Query         046614
Match_columns 142
No_of_seqs    127 out of 665
Neff          4.6 
Searched_HMMs 46136
Date          Fri Mar 29 02:39:52 2013
Command       hhsearch -i /work/01045/syshi/csienesis_hhblits_a3m/046614.a3m -d /work/01045/syshi/HHdatabase/Cdd.hhm -o /work/01045/syshi/hhsearch_cdd/046614hhsearch_cdd -cpu 12 -v 0 

 No Hit                             Prob E-value P-value  Score    SS Cols Query HMM  Template HMM
  1 PF02519 Auxin_inducible:  Auxi 100.0   4E-38 8.6E-43  229.6  10.1   99    1-102     1-100 (100)
  2 PLN03090 auxin-responsive fami 100.0 1.6E-36 3.5E-41  223.3  10.3   91    4-101    12-103 (104)
  3 PLN03220 uncharacterized prote 100.0 3.4E-32 7.5E-37  200.5   9.7   86    5-99     10-101 (105)
  4 PLN03219 uncharacterized prote 100.0 2.6E-31 5.6E-36  196.6   9.3   89   12-101    13-105 (108)
  5 PRK02899 adaptor protein; Prov  84.1     0.9   2E-05   36.6   2.6   25   63-87     38-62  (197)
  6 PF02214 BTB_2:  BTB/POZ domain  79.0       1 2.2E-05   31.0   1.1   54   51-104     7-63  (94)
  7 PRK02315 adaptor protein; Prov  78.9     1.6 3.4E-05   36.0   2.3   25   63-87     38-62  (233)
  8 smart00666 PB1 PB1 domain. Pho  74.0     5.8 0.00013   26.4   3.7   52   47-103     8-70  (81)
  9 PF05389 MecA:  Negative regula  73.5     1.1 2.3E-05   36.1   0.0   25   63-87     38-62  (220)
 10 cd05992 PB1 The PB1 domain is   73.1     7.9 0.00017   25.5   4.2   53   47-103     7-70  (81)
 11 PF00651 BTB:  BTB/POZ domain;   66.4      19 0.00041   24.3   5.0   57   44-104    13-74  (111)
 12 PF11822 DUF3342:  Domain of un  55.8      18  0.0004   31.7   4.2   52   51-105    13-69  (317)
 13 cd06407 PB1_NLP A PB1 domain i  54.9      23 0.00049   24.8   3.8   47   45-95      5-63  (82)
 14 PF14317 YcxB:  YcxB-like prote  49.7      33 0.00071   20.8   3.6   33   39-71     27-59  (62)
 15 cd06396 PB1_NBR1 The PB1 domai  46.7      88  0.0019   22.2   5.8   57   45-104     5-70  (81)
 16 PF08948 DUF1859:  Domain of un  44.2      10 0.00022   28.8   0.7   28   40-67     86-123 (126)
 17 PF02209 VHP:  Villin headpiece  42.2      13 0.00029   22.5   0.9   19   60-78      1-19  (36)
 18 COG3769 Predicted hydrolase (H  40.9      42 0.00091   28.8   4.0   75    2-81     45-121 (274)
 19 PF00564 PB1:  PB1 domain;  Int  40.8      82  0.0018   20.6   4.7   51   48-102     9-70  (84)
 20 smart00153 VHP Villin headpiec  40.8      17 0.00037   22.0   1.2   19   60-78      1-19  (36)
 21 cd06397 PB1_UP1 Uncharacterize  39.7      66  0.0014   23.1   4.3   45   47-95      7-62  (82)
 22 PF07429 Glyco_transf_56:  4-al  37.3      66  0.0014   28.8   4.8   51   51-104   214-266 (360)
 23 PF11834 DUF3354:  Domain of un  33.4      32  0.0007   23.6   1.8   17   64-80     26-42  (69)
 24 cd04751 Commd3 COMM_Domain con  32.5      48   0.001   23.6   2.7   29   82-111    64-92  (95)
 25 cd06398 PB1_Joka2 The PB1 doma  32.0      85  0.0018   22.4   3.9   51   47-97      7-70  (91)
 26 TIGR02527 dot_icm_IcmQ Dot/Icm  32.0      31 0.00067   28.1   1.7   55   11-65     78-146 (182)
 27 cd04395 RhoGAP_ARHGAP21 RhoGAP  31.2 1.8E+02  0.0039   22.6   6.0   42   64-105    19-60  (196)
 28 COG1759 5-formaminoimidazole-4  31.2      24 0.00051   31.5   1.0   79   36-115    87-199 (361)
 29 KOG1290 Serine/threonine prote  30.7      29 0.00063   32.7   1.6   19   39-57     62-83  (590)
 30 PRK02797 4-alpha-L-fucosyltran  30.2 1.2E+02  0.0026   26.7   5.2   89   11-105   113-228 (322)
 31 cd06401 PB1_TFG The PB1 domain  30.2      96  0.0021   22.1   3.8   43   45-90      5-61  (81)
 32 PF12058 DUF3539:  Protein of u  27.3      10 0.00022   27.6  -1.6   13   59-71      4-16  (88)
 33 COG3789 Uncharacterized protei  27.2      92   0.002   24.5   3.5   52   40-91     45-103 (146)
 34 COG4862 MecA Negative regulato  25.5      54  0.0012   27.6   2.1   26   62-87     37-62  (224)
 35 PF05194 UreE_C:  UreE urease a  24.8      95  0.0021   21.4   3.0   28   41-73     24-51  (87)
 36 cd01406 SIR2-like Sir2-like: P  24.3 1.3E+02  0.0027   24.0   4.0   57   42-105     1-59  (242)
 37 PRK10308 3-methyl-adenine DNA   23.5 2.8E+02   0.006   23.4   6.1   61   41-101    45-121 (283)
 38 PF11126 Phage_DsbA:  Transcrip  22.9   2E+02  0.0042   20.1   4.2   38   64-111    17-54  (69)
 39 PF06849 DUF1246:  Protein of u  22.8     4.1   9E-05   31.2  -4.5   23   36-58     67-92  (124)
 40 PF14974 DUF4511:  Domain of un  22.7 2.9E+02  0.0062   20.6   5.3   41   64-110    47-87  (105)
 41 COG4923 Predicted nuclease (RN  22.0   1E+02  0.0022   26.0   3.1   15   83-97     87-101 (245)
 42 COG5381 Uncharacterized protei  21.9 1.7E+02  0.0037   23.7   4.2   58   67-127    69-145 (184)
 43 PF04332 DUF475:  Protein of un  21.8      55  0.0012   28.5   1.6   16    2-17      6-21  (294)
 44 cd06080 MUM1_like Mutated mela  20.6 1.4E+02   0.003   21.0   3.2   39   40-78     28-74  (80)
 45 PF12926 MOZART2:  Mitotic-spin  20.0 2.2E+02  0.0048   20.7   4.1   48   63-119    24-71  (88)

No 1  
>PF02519 Auxin_inducible:  Auxin responsive protein;  InterPro: IPR003676 This family consists of the protein products of a gene cluster that encodes a group of auxin-regulated RNAs (small auxin up RNAs, SAURs) []. Proteins from this ARG7 auxin responsive genes family have no identified functional role [].
Probab=100.00  E-value=4e-38  Score=229.63  Aligned_cols=99  Identities=38%  Similarity=0.696  Sum_probs=88.6

Q ss_pred             CCChHHHHHHHHHHhhhhhcccCccccccccccCCCcCCCCCeEEEEeCC-ceeEeEeccCCCcHHHHHHHHhhhhhcCC
Q 046614            1 MINSKRLIELARKWQKMATIKRRRISFPRRAASQNSSVANKGHFVVYTTD-EKRFTVPLEYLSRNVFIELLRMSEEEFGL   79 (142)
Q Consensus         1 m~~~kkL~~~~kKWq~~a~~~rkr~s~~~~~~~~~~~~vpkG~~~VyVGe-~~RfvVp~~yL~hp~F~~LL~~aeeEfG~   79 (142)
                      ||+.+|..+.++||++.++..+++.+.....   +..++|+||||||||+ ++||+||++|||||+|++||++|||||||
T Consensus         1 M~~~~k~~~~~~k~~~~~~~~~~~~~~~~~~---~~~~vp~G~~~VyVG~~~~Rfvvp~~~L~hp~f~~LL~~aeeEfG~   77 (100)
T PF02519_consen    1 MASRLKSLASAKKWQSRARSKSSSSSSSRSS---SESDVPKGHFAVYVGEERRRFVVPVSYLNHPLFQELLEQAEEEFGF   77 (100)
T ss_pred             CccHHHHHHHHHhhhhhhhhccccccccccc---ccCCCCCCeEEEEeCccceEEEechHHcCchhHHHHHHHHhhhcCc
Confidence            9999999999999999887766544433222   2378999999999998 89999999999999999999999999999


Q ss_pred             CCCCCeEecCcHHHHHHHHHHHh
Q 046614           80 PSFGPITLPCDSTFLNYVMSLIK  102 (142)
Q Consensus        80 ~~~G~L~iPCd~~~Fe~vl~~i~  102 (142)
                      +++|+|+||||+++||+++|+|+
T Consensus        78 ~~~G~l~iPC~~~~Fe~~l~~le  100 (100)
T PF02519_consen   78 DQDGPLTIPCDVVLFEHLLWLLE  100 (100)
T ss_pred             CCCCcEEeeCCHHHHHHHHHHhC
Confidence            99999999999999999999985


No 2  
>PLN03090 auxin-responsive family protein; Provisional
Probab=100.00  E-value=1.6e-36  Score=223.33  Aligned_cols=91  Identities=26%  Similarity=0.505  Sum_probs=79.4

