ E   S E   K   +Q   SE    ++  +    SKKG+K  +   
Sbjct: 287 ISDSSASGNDPEEREDKLSPEIPAKPEIEQDEDSEESEEEKNEEEGGLSKKGKKLKKLKG 346

Query: 252 KRNR---SESLDEETDKTRGDKKQDSETPKKKKKTDE 285
           K+N     +S   +         +DS +    KK  E
Sbjct: 347 KKNGLDKDDSDSGDDSDDSDIDGEDSVSLVTAKKQKE 383


>gnl|CDD|237847 PRK14879, PRK14879, serine/threonine protein kinase; Provisional.
          Length = 211

 Score = 31.8 bits (73), Expect = 0.72
 Identities = 17/39 (43%), Positives = 23/39 (58%), Gaps = 2/39 (5%)

Query: 397 LHGKFIMHRDLKPANLLIDKAGILKIADFGLA-RSFDVE 434
           LH   I+H DL  +N+++    I  I DFGLA  S D+E
Sbjct: 111 LHSAGIIHGDLTTSNMILSGGKIYLI-DFGLAEFSKDLE 148


>gnl|CDD|100796 PRK01156, PRK01156, chromosome segregation protein; Provisional.
          Length = 895

 Score = 32.2 bits (73), Expect = 0.78
 Identities = 60/277 (21%), Positives = 102/277 (36%), Gaps = 36/277 (12%)

Query: 16  NQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSDRYEQTNMAEKRQAKLDMER-ALAED 74
           N I   K+IL       +    +++++  L    + Y +    + R   L+ +   L   
Sbjct: 305 NDIENKKQILSNIDAEINKYHAIIKKLSVLQKDYNDYIKK---KSRYDDLNNQILELEGY 361

Query: 75  PTVYQYDEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQE-NERRNERQVQLE 133
              Y        I+  K       K  ++   +I  +LK  E       +  NE  V+L+
Sbjct: 362 EMDYN--SYLKSIESLKKKIEEYSKNIERMSAFISEILKIQEIDPDAIKKELNEINVKLQ 419

Query: 134 REKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQ 193
                    D  + V+S  ++     + LDE  R M+ML                  +  
Sbjct: 420 ---------DISSKVSSLNQRIRALRENLDELSRNMEMLNGQSVCP-----------VCG 459

Query: 194 TTVGEEDSKDKKKD-TEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSK---KGEKQSRS 249
           TT+GEE S        E  S  E K + I  + E +  DE I   K  K   + E+ ++S
Sbjct: 460 TTLGEEKSNHIINHYNEKKSRLEEKIREI--EIEVKDIDEKIVDLKKRKEYLESEEINKS 517

Query: 250 YRKRNRSESLDEETDKTRGDKKQDSETPKKKKKTDEI 286
             + N+ ES   + +     K + +E   K  K +EI
Sbjct: 518 INEYNKIESARADLED---IKIKINELKDKHDKYEEI 551


>gnl|CDD|225606 COG3064, TolA, Membrane protein involved in colicin uptake [Cell
           envelope biogenesis, outer membrane].
          Length = 387

 Score = 31.8 bits (72), Expect = 0.94
 Identities = 37/189 (19%), Positives = 74/189 (39%), Gaps = 33/189 (17%)

Query: 96  AAKKKGDKKPKYIQSLLKQAE--RRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYR 153
           A K +  +K K  Q     AE  + KQ  E+   +Q++ ER K  E+ K  E     + +
Sbjct: 74  AKKGEQQRKKKEEQ----VAEELKPKQAAEQERLKQLEKERLKAQEQQKQAE----EAEK 125

Query: 154 KKLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSS 213
           +   E K+ +E+ R+          A+Q+               ++    K K    ++ 
Sbjct: 126 QAQLEQKQQEEQARKA--------AAEQK---------------KKAEAAKAKAAAEAAK 162

Query: 214 DESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQD 273
            ++  ++  K  E     E  K K  +   +K++ +  K    ++  E   K + +KK +
Sbjct: 163 LKAAAEAKKKAEEAAKAAEEAKAKAEAAAAKKKAEAEAKAAAEKAKAEAEAKAKAEKKAE 222

Query: 274 SETPKKKKK 282
           +   +K   
Sbjct: 223 AAAEEKAAA 231


>gnl|CDD|216618 pfam01636, APH, Phosphotransferase enzyme family.  This family
           consists of bacterial antibiotic resistance proteins,
           which confer resistance to various aminoglycosides they
           include: aminoglycoside 3'-phosphotransferase or
           kanamycin kinase / neomycin-kanamycin phosphotransferase
           and streptomycin 3''-kinase or streptomycin
           3''-phosphotransferase. The aminoglycoside
           phosphotransferases inactivate aminoglycoside
           antibiotics via phosphorylation. This family also
           includes homoserine kinase. This family is related to
           fructosamine kinase pfam03881.
          Length = 238

 Score = 31.4 bits (71), Expect = 0.96
 Identities = 12/29 (41%), Positives = 17/29 (58%), Gaps = 1/29 (3%)

Query: 402 IMHRDLKPANLLIDKAG-ILKIADFGLAR 429
           ++H DL P NLL+D  G +  + DF  A 
Sbjct: 167 LVHGDLHPGNLLVDPGGRVTGVIDFEDAG 195


>gnl|CDD|236545 PRK09510, tolA, cell envelope integrity inner membrane protein
           TolA; Provisional.
          Length = 387

 Score = 31.7 bits (72), Expect = 0.97
 Identities = 38/222 (17%), Positives = 76/222 (34%), Gaps = 25/222 (11%)

Query: 84  YDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAE--RRKQENERRNERQVQLEREKEGEEF 141
           Y+   +++     A+++  KK +      +QAE  ++KQ  E+   +Q++ ER    E+ 
Sbjct: 64  YNRQQQQQKSAKRAEEQRKKKEQ------QQAEELQQKQAAEQERLKQLEKERLAAQEQK 117

Query: 142 KDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDS 201
           K  E         K    K+   EE            A+ +      +            
Sbjct: 118 KQAEE------AAKQAALKQKQAEEAAAKAAAAAKAKAEAEA-----KRAAAAAKKAAAE 166

Query: 202 KDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDE 261
             KK + E +    ++ K  A+           K K  ++  +K +   +K+  +E+   
Sbjct: 167 AKKKAEAEAAKKAAAEAKKKAEAEAAAKAAAEAKKKAEAEAKKKAAAEAKKKAAAEA-KA 225

Query: 262 ETDKTRGDKKQDSETPKKKKKTDEIEMK-----LLDFFPDQD 298
              K   + K  +E     K  ++         + D F   D
Sbjct: 226 AAAKAAAEAKAAAEKAAAAKAAEKAAAAKAAAEVDDLFGGLD 267


>gnl|CDD|218177 pfam04615, Utp14, Utp14 protein.  This protein is found to be part
           of a large ribonucleoprotein complex containing the U3
           snoRNA. Depletion of the Utp proteins impedes production
           of the 18S rRNA, indicating that they are part of the
           active pre-rRNA processing complex. This large RNP
           complex has been termed the small subunit (SSU)
           processome.
          Length = 728

 Score = 32.0 bits (73), Expect = 1.1
 Identities = 36/192 (18%), Positives = 74/192 (38%), Gaps = 24/192 (12%)

Query: 108 IQSLLKQAE--RRKQENERRNER----QVQLEREKEGEEFKDKETFVTSSYRKKLEEFKK 161
           ++  L+Q E  RRK E +  +E         E E E ++  D +       RKKL + K+
Sbjct: 304 LEEQLRQGEELRRKIEGKSVSEEDEDEDSDSEEEDEDDDEDDDDGENPWMLRKKLGKLKE 363

Query: 162 LDEEE--------RRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSS 213
            +++E        + M   E         ++    R L       E+  D++++ E S  
Sbjct: 364 GEDDEENSGLLSMKFMQRAEARKKEENDAEIEELRREL-----EGEEESDEEENEEPSKK 418

Query: 214 DESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQD 273
           +  + K   +  E  +       KK  K+ + + +  ++ +  E L++E +         
Sbjct: 419 NVGRRKFGPENGEKEAES-----KKLKKENKNEFKEKKESDEEEELEDEEEAKVEKVANK 473

Query: 274 SETPKKKKKTDE 285
                +K + +E
Sbjct: 474 LLKRSEKAQKEE 485



 Score = 30.8 bits (70), Expect = 2.2
 Identities = 31/226 (13%), Positives = 74/226 (32%), Gaps = 31/226 (13%)

Query: 81  DEVYDEIDKKKHDTLAAKKKGDKKPKYIQ-----SLLKQAERRKQENERRNERQVQLERE 135
           DE  DE D    +    +KK  K  +         LL     ++ E  ++ E   ++E  
Sbjct: 338 DEDDDEDDDDGENPWMLRKKLGKLKEGEDDEENSGLLSMKFMQRAEARKKEENDAEIEEL 397

Query: 136 KEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTT 195
           +   E + +E        +      K +   R+        +   ++             
Sbjct: 398 RR--ELEGEEESDEEENEEP----SKKNVGRRKFGPENGEKEAESKKLKK----ENKNEF 447

Query: 196 VGEEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDE---------------PIKHKKSS 240
             +++S ++++  +   +   K  +   +   ++  E                    KS+
Sbjct: 448 KEKKESDEEEELEDEEEAKVEKVANKLLKRSEKAQKEEEEEELDEENPWLKTTSSVGKSA 507

Query: 241 KKGEKQSRSYRKRNRSE-SLDEETDKTRGDKKQDSETPKKKKKTDE 285
           KK + + +S  K +++   + +   K +  KK++          DE
Sbjct: 508 KKQDSKKKSSSKLDKAANKISKAAVKVKKKKKKEKSIDLDDDLIDE 553



 Score = 29.3 bits (66), Expect = 7.1
 Identities = 41/227 (18%), Positives = 83/227 (36%), Gaps = 33/227 (14%)

Query: 54  QTNMAEKRQAKLDMERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKKGDKK---PKYIQS 110
           Q   A K++        L  +       E  +E D+++++  + K  G +K       + 
Sbjct: 380 QRAEARKKEENDAEIEELRRE------LEGEEESDEEENEEPSKKNVGRRKFGPENGEKE 433