Q ss_pred             hHHHHHHHHHHhhhhhcccCccccccccccCCCcCCCCCeEEEEeCC-ceeEeEeccCCCcHHHHHHHHhhhhhcCCCCC
Q 046614            4 SKRLIELARKWQKMATIKRRRISFPRRAASQNSSVANKGHFVVYTTD-EKRFTVPLEYLSRNVFIELLRMSEEEFGLPSF   82 (142)
Q Consensus         4 ~kkL~~~~kKWq~~a~~~rkr~s~~~~~~~~~~~~vpkG~~~VyVGe-~~RfvVp~~yL~hp~F~~LL~~aeeEfG~~~~   82 (142)
                      .++|++|+|||++++..+..       ..+..+.++|+||||||||+ ++||+||++|||||+|++||++|||||||+++
T Consensus        12 ~~~~kq~l~r~~s~~~~~~~-------~~~~~~~~vpkG~~aVyVG~~~~RfvVp~~~L~hP~F~~LL~~aeeEfGf~~~   84 (104)
T PLN03090         12 TAMLKQILKRCSSLGKKQGY-------DEDGLPLDVPKGHFPVYVGENRSRYIVPISFLTHPEFQSLLQQAEEEFGFDHD   84 (104)
T ss_pred             HHHHHHHHHHHHHhcccCCc-------ccccCCCCCCCCcEEEEECCCCEEEEEEHHHcCCHHHHHHHHHHHHHhCCCCC
Confidence            46899999999987543311       01123678999999999998 58999999999999999999999999999999


Q ss_pred             CCeEecCcHHHHHHHHHHH
Q 046614           83 GPITLPCDSTFLNYVMSLI  101 (142)
Q Consensus        83 G~L~iPCd~~~Fe~vl~~i  101 (142)
                      |+|+||||+++|++++|+|
T Consensus        85 G~L~IPC~~~~Fe~ll~~i  103 (104)
T PLN03090         85 MGLTIPCEEVVFRSLTSMI  103 (104)
T ss_pred             CcEEEeCCHHHHHHHHHHh
Confidence            9999999999999999998


No 3  
>PLN03220 uncharacterized protein; Provisional
Probab=99.97  E-value=3.4e-32  Score=200.46  Aligned_cols=86  Identities=31%  Similarity=0.590  Sum_probs=71.4

Q ss_pred             HHHHHHHHHHhhhhhcccCccccccccccCCCcCCCCCeEEEEeCC-----ceeEeEeccCCCcHHHHHHHHhhhhhcCC
Q 046614            5 KRLIELARKWQKMATIKRRRISFPRRAASQNSSVANKGHFVVYTTD-----EKRFTVPLEYLSRNVFIELLRMSEEEFGL   79 (142)
Q Consensus         5 kkL~~~~kKWq~~a~~~rkr~s~~~~~~~~~~~~vpkG~~~VyVGe-----~~RfvVp~~yL~hp~F~~LL~~aeeEfG~   79 (142)
                      .+++|++|+.. ++...++        +...+.+|||||||||||+     ++||+||++|||||+|++||++|||||||
T Consensus        10 ~~~k~~~~~~~-~~~~~~~--------~~~~~~~VPkGh~aVyVGe~~~~e~kRFVVPv~yL~hP~F~~LL~~AeEEfGf   80 (105)
T PLN03220         10 NATKQILKLNS-LANRNRT--------SSSSSDHVPKGHVAVYVGEQIEMEKKRFVVPISFLNHPSFKEFLSRAEEEFGF   80 (105)
T ss_pred             HHHHHHHHHHh-hcccccc--------cccccCCCCCCeEEEEECCCCCccceEEEEEHHHcCChHHHHHHHHHHHHhCC
Confidence            46788888776 4321111        1123568999999999997     69999999999999999999999999999


Q ss_pred             CC-CCCeEecCcHHHHHHHHH
Q 046614           80 PS-FGPITLPCDSTFLNYVMS   99 (142)
Q Consensus        80 ~~-~G~L~iPCd~~~Fe~vl~   99 (142)
                      ++ +|+|+||||++.|++++.
T Consensus        81 ~~~~G~L~IPCd~~~F~~ll~  101 (105)
T PLN03220         81 NHPMGGLTIPCREEVFLDLIA  101 (105)
T ss_pred             CCCCCCEEeeCCHHHHHHHHH
Confidence            98 699999999999999985


No 4  
>PLN03219 uncharacterized protein; Provisional
Probab=99.97  E-value=2.6e-31  Score=196.64  Aligned_cols=89  Identities=29%  Similarity=0.560  Sum_probs=72.6

Q ss_pred             HHHhhhhhcccCccccccccccCCCcCCCCCeEEEEeCC---ceeEeEeccCCCcHHHHHHHHhhhhhcCCCC-CCCeEe
Q 046614           12 RKWQKMATIKRRRISFPRRAASQNSSVANKGHFVVYTTD---EKRFTVPLEYLSRNVFIELLRMSEEEFGLPS-FGPITL   87 (142)
Q Consensus        12 kKWq~~a~~~rkr~s~~~~~~~~~~~~vpkG~~~VyVGe---~~RfvVp~~yL~hp~F~~LL~~aeeEfG~~~-~G~L~i   87 (142)
                      +-|+.++-.+++..+.++.. .+.+.++||||||||||+   ++||+||++|||||+|++||++|||||||++ +|+|+|
T Consensus        13 ~~~~~~~~~~~~~~~~~~~~-~~~~~~vpkGh~aVYVG~~~E~kRFvVPi~yL~hP~F~~LL~~AeEEfGf~~~~G~L~I   91 (108)
T PLN03219         13 QIFKSQSMRNKNGSSSPSSS-TTTSGLVPKGHVAVYVGEQMEKKRFVVPISYLNHPLFREFLNRAEEECGFHHSMGGLTI   91 (108)
T ss_pred             HHHHHHHHhcccCCCCCccC-CCCCCCCCCCeEEEEECCCCCceEEEEEHHHcCChHHHHHHHHHHHHhCCCCCCCCEEE
Confidence            55776655555543332221 223678999999999996   6999999999999999999999999999997 699999


Q ss_pred             cCcHHHHHHHHHHH
Q 046614           88 PCDSTFLNYVMSLI  101 (142)
Q Consensus        88 PCd~~~Fe~vl~~i  101 (142)
                      |||++.|++++..-
T Consensus        92 PCd~~~F~~ll~~~  105 (108)
T PLN03219         92 PCREESFLHLITSH  105 (108)
T ss_pred             eCCHHHHHHHHHhh
Confidence            99999999999753


No 5  
>PRK02899 adaptor protein; Provisional
Probab=84.07  E-value=0.9  Score=36.64  Aligned_cols=25  Identities=24%  Similarity=0.662  Sum_probs=21.7

Q ss_pred             cHHHHHHHHhhhhhcCCCCCCCeEe
Q 046614           63 RNVFIELLRMSEEEFGLPSFGPITL   87 (142)
Q Consensus        63 hp~F~~LL~~aeeEfG~~~~G~L~i   87 (142)
                      +-+|.++|++|..|+||..+|||+|
T Consensus        38 e~lF~~mm~Ea~~e~~F~~~~pl~~   62 (197)
T PRK02899         38 HQLFRDMMQEANKELGFEADGPIAV   62 (197)
T ss_pred             HHHHHHHHHHhhhccCcccCCeEEE
Confidence            4578888999999999999999964


No 6  
>PF02214 BTB_2:  BTB/POZ domain;  InterPro: IPR003131 Potassium channels are the most diverse group of the ion channel family [, ]. They are important in shaping the action potential, and in neuronal excitability and plasticity []. The potassium channel family is composed of several functionally distinct isoforms, which can be broadly separated into 2 groups []: the practically non-inactivating 'delayed' group and the rapidly inactivating 'transient' group. These are all highly similar proteins, with only small amino acid changes causing the diversity of the voltage-dependent gating mechanism, channel conductance and toxin binding properties. Each type of K+ channel is activated by different signals and conditions depending on their type of regulation: some open in response to depolarisation of the plasma membrane; others in response to hyperpolarisation or an increase in intracellular calcium concentration; some can be regulated by binding of a transmitter, together with intracellular kinases; while others are regulated by GTP-binding proteins or other second messengers []. In eukaryotic cells, K+ channels are involved in neural signalling and generation of the cardiac rhythm, act as effectors in signal transduction pathways involving G protein-coupled receptors (GPCRs) and may have a role in target cell lysis by cytotoxic T-lymphocytes []. In prokaryotic cells, they play a role in the maintenance of ionic homeostasis [].  All K+ channels discovered so far possess a core of alpha subunits, each comprising either one or two copies of a highly conserved pore loop domain (P-domain). The P-domain contains the sequence (T/SxxTxGxG), which has been termed the K+ selectivity sequence. In families that contain one P-domain, four subunits assemble to form a selective pathway for K+ across the membrane. However, it remains unclear how the 2 P-domain subunits assemble to form a selective pore. The functional diversity of these families can arise through homo- or hetero-associations of alpha subunits or association with auxiliary cytoplasmic beta subunits. K+ channel subunits containing one pore domain can be assigned into one of two superfamilies: those that possess six transmembrane (TM) domains and those that possess only two TM domains. The six TM domain superfamily can be further subdivided into conserved gene families: the voltage-gated (Kv) channels; the KCNQ channels (originally known as KvLQT channels); the EAG-like K+ channels; and three types of calcium (Ca)-activated K+ channels (BK, IK and SK) []. The 2TM domain family comprises inward-rectifying K+ channels. In addition, there are K+ channel alpha-subunits that possess two P-domains. These are usually highly regulated K+ selective leak channels. The Kv family can be divided into several subfamilies on the basis of sequence similarity and function. Four of these subfamilies, Kv1 (Shaker), Kv2 (Shab), Kv3 (Shaw) and Kv4 (Shal), consist of pore-forming alpha subunits that associate with different types of beta subunit. Each alpha subunit comprises six hydrophobic TM domains with a P-domain between the fifth and sixth, which partially resides in the membrane. The fourth TM domain has positively charged residues at every third residue and acts as a voltage sensor, which triggers the conformational change that opens the channel pore in response to a displacement in membrane potential []. More recently, 4 new electrically-silent alpha subunits have been cloned: Kv5 (KCNF), Kv6 (KCNG), Kv8 and Kv9 (KCNS). These subunits do not themselves possess any functional activity, but appear to form heteromeric channels with Kv2 subunits, and thus modulate Shab channel activity []. When highly expressed, they inhibit channel activity, but at lower levels show more specific modulatory actions. The N-terminal, cytoplasmic tetramerization domain (T1) of voltage-gated potassium channels encodes molecular determinants for subfamily-specific assembly of alpha-subunits into functional tetrameric channels []. This domain is found in a subset of a larger group of proteins that contain the BTB/POZ domain.; GO: 0005249 voltage-gated potassium channel activity, 0006813 potassium ion transport, 0008076 voltage-gated potassium channel complex, 0016020 membrane; PDB: 1NN7_A 3KVT_A 1EXB_E 1QDV_A 1DSX_E 1QDW_F 3LUT_B 3LNM_B 2A79_B 3DRY_C ....
Probab=79.00  E-value=1  Score=30.97  Aligned_cols=54  Identities=11%  Similarity=0.174  Sum_probs=40.4

Q ss_pred             ceeEeEeccCCC-c--HHHHHHHHhhhhhcCCCCCCCeEecCcHHHHHHHHHHHhcc
Q 046614           51 EKRFTVPLEYLS-R--NVFIELLRMSEEEFGLPSFGPITLPCDSTFLNYVMSLIKGR  104 (142)
Q Consensus        51 ~~RfvVp~~yL~-h--p~F~~LL~~aeeEfG~~~~G~L~iPCd~~~Fe~vl~~i~~~  104 (142)
                      +++|.++.+.|. +  ..|..+++.......-+.+|.+-|-++...|++||..++.+
T Consensus         7 G~~f~~~~~tL~~~~~s~l~~~~~~~~~~~~~~~~~~~fiDRdp~~F~~IL~ylr~~   63 (94)
T PF02214_consen    7 GTIFETSRSTLTRYPDSLLARLFSGERSDDYDDDDGEYFIDRDPELFEYILNYLRTG   63 (94)
T ss_dssp             TEEEEEEHHHHHTSTTSTTTSHHHTGHGGGEETTTTEEEESS-HHHHHHHHHHHHHT
T ss_pred             CEEEEEcHHHHhhCCCChhhhHHhhccccccCCccceEEeccChhhhhHHHHHHhhc
Confidence            578888887776 4  47888888653222224579999999999999999999983


No 7  
>PRK02315 adaptor protein; Provisional
Probab=78.90  E-value=1.6  Score=35.96  Aligned_cols=25  Identities=20%  Similarity=0.403  Sum_probs=22.6

Q ss_pred             cHHHHHHHHhhhhhcCCCCCCCeEe
Q 046614           63 RNVFIELLRMSEEEFGLPSFGPITL   87 (142)
Q Consensus        63 hp~F~~LL~~aeeEfG~~~~G~L~i   87 (142)
                      +-+|.++|++|..|+||..+|||+|
T Consensus        38 e~fF~~mm~Ea~~e~~F~~~~pl~~   62 (233)
T PRK02315         38 EEFFYSMMDEVDEEDDFADEGPLWF   62 (233)
T ss_pred             HHHHHHHHHHhccccCcccCCeEEE
Confidence            4689999999999999999999964


No 8  
>smart00666 PB1 PB1 domain. Phox and Bem1p domain, present in many eukaryotic cytoplasmic signalling proteins. The domain adopts a beta-grasp fold, similar to that found in ubiquitin and Ras-binding domains. A motif, variously termed OPR, PC and AID, represents the most conserved region of the majority of PB1 domains, and is necessary for PB1 domain function. This function is the formation of PB1 domain heterodimers, although not all PB1 domain pairs associate.
Probab=74.03  E-value=5.8  Score=26.38  Aligned_cols=52  Identities=25%  Similarity=0.386  Sum_probs=37.4

Q ss_pred             EeCCceeEeEeccCCCcHHHHHHHHhhhhhcCCC----------CCC-CeEecCcHHHHHHHHHHHhc
Q 046614           47 YTTDEKRFTVPLEYLSRNVFIELLRMSEEEFGLP----------SFG-PITLPCDSTFLNYVMSLIKG  103 (142)
Q Consensus        47 yVGe~~RfvVp~~yL~hp~F~~LL~~aeeEfG~~----------~~G-~L~iPCd~~~Fe~vl~~i~~  103 (142)
                      |.|+.+||.||-    ...|.+|..+..+.|++.          .+| .++|.++. .++.++.+...
T Consensus         8 ~~~~~~~~~~~~----~~s~~dL~~~i~~~~~~~~~~~~l~Y~Dedgd~v~l~sd~-Dl~~a~~~~~~   70 (81)
T smart00666        8 YGGETRRLSVPR----DISFEDLRSKVAKRFGLDNQSFTLKYQDEDGDLVSLTSDE-DLEEAIEEYDS   70 (81)
T ss_pred             ECCEEEEEEECC----CCCHHHHHHHHHHHhCCCCCCeEEEEECCCCCEEEecCHH-HHHHHHHHHHH
Confidence            445679999986    777999999999999874          244 56777765 55666655543


No 9  
>PF05389 MecA:  Negative regulator of genetic competence (MecA);  InterPro: IPR008681 Competence is the ability of a cell to take up exogenous DNA from its environment, resulting in transformation. It is widespread among bacteria and is probably an important mechanism for the horizontal transfer of genes. Cells that take up DNA inevitably acquire the nucleotides the DNA consists of, and, because nucleotides are needed for DNA and RNA synthesis and are expensive to synthesise, these may make a significant contribution to the cell's energy budget []. The lateral gene transfer caused by competence also contributes to the genetic diversity that makes evolution possible.  DNA usually becomes available by the death and lysis of other cells. Competent bacteria use components of extracellular filaments called type 4 pili to create pores in their membranes and pull DNA through the pores into the cytoplasm. This process, including the development of competence and the expression of the uptake machinery, is regulated in response to cell-cell signalling and/or nutritional conditions []. This family contains several bacterial MecA proteins. In complex media competence development is poor, and there is little or no expression of late competence genes. Overexpression of MecA inhibits comG transcription [, , ]. MecA enables the recognition and targeting of unfolded and aggregated proteins to the ClpC protease or to other proteins involved in proteolysis. Acts negatively in the development of competence by binding ComK and recruiting it to the ClpCP protease. When overexpressed, inhibits sporulation. Also involved in Spx degradation by ClpC. ; PDB: 3JTP_C 2Y1R_O 3PXI_c 3PXG_b 3JTO_D 3JTN_A.
Probab=73.51  E-value=1.1  Score=36.05  Aligned_cols=25  Identities=32%  Similarity=0.667  Sum_probs=0.0

Q ss_pred             cHHHHHHHHhhhhhcCCCCCCCeEe
Q 046614           63 RNVFIELLRMSEEEFGLPSFGPITL   87 (142)
Q Consensus        63 hp~F~~LL~~aeeEfG~~~~G~L~i   87 (142)
                      +-.|.++|++|.+|+||..+|||++
T Consensus        38 e~fF~~ileea~~e~~F~~~~~l~~   62 (220)
T PF05389_consen   38 EEFFYSILEEADEEHGFENDGPLTF   62 (220)
T ss_dssp             -------------------------
T ss_pred             HHHHHHHHHHhccccCcccCCeEEE
Confidence            5689999999999999999999975


No 10 
>cd05992 PB1 The PB1 domain is a modular domain mediating specific protein-protein interactions which play a role in many critical cell processes, such as osteoclastogenesis, angiogenesis, early cardiovascular development, and cell polarity. A canonical PB1-PB1 interaction, which involves heterodimerization of two PB1 domain, is required for the formation of macromolecular signaling complexes ensuring specificity and fidelity during cellular signaling. The interaction between two PB1 domain depends on the type of PB1. There are three types of PB1 domains: type I which contains an OPCA motif, acidic aminoacid cluster, type II which contains a basic cluster, and type I/II which contains both an OPCA motif and a basic cluster. Interactions of PB1 domains with other protein domains have been described as a noncanonical PB1-interactions. The PB1 domain module is conserved in amoebas, fungi, animals, and plants.
Probab=73.14  E-value=7.9  Score=25.51  Aligned_cols=53  Identities=26%  Similarity=0.354  Sum_probs=38.7

Q ss_pred             EeCCceeEeEeccCCCcHHHHHHHHhhhhhcCCC----------CCCC-eEecCcHHHHHHHHHHHhc
Q 046614           47 YTTDEKRFTVPLEYLSRNVFIELLRMSEEEFGLP----------SFGP-ITLPCDSTFLNYVMSLIKG  103 (142)
Q Consensus        47 yVGe~~RfvVp~~yL~hp~F~~LL~~aeeEfG~~----------~~G~-L~iPCd~~~Fe~vl~~i~~  103 (142)
                      |-|+-+||.+|.   .++.|.+|..+-++.|++.          .+|- ++|.++ ..|+.++....+
T Consensus         7 ~~~~~~~~~~~~---~~~s~~~L~~~i~~~~~~~~~~~~l~y~D~e~d~v~l~sd-~Dl~~a~~~~~~   70 (81)
T cd05992           7 YGGEIRRFVVVS---RSISFEDLRSKIAEKFGLDAVSFKLKYPDEDGDLVTISSD-EDLEEAIEEARR   70 (81)
T ss_pred             ecCCCEEEEEec---CCCCHHHHHHHHHHHhCCCCCcEEEEeeCCCCCEEEeCCH-HHHHHHHHHHhh
Confidence            446789999998   8888999999999988875          2444 455554 566777766654