Query: 111 LLKQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMD 170
              +  +++ +NE + +++   E E E EE    E  V +   K+ E+ +K +EEE    
Sbjct: 434 AESKKLKKENKNEFKEKKESDEEEELEDEEEAKVEK-VANKLLKRSEKAQKEEEEEE--- 489

Query: 171 MLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESKNKSIAKQSEGRST 230
              D  +   +   S                K  KK      S    +K+  K S+    
Sbjct: 490 --LDEENPWLKTTSS--------------VGKSAKKQDSKKKSSSKLDKAANKISKAAVK 533

Query: 231 DEPIKHKKSSKKGEK----QSRSYRKRNRSESLDEETDKTRGDKKQD 273
            +  K K+ S   +     +  S +     E  +++ +     K++D
Sbjct: 534 VKKKKKKEKSIDLDDDLIDEEDSIKLDVDDEEDEDDEELPFLFKQKD 580


>gnl|CDD|189762 pfam00901, Orbi_VP5, Orbivirus outer capsid protein VP5.
           cryoelectron microscopy indicates that VP5 is a trimer
           implying that there are 360 copies of VP5 per virion.
          Length = 507

 Score = 31.6 bits (72), Expect = 1.1
 Identities = 21/66 (31%), Positives = 36/66 (54%), Gaps = 8/66 (12%)

Query: 108 IQSLLKQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEER 167
           +Q  LK+ ER +Q+ E   E+  +   EK GE+ ++   F+         E K  +EEE+
Sbjct: 89  LQRKLKELER-EQKEEEVREKHNKKIIEKFGEDLEEVYKFMKG-------EAKVEEEEEK 140

Query: 168 RMDMLE 173
           +M++LE
Sbjct: 141 QMEILE 146


>gnl|CDD|219953 pfam08648, DUF1777, Protein of unknown function (DUF1777).  This is
           a family of eukaryotic proteins of unknown function.
           Some of the proteins in this family are putative nucleic
           acid binding proteins.
          Length = 158

 Score = 30.6 bits (69), Expect = 1.1
 Identities = 21/100 (21%), Positives = 46/100 (46%), Gaps = 5/100 (5%)

Query: 198 EEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSY-RKRNRS 256
              S+ + +         S+ +   ++S  RS     +  +S ++   +SRS  R+R+R 
Sbjct: 15  RGRSRSRDRRERRRERSRSRERDRRRRSRSRSPHRS-RRSRSPRRHRSRSRSPSRRRDRK 73

Query: 257 ESLDEETDKTRGDKKQ--DSETPKKKKKTDEIE-MKLLDF 293
              D++  + +  ++Q    E   + K  +E+E MK++ F
Sbjct: 74  RERDKDAREPKKRERQKLIKEEDLEGKSDEEVEMMKMMGF 113



 Score = 30.6 bits (69), Expect = 1.2
 Identities = 21/93 (22%), Positives = 44/93 (47%), Gaps = 3/93 (3%)

Query: 201 SKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLD 260
           S  + +    S S + + +   ++S  R  D   + +  S    ++SRS  +R+RS S  
Sbjct: 8   SPRRSRRRGRSRSRDRRERR-RERSRSRERDRRRRSRSRSPHRSRRSRS-PRRHRSRSRS 65

Query: 261 EETDKTRGDKKQ-DSETPKKKKKTDEIEMKLLD 292
               + R  ++  D+  PKK+++   I+ + L+
Sbjct: 66  PSRRRDRKRERDKDAREPKKRERQKLIKEEDLE 98


>gnl|CDD|227466 COG5137, COG5137, Histone chaperone involved in gene silencing
           [Transcription / Chromatin structure and dynamics].
          Length = 279

 Score = 31.1 bits (70), Expect = 1.2
 Identities = 26/169 (15%), Positives = 61/169 (36%), Gaps = 16/169 (9%)

Query: 119 KQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDV 178
           K E     E   +++ E    E   ++  VT         +   ++ +       D+ + 
Sbjct: 122 KLEKSDVEEPSEKVDEEDVEREILAEKPRVTRFNI----VWDNDEDNDEAPPAQPDVDNE 177

Query: 179 AKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPI---- 234
            +++          ++   EE+  ++     +   +   N+   +++EG    E +    
Sbjct: 178 EEERL--------EESDGREEEEDEEVGSDSYGEGNRELNEEEEEEAEGSDDGEDVVDYE 229

Query: 235 KHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQDSETPKKKKKT 283
             +   K+GE++       N  E   EE   +    + + E+P KK+K 
Sbjct: 230 GERIDKKQGEEEEMEEEVINLFEIEWEEESPSEEVPRNNEESPAKKQKV 278


>gnl|CDD|218440 pfam05110, AF-4, AF-4 proto-oncoprotein.  This family consists of
           AF4 (Proto-oncogene AF4) and FMR2 (Fragile X E mental
           retardation syndrome) nuclear proteins. These proteins
           have been linked to human diseases such as acute
           lymphoblastic leukaemia and mental retardation. The
           family also contains a Drosophila AF4 protein homologue
           Lilliputian which contains an AT-hook domain.
           Lilliputian represents a novel pair-rule gene that acts
           in cytoskeleton regulation, segmentation and
           morphogenesis in Drosophila.
          Length = 1154

 Score = 31.8 bits (72), Expect = 1.2
 Identities = 15/53 (28%), Positives = 22/53 (41%)

Query: 201 SKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKR 253
            K K K+ E +   ESK + + ++S   S      H  SS   E +  S  K 
Sbjct: 748 GKRKHKNDEEADKIESKKQRLEEKSSSCSPSSSSSHHHSSSNKESRKSSRNKE 800



 Score = 31.0 bits (70), Expect = 2.0
 Identities = 21/94 (22%), Positives = 29/94 (30%), Gaps = 7/94 (7%)

Query: 197 GEEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKS--SKKGEKQSRSYRKRN 254
            EE S      +  S    S NK   K S     +E +    S  S    K     RKR 
Sbjct: 768 LEEKSSSCSPSSSSSHHHSSSNKESRKSSR-NKEEEMLPSPSSPLSSSSPKPEHPSRKRP 826

Query: 255 RSESLDEETDKTRGDKK----QDSETPKKKKKTD 284
           R +     +              S +  K +KT+
Sbjct: 827 RRQEDTSSSSGPFSASSTKSSSKSSSTSKHRKTE 860


>gnl|CDD|113290 pfam04514, BTV_NS2, Bluetongue virus non-structural protein NS2.
           This family includes NS2 proteins from other members of
           the Orbivirus genus. NS2 is a non-specific
           single-stranded RNA-binding protein that forms large
           homomultimers and accumulates in viral inclusion bodies
           of infected cells. Three RNA binding regions have been
           identified in Bluetongue virus serotype 17 at residues
           2-11, 153-166 and 274-286. NS2 multimers also possess
           nucleotidyl phosphatase activity. The precise function
           of NS2 is not known, but it may be involved in the
           transport and condensation of viral mRNAs.
          Length = 363

 Score = 31.4 bits (71), Expect = 1.3
 Identities = 16/60 (26%), Positives = 31/60 (51%), Gaps = 7/60 (11%)

Query: 117 RRKQENERRNERQVQLER---EKEGEEFKDKET----FVTSSYRKKLEEFKKLDEEERRM 169
           RR    E+  E  V+ +    ++ GE+ +D ET    ++TS Y +++ E +K+ +E    
Sbjct: 239 RRDLRKEQELEENVERDSDDEDEHGEDSEDGETKPESYITSEYIERISEIRKMKDERLSS 298


>gnl|CDD|233496 TIGR01622, SF-CC1, splicing factor, CC1-like family.  This model
           represents a subfamily of RNA splicing factors including
           the Pad-1 protein (N. crassa), CAPER (M. musculus) and
           CC1.3 (H.sapiens). These proteins are characterized by
           an N-terminal arginine-rich, low complexity domain
           followed by three (or in the case of 4 H. sapiens
           paralogs, two) RNA recognition domains (rrm: pfam00706).
           These splicing factors are closely related to the U2AF
           splicing factor family (TIGR01642). A homologous gene
           from Plasmodium falciparum was identified in the course
           of the analysis of that genome at TIGR and was included
           in the seed.
          Length = 457

 Score = 31.4 bits (71), Expect = 1.3
 Identities = 13/82 (15%), Positives = 31/82 (37%), Gaps = 8/82 (9%)

Query: 201 SKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLD 260
           +  ++ D      + S+ +S ++    R  D   +     ++G  +SRS  +  R     
Sbjct: 12  NDTRRSD---KGRERSRRRSRSRDRSRRRRD---RDYYRGRRGRSRSRSPNRYYRPRGDR 65

Query: 261 --EETDKTRGDKKQDSETPKKK 280
                D+  G   ++  T  ++
Sbjct: 66  SYRRDDRRSGRNTKEPLTEAER 87


>gnl|CDD|220383 pfam09756, DDRGK, DDRGK domain.  This is a family of proteins of
           approximately 300 residues, found in plants and
           vertebrates. They contain a highly conserved DDRGK
           motif.
          Length = 189

 Score = 30.8 bits (70), Expect = 1.4
 Identities = 23/121 (19%), Positives = 58/121 (47%), Gaps = 5/121 (4%)

Query: 57  MAEKRQAKLDMERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAE 116
           +  K++AKL+ ++A  +     + +E   E  KK  +    ++K +++ +  +   K+ E
Sbjct: 3   IGAKKRAKLEEKQARRQQ---REAEEEEREERKKLEEKREGERKEEEELEEEREKKKEEE 59

Query: 117 RRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDE--EERRMDMLED 174
            RK+  E+  + Q + E+ K     +++ T   S+  +  E  +      + +++  LE+
Sbjct: 60  ERKEREEQARKEQEEYEKLKSSFVVEEEGTDKLSADEESNELLEDFINYIKLKKVVNLEE 119

Query: 175 I 175
           +
Sbjct: 120 L 120


>gnl|CDD|235334 PRK05035, PRK05035, electron transport complex protein RnfC;
           Provisional.
          Length = 695