No 11 
>PF00651 BTB:  BTB/POZ domain;  InterPro: IPR013069 The BTB (for BR-C, ttk and bab) [] or POZ (for Pox virus and Zinc finger) [] domain is present near the N terminus of a fraction of zinc finger (IPR007087 from INTERPRO) proteins and in proteins that contain the IPR006652 from INTERPRO motif such as Kelch and a family of pox virus proteins. The BTB/POZ domain mediates homomeric dimerisation and in some instances heteromeric dimerisation []. The structure of the dimerised PLZF BTB/POZ domain has been solved and consists of a tightly intertwined homodimer. The central scaffolding of the protein is made up of a cluster of alpha-helices flanked by short beta-sheets at both the top and bottom of the molecule []. POZ domains from several zinc finger proteins have been shown to mediate transcriptional repression and to interact with components of histone deacetylase co-repressor complexes including N-CoR and SMRT [, , ]. The POZ or BTB domain is also known as BR-C/Ttk or ZiN.; GO: 0005515 protein binding; PDB: 3M5B_A 1R28_B 3LBZ_A 3E4U_F 3BIM_B 1R2B_A 1R29_A 2VPK_A 2YY9_B 3GA1_A ....
Probab=66.42  E-value=19  Score=24.33  Aligned_cols=57  Identities=19%  Similarity=0.228  Sum_probs=41.6

Q ss_pred             EEEEeCCceeEeEeccCC--CcHHHHHHHHhhhhhcCCCCCC--CeEec-CcHHHHHHHHHHHhcc
Q 046614           44 FVVYTTDEKRFTVPLEYL--SRNVFIELLRMSEEEFGLPSFG--PITLP-CDSTFLNYVMSLIKGR  104 (142)
Q Consensus        44 ~~VyVGe~~RfvVp~~yL--~hp~F~~LL~~aeeEfG~~~~G--~L~iP-Cd~~~Fe~vl~~i~~~  104 (142)
                      +.+.||++++|-+.-..|  ..|.|+.+++..    +....+  .+.++ ++...|+.++..+-.+
T Consensus        13 ~~i~v~d~~~~~vhk~iL~~~S~~F~~~~~~~----~~~~~~~~~i~~~~~~~~~~~~~l~~~Y~~   74 (111)
T PF00651_consen   13 VTIRVGDGKTFYVHKNILAARSPYFRNLFEGS----KFKESTVPEISLPDVSPEAFEAFLEYMYTG   74 (111)
T ss_dssp             EEEEETTTEEEEE-HHHHHHHBHHHHHHHTTT----TSTTSSEEEEEETTSCHHHHHHHHHHHHHS
T ss_pred             EEEEECCCEEEeechhhhhccchhhhhccccc----ccccccccccccccccccccccccccccCC
Confidence            445667788999988887  569999999988    222233  35555 8899999999988755


No 12 
>PF11822 DUF3342:  Domain of unknown function (DUF3342);  InterPro: IPR021777  This family of proteins are functionally uncharacterised. This family is found in bacteria. This presumed domain is typically between 170 to 303 amino acids in length. The N-terminal half of this family is a BTB-like domain. 
Probab=55.78  E-value=18  Score=31.66  Aligned_cols=52  Identities=25%  Similarity=0.488  Sum_probs=40.9

Q ss_pred             ceeEeEeccCCC--cHHHHHHHHh---hhhhcCCCCCCCeEecCcHHHHHHHHHHHhccC
Q 046614           51 EKRFTVPLEYLS--RNVFIELLRM---SEEEFGLPSFGPITLPCDSTFLNYVMSLIKGRM  105 (142)
Q Consensus        51 ~~RfvVp~~yL~--hp~F~~LL~~---aeeEfG~~~~G~L~iPCd~~~Fe~vl~~i~~~~  105 (142)
                      ++=|..|.+.|-  ..-|++.|..   ..++..   +=.|.+-||+..|+.++.-+++..
T Consensus        13 ~rdF~C~~~lL~~~M~YF~~~l~~~~~~~~~~~---~idisVhCDv~iF~WLm~yv~~~~   69 (317)
T PF11822_consen   13 KRDFTCPRDLLVSEMRYFAEYLSRYINDSQRWE---EIDISVHCDVHIFEWLMRYVKGEP   69 (317)
T ss_pred             ceeeeccHHHHHHhhHHHHHHHhhcccccCcCC---CcceEEecChhHHHHHHHHhhcCC
Confidence            578999999884  5779999976   333322   456889999999999999998854


No 13 
>cd06407 PB1_NLP A PB1 domain is present in NIN like proteins (NLP), a key enzyme in a process of establishment of symbiosis betweeen legumes and nitrogen fixing bacteria (Rhizobium). The PB1 domain is a modular domain mediating specific protein-protein interaction which play a role in many critical cell processes like osteoclastogenesis, angiogenesis, early cardiovascular development, and cell polarity. A canonical PB1-PB1 interaction, which involves heterodimerization of two PB1 domains, is required for the formation of macromolecular signaling complexes ensuring specificity and fidelity during cellular signaling. The interaction between two PB1 domain depends on the type of PB1. There are three types of PB1 domains: type I which contains an OPCA motif, acidic aminoacid cluster, type II which contains a basic cluster, and type I/II which contains both an OPCA motif and a basic cluster.  Interactions of PB1 domains with other protein domains have been described as noncanonical PB1-inte
Probab=54.91  E-value=23  Score=24.77  Aligned_cols=47  Identities=26%  Similarity=0.445  Sum_probs=32.5

Q ss_pred             EEEeCCceeEeEeccCCCcHHHHHHHHhhhhhcCCCC------------CCCeEecCcHHHHH
Q 046614           45 VVYTTDEKRFTVPLEYLSRNVFIELLRMSEEEFGLPS------------FGPITLPCDSTFLN   95 (142)
Q Consensus        45 ~VyVGe~~RfvVp~~yL~hp~F~~LL~~aeeEfG~~~------------~G~L~iPCd~~~Fe   95 (142)
                      +.|-||-.||-+|..-    -|++|.++-.+.|++..            +..++|.|+.++=|
T Consensus         5 ~~~~~d~~r~~l~~~~----~~~~L~~~i~~r~~~~~~~~f~LkY~Ddegd~v~ltsd~DL~e   63 (82)
T cd06407           5 ATYGEEKIRFRLPPSW----GFTELKQEIAKRFKLDDMSAFDLKYLDDDEEWVLLTCDADLEE   63 (82)
T ss_pred             EEeCCeEEEEEcCCCC----CHHHHHHHHHHHhCCCCCCeeEEEEECCCCCeEEeecHHHHHH
Confidence            3455678999988744    58888888888776542            34567888876544


No 14 
>PF14317 YcxB:  YcxB-like protein
Probab=49.74  E-value=33  Score=20.78  Aligned_cols=33  Identities=21%  Similarity=0.321  Sum_probs=26.1

Q ss_pred             CCCCeEEEEeCCceeEeEeccCCCcHHHHHHHH
Q 046614           39 ANKGHFVVYTTDEKRFTVPLEYLSRNVFIELLR   71 (142)
Q Consensus        39 vpkG~~~VyVGe~~RfvVp~~yL~hp~F~~LL~   71 (142)
                      .-+.++-+|+++..-++||.+.++.-...++.+
T Consensus        27 e~~~~~~l~~~~~~~~~iPk~~f~~~e~~~f~~   59 (62)
T PF14317_consen   27 ETKDYFYLYLGKNQAFIIPKRAFSEEEKEEFRE   59 (62)
T ss_pred             EeCCEEEEEECCCeEEEEEHHHCCHhHHHHHHH
Confidence            346788999999999999999999655555544


No 15 
>cd06396 PB1_NBR1 The PB1 domain is an essential part of NBR1 protein, next to BRCA1, a scaffold protein mediating specific protein-protein interaction with both titin protein kinase and with another scaffold protein p62. A canonical PB1-PB1 interaction, which involves heterodimerization of two PB1 domain, is required for the formation of macromolecular signaling complexes ensuring specificity and fidelity during cellular signaling. The interaction between two PB1 domain depends on the type of PB1. There are three types of PB1 domains: type I which contains an OPCA motif, acidic aminoacid cluster, type II which contains a basic cluster, and type I/II which contains both an OPCA motif and a basic cluster. The NBR1 protein contains a type I PB1 domain.
Probab=46.70  E-value=88  Score=22.19  Aligned_cols=57  Identities=14%  Similarity=0.264  Sum_probs=40.0

Q ss_pred             EEEeCCceeEeEeccCCCcHHHHHHHHhhhhhcCCC---------CCCCeEecCcHHHHHHHHHHHhcc
Q 046614           45 VVYTTDEKRFTVPLEYLSRNVFIELLRMSEEEFGLP---------SFGPITLPCDSTFLNYVMSLIKGR  104 (142)
Q Consensus        45 ~VyVGe~~RfvVp~~yL~hp~F~~LL~~aeeEfG~~---------~~G~L~iPCd~~~Fe~vl~~i~~~  104 (142)
                      |-|-||..||.+|-  -.++.|.+|..+-+.-|+++         .+.+++|.|++++ +..+.+.++.
T Consensus         5 aty~~d~~rf~~~~--~~~~~~~~L~~ev~~rf~l~~f~lKYlDde~e~v~lssd~eL-eE~~rl~~~~   70 (81)
T cd06396           5 VTYNGESQSFLVSD--SENTTWASVEAMVKVSFGLNDIQIKYVDEENEEVSVNSQGEY-EEALKSAVRQ   70 (81)
T ss_pred             EEECCeEEEEEecC--CCCCCHHHHHHHHHHHhCCCcceeEEEcCCCCEEEEEchhhH-HHHHHHHHhC
Confidence            34668889999976  22456899999988888864         2457899998764 5555555544


No 16 
>PF08948 DUF1859:  Domain of unknown function (DUF1859);  InterPro: IPR015043 This entry is represented by Bacteriophage PRD1, P5. This protein has no known function though it is sometimes found in the N terminus of bacteriophage spike proteins []. ; PDB: 1W8X_N.
Probab=44.18  E-value=10  Score=28.78  Aligned_cols=28  Identities=21%  Similarity=0.473  Sum_probs=8.8

Q ss_pred             CCCeEEEEeCCceeEe----------EeccCCCcHHHH
Q 046614           40 NKGHFVVYTTDEKRFT----------VPLEYLSRNVFI   67 (142)
Q Consensus        40 pkG~~~VyVGe~~Rfv----------Vp~~yL~hp~F~   67 (142)
                      ..||+||.|-.+.+|+          ||+-|||.|+-+
T Consensus        86 ~QGYfPlL~~~~~KFv~~~~~~GKks~P~~FlNF~IA~  123 (126)
T PF08948_consen   86 KQGYFPLLVPGRAKFVVRHTGSGKKSVPMFFLNFTIAQ  123 (126)
T ss_dssp             --SS--EEE--SSSSEEEEEEEESS----S--------
T ss_pred             CcccceeeccchhhhhhhhccCCCcceeeEEEeceeee
Confidence            4799999997766665          688888887643


No 17 
>PF02209 VHP:  Villin headpiece domain;  InterPro: IPR003128 Villin is an F-actin bundling protein involved in the maintenance of the microvilli of the absorptive epithelia. The villin-type "headpiece" domain is a modular motif found at the extreme C terminus of larger "core" domains in over 25 cytoskeletal proteins in plants and animals, often in assocation with the Gelsolin repeat. Although the headpiece is classified as an F-actin-binding domain, it has been shown that not all headpiece domains are intrinsically F-actin-binding motifs, surface charge distribution may be an important element for F-actin recognition []. An autonomously folding, 35 residue, thermostable subdomain (HP36) of the full-length 76 amino acid residue villin headpiece, is the smallest known example of a cooperatively folded domain of a naturally occurring protein. The structure of HP36, as determined by NMR spectroscopy, consists of three short helices surrounding a tightly packed hydrophobic core []. ; GO: 0003779 actin binding, 0007010 cytoskeleton organization; PDB: 1ZV6_A 1QZP_A 1UND_A 2PPZ_A 3TJW_B 1YU8_X 2JM0_A 1WY4_A 3MYC_A 1YU5_X ....
Probab=42.21  E-value=13  Score=22.55  Aligned_cols=19  Identities=47%  Similarity=0.651  Sum_probs=15.4

Q ss_pred             CCCcHHHHHHHHhhhhhcC
Q 046614           60 YLSRNVFIELLRMSEEEFG   78 (142)
Q Consensus        60 yL~hp~F~~LL~~aeeEfG   78 (142)
                      ||+.-.|++++.++.+||.
T Consensus         1 YLsd~dF~~vFgm~~~eF~   19 (36)
T PF02209_consen    1 YLSDEDFEKVFGMSREEFY   19 (36)
T ss_dssp             GS-HHHHHHHHSS-HHHHH
T ss_pred             CcCHHHHHHHHCCCHHHHH
Confidence            7899999999999999984


No 18 
>COG3769 Predicted hydrolase (HAD superfamily) [General function prediction only]
Probab=40.93  E-value=42  Score=28.81  Aligned_cols=75  Identities=20%  Similarity=0.132  Sum_probs=47.6

Q ss_pred             CChHHHHHHHHHHhhhhhcccCccccccccccCCCcCCCCCeEEEEeCCceeEeEeccCCC--cHHHHHHHHhhhhhcCC
Q 046614            2 INSKRLIELARKWQKMATIKRRRISFPRRAASQNSSVANKGHFVVYTTDEKRFTVPLEYLS--RNVFIELLRMSEEEFGL   79 (142)
Q Consensus         2 ~~~kkL~~~~kKWq~~a~~~rkr~s~~~~~~~~~~~~vpkG~~~VyVGe~~RfvVp~~yL~--hp~F~~LL~~aeeEfG~   79 (142)
                      .|+|-..+|.--|.++..-++     |-...+....-.|+|++|-=++-+.--=+-..=|+  --.++++|++.||-|||
T Consensus        45 ~SSKT~aE~~~l~~~l~v~~~-----p~iaEnG~aI~~p~~~~~~~~~~r~~~g~~~~elg~~l~~ire~l~kLee~~g~  119 (274)
T COG3769          45 CSSKTRAEMLYLQKSLGVQGL-----PLIAENGAAIYLPKGWFPFDGKPREISGISHIELGKVLEKIREKLDKLEEHFGF  119 (274)
T ss_pred             eccchHHHHHHHHHhcCCCCC-----ceeecCCceEEecccccccCCCCceecceEeeehhhhHHHHHHHHHHHHHHhCe
Confidence            367778899999998765552     22223334556899999887654311111111222  34589999999999998


Q ss_pred             CC
Q 046614           80 PS   81 (142)
Q Consensus        80 ~~   81 (142)
                      ..
T Consensus       120 ~~  121 (274)
T COG3769         120 TT  121 (274)
T ss_pred             eE
Confidence            63


No 19 
>PF00564 PB1:  PB1 domain;  InterPro: IPR000270 The Phox and Bem1p domain, is present in many eukaryotic cytoplasmic signalling proteins. The domain adopts a beta-grasp fold, similar to that found in ubiquitin and Ras-binding domains. A motif, variously termed OPR, PC and AID, represents the most conserved region of the majority of PB1 domains, and is necessary for PB1 domain function. This function is the formation of PB1 domain heterodimers, although not all PB1 domain pairs associate.; GO: 0005515 protein binding; PDB: 1IPG_A 1IP9_A 2KFK_A 1WMH_A 1VD2_A 1WI0_A 1OEY_C 1PQS_A 1Q1O_A 1TZ1_A ....
Probab=40.84  E-value=82  Score=20.64  Aligned_cols=51  Identities=27%  Similarity=0.327  Sum_probs=31.8

Q ss_pred             eCCceeEeEeccCCCcHHHHHHHHhhhhhcCCC----------CCCC-eEecCcHHHHHHHHHHHh
Q 046614           48 TTDEKRFTVPLEYLSRNVFIELLRMSEEEFGLP----------SFGP-ITLPCDSTFLNYVMSLIK  102 (142)
Q Consensus        48 VGe~~RfvVp~~yL~hp~F~~LL~~aeeEfG~~----------~~G~-L~iPCd~~~Fe~vl~~i~  102 (142)
                      -|+.+|   .+..-..+.|.+|..+.++.||..          .+|- ++|.++.+ |+.++...+
T Consensus         9 ~~~~~~---~~~~~~~~s~~~L~~~i~~~~~~~~~~~~l~Y~D~dgD~V~i~sd~D-l~~a~~~~~   70 (84)
T PF00564_consen    9 GGDIRR---IISLPSDVSFDDLRSKIREKFGLLDEDFQLKYKDEDGDLVTISSDED-LQEAIEQAK   70 (84)
T ss_dssp             TTEEEE---EEEECSTSHHHHHHHHHHHHHTTSTSSEEEEEEETTSSEEEESSHHH-HHHHHHHHH
T ss_pred             CCeeEE---EEEcCCCCCHHHHHHHHHHHhCCCCccEEEEeeCCCCCEEEeCCHHH-HHHHHHHHH
Confidence            345555   233345679999999999999983          3554 45666544 444444443


No 20 
>smart00153 VHP Villin headpiece domain.
Probab=40.78  E-value=17  Score=22.02  Aligned_cols=19  Identities=47%  Similarity=0.681  Sum_probs=17.2

Q ss_pred             CCCcHHHHHHHHhhhhhcC
Q 046614           60 YLSRNVFIELLRMSEEEFG   78 (142)
Q Consensus        60 yL~hp~F~~LL~~aeeEfG   78 (142)
                      ||+.-.|+.++.++.+||-
T Consensus         1 yLsdeeF~~vfgmsr~eF~   19 (36)
T smart00153        1 YLSDEDFEEVFGMTREEFY   19 (36)
T ss_pred             CCCHHHHHHHHCCCHHHHH
Confidence            7899999999999999984


No 21 
>cd06397 PB1_UP1 Uncharacterized protein 1. The PB1 domain is a modular domain mediating specific protein-protein interaction which play a role in many critical cell processes, such as osteoclastogenesis, angiogenesis, early cardiovascular development, and cell polarity. A canonical PB1-PB1 interaction, which involves heterodimerization of two PB1 domain, is required for the formation of macromolecular signaling complexes ensuring specificity and fidelity during cellular signaling. The interaction between two PB1 domain depends on the type of PB1. There are three types of PB1 domains: type I which contains an OPCA motif, acidic aminoacid cluster, type II which contains a basic cluster, and type I/II which contains both an OPCA motif and a basic cluster. Interactions of PB1 domains with other protein domains have been described as noncanonical PB1-interactions.
Probab=39.70  E-value=66  Score=23.12  Aligned_cols=45  Identities=22%  Similarity=0.347  Sum_probs=33.4

Q ss_pred             EeCCceeEeEeccCCCcHHHHHHHHhhhhhcCCC----------CC-CCeEecCcHHHHH
Q 046614           47 YTTDEKRFTVPLEYLSRNVFIELLRMSEEEFGLP----------SF-GPITLPCDSTFLN   95 (142)
Q Consensus        47 yVGe~~RfvVp~~yL~hp~F~~LL~~aeeEfG~~----------~~-G~L~iPCd~~~Fe   95 (142)
                      |-|+.|||..|.    .|.+.+|-++-+.=|.+.          .| ..|||.=+.++.+
T Consensus         7 ~~g~~RRf~~~~----~pt~~~L~~kl~~Lf~lp~~~~~vtYiDeD~D~ITlssd~eL~d   62 (82)
T cd06397           7 FLGDTRRIVFPD----IPTWEALASKLENLYNLPEIKVGVTYIDNDNDEITLSSNKELQD   62 (82)
T ss_pred             eCCceEEEecCC----CccHHHHHHHHHHHhCCChhHeEEEEEcCCCCEEEecchHHHHH
Confidence            557789999998    899999999988877765          24 3467765555444


No 22 
>PF07429 Glyco_transf_56:  4-alpha-L-fucosyltransferase glycosyl transferase group 56;  InterPro: IPR009993 This family contains the bacterial enzyme 4-alpha-L-fucosyltransferase (Fuc4NAc transferase) (approximately 360 residues long). This catalyses the synthesis of Fuc4NAc-ManNAcA-GlcNAc-PP-Und (lipid III) as part of the biosynthetic pathway of enterobacterial common antigen (ECA), a polysaccharide comprised of the trisaccharide repeat unit Fuc4NAc-ManNAcA-GlcNAc [].; GO: 0008417 fucosyltransferase activity, 0009246 enterobacterial common antigen biosynthetic process, 0009276 Gram-negative-bacterium-type cell wall
Probab=37.26  E-value=66  Score=28.78  Aligned_cols=51  Identities=16%  Similarity=0.305  Sum_probs=36.9