 Score = 31.5 bits (72), Expect = 1.6
 Identities = 37/194 (19%), Positives = 61/194 (31%), Gaps = 38/194 (19%)

Query: 113 KQAERRKQENERRNERQVQLEREKEGEEFKDKET--------------FVTSSYRKKLEE 158
           K+AE  K   E R  R   LEREK   E + K+                +     KK   
Sbjct: 446 KKAEEAKARFEARQAR---LEREKAAREARHKKAAEARAAKDKDAVAAALARVKAKKAAA 502

Query: 159 FKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESKN 218
            + +  +        D   V   ++         Q       + D KK    ++   +K 
Sbjct: 503 TQPIVIKA---GARPDNSAVIAAREARKAQARARQAEKQAAAAADPKKAAVAAAIARAKA 559

Query: 219 KSIAKQSEGRSTDEPIKHKKSS----------KKGEKQSRSYRKRNRSESLDEETDKTRG 268
           K  A+Q+     +E +  KK++          KK  +Q+        + +  EE      
Sbjct: 560 KKAAQQAANAEAEEEVDPKKAAVAAAIARAKAKKAAQQA--------ASAEPEEQVAEVD 611

Query: 269 DKKQDSETPKKKKK 282
            KK        + K
Sbjct: 612 PKKAAVAAAIARAK 625


>gnl|CDD|214366 CHL00102, rps20, ribosomal protein S20.
          Length = 93

 Score = 29.0 bits (65), Expect = 1.8
 Identities = 34/103 (33%), Positives = 41/103 (39%), Gaps = 33/103 (32%)

Query: 10  ARNKSTNQIVAIKRILIRRR-------HTSSVKTDVMREIKTLLSVSDRYEQTNMAEKRQ 62
           A NKS     AIKRI I  R       + SSVKT + + +K L          N  +K Q
Sbjct: 2   ANNKS-----AIKRIKISERNRLRNKAYKSSVKTLIKKYLKNLEDYKTSPNSNNK-KKVQ 55

Query: 63  AKLDMERALAEDPTVYQYDEVYDEIDK--KK---HDTLAAKKK 100
             L                 VY +IDK  KK   H   AA+KK
Sbjct: 56  ETL---------------SSVYSKIDKAVKKGVFHKNTAARKK 83


>gnl|CDD|133207 cd05076, PTK_Tyk2_rpt1, Pseudokinase (repeat 1) domain of the
           Protein Tyrosine Kinase, Tyrosine kinase 2.  Protein
           Tyrosine Kinase (PTK) family; Tyrosine kinase 2 (Tyk2);
           pseudokinase domain (repeat 1). The PTKc (catalytic
           domain) family to which this subfamily belongs, is part
           of a larger superfamily that includes the catalytic
           domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. Tyk2 is a
           member of the Janus kinase (Jak) subfamily of proteins,
           which are cytoplasmic (or nonreceptor) tyr kinases
           containing an N-terminal FERM domain, followed by a Src
           homology 2 (SH2) domain, a pseudokinase domain, and a
           C-terminal tyr kinase domain. The pseudokinase domain
           shows similarity to tyr kinases but lacks crucial
           residues for catalytic activity and ATP binding. It
           modulates the kinase activity of the C-terminal
           catalytic domain. Jaks are crucial for cytokine receptor
           signaling. They are activated by autophosphorylation
           upon cytokine-induced receptor aggregation, and
           subsequently trigger downstream signaling events such as
           the phosphorylation of signal transducers and activators
           of transcription (STATs). Tyk2 is widely expressed in
           many tissues. It is involved in signaling via the
           cytokine receptors IFN-alphabeta, IL-6, IL-10, IL-12,
           IL-13, and IL-23. It mediates cell surface urokinase
           receptor (uPAR) signaling and plays a role in modulating
           vascular smooth muscle cell (VSMC) functional behavior
           in response to injury. Tyk2 is also important in
           dendritic cell function and T helper (Th)1 cell
           differentiation. A homozygous mutation of Tyk2 was found
           in a patient with hyper-IgE syndrome (HIES), a primary
           immunodeficiency characterized by recurrent skin
           abscesses, pneumonia, and elevated serum IgE. This
           suggests that Tyk2 may play important roles in multiple
           cytokine signaling involved in innate and adaptive
           immunity.
          Length = 274

 Score = 30.6 bits (69), Expect = 2.0
 Identities = 44/171 (25%), Positives = 70/171 (40%), Gaps = 27/171 (15%)

Query: 358 LVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHRDLKPANLLIDK 416
           +V E ++ G L   L  +K  + +    T  Q L   +SYL  K ++H ++   N+L+ +
Sbjct: 93  MVEEFVEHGPLDVCLRKEKGRVPVAWKITVAQQLASALSYLEDKNLVHGNVCAKNILLAR 152

Query: 417 AGI-------LKIADFG-----LARSFDVERWGQYTPEVASRWYRAPELLYASRCYDQSV 464
            G+       +K++D G     L+R   VER     P     W  APE +        + 
Sbjct: 153 LGLAEGTSPFIKLSDPGVSFTALSREERVER----IP-----WI-APECVPGGNSLSTAA 202

Query: 465 DLWAVGCILGEMYTN--APLFPGESDIEQLAMVLHKLGTPTEDSWPGLKDL 513
           D W+ G  L E+  +   PL    +  E+      K   P E S   L  L
Sbjct: 203 DKWSFGTTLLEICFDGEVPL-KERTPSEKERFYEKKHRLP-EPSCKELATL 251


>gnl|CDD|235850 PRK06669, fliH, flagellar assembly protein H; Validated.
          Length = 281

 Score = 30.8 bits (70), Expect = 2.0
 Identities = 23/84 (27%), Positives = 41/84 (48%), Gaps = 7/84 (8%)

Query: 97  AKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREK---EGEEFKDKETFVTSSYR 153
             KK D+    I+ L  Q ER ++E E   ER ++  + +   EG E   +E       R
Sbjct: 83  LLKKTDEASSIIEKLQMQIEREQEEWEEELERLIEEAKAEGYEEGYEKGREEGL--EEVR 140

Query: 154 KKLEEFKKLDEE--ERRMDMLEDI 175
           + +E+  K+ E+  ++R ++LE  
Sbjct: 141 ELIEQLNKIIEKLIKKREEILESS 164


>gnl|CDD|220102 pfam09073, BUD22, BUD22.  BUD22 has been shown in yeast to be a
           nuclear protein involved in bud-site selection. It plays
           a role in positioning the proximal bud pole signal. More
           recently it has been shown to be involved in ribosome
           biogenesis.
          Length = 424

 Score = 31.0 bits (70), Expect = 2.0
 Identities = 40/188 (21%), Positives = 68/188 (36%), Gaps = 13/188 (6%)

Query: 106 KYIQSLLKQAERR-KQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDE 164
           K ++++L+       +      + +    ++K  +  K +     SS +   EE +  DE
Sbjct: 123 KPVKNVLESIMEGLDKILGIETKAKKGKAKKKTKKSKKKEA--KESSDKDDEEESESEDE 180

Query: 165 EERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKD--------KKKDTEHSSSDES 216
            +      +D  D  ++   S  Y       V   D ++          +DT  S SDES
Sbjct: 181 SKSEESAEDDSDDEEEEDSDSEDYSQYDGMLVDSSDEEEGEEAPSINYNEDTSESESDES 240

Query: 217 KNKSIAKQSEGRS--TDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQDS 274
            ++    +S   S  +  P K  K  K       S      S S DE+ D    D  Q  
Sbjct: 241 DSEISESRSVSDSEESSPPSKKPKEKKTSSTFLPSLMGGYFSGSEDEDDDDEDIDPDQVV 300

Query: 275 ETPKKKKK 282
           + P K+K 
Sbjct: 301 KKPVKRKN 308


>gnl|CDD|133195 cd05064, PTKc_EphR_A10, Catalytic domain of the Protein Tyrosine
           Kinase, Ephrin Receptor A10.  Protein Tyrosine Kinase
           (PTK) family; Ephrin Receptor (EphR) subfamily; EphA10
           receptor; catalytic (c) domain. The PTKc family is part
           of a larger superfamily that includes the catalytic
           domains of other kinases such as protein
           serine/threonine kinases, RIO kinases, and
           phosphoinositide 3-kinase (PI3K). PTKs catalyze the
           transfer of the gamma-phosphoryl group from ATP to
           tyrosine (tyr) residues in protein substrates. EphRs
           comprise the largest subfamily of receptor tyr kinases
           (RTKs). In general, class EphA receptors bind
           GPI-anchored ephrin-A ligands. There are ten vertebrate
           EphA receptors (EphA1-10), which display promiscuous
           interactions with six ephrin-A ligands. EphRs contain an
           ephrin binding domain and two fibronectin repeats
           extracellularly, a transmembrane segment, and a
           cytoplasmic tyr kinase domain. Binding of the ephrin
           ligand to EphR requires cell-cell contact since both are
           anchored to the plasma membrane. The resulting
           downstream signals occur bidirectionally in both
           EphR-expressing cells (forward signaling) and
           ephrin-expressing cells (reverse signaling). EphA10,
           which contains an inactive tyr kinase domain, may
           function to attenuate signals of co-clustered active
           receptors. EphA10 is mainly expressed in the testis.
           Ephrin/EphR interaction results in cell-cell repulsion
           or adhesion, making it important in neural development
           and plasticity, cell morphogenesis, cell-fate
           determination, embryonic development, tissue patterning,
           and angiogenesis.
          Length = 266

 Score = 30.7 bits (69), Expect = 2.1
 Identities = 29/135 (21%), Positives = 57/135 (42%), Gaps = 2/135 (1%)

Query: 343 IVKLLDFFPDQDTVCLVFEHMDSG-LWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKF 401
           IV+L       +T+ +V E+M +G L   L   +  L    +   +  L  G+ YL    
Sbjct: 68  IVRLEGVITRGNTMMIVTEYMSNGALDSFLRKHEGQLVAGQLMGMLPGLASGMKYLSEMG 127

Query: 402 IMHRDLKPANLLIDKAGILKIADFGLARSFDVERWGQYTPEVASRWYRAPELLYASRCYD 461
            +H+ L    +L++   + KI+ F   +    E         +   + APE +     + 
Sbjct: 128 YVHKGLAAHKVLVNSDLVCKISGFRRLQEDKSEAIYTTMSGKSPVLWAAPEAIQYHH-FS 186

Query: 462 QSVDLWAVGCILGEM 476
            + D+W+ G ++ E+
Sbjct: 187 SASDVWSFGIVMWEV 201


>gnl|CDD|213352 cd12792, RasGAP_plexin_B2, Ras-GTPase Activating Domain of
           plexin-B2.  Plexins form a conserved family of
           transmembrane receptors for semaphorins and may be the
           ancestors of semaphorins. Plexins are divided into four
           types (A-D) according to sequence similarity. Plexin-B2
           serves as the receptor of Sema4C and Sema4G. By
           signaling the effect of Sema4C and Sema4G, the plexin-B2
           receptor is critically involved in neural tube closure
           and cerebellar granule cell development. Mice lacking
           Plexin-B2 demonstrated defects in closure of the neural
           tube and disorganization of the embryonic brain. In
           developing kidney, Sema4C and Plexin-B2 signaling
           modulates ureteric branching. Plexin-B2 is expressed
           both in the pretubular aggregates and the ureteric
           epithelium in the developing kidney. Deletion of
           Plexin-B2 results in renal hypoplasia and occasional
           double ureters. Plexins contain a C-terminal RasGAP
           domain, which functions as an enhancer of the hydrolysis
           of GTP that is bound to Ras-GTPases. Plexins display GAP
           activity towards the Ras homolog Rap. Although the Rho
           (Ras homolog) GTPases are most closely related to
           members of the Ras family, RhoGAP and RasGAP show no
           sequence homology at their amino acid level. RasGTPases
           function as molecular switches in a large number of of
           signaling pathways. When bound to GTP they are in the on
           state and when bound to GDP they are in the off state.
           The RasGAP domain speeds up the hydrolysis of GTP in
           Ras-like proteins acting as a negative regulator.
          Length = 400

 Score = 30.7 bits (69), Expect = 2.3
 Identities = 24/92 (26%), Positives = 44/92 (47%), Gaps = 5/92 (5%)

Query: 10  ARNKSTNQIVAIKRILIRRRHTSSVKTDVMREIKTLLSVSDRYEQTNMAEKRQAKLDMER 69
           +R+  +N+++  K I   ++       D  + I+ ++ VSD+   T++AE  +A  D   
Sbjct: 294 SRDSPSNKLLYAKEISTYKKMVD----DYYKGIRQMVPVSDQDMNTHLAEISRAHTDKLN 349

Query: 70  ALAEDPTVYQY-DEVYDEIDKKKHDTLAAKKK 100
                  +YQY  + YDEI     +  AA+ K
Sbjct: 350 TQVALHQLYQYASKYYDEIINSLEEDPAAQSK 381


>gnl|CDD|227492 COG5163, NOP7, Protein required for biogenesis of the 60S ribosomal
           subunit [Translation, ribosomal structure and
           biogenesis].
          Length = 591

 Score = 30.8 bits (69), Expect = 2.4
 Identities = 24/78 (30%), Positives = 34/78 (43%), Gaps = 5/78 (6%)

Query: 206 KDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSK--KGEKQSRSYRKRNRSESLDEET 263
           K +E S +D+  NKS  K+   R  DE  + KK        KQ + Y+K   S +  EE 
Sbjct: 514 KYSETSEADKDVNKSKNKK---RKVDEEEEEKKLKMIMMSNKQKKLYKKMKYSNAKKEEQ 570

Query: 264 DKTRGDKKQDSETPKKKK 281
            +    KK+     KK  
Sbjct: 571 AENLKKKKKQIAKQKKLD 588


>gnl|CDD|234352 TIGR03779, Bac_Flav_CT_M, Bacteroides conjugative transposon TraM
           protein.  Members of this protein family are designated
           TraM and are found in a proposed transfer region of a
           class of conjugative transposon found in the Bacteroides
           lineage [Cellular processes, DNA transformation].
          Length = 410

 Score = 30.5 bits (69), Expect = 2.6
 Identities = 30/147 (20%), Positives = 51/147 (34%), Gaps = 7/147 (4%)

Query: 147 FVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKK 206
           F+ S +       ++   EE       DI    K + + G     Y+    E+  KDKK+
Sbjct: 18  FLGSLWLIFAPSEEEDAAEEETKGFNADIPQ-PKDEGIIGDKMKAYEQEALEQKQKDKKR 76

Query: 207 DTEH-----SSSDESKNKSIAKQSEGRS-TDEPIKHKKSSKKGEKQSRSYRKRNRSESLD 260
             +        SD+      +  S      DEP +   S +     + +YR  NR     
Sbjct: 77  TLQDLADSFEKSDKESQDYSSSDSGFDEEPDEPAETAGSLRPIRSSAAAYRDINRELGSF 136

Query: 261 EETDKTRGDKKQDSETPKKKKKTDEIE 287
            E  KT  +K+   E  + + +     
Sbjct: 137 YEYPKTDEEKELLREVEELESRLATEP 163


>gnl|CDD|217393 pfam03154, Atrophin-1, Atrophin-1 family.  Atrophin-1 is the
           protein product of the dentatorubral-pallidoluysian
           atrophy (DRPLA) gene. DRPLA OMIM:125370 is a progressive
           neurodegenerative disorder. It is caused by the
           expansion of a CAG repeat in the DRPLA gene on
           chromosome 12p. This results in an extended
           polyglutamine region in atrophin-1, that is thought to
           confer toxicity to the protein, possibly through
           altering its interactions with other proteins. The
           expansion of a CAG repeat is also the underlying defect
           in six other neurodegenerative disorders, including
           Huntington's disease. One interaction of expanded
           polyglutamine repeats that is thought to be pathogenic
           is that with the short glutamine repeat in the
           transcriptional coactivator CREB binding protein, CBP.
           This interaction draws CBP away from its usual nuclear
           location to the expanded polyglutamine repeat protein
           aggregates that are characteristic of the polyglutamine
           neurodegenerative disorders. This interferes with
           CBP-mediated transcription and causes cytotoxicity.
          Length = 979

 Score = 30.4 bits (68), Expect = 2.9
 Identities = 17/57 (29%), Positives = 34/57 (59%), Gaps = 1/57 (1%)

Query: 95  LAAKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSS 151
           LA+ K   K+ + ++   ++AE++ +E ER  E++ + ERE+E E   ++    +SS
Sbjct: 572 LASSKLAKKREEAVEKAKREAEQKARE-EREREKEKEKEREREREREAERAAKASSS 627


>gnl|CDD|217935 pfam04158, Sof1, Sof1-like domain.  Sof1 is essential for cell
           growth and is a component of the nucleolar rRNA
           processing machinery.
          Length = 88

 Score = 28.0 bits (63), Expect = 3.1
 Identities = 11/35 (31%), Positives = 23/35 (65%)

Query: 103 KKPKYIQSLLKQAERRKQENERRNERQVQLEREKE 137
           KK + I+  +K+A++RK+EN R++ +   +  + E
Sbjct: 48  KKAQKIKREMKEAKKRKEENRRKHSKPGSVPPKPE 82


>gnl|CDD|173359 PTZ00064, PTZ00064, histone acetyltransferase; Provisional.
          Length = 552

 Score = 30.4 bits (68), Expect = 3.1
 Identities = 15/71 (21%), Positives = 34/71 (47%), Gaps = 3/71 (4%)

Query: 211 SSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDK 270
            SS+  K ++    S   + +E +  +  S + +++  + R  +   S++E +DKT  + 
Sbjct: 9   RSSNFQKQQANNTPSNTSNNNEAVSSELISSENQRKKTNARIYS---SIEEHSDKTLDEC 65

Query: 271 KQDSETPKKKK 281
           K+D      +K
Sbjct: 66  KEDEAVNTIEK 76


>gnl|CDD|179385 PRK02224, PRK02224, chromosome segregation protein; Provisional.
          Length = 880

 Score = 30.4 bits (69), Expect = 3.3
 Identities = 24/87 (27%), Positives = 38/87 (43%), Gaps = 19/87 (21%)

Query: 107 YIQSLLKQAERRKQENER----------RNERQVQLEREKEGEEFK----DKETFVTSSY 152
               + +  E+R+   E           + ER+ +LE E +    +    DKE      Y
Sbjct: 604 AEDEIERLREKREALAELNDERRERLAEKRERKRELEAEFDEARIEEAREDKERAEE--Y 661

Query: 153 RKKLEEFKKLDE-EERRMDMLEDIGDV 178
            +++EE  KLDE  E R D+  +IG V
Sbjct: 662 LEQVEE--KLDELREERDDLQAEIGAV 686


>gnl|CDD|240403 PTZ00400, PTZ00400, DnaK-type molecular chaperone; Provisional.
          Length = 663

 Score = 30.2 bits (68), Expect = 3.3
 Identities = 29/148 (19%), Positives = 68/148 (45%), Gaps = 19/148 (12%)

Query: 87  IDK---KKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERR-------NERQVQL-ERE 135
           +DK   KK + +  +  G    + I+ ++K+AE  K+++E++       NE +  +   E
Sbjct: 523 VDKSTGKKQE-ITIQSSGGLSDEEIEKMVKEAEEYKEQDEKKKELVDAKNEAETLIYSVE 581

Query: 136 KEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQ-QDLSGFYRHLYQT 194
           K+  + KDK   ++ + + +L++           + ++ I D  KQ Q+ S     + Q 
Sbjct: 582 KQLSDLKDK---ISDADKDELKQKITKLRSTLSSEDVDSIKDKTKQLQEASW---KISQQ 635

Query: 195 TVGEEDSKDKKKDTEHSSSDESKNKSIA 222
              + +S +++ +   +S +  +    A
Sbjct: 636 AYKQGNSDNQQSEQSTNSEESEEKNDNA 663


>gnl|CDD|172740 PRK14252, PRK14252, phosphate ABC transporter ATP-binding protein;
           Provisional.
          Length = 265

 Score = 30.0 bits (67), Expect = 3.4
 Identities = 18/66 (27%), Positives = 31/66 (46%), Gaps = 3/66 (4%)