Q ss_pred             ceeEeEeccCC--CcHHHHHHHHhhhhhcCCCCCCCeEecCcHHHHHHHHHHHhcc
Q 046614           51 EKRFTVPLEYL--SRNVFIELLRMSEEEFGLPSFGPITLPCDSTFLNYVMSLIKGR  104 (142)
Q Consensus        51 ~~RfvVp~~yL--~hp~F~~LL~~aeeEfG~~~~G~L~iPCd~~~Fe~vl~~i~~~  104 (142)
                      ..|++||..|=  |..-.+++.+.+++-||   ++-+.+-=+---|+..+.++++-
T Consensus       214 ~~kIivPLsYg~~n~~Yi~~V~~~~~~lF~---~~~~~iL~e~mpf~eYl~lL~~c  266 (360)
T PF07429_consen  214 DVKIIVPLSYGANNQAYIQQVIQAGKELFG---AENFQILTEFMPFDEYLALLSRC  266 (360)
T ss_pred             CeEEEEECCCCCchHHHHHHHHHHHHHhcC---ccceeEhhhhCCHHHHHHHHHhC
Confidence            48999999996  45677788888888888   44455555566677777777654


No 23 
>PF11834 DUF3354:  Domain of unknown function (DUF3354);  InterPro: IPR021789 Potassium channels take part in important processes of higher plants, including opening and closing of stomatal pores and leaf movement. Inward rectifying potassium (K(+)in) channels play an important role in turgor regulation and ion uptake in higher plants. All of them comprise, from their N-terminal to their C-terminal ends: a short hydrophilic region, a hydrophobic region structurally analogous and partially homologous to the transmembrane domain of voltage-gated animal channels from the Shaker superfamily, a putative cyclic nucleotide-binding domain, and a conserved C-terminal KHA domain. Between these last two regions, some of them (AKT1, AKT2 and SKT1) contain an ankyrin-repeat domain with six repeats homologous to those of human erythrocyte ankyrin.  This entry represents the KHA domain which is unique to plant K(+)in channels. The KHA domain contains two high-homology blocks enriched for hydrophobic and acidic residues, respectively. The KHA domain is essential for interaction of plant K(+)in channels. The KHA domain mediates tetramerization and/or stabilisation of the heteromers [, , ]. 
Probab=33.38  E-value=32  Score=23.56  Aligned_cols=17  Identities=35%  Similarity=0.772  Sum_probs=15.3

Q ss_pred             HHHHHHHHhhhhhcCCC
Q 046614           64 NVFIELLRMSEEEFGLP   80 (142)
Q Consensus        64 p~F~~LL~~aeeEfG~~   80 (142)
                      -.++|||+.|++.||+.
T Consensus        26 ~SleeLl~ia~~kfg~~   42 (69)
T PF11834_consen   26 DSLEELLKIASEKFGFS   42 (69)
T ss_pred             ccHHHHHHHHHHHhCCC
Confidence            37999999999999985


No 24 
>cd04751 Commd3 COMM_Domain containing protein 3. The COMM Domain is found at the C-terminus of a variety of proteins; presumably all COMM_Domain containing proteins are located in the nucleus and the COMM domain plays a role in protein-protein interactions. Several family members have been shown to bind and inhibit NF-kappaB.
Probab=32.48  E-value=48  Score=23.58  Aligned_cols=29  Identities=17%  Similarity=0.332  Sum_probs=22.8

Q ss_pred             CCCeEecCcHHHHHHHHHHHhccChHHHHH
Q 046614           82 FGPITLPCDSTFLNYVMSLIKGRMPEELEK  111 (142)
Q Consensus        82 ~G~L~iPCd~~~Fe~vl~~i~~~~~~~~e~  111 (142)
                      .+++.+-|+++.|.+++.-|+.. .+.+|+
T Consensus        64 ~~~i~f~c~~e~L~~Li~~Lk~A-~~~~e~   92 (95)
T cd04751          64 KPDINFTCTLEQLQDLVNKLKDA-AKNIER   92 (95)
T ss_pred             cceEEEEeCHHHHHHHHHHHHHH-HHHHHH
Confidence            35899999999999999999533 455554


No 25 
>cd06398 PB1_Joka2 The PB1 domain is present in the Nicotiana plumbaginifolia Joka2 protein which interacts with sulfur stress inducible UP9 protein. The PB1 domain is a modular domain mediating specific protein-protein interactions which play a role in many critical cell processes, such as osteoclastogenesis, angiogenesis, early cardiovascular development and cell polarity. A canonical PB1-PB1 interaction, which involves heterodimerization of two PB1 domain, is required for the formation of macromolecular signaling complexes ensuring specificity and fidelity during cellular signaling. The interaction between two PB1 domain depends on the type of PB1. There are three types of PB1 domains: type I which contains an OPCA motif, acidic aminoacid cluster, type II which contains a basic cluster, and type I/II which contains both an OPCA motif and a basic cluster.  Interactions of PB1 domains with other protein domains have been described as noncanonical PB1-interactions. The PB1 domain module
Probab=32.00  E-value=85  Score=22.36  Aligned_cols=51  Identities=27%  Similarity=0.311  Sum_probs=33.6

Q ss_pred             EeCCceeEeEecc-CCCcHHHHHHHHhhhhhcCCCC-----------CCC-eEecCcHHHHHHH
Q 046614           47 YTTDEKRFTVPLE-YLSRNVFIELLRMSEEEFGLPS-----------FGP-ITLPCDSTFLNYV   97 (142)
Q Consensus        47 yVGe~~RfvVp~~-yL~hp~F~~LL~~aeeEfG~~~-----------~G~-L~iPCd~~~Fe~v   97 (142)
                      |=|+-+||-+|.. --.+.-|..|.++-++-|....           +|- ++|.||.++-+-+
T Consensus         7 y~~~~rRf~l~~~~~~~d~~~~~L~~kI~~~f~l~~~~~~~l~Y~Dedgd~V~l~~D~DL~~a~   70 (91)
T cd06398           7 YGGTLRRFTFPVAENQLDLNMDGLREKVEELFSLSPDADLSLTYTDEDGDVVTLVDDNDLTDAI   70 (91)
T ss_pred             eCCEEEEEEeccccccCCCCHHHHHHHHHHHhCCCCCCcEEEEEECCCCCEEEEccHHHHHHHH
Confidence            4356799999974 0114578888888888776653           444 5788877655543


No 26 
>TIGR02527 dot_icm_IcmQ Dot/Icm secretion system protein IcmQ. Members of this protein family are the IcmQ component of Dot/Icm secretion systems, as found in obligate intracellular pathogens Legionella pneumophila and Coxiella burnetii. While this system resembles type IV secretion systems and has been called a form of type IV, the literature now seems to favor calling this the Dot/Icm system. This protein was shown to be essential for translocation (PubMed:15661013).
Probab=31.99  E-value=31  Score=28.11  Aligned_cols=55  Identities=18%  Similarity=0.354  Sum_probs=32.7

Q ss_pred             HHHHhh-hhhcccCccccccccccC--------CCcCCCCCeEEEEeCCceeE-----eEeccCCCcHH
Q 046614           11 ARKWQK-MATIKRRRISFPRRAASQ--------NSSVANKGHFVVYTTDEKRF-----TVPLEYLSRNV   65 (142)
Q Consensus        11 ~kKWq~-~a~~~rkr~s~~~~~~~~--------~~~~vpkG~~~VyVGe~~Rf-----vVp~~yL~hp~   65 (142)
                      ++.|.+ +|++.|.-+|-|==.+..        +...+.+.|++|||-...=+     -+|++=|+.|+
T Consensus        78 lqsWerilanLprqmisRPIYanE~dvk~~IksKenk~NEAYVaiyI~q~dIl~~~~dk~p~Dk~GkpL  146 (182)
T TIGR02527        78 LKQWAKILASLERQMIGRPIYADEADAKAAIKQKENKLNEACVAIAIDQSDIIHLSADKAPKDKLGKLL  146 (182)
T ss_pred             HHHHHHHHHhChhhhhCCCCcCCHHHHHHHHHhhhccccceEEEEEEchHhcccCCcccCcccccCCcc
Confidence            578998 566777666544211111        25678999999999642222     24555555554


No 27 
>cd04395 RhoGAP_ARHGAP21 RhoGAP_ARHGAP21: RhoGAP (GTPase-activator protein [GAP] for Rho-like small GTPases) domain of ArhGAP21-like proteins. ArhGAP21 is a multi-domain protein, containing RhoGAP, PH and PDZ domains, and is believed to play a role in the organization of the cell-cell junction complex. It has been shown to function as a GAP of Cdc42 and RhoA, and to interact with alpha-catenin and Arf6. Small GTPases cluster into distinct families, and all act as molecular switches, active in their GTP-bound form but inactive when GDP-bound. The Rho family of GTPases activates effectors involved in a wide variety of developmental processes, including regulation of cytoskeleton formation, cell proliferation and the JNK signaling pathway. GTPases generally have a low intrinsic GTPase hydrolytic activity but there are family-specific groups of GAPs that enhance the rate of GTP hydrolysis by several orders of magnitude.
Probab=31.23  E-value=1.8e+02  Score=22.65  Aligned_cols=42  Identities=14%  Similarity=0.181  Sum_probs=34.4