Query: 26  IRRRHTSSVKT-DVMREIKTLLSVSDRYEQT--NMAEKRQAKLDMERALAEDPTVYQYDE 82
           ++RR     +  + +R       V DR      N++  +Q +L + RALA DP +  +DE
Sbjct: 128 VKRRSILEERVENALRNAALWDEVKDRLGDLAFNLSGGQQQRLCIARALATDPEILLFDE 187

Query: 83  VYDEID 88
               +D
Sbjct: 188 PTSALD 193


>gnl|CDD|219395 pfam07387, Seadorna_VP7, Seadornavirus VP7.  This family consists
           of several Seadornavirus specific VP7 proteins of around
           305 residues in length. The function of this family is
           unknown. However, it appears to be distantly related to
           protein kinases.
          Length = 308

 Score = 29.8 bits (67), Expect = 4.0
 Identities = 14/38 (36%), Positives = 19/38 (50%), Gaps = 2/38 (5%)

Query: 389 MLLKGVSYLHGK--FIMHRDLKPANLLIDKAGILKIAD 424
             LK +   H +    +H D  P NL+ DK G LK+ D
Sbjct: 149 AGLKDLMDFHSESGGTLHGDCNPQNLMCDKNGYLKLVD 186


>gnl|CDD|240388 PTZ00372, PTZ00372, endonuclease 4-like protein; Provisional.
          Length = 413

 Score = 29.7 bits (67), Expect = 4.2
 Identities = 20/79 (25%), Positives = 36/79 (45%), Gaps = 4/79 (5%)

Query: 205 KKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETD 264
             +    S +     S  ++    +T    K KK  K  E + +S +K+ + +   ++  
Sbjct: 28  YSNVLVLSKEILSTFS--EEENKVATTSTKKDKKEDKNNESKKKSEKKKKKKKE--KKEP 83

Query: 265 KTRGDKKQDSETPKKKKKT 283
           K+ G+ K   +TPKK KKT
Sbjct: 84  KSEGETKLGFKTPKKSKKT 102


>gnl|CDD|233758 TIGR02169, SMC_prok_A, chromosome segregation protein SMC,
           primarily archaeal type.  SMC (structural maintenance of
           chromosomes) proteins bind DNA and act in organizing and
           segregating chromosomes for partition. SMC proteins are
           found in bacteria, archaea, and eukaryotes. It is found
           in a single copy and is homodimeric in prokaryotes, but
           six paralogs (excluded from this family) are found in
           eukarotes, where SMC proteins are heterodimeric. This
           family represents the SMC protein of archaea and a few
           bacteria (Aquifex, Synechocystis, etc); the SMC of other
           bacteria is described by TIGR02168. The N- and
           C-terminal domains of this protein are well conserved,
           but the central hinge region is skewed in composition
           and highly divergent [Cellular processes, Cell division,
           DNA metabolism, Chromosome-associated proteins].
          Length = 1164

 Score = 30.0 bits (68), Expect = 4.6
 Identities = 32/215 (14%), Positives = 84/215 (39%), Gaps = 15/215 (6%)

Query: 86  EIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKEGEEFKDKE 145
            +D+   +   A +K  +  K I+ L ++ E+ K+  E   E    LE+E E  + + KE
Sbjct: 703 RLDELSQELSDASRKIGEIEKEIEQLEQEEEKLKERLEELEEDLSSLEQEIENVKSELKE 762

Query: 146 --------TFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQ-QDLSGFYRHLYQTTV 196
                           + L + +      R  ++  ++  + ++   +    R + Q   
Sbjct: 763 LEARIEELEEDLHKLEEALNDLEARLSHSRIPEIQAELSKLEEEVSRIEARLREIEQ--- 819

Query: 197 GEEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRS 256
            + +    +K+       E + + I  + + +S ++ I    + KK E +          
Sbjct: 820 -KLNRLTLEKEYLEKEIQELQEQRIDLKEQIKSIEKEI-ENLNGKKEELEEELEELEAAL 877

Query: 257 ESLDEETDKTRGD-KKQDSETPKKKKKTDEIEMKL 290
             L+      + +  + +++  + ++K +E+E ++
Sbjct: 878 RDLESRLGDLKKERDELEAQLRELERKIEELEAQI 912


>gnl|CDD|198176 cd09920, SH2_Cbl-b_TKB, Src homology 2 (SH2) domain found in the
           Cbl-b TKB domain.  SH2 found in the Cbl-b TKB domain.
           The Cbl (for Casitas B-lineage lymphoma) family of E3
           ubiquitin ligases contains three members Cbl, Cbl-b and
           Cbl-c. The founding member Cbl was discovered first as
           the oncogenic protein v-Cbl, a Gag-fusion transforming
           protein of Cas NS-1 retrovirus, which causes pre- and
           pro-B lymphomas in mice. The N-terminus of the Cbl
           proteins is composed of a tyrosine kinase-binding (TKB)
           domain, also called phosphotyrosine binding (PTB)
           domain, a short linker region and the RING-type zinc
           finger.  In addition, Cbl and Cbl-b contain a leucine
           zipper motif and a proline-rich domain in the
           C-terminus. The TKB domain consists of a four-helix
           bundle (4H), a calcium-binding EF hand and a divergent
           SH2 domain. Cbl-b plays a role in early hematopoietic
           development and is a negative regulator of T-cell
           receptor, B-cell receptor and high affinity
           immunoglobulin epsilon receptor signal transduction
           pathways. It also negatively regulates insulin-like
           growth factor 1 signaling during muscle atrophy caused
           by unloading and is involved in EGFR ubiquitination and
           internalization. Diseases associated with defects in
           Cbl-b include: multiple sclerosis, autoimmune diseases,
           including type 1 diabetes, and a craniofacial phenotype.
           In general SH2 domains are involved in signal
           transduction. They typically bind pTyr-containing
           ligands via two surface pockets, a pTyr and hydrophobic
           binding pocket, allowing proteins with SH2 domains to
           localize to tyrosine phosphorylated sites.
          Length = 97

 Score = 27.8 bits (62), Expect = 4.9
 Identities = 12/32 (37%), Positives = 15/32 (46%), Gaps = 3/32 (9%)

Query: 366 GLWEL---LHDKKIHLTIPHVKTYMQMLLKGV 394
           G W +     D KI  TIP  K+  Q L+ G 
Sbjct: 46  GQWAIGYVTADGKILQTIPQNKSLCQALIDGS 77


>gnl|CDD|227615 COG5296, COG5296, Transcription factor involved in TATA site
           selection and in elongation by RNA polymerase II
           [Transcription].
          Length = 521

 Score = 29.6 bits (66), Expect = 4.9
 Identities = 21/96 (21%), Positives = 40/96 (41%), Gaps = 12/96 (12%)

Query: 81  DEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREK---- 136
                   + +  T AA++K  K       LL+  + R++E    +ER ++L+R K    
Sbjct: 125 CTDTRRSTRYEPLTSAAEEKKKK-------LLELKKTREREERLYSERHIELQRFKDYKE 177

Query: 137 -EGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDM 171
            E  E   +E +  S   + +E+  + D+     D 
Sbjct: 178 LEESEQGLQEEYTPSYAEEAVEDISRTDDFAELYDF 213


>gnl|CDD|226168 COG3642, COG3642, Mn2+-dependent serine/threonine protein kinase
           [Signal transduction mechanisms].
          Length = 204

 Score = 29.2 bits (66), Expect = 5.0
 Identities = 23/84 (27%), Positives = 37/84 (44%), Gaps = 10/84 (11%)

Query: 346 LLDFFPDQDTVCLVFEHMDSGLWELLHDKKIHLTIPHVKTYMQMLLKGVSYLHGKFIMHR 405
           + D  PD     +V E+++    ELL D             ++ + + V  LH   I+H 
Sbjct: 66  VYDVDPDNGL--IVMEYIEG---ELLKD----ALEEARPDLLREVGRLVGKLHKAGIVHG 116

Query: 406 DLKPANLLIDKAGILKIADFGLAR 429
           DL  +N+++    I  I DFGL  
Sbjct: 117 DLTTSNIILSGGRIYFI-DFGLGE 139


>gnl|CDD|219124 pfam06658, DUF1168, Protein of unknown function (DUF1168).  This
           family consists of several hypothetical eukaryotic
           proteins of unknown function.
          Length = 142

 Score = 28.5 bits (64), Expect = 5.1
 Identities = 16/48 (33%), Positives = 24/48 (50%), Gaps = 11/48 (22%)

Query: 118 RKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEE 165
           R++E ER      + ++E E EEF           ++K EE K+ DEE
Sbjct: 45  RRREYERLELMDEKWKKETEDEEF-----------QQKREEKKRKDEE 81


>gnl|CDD|130041 TIGR00968, 3a0106s01, sulfate ABC transporter, ATP-binding protein.
            [Transport and binding proteins, Anions].
          Length = 237

 Score = 29.0 bits (65), Expect = 5.2
 Identities = 21/67 (31%), Positives = 34/67 (50%), Gaps = 3/67 (4%)

Query: 26  IRRRHTSSVKTDV--MREIKTLLSVSDRYEQTNMAEKRQAKLDMERALAEDPTVYQYDEV 83
           IR+   + +K  V  + E+  L  + DRY       +RQ ++ + RALA +P V   DE 
Sbjct: 99  IRKHPKAKIKARVEELLELVQLEGLGDRYPNQLSGGQRQ-RVALARALAVEPQVLLLDEP 157

Query: 84  YDEIDKK 90
           +  +D K
Sbjct: 158 FGALDAK 164


>gnl|CDD|227446 COG5116, RPN2, 26S proteasome regulatory complex component
           [Posttranslational modification, protein turnover,
           chaperones].
          Length = 926

 Score = 29.5 bits (66), Expect = 5.2
 Identities = 13/48 (27%), Positives = 18/48 (37%)

Query: 198 EEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEK 245
           E+   DK+   E  S +    +   KQ E +  D P       KK  K
Sbjct: 803 EKGPNDKEIKIESPSVETEGERCTIKQREEKGIDAPAILNVKKKKPYK 850


>gnl|CDD|222160 pfam13476, AAA_23, AAA domain. 
          Length = 204

 Score = 29.1 bits (65), Expect = 5.4
 Identities = 17/111 (15%), Positives = 45/111 (40%)

Query: 64  KLDMERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENE 123
            ++  R L +         + + ++  +      +     K      L    ER ++   
Sbjct: 91  LIEESRELTKKKGKKVKKSILEIVEIDELQEFIDELLKSDKEILPLLLYLGQERLEELKF 150

Query: 124 RRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLED 174
           +R E++ +LE  ++  E  + E  +     ++ E+ K+L+E +  ++ L +
Sbjct: 151 KRKEKKERLEELEKELEELEDEKDLLEKLLEEKEKKKELEELKEELEELLE 201


>gnl|CDD|225714 COG3173, COG3173, Predicted aminoglycoside phosphotransferase
           [General function prediction only].
          Length = 321

 Score = 29.3 bits (66), Expect = 5.4
 Identities = 10/27 (37%), Positives = 16/27 (59%)

Query: 402 IMHRDLKPANLLIDKAGILKIADFGLA 428
           ++H D +P NL+ID      + D+ LA
Sbjct: 200 LVHGDYRPGNLIIDPGRPTGVLDWELA 226


>gnl|CDD|224400 COG1483, COG1483, Predicted ATPase (AAA+ superfamily) [General
           function prediction only].
          Length = 774

 Score = 29.3 bits (66), Expect = 6.0
 Identities = 33/172 (19%), Positives = 53/172 (30%), Gaps = 24/172 (13%)

Query: 78  YQYDEVYDEIDKKKHDTLAAK----KKGDKKPKYIQSLLKQ--AERRKQENERRNERQVQ 131
              D    EI ++  DT   K       D K + ++ LL    + RR   N    E    
Sbjct: 551 KAGDVNVAEIPQELRDTPEYKLEVIVDKDVKRRLLELLLGFIASGRRTYSNTVLVEY--- 607

Query: 132 LEREKEGEEFKDKETFVTSSYRKKLEEFKKL---------DEEERRMDMLEDIGDVAKQQ 182
                E EE        T+      E  K +         D EE   + +  IG+    +
Sbjct: 608 -----EAEEILSILEEETARVLACDEVMKTIKEKYKKYGEDVEEISENEVRKIGE-KAVE 661

Query: 183 DLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPI 234
           DL   ++  +              +   S +   +N   A  S G+  +E  
Sbjct: 662 DLEEQFKDSFGRVAYPVKVGGVGSEAPASDASNVENVYSALVSRGKIAEEFD 713


>gnl|CDD|223520 COG0443, DnaK, Molecular chaperone [Posttranslational modification,
           protein turnover, chaperones].
          Length = 579

 Score = 29.2 bits (66), Expect = 6.1
 Identities = 16/73 (21%), Positives = 32/73 (43%), Gaps = 12/73 (16%)

Query: 105 PKYIQSLLKQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDE 164
            + I+ +++ AE     +++  E    +E   E E        +  S  K L+E  K+ E
Sbjct: 485 DEEIERMVEDAEANAALDKKFRE---LVEARNEAES-------LIYSLEKALKEIVKVSE 534

Query: 165 EERR--MDMLEDI 175
           EE+    + + D+
Sbjct: 535 EEKEKIEEAITDL 547


>gnl|CDD|191716 pfam07263, DMP1, Dentin matrix protein 1 (DMP1).  This family
           consists of several mammalian dentin matrix protein 1
           (DMP1) sequences. The dentin matrix acidic
           phosphoprotein 1 (DMP1) gene has been mapped to human
           chromosome 4q21. DMP1 is a bone and teeth specific
           protein initially identified from mineralised dentin.
           DMP1 is primarily localised in the nuclear compartment
           of undifferentiated osteoblasts. In the nucleus, DMP1
           acts as a transcriptional component for activation of
           osteoblast-specific genes like osteocalcin. During the
           early phase of osteoblast maturation, Ca(2+) surges into
           the nucleus from the cytoplasm, triggering the
           phosphorylation of DMP1 by a nuclear isoform of casein
           kinase II. This phosphorylated DMP1 is then exported out
           into the extracellular matrix, where it regulates
           nucleation of hydroxyapatite. DMP1 is a unique molecule
           that initiates osteoblast differentiation by
           transcription in the nucleus and orchestrates
           mineralised matrix formation extracellularly, at later
           stages of osteoblast maturation. The DMP1 gene has been
           found to be ectopically expressed in lung cancer
           although the reason for this is unknown.
          Length = 514

 Score = 29.2 bits (65), Expect = 6.4
 Identities = 34/174 (19%), Positives = 64/174 (36%), Gaps = 13/174 (7%)

Query: 123 ERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIGDVAKQQ 182
             R+E Q   E  +  E+ ++ +   + S ++     ++   E +   + E  GD     
Sbjct: 307 HSRSESQEDSEENQSQEDSQEVQDPSSESSQEADLPSQENSSESQEEVVSESRGD--NPD 364

Query: 183 DLSGFYRHLYQTTVGEEDSKDKKKDTEHSS--------SDESKNKSIAKQSEGRSTDEPI 234
           + +        +   EEDS D    +E  S        S+ES + S          +   
Sbjct: 365 NTTSHSEDQEDSESSEEDSLDTPSSSESQSTEEQADSESNESLSSSEESPESTEDENSSS 424

Query: 235 KHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGD---KKQDSETPKKKKKTDE 285
           +    S     +SRS   ++  +S  EE D    D    K+DS + +    ++E
Sbjct: 425 QEGLQSHSASTESRSQESQSEQDSRSEEDDSDSQDSSRSKEDSNSTESASSSEE 478


>gnl|CDD|183610 PRK12585, PRK12585, putative monovalent cation/H+ antiporter
           subunit G; Reviewed.
          Length = 197

 Score = 28.5 bits (63), Expect = 6.5
 Identities = 24/75 (32%), Positives = 36/75 (48%), Gaps = 1/75 (1%)

Query: 93  DTLAAKKKGD-KKPKYIQSLLKQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSS 151
           D L + KK D KK K +    +Q E+ +QE E   ER     RE++ +E +D+E      
Sbjct: 105 DQLRSVKKDDIKKKKSLIIRQEQIEKARQEREELEERMEWERREEKIDEREDQEEQERER 164

Query: 152 YRKKLEEFKKLDEEE 166
             + +EE     E E
Sbjct: 165 EEQTIEEQSDDSEHE 179


>gnl|CDD|237178 PRK12705, PRK12705, hypothetical protein; Provisional.
          Length = 508

 Score = 29.3 bits (66), Expect = 6.6
 Identities = 36/177 (20%), Positives = 69/177 (38%), Gaps = 19/177 (10%)

Query: 78  YQYDEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKE 137
            +  +  + I ++       K +          L ++ ++R++    R E Q + ER  +
Sbjct: 29  QRLAKEAERILQEAQKEAEEKLEAALLEAKELLLRERNQQRQEARREREELQREEERLVQ 88

Query: 138 GEEFKDKETFVTSSYRKKLEEFKK--------LDEEERRMDM-LEDIG----DVAKQQDL 184
            EE  D       +   +LEE +K        L+E E+++D  L  +     + A++  L
Sbjct: 89  KEEQLDARAEKLDNLENQLEEREKALSARELELEELEKQLDNELYRVAGLTPEQARKLLL 148

Query: 185 SGFYRHLYQTTVGEEDSKDKKKDTEHSSSD-ESKNKSIAKQSEGRSTDEPIKHKKSS 240
                 L    + EE ++  KK  E +  + E K ++I  Q+  R   E       S
Sbjct: 149 K-----LLDAELEEEKAQRVKKIEEEADLEAERKAQNILAQAMQRIASETASDLSVS 200


>gnl|CDD|236944 PRK11642, PRK11642, exoribonuclease R; Provisional.
          Length = 813

 Score = 29.3 bits (66), Expect = 6.7
 Identities = 12/47 (25%), Positives = 25/47 (53%), Gaps = 1/47 (2%)

Query: 237 KKSSKKGEKQSRSYRKRNRSESLDEETDKT-RGDKKQDSETPKKKKK 282
           ++ +KKG+   +  ++R   + ++ E D   RG+KK   +  KK  +
Sbjct: 739 REKAKKGDAGKKGGKRRQVGKKVNFEPDSAFRGEKKAKPKAAKKDAR 785


>gnl|CDD|226920 COG4547, CobT, Cobalamin biosynthesis protein CobT
           (nicotinate-mononucleotide:5, 6-dimethylbenzimidazole
           phosphoribosyltransferase) [Coenzyme metabolism].
          Length = 620

 Score = 29.4 bits (66), Expect = 6.7
 Identities = 21/112 (18%), Positives = 42/112 (37%), Gaps = 15/112 (13%)

Query: 163 DEEERRMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESKNKSIA 222
            +    MDM E+ GD   ++D                D +D   D   ++ D    +  +
Sbjct: 210 RDMLGSMDMAEETGDDGIEED---------------ADEEDGDDDQPDNNEDSEAGREES 254

Query: 223 KQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQDS 274
           + S+    DE        ++GE  +    + + S+  DE+T+    D +  +
Sbjct: 255 EGSDESEEDEAEATDGEGEEGEMDAAEASEDSESDESDEDTETPGEDARPAT 306


>gnl|CDD|219408 pfam07423, DUF1510, Protein of unknown function (DUF1510).  This
           family consists of several hypothetical bacterial
           proteins of around 200 residues in length. The function
           of this family is unknown.
          Length = 214

 Score = 28.5 bits (64), Expect = 6.7
 Identities = 14/57 (24%), Positives = 34/57 (59%), Gaps = 3/57 (5%)

Query: 193 QTTVGEEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHK-KSSKKGEKQSR 248
           Q T   E+ K+++K+   ++S++ ++K  A++ +  S +E  +   +SS + EK++ 
Sbjct: 57  QETAEIEEVKEEEKEA--ANSEDKEDKGDAEKEDEESEEENEEEDEESSDENEKETE 111


>gnl|CDD|221138 pfam11573, Med23, Mediator complex subunit 23.  Med23 is one of the
            subunits of the Tail portion of the Mediator complex that
            regulates RNA polymerase II activity. Med23 is required
            for heat-shock-specific gene expression, and has been
            shown to mediate transcriptional activation of E1A in
            mice.
          Length = 1341