Q ss_pred             HHHHHHHHhhhhhcCCCCCCCeEecCcHHHHHHHHHHHhccC
Q 046614           64 NVFIELLRMSEEEFGLPSFGPITLPCDSTFLNYVMSLIKGRM  105 (142)
Q Consensus        64 p~F~~LL~~aeeEfG~~~~G~L~iPCd~~~Fe~vl~~i~~~~  105 (142)
                      |.|-+..-..-++.|.+.+|--++|.+...-+.+...++++.
T Consensus        19 P~iv~~~~~~l~~~g~~~eGIFR~~g~~~~i~~l~~~l~~~~   60 (196)
T cd04395          19 PLIVEVCCNIVEARGLETVGIYRVPGNNAAISALQEELNRGG   60 (196)
T ss_pred             ChHHHHHHHHHHHcCCCCccceeCCCcHHHHHHHHHHHhcCC
Confidence            555544445667889999999999999999999999999875


No 28 
>COG1759 5-formaminoimidazole-4-carboxamide-1-beta-D-ribofuranosyl    5'-monophosphate synthetase (purine biosynthesis) [Nucleotide transport and    metabolism]
Probab=31.20  E-value=24  Score=31.50  Aligned_cols=79  Identities=23%  Similarity=0.368  Sum_probs=46.6

Q ss_pred             CcCCCCCeEEEEeC-C--ceeEeEec---------cCCCcHHHHHHHHhhhh----hcCC--CCCCCeE-----------
Q 046614           36 SSVANKGHFVVYTT-D--EKRFTVPL---------EYLSRNVFIELLRMSEE----EFGL--PSFGPIT-----------   86 (142)
Q Consensus        36 ~~~vpkG~~~VyVG-e--~~RfvVp~---------~yL~hp~F~~LL~~aee----EfG~--~~~G~L~-----------   86 (142)
                      ..-+|.|-|++||| |  ...|.||+         +- ..-.-..||++|.=    .|.=  +.||++.           
T Consensus        87 ~I~IP~gSfv~Y~G~d~ie~~~~vP~fGnR~lLrwE~-~~~~~~~lLekAgi~~P~~~~~PeeIdr~VIVK~pgAkggRG  165 (361)
T COG1759          87 AIFIPHGSFVAYVGYDGIENEFEVPMFGNRELLRWEE-DRKLEYKLLEKAGLRIPKKYKSPEEIDRPVIVKLPGAKGGRG  165 (361)
T ss_pred             eEEecCCceEEEecchhhhhcccCcccccHhHhhhhc-chhhHHHHHHHcCCCCCcccCChHHcCCceEEecCCccCCce
Confidence            44689999999999 3  36677764         11 22334578888752    2220  0244432           


Q ss_pred             --ecCcHHHHH-HHHHHHhccC--hHHHHHHHHh
Q 046614           87 --LPCDSTFLN-YVMSLIKGRM--PEELEKVLLN  115 (142)
Q Consensus        87 --iPCd~~~Fe-~vl~~i~~~~--~~~~e~~~l~  115 (142)
                        +.=+...|. .+-.+++++.  .+|++++-+-
T Consensus       166 yFiA~s~eef~ek~e~l~~~gvi~~edlkna~Ie  199 (361)
T COG1759         166 YFIASSPEEFYEKAERLLKRGVITEEDLKNARIE  199 (361)
T ss_pred             EEEEcCHHHHHHHHHHHHHcCCcchhhhhhceee
Confidence              344555554 5557777775  3777776543


No 29 
>KOG1290 consensus Serine/threonine protein kinase [Signal transduction mechanisms]
Probab=30.72  E-value=29  Score=32.72  Aligned_cols=19  Identities=26%  Similarity=0.300  Sum_probs=15.9

Q ss_pred             CCCCeEEEEeCC---ceeEeEe
Q 046614           39 ANKGHFVVYTTD---EKRFTVP   57 (142)
Q Consensus        39 vpkG~~~VyVGe---~~RfvVp   57 (142)
                      .+-||.||++||   ..||+|-
T Consensus        62 ~kGGYHpV~IGD~F~~gRY~v~   83 (590)
T KOG1290|consen   62 RKGGYHPVRIGDVFNGGRYHVQ   83 (590)
T ss_pred             hcCCCceeeccccccCceEEEE
Confidence            467999999998   3899874


No 30 
>PRK02797 4-alpha-L-fucosyltransferase; Provisional
Probab=30.23  E-value=1.2e+02  Score=26.73  Aligned_cols=89  Identities=16%  Similarity=0.289  Sum_probs=55.2

Q ss_pred             HHHHhhhhhcccCccccccccccC-C---CcCCCCCeEEEEeCC---------------------ceeEeEeccC--CCc
Q 046614           11 ARKWQKMATIKRRRISFPRRAASQ-N---SSVANKGHFVVYTTD---------------------EKRFTVPLEY--LSR   63 (142)
Q Consensus        11 ~kKWq~~a~~~rkr~s~~~~~~~~-~---~~~vpkG~~~VyVGe---------------------~~RfvVp~~y--L~h   63 (142)
                      +++|.+..   .+-..+|...... +   ....+++.+.+.||.                     .-|++||..|  =|.
T Consensus       113 a~~~~~v~---~~llyfpt~m~~~l~~~~~~~~~~~~~tIlvGNSgd~SN~Hie~L~~l~~~~~~~v~ii~PlsYp~gn~  189 (322)
T PRK02797        113 AQRHPKVP---GSLLYFPTRMDPSLNTMANDRQRAGKMTILVGNSGDRSNRHIEALRALHQQFGDNVKIIVPMGYPANNQ  189 (322)
T ss_pred             HHhcCCCC---ccEEecCCcchhhhccccccccCCCceEEEEeCCCCCcccHHHHHHHHHHHhCCCeEEEEECCcCCCCH
Confidence            56666543   1124555543211 1   223466788898872                     2599999999  555


Q ss_pred             HHHHHHHHhhhhhcCCCCCCCeEecCcHHHHHHHHHHHhccC
Q 046614           64 NVFIELLRMSEEEFGLPSFGPITLPCDSTFLNYVMSLIKGRM  105 (142)
Q Consensus        64 p~F~~LL~~aeeEfG~~~~G~L~iPCd~~~Fe~vl~~i~~~~  105 (142)
                      .-.++..+.+.+-||   .+-+++-=+---|+..+.+|.+-+
T Consensus       190 ~Yi~~V~~~~~~lF~---~~~~~~L~e~l~f~eYl~lL~~~D  228 (322)
T PRK02797        190 AYIEEVRQAGLALFG---AENFQILTEKLPFDDYLALLRQCD  228 (322)
T ss_pred             HHHHHHHHHHHHhcC---cccEEehhhhCCHHHHHHHHHhCC
Confidence            566666666777777   345666666667777777776543


No 31 
>cd06401 PB1_TFG The PB1 domain found in TFG protein, an oncogenic gene product and fusion partner to nerve growth factor tyrosine kinase receptor TrkA and to the tyrosine kinase ALK. The PB1 domain is a modular domain mediating specific protein-protein interaction in many critical cell processes, such as osteoclastogenesis, angiogenesis, early cardiovascular development and cell polarity. A canonical PB1-PB1 interaction, which involves heterodimerization of two PB1 domains, is required for the formation of macromolecular signaling complexes ensuring specificity and fidelity during cellular signaling. The interaction between two PB1 domain depends on the type of PB1. There are three types of PB1 domains: type I which contains an OPCA motif, acidic aminoacid cluster, type II which contains a basic cluster, and type I/II which contains both an OPCA motif and a basic cluster.  The PB1 domains of TFG represent a type I/II PB1 domain. The physiological function of TFG remains unknown.
Probab=30.21  E-value=96  Score=22.15  Aligned_cols=43  Identities=23%  Similarity=0.200  Sum_probs=27.4

Q ss_pred             EEEeCCceeEeEeccCCCcHHHHHHHHhhhhhcCCC-------------CCCCe-EecCc
Q 046614           45 VVYTTDEKRFTVPLEYLSRNVFIELLRMSEEEFGLP-------------SFGPI-TLPCD   90 (142)
Q Consensus        45 ~VyVGe~~RfvVp~~yL~hp~F~~LL~~aeeEfG~~-------------~~G~L-~iPCd   90 (142)
                      +||-||-||+-+|.+   .-.|.+|.++.+..|...             .||-+ ||.++
T Consensus         5 ~~~g~DiR~~~~~~~---~~t~~~L~~~v~~~F~~~~~~~~~flIKYkD~dGDlVTIts~   61 (81)
T cd06401           5 AQLGDDIRRIPIHNE---DITYDELLLMMQRVFRGKLGSSDDVLIKYKDEDGDLITIFDS   61 (81)
T ss_pred             EEeCCeEEEEeccCc---cccHHHHHHHHHHHhccccCCcccEEEEEECCCCCEEEeccH
Confidence            456567788666642   226778888887666522             46665 67775


No 32 
>PF12058 DUF3539:  Protein of unknown function (DUF3539);  InterPro: IPR021926  This family of proteins is functionally uncharacterised. This protein is found in bacteria. Proteins in this family are about 90 amino acids in length. This protein has a conserved NHP sequence motif. ; PDB: 3N5B_B 2XKO_C 2XG8_F.
Probab=27.31  E-value=10  Score=27.62  Aligned_cols=13  Identities=38%  Similarity=0.531  Sum_probs=9.2

Q ss_pred             cCCCcHHHHHHHH
Q 046614           59 EYLSRNVFIELLR   71 (142)
Q Consensus        59 ~yL~hp~F~~LL~   71 (142)
                      .|||||.|.-|-.
T Consensus         4 ~YLNHPtFGlLy~   16 (88)
T PF12058_consen    4 TYLNHPTFGLLYR   16 (88)
T ss_dssp             -EEEETTTEEEEE
T ss_pred             ccccCCccchhee
Confidence            5899998876643


No 33 
>COG3789 Uncharacterized protein conserved in bacteria [Function unknown]
Probab=27.19  E-value=92  Score=24.46  Aligned_cols=52  Identities=17%  Similarity=0.278  Sum_probs=41.9