 Score = 29.4 bits (66), Expect = 6.9
 Identities = 21/102 (20%), Positives = 42/102 (41%), Gaps = 9/102 (8%)

Query: 298  DTVCLVFEHMDSGLWELLHDKKIHL----TIPHIKTYTYLSDVFSFLPQIVKLLDFFPDQ 353
            + + L+   +    W++LHD+ I +     + +     Y  ++F+F      +L+  P+ 
Sbjct: 1177 NAIGLIMAALPEAYWKVLHDRIIEVLNSPEMLNWTYRQYPFELFNFKNVEESMLENLPNS 1236

Query: 354  DTVCL-----VFEHMDSGLWELLHDKKIHLTIPHVKTYMQML 390
                L      + HM  G       +     +PHVKT  Q++
Sbjct: 1237 YRTILAIAHSYWHHMGIGQLNPFTHEIKEKLLPHVKTEKQLI 1278


>gnl|CDD|221389 pfam12037, DUF3523, Domain of unknown function (DUF3523).  This
           presumed domain is functionally uncharacterized. This
           domain is found in eukaryotes. This domain is typically
           between 257 to 277 amino acids in length. This domain is
           found associated with pfam00004. This domain has a
           conserved LER sequence motif.
          Length = 276

 Score = 29.0 bits (65), Expect = 6.9
 Identities = 23/85 (27%), Positives = 44/85 (51%), Gaps = 3/85 (3%)

Query: 86  EIDKKKHDTLAAKKKGDKKPKYIQSLLKQAER-RKQENERRNERQVQLEREKEGEEFKDK 144
           E+ K +  T  A+ +   K    Q    + ER R +  ERR   Q Q ++E++  +++D+
Sbjct: 55  ELSKMQEKTRQAELEAKIKEYEAQQAQAKLERARVEAEERRKTLQEQTQQEQQRAQYQDE 114

Query: 145 ETFVTSSYRKKLEEFKKLDEEERRM 169
                  Y+K+LE+ ++ +EE  +M
Sbjct: 115 --LARKRYQKELEQQRRQNEELLKM 137


>gnl|CDD|220695 pfam10328, 7TM_GPCR_Srx, Serpentine type 7TM GPCR chemoreceptor
           Srx.  Chemoreception is mediated in Caenorhabditis
           elegans by members of the seven-transmembrane
           G-protein-coupled receptor class (7TM GPCRs) of proteins
           which are of the serpentine type. Srx is part of the Srg
           superfamily of chemoreceptors. Chemoperception is one of
           the central senses of soil nematodes like C. elegans
           which are otherwise 'blind' and 'deaf'.
          Length = 275

 Score = 28.7 bits (65), Expect = 7.0
 Identities = 6/22 (27%), Positives = 10/22 (45%)

Query: 234 IKHKKSSKKGEKQSRSYRKRNR 255
            K  K S    ++S+  RK+  
Sbjct: 185 RKFSKKSSLSSEESKKRRKKEI 206


>gnl|CDD|148752 pfam07324, DGCR6, DiGeorge syndrome critical region 6 (DGCR6)
           protein.  This family contains DiGeorge syndrome
           critical region 6 (DGCR6) proteins (approximately 200
           residues long) of a number of vertebrates. DGCR6 is a
           candidate for involvement in the DiGeorge syndrome
           pathology by playing a role in neural crest cell
           migration into the third and fourth pharyngeal pouches,
           the structures from which derive the organs affected in
           DiGeorge syndrome. Also found in this family is the
           Drosophila melanogaster gonadal protein gdl.
          Length = 195

 Score = 28.7 bits (64), Expect = 7.1
 Identities = 28/92 (30%), Positives = 42/92 (45%), Gaps = 14/92 (15%)

Query: 109 QSLLKQAERRKQENERRNERQVQLEREKEGEEFKDKETF--VTSSYRKKLEEF-KKLDEE 165
           ++L  Q  R K  NE R  +Q   ++ KE EE         + +  +K+LE   +++ EE
Sbjct: 76  KNLYNQ--RMKVHNEHRVLKQDLRKKHKEAEESCRPHNLPLLKAKQQKELEALEQRIREE 133

Query: 166 ERRMDM---LEDIGDVAKQQD------LSGFY 188
           +R MD    LE    V  QQ       + GFY
Sbjct: 134 QRMMDEKIVLELDQKVIDQQSTLEKAGVPGFY 165


>gnl|CDD|226513 COG4026, COG4026, Uncharacterized protein containing TOPRIM domain,
           potential nuclease [General function prediction only].
          Length = 290

 Score = 28.7 bits (64), Expect = 7.5
 Identities = 26/85 (30%), Positives = 39/85 (45%), Gaps = 4/85 (4%)

Query: 91  KHDTLAAKKKGDKKPKYIQSLLKQAERRKQENERRNERQVQLEREKEG-EEFKDKETFVT 149
           K D    K+K ++  K  + LLK+ E  + E E   ER  +LE E    EE   K     
Sbjct: 134 KEDYEELKEKLEELQKEKEELLKELEELEAEYEEVQERLKRLEVENSRLEEMLKKLPGEV 193

Query: 150 SSYRKKLEEFK---KLDEEERRMDM 171
              +K+ +E +   +L EEE   D+
Sbjct: 194 YDLKKRWDELEPGVELPEEELISDL 218


>gnl|CDD|234173 TIGR03346, chaperone_ClpB, ATP-dependent chaperone ClpB.  Members
           of this protein family are the bacterial ATP-dependent
           chaperone ClpB. This protein belongs to the AAA family,
           ATPases associated with various cellular activities
           (pfam00004). This molecular chaperone does not act as a
           protease, but rather serves to disaggregate misfolded
           and aggregated proteins [Protein fate, Protein folding
           and stabilization].
          Length = 852

 Score = 29.2 bits (66), Expect = 7.5
 Identities = 23/86 (26%), Positives = 44/86 (51%), Gaps = 5/86 (5%)

Query: 59  EKRQAKLDMERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKKGD-KKPKYIQ-SLLKQAE 116
           E+  A L+ E+  AE   +    ++ +EI++ + +   A+++GD  K   +Q   L + E
Sbjct: 447 EEEYADLE-EQWKAEKAAIQGIQQIKEEIEQVRLELEQAEREGDLAKAAELQYGKLPELE 505

Query: 117 RRKQENERR--NERQVQLEREKEGEE 140
           +R Q  E +   E + +L RE+   E
Sbjct: 506 KRLQAAEAKLGEETKPRLLREEVTAE 531


>gnl|CDD|237258 PRK12903, secA, preprotein translocase subunit SecA; Reviewed.
          Length = 925

 Score = 29.3 bits (66), Expect = 7.8
 Identities = 15/88 (17%), Positives = 38/88 (43%), Gaps = 1/88 (1%)

Query: 198 EEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSE 257
            E+ +   ++ ++   +     S  +++E    +   ++K    + +   +   K   ++
Sbjct: 833 PEELELINEEQKNLKQEIKLELSEIQEAEEEIQNI-NENKNEFVEFKNDPKKLNKLIIAK 891

Query: 258 SLDEETDKTRGDKKQDSETPKKKKKTDE 285
            +  +   +  + KQD +T KKKKK  E
Sbjct: 892 DVLIKLVISSDEIKQDEKTTKKKKKDLE 919


>gnl|CDD|218904 pfam06123, CreD, Inner membrane protein CreD.  This family consists
           of several bacterial CreD or Cet inner membrane
           proteins. Dominant mutations of the cet gene of
           Escherichia coli result in tolerance to colicin E2 and
           increased amounts of an inner membrane protein with an
           Mr of 42,000. The cet gene is shown to be in the same
           operon as the phoM gene, which is required in a phoR
           background for expression of the structural gene for
           alkaline phosphatase, phoA. Although the Cet protein is
           not required for phoA expression, it has been suggested
           that the Cet protein has an enhancing effect on the
           transcription of phoA.
          Length = 429

 Score = 28.7 bits (65), Expect = 8.3
 Identities = 14/49 (28%), Positives = 25/49 (51%), Gaps = 2/49 (4%)

Query: 163 DEEERRMDMLEDIGDV-AKQQDLSGFYRHL-YQTTVGEEDSKDKKKDTE 209
           + + RR +++ +I      +Q L+G    + Y  TV  E++K KK   E
Sbjct: 30  ERQSRRDEVVAEIAQSWGGEQTLTGPVLVIPYTETVRVEETKGKKTVEE 78


>gnl|CDD|220303 pfam09592, DUF2031, Protein of unknown function (DUF2031).  This
           protein is expressed in Plasmodium; its function is
           unknown. It may be the product of gene family pyst-b.
          Length = 228

 Score = 28.5 bits (64), Expect = 8.4
 Identities = 26/90 (28%), Positives = 43/90 (47%), Gaps = 14/90 (15%)

Query: 82  EVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQEN--ERRNERQVQLEREKEGE 139
           EV  E+D K++  LA +   DK+             +K EN     +E   QLE E+   
Sbjct: 123 EVKKELDNKRNGELAIQPIQDKRI-----------IKKDENSSVSEHEDFKQLENEENFL 171

Query: 140 EFKDKETFVTSSYRKKLEEFKKLDEEERRM 169
           E +  E   +S+  KKL+  +KL + E+++
Sbjct: 172 ETEYNE-ITSSNNYKKLKINRKLKKAEKKL 200


>gnl|CDD|215641 PLN03237, PLN03237, DNA topoisomerase 2; Provisional.
          Length = 1465

 Score = 29.1 bits (65), Expect = 8.5
 Identities = 42/231 (18%), Positives = 79/231 (34%), Gaps = 25/231 (10%)

Query: 59   EKRQAKLDMERALAEDPTVYQYDEVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERR 118
            EK   KLD E A AE+           +    + ++ AAKK   + PK         +  
Sbjct: 1162 EKELDKLDKEDAKAEEAREKL------QRAAARGESGAAKKVSRQAPKKPAPKKTTKKAS 1215

Query: 119  KQENERRNERQVQLEREKEGEEFKDK-----ETFVTSSYRKKLEEFKKLDEEER------ 167
            + E          +E E   E  K K     +    ++ ++K EE + LD ++R      
Sbjct: 1216 ESETTEETYGSSAMETENVAEVVKPKGRAGAKKKAPAAAKEKEEEDEILDLKDRLAAYNL 1275

Query: 168  ------RMDMLEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESKNKSI 221
                     M E +  V  ++  +        + + + D  D     E S ++  K K  
Sbjct: 1276 DSAPAQSAKMEETVKAVPARRAAARKKPLASVSVISDSDDDDDDFAVEVSLAERLKKK-- 1333

Query: 222  AKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQ 272
              +    +  +  K   ++KK    +    ++  +E L          +K+
Sbjct: 1334 GGRKPAAANKKAAKPPAAAKKRGPATVQSGQKLLTEMLKPAEAIGISPEKK 1384


>gnl|CDD|236978 PRK11778, PRK11778, putative inner membrane peptidase; Provisional.
          Length = 330

 Score = 28.6 bits (65), Expect = 8.8
 Identities = 16/69 (23%), Positives = 34/69 (49%), Gaps = 9/69 (13%)

Query: 234 IKHKKSSKKGE-------KQSRSYRKRNRSESLDEETDK--TRGDKKQDSETPKKKKKTD 284
           +  +K S+KGE       +Q +  ++  ++  LD++  K   +  KK++ +  K  K   
Sbjct: 29  LAQRKKSQKGELEVTNLNEQYKEMKEELKAALLDKKELKAWHKAQKKKEKQEAKAAKAKS 88

Query: 285 EIEMKLLDF 293
           +  + +LDF
Sbjct: 89  KPRLFVLDF 97


>gnl|CDD|233667 TIGR01982, UbiB, 2-polyprenylphenol 6-hydroxylase.  This model
           represents the enzyme (UbiB) which catalyzes the first
           hydroxylation step in the ubiquinone biosynthetic
           pathway in bacteria. It is believed that the reaction is
           2-polyprenylphenol -> 6-hydroxy-2-polyprenylphenol. This
           model finds hits primarily in the proteobacteria. The
           gene is also known as AarF in certain species
           [Biosynthesis of cofactors, prosthetic groups, and
           carriers, Menaquinone and ubiquinone].
          Length = 437

 Score = 28.8 bits (65), Expect = 9.1
 Identities = 15/48 (31%), Positives = 20/48 (41%), Gaps = 3/48 (6%)

Query: 388 QMLLKGVSYLHGKFIMHRDLKPANLLIDKAGILKIADFGLARSFDVER 435
           +  L  V    G F  H DL P N+ + K G +   DFG+      E 
Sbjct: 267 RSFLNQV-LRDGFF--HADLHPGNIFVLKDGKIIALDFGIVGRLSEED 311


>gnl|CDD|236304 PRK08581, PRK08581, N-acetylmuramoyl-L-alanine amidase; Validated.
          Length = 619

 Score = 29.0 bits (65), Expect = 9.2
 Identities = 14/112 (12%), Positives = 38/112 (33%), Gaps = 4/112 (3%)

Query: 208 TEHSSSDESKNKSIAKQSEGRSTDEPIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTR 267
           +++     S+  +        ++D  IK+   ++  ++     +K   S +    T   +
Sbjct: 134 SDYEQPRNSEKSTNDSNK---NSDSSIKNDTDTQSSKQDKADNQKAPSSNNTKPSTSNKQ 190

Query: 268 GDKKQDSETPKKKKKTDEIEMKLLDFFPDQDTVCLVFEHMDSGLWELLHDKK 319
            +  + +  P +       +         +D   +    +DS L +   D K
Sbjct: 191 PNSPKPT-QPNQSNSQPASDDTANQKSSSKDNQSMSDSALDSILDQYSEDAK 241


>gnl|CDD|222447 pfam13904, DUF4207, Domain of unknown function (DUF4207).  This
           family is found in eukaryotes; it has several conserved
           tryptophan residues. The function is not known.
          Length = 261

 Score = 28.5 bits (64), Expect = 9.3
 Identities = 31/163 (19%), Positives = 59/163 (36%), Gaps = 37/163 (22%)

Query: 113 KQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDML 172
           KQA+R+K+  +   E+Q + EREKE EE + ++      Y +   + K     ++R    
Sbjct: 96  KQAQRQKKLQKLLEEKQ-KQEREKEREEAELRQRLAKEKYEEWCRQ-KAQQAAKQRTP-- 151

Query: 173 EDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDE 232
                                           KK+   S+S      S + + E   + E
Sbjct: 152 ------------------------------KHKKEAAESASSSL---SGSAKPERNVSQE 178

Query: 233 PIKHKKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQDSE 275
             K +    + +K  +  +KR        +  +   ++KQ +E
Sbjct: 179 EAKKRLQEWELKKLKQQQQKREEERRKQRKKQQEEEERKQKAE 221


>gnl|CDD|227657 COG5354, COG5354, Uncharacterized protein, contains Trp-Asp (WD)
           repeat [General function prediction only].
          Length = 561

 Score = 28.7 bits (64), Expect = 9.7
 Identities = 18/89 (20%), Positives = 33/89 (37%), Gaps = 14/89 (15%)

Query: 82  EVYDEIDKKKHDTLAAKKKGDKKPKYIQSLLKQAERRKQENER---RNER--QVQLEREK 136
            V  E D     +   KK         + + +  E   ++  R   +  R  +   ER +
Sbjct: 482 AVIMEADSANRSSAPRKK---------ELVEQWPEYSDEDKIRSLLKKLRAIEALKERMR 532

Query: 137 EGEEFKDKETFVTSSYRKKLEEFKKLDEE 165
            GEE +  +     +  + L E K+L E+
Sbjct: 533 SGEELEVIQVNKIETEEEVLSELKELVED 561


>gnl|CDD|221643 pfam12572, DUF3752, Protein of unknown function (DUF3752).  This
           domain family is found in eukaryotes, and is typically
           between 140 and 163 amino acids in length.
          Length = 148

 Score = 27.8 bits (62), Expect = 9.7
 Identities = 10/48 (20%), Positives = 24/48 (50%), Gaps = 1/48 (2%)

Query: 235 KHKKSSKKGEKQSRSYRKRNRSESL-DEETDKTRGDKKQDSETPKKKK 281
           K  K  K+  ++ + Y ++ R +SL ++   K +  KK++      ++
Sbjct: 66  KASKRDKEMARKVKEYNEKKRGKSLVEQHQKKQKKKKKEEENDDPSRR 113


>gnl|CDD|218115 pfam04502, DUF572, Family of unknown function (DUF572).  Family of
           eukaryotic proteins with undetermined function.
          Length = 321

 Score = 28.6 bits (64), Expect = 9.8
 Identities = 34/168 (20%), Positives = 63/168 (37%), Gaps = 25/168 (14%)

Query: 112 LKQAERRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDM 171
           LK+ + R+ + +  +  +    REK+ EE +++E     +  K L    + +E+ RR D 
Sbjct: 157 LKELQSRRADVDVNSMLEALFRREKKEEEEEEEED---EALIKSLSFGPETEEDRRRADD 213

Query: 172 LEDIGDVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTD 231
            +   D                    EED+ +       SSS       + K +  RS  
Sbjct: 214 EDSEDD--------------------EEDNDNTPSPKSGSSSPAKPTSILKKSAAKRSEA 253

Query: 232 EPIKHKKSSKKGEKQSRSYRK--RNRSESLDEETDKTRGDKKQDSETP 277
                 K + +G  + R        R ++  E T ++    +  SE+P
Sbjct: 254 PSSSKAKKNSRGIPKPRDALSSLVVRKKAAPESTSQSPSSAEPTSESP 301


>gnl|CDD|226889 COG4487, COG4487, Uncharacterized protein conserved in bacteria
           [Function unknown].
          Length = 438

 Score = 28.6 bits (64), Expect = 9.8
 Identities = 25/173 (14%), Positives = 60/173 (34%), Gaps = 19/173 (10%)

Query: 117 RRKQENERRNERQVQLEREKEGEEFKDKETFVTSSYRKKLEEFKKLDEEERRMDMLEDIG 176
             ++  +  NE++ Q    K+ E  + +E           ++ +K    E+       + 
Sbjct: 43  TLEEFEKEANEKRAQYRSAKKKELSQLEEQL------INQKKEQKNLFNEQIKQFELALQ 96

Query: 177 DVAKQQDLSGFYRHLYQTTVGEEDSKDKKKDTEHSSSDESKNKSIAKQSEGRSTDEPIKH 236
           D   + +            +   + +  +   E     ++  + I K+ E    +E +K 
Sbjct: 97  DEIAKLEALELLNLEKDKELELLEKELDELSKELQKQLQNTAEIIEKKRENNKNEERLK- 155

Query: 237 KKSSKKGEKQSRSYRKRNRSESLDEETDKTRGDKKQDSETPKKKKKTDEIEMK 289
                + EK+          ESL+ E +K      + +   + K+  ++ E K
Sbjct: 156 ----FENEKKLE--------ESLELEREKFEEQLHEANLDLEFKENEEQRESK 196


  Database: CDD.v3.10
    Posted date:  Mar 20, 2013  7:55 AM
  Number of letters in database: 10,937,602
  Number of sequences in database:  44,354
  
Lambda     K      H
   0.315    0.132    0.381 

Gapped
Lambda     K      H
   0.267   0.0724    0.140 


Matrix: BLOSUM62
Gap Penalties: Existence: 11, Extension: 1
Number of Sequences: 44354
Number of Hits to DB: 28,614,173
Number of extensions: 2854626
Number of successful extensions: 4757
Number of sequences better than 10.0: 1
Number of HSP's gapped: 3899
Number of HSP's successfully gapped: 787
Length of query: 561
Length of database: 10,937,602
Length adjustment: 102
Effective length of query: 459
Effective length of database: 6,413,494
Effective search space: 2943793746
Effective search space used: 2943793746
Neighboring words threshold: 11
Window for multiple hits: 40
X1: 16 ( 7.3 bits)
X2: 38 (14.6 bits)
X3: 64 (24.7 bits)
S1: 42 (22.0 bits)
S2: 62 (27.7 bits)