Q ss_pred             CCCeEEEEe---CCc---eeEeEeccCCCcH-HHHHHHHhhhhhcCCCCCCCeEecCcH
Q 046614           40 NKGHFVVYT---TDE---KRFTVPLEYLSRN-VFIELLRMSEEEFGLPSFGPITLPCDS   91 (142)
Q Consensus        40 pkG~~~VyV---Ge~---~RfvVp~~yL~hp-~F~~LL~~aeeEfG~~~~G~L~iPCd~   91 (142)
                      .=|-+|+||   |++   +-|+-|++-.++| .|.+.|=+++.-+-...=|..++|=+.
T Consensus        45 eyGDLpi~V~~~g~Qiivetllwp~s~i~n~aeFNeflL~~qk~~PLSsvGit~v~gee  103 (146)
T COG3789          45 EYGDLPINVLFTGRQIIVETLLWPVSSISNPAEFNEFLLRNQKMMPLSSVGITSVQGEE  103 (146)
T ss_pred             hcCCcceEEccCccEEeEEEEeccccccCCHHHHHHHHHhhccccccccccccccCchh
Confidence            358899998   333   7888999988887 599999999998888877877887654


No 34 
>COG4862 MecA Negative regulator of genetic competence, sporulation and motility [Posttranslational modification, protein turnover, chaperones / Signal transduction mechanisms / Cell motility and secretion]
Probab=25.45  E-value=54  Score=27.58  Aligned_cols=26  Identities=19%  Similarity=0.359  Sum_probs=23.7

Q ss_pred             CcHHHHHHHHhhhhhcCCCCCCCeEe
Q 046614           62 SRNVFIELLRMSEEEFGLPSFGPITL   87 (142)
Q Consensus        62 ~hp~F~~LL~~aeeEfG~~~~G~L~i   87 (142)
                      .|-.|-++++.+..|-+|..+|||.|
T Consensus        37 ~EE~F~~mMdEl~~ee~F~~~GpL~i   62 (224)
T COG4862          37 TEELFYEMMDELNLEEDFKDEGPLWI   62 (224)
T ss_pred             HHHHHHHHHHhcCCccccccCCceEE
Confidence            47899999999999999999999976


No 35 
>PF05194 UreE_C:  UreE urease accessory protein, C-terminal domain;  InterPro: IPR007864 Urease and other nickel metalloenzymes are synthesised as precursors devoid of the metalloenzyme active site. These precursors then undergo a complex post-translational maturation process that requires a number of accessory proteins. Members of this group are nickel-binding proteins required for urease metallocentre assembly []. They are believed to function as metallochaperones to deliver nickel to urease apoprotein [, ]. It has been shown by yeast two-hybrid analysis that UreE forms a dimeric complex with UreG in Helicobacter pylori []. The UreDFG-apoenzyme complex has also been shown to exist [, ] and is believed to be, with the addition of UreE, the assembly system for active urease []. The complexes, rather than the individual proteins, presumably bind to UreB via UreE/H recognition sites. The structure of Klebsiella aerogenes UreE reveals a unique two-domain architecture.The N-terminal domain is structurally related to a heat shock protein, while the C-terminal domain shows homology to the Atx1 copper metallochaperone [, ]. Significantly, the metal-binding sites in UreE and Atx1 are distinct in location and types of residues despite the relationship between these proteins and the mechanism for UreE activation of urease is proposed to be different from the thiol ligand exchange mechanism used by the copper metallochaperones. The C-terminal domain of this protein is the metal-binding region, which can bind up to six Ni molecules per dimer. Most members of this group contain a histidine-rich C-terminal motif that is involved in, but not solely responsible for, binding nickel ions in K. aerogenes UreE []. However, internal ligands, not the histidine residues at the C terminus, are necessary for UreE to assist in urease activation in K. aerogenes [], even though the truncated protein lacking the His-rich region binds two nickel ions instead of six. In H. pylori and some other organisms, the terminal histidine-rich binding sites are absent, but the internal histidine sites are present, and the latter probably function as nickel donors. Deletion analysis shows that this domain alone is sufficient for metal-binding and activation of urease [].; GO: 0016151 nickel ion binding, 0006461 protein complex assembly, 0019627 urea metabolic process; PDB: 3NXZ_B 3TJA_B 3LA0_B 3TJ9_B 3NY0_A 3L9Z_A 3TJ8_A 1EAR_A 1EB0_A 1GMU_B ....
Probab=24.78  E-value=95  Score=21.40  Aligned_cols=28  Identities=29%  Similarity=0.539  Sum_probs=18.2

Q ss_pred             CCeEEEEeCCceeEeEeccCCCcHHHHHHHHhh
Q 046614           41 KGHFVVYTTDEKRFTVPLEYLSRNVFIELLRMS   73 (142)
Q Consensus        41 kG~~~VyVGe~~RfvVp~~yL~hp~F~~LL~~a   73 (142)
                      .-|+|+++++. +..||    ..+.+.+||++.
T Consensus        24 NrH~p~~i~~~-~l~v~----~d~~l~~~L~~l   51 (87)
T PF05194_consen   24 NRHWPLFIEED-ELYVP----YDHVLEELLRKL   51 (87)
T ss_dssp             HTT--EEEETT-EEEEE------HHHHHHHHHT
T ss_pred             CCccceEEcCC-EEEec----CcHHHHHHHHHC
Confidence            34899999877 77777    677778888774


No 36 
>cd01406 SIR2-like Sir2-like: Prokaryotic group of uncharacterized Sir2-like proteins which lack certain key catalytic residues and conserved zinc binding cysteines; and are members of the SIR2 superfamily of proteins, silent information regulator 2 (Sir2) enzymes which catalyze NAD+-dependent protein/histone deacetylation.
Probab=24.34  E-value=1.3e+02  Score=23.98  Aligned_cols=57  Identities=18%  Similarity=0.141  Sum_probs=36.8

Q ss_pred             CeEEEEeCCc--eeEeEeccCCCcHHHHHHHHhhhhhcCCCCCCCeEecCcHHHHHHHHHHHhccC
Q 046614           42 GHFVVYTTDE--KRFTVPLEYLSRNVFIELLRMSEEEFGLPSFGPITLPCDSTFLNYVMSLIKGRM  105 (142)
Q Consensus        42 G~~~VyVGe~--~RfvVp~~yL~hp~F~~LL~~aeeEfG~~~~G~L~iPCd~~~Fe~vl~~i~~~~  105 (142)
                      |++++++|-+  .+       .+-|.+.+|++...+++|.+.+....-.=+...+..+..++.+..
T Consensus         1 g~lvlFiGAG~S~~-------~glP~W~~Ll~~l~~~~~~~~~~~~~~~~~~~~~~~~a~~~~~~~   59 (242)
T cd01406           1 GRVVIFVGAGVSVS-------SGLPDWKTLLDEIASELGLEIDGYSVEAKDENDYLELAELLEKEF   59 (242)
T ss_pred             CCEEEEecCccccc-------cCCCChHHHHHHHHHHcCCccchhhccccchhhHHHHHHHHHHHh
Confidence            6788999864  33       578999999999999998664421110013345555566665443


No 37 
>PRK10308 3-methyl-adenine DNA glycosylase II; Provisional
Probab=23.47  E-value=2.8e+02  Score=23.41  Aligned_cols=61  Identities=18%  Similarity=0.128  Sum_probs=42.8

Q ss_pred             CCeEEEEeCC-ceeEeEeccCCCcHHHHHHHHhhhhhcCCCCC---------------CCeEecCcHHHHHHHHHHH
Q 046614           41 KGHFVVYTTD-EKRFTVPLEYLSRNVFIELLRMSEEEFGLPSF---------------GPITLPCDSTFLNYVMSLI  101 (142)
Q Consensus        41 kG~~~VyVGe-~~RfvVp~~yL~hp~F~~LL~~aeeEfG~~~~---------------G~L~iPCd~~~Fe~vl~~i  101 (142)
                      .|++.|.-.. +.++.|.++.-.-+...+++.+...-||++.|               .+|++|...+.||-+++.|
T Consensus        45 ~~~~~v~~~~~~~~l~~~~~~~~~~~~~~~~~~vrr~fdLd~d~~~i~~~L~~~~~~~~GlR~p~~~d~fE~lv~aI  121 (283)
T PRK10308         45 RGVVTVIPDIARHTLHINLSAGLEPVAAECLAKMSRLFDLQCNPQIVNGALGKLGAARPGLRLPGSVDAFEQGVRAI  121 (283)
T ss_pred             cEEEEEEEcCCCceEEEEEcCCccccHHHHHHHHHHHcCCCCCHHHHHHHHHHHHHhCCCCcCCCCCCHHHHHHHHH
Confidence            4666665433 45566666554445666788888888877654               4689999999999998876


No 38 
>PF11126 Phage_DsbA:  Transcriptional regulator DsbA;  InterPro: IPR020313 DsbA is a double stranded binding protein found in bacteriophage T4 which is involved in transcriptional regulation. DsbA, along with other viral proteins, interacts with the host RNA polymerase core enzyme enabling initiation of transcription. DsbA acts as an enhancer protein of late genes in vitro. The protein consists of mainly alpha helices [].
Probab=22.95  E-value=2e+02  Score=20.10  Aligned_cols=38  Identities=18%  Similarity=0.399  Sum_probs=29.3

Q ss_pred             HHHHHHHHhhhhhcCCCCCCCeEecCcHHHHHHHHHHHhccChHHHHH
Q 046614           64 NVFIELLRMSEEEFGLPSFGPITLPCDSTFLNYVMSLIKGRMPEELEK  111 (142)
Q Consensus        64 p~F~~LL~~aeeEfG~~~~G~L~iPCd~~~Fe~vl~~i~~~~~~~~e~  111 (142)
                      -.++++=+.|.+|+|.+.          ..|-.++.+-.+..-.+.|.
T Consensus        17 e~IKdik~~AK~ElGv~g----------k~Fnkl~~lyHk~~Re~fE~   54 (69)
T PF11126_consen   17 EMIKDIKDRAKDELGVDG----------KMFNKLLKLYHKQEREEFEA   54 (69)
T ss_pred             HHHHHHHHHHHHHcCCCH----------HHHHHHHHHHHHhhHHHHHH
Confidence            356777788999999754          68999999998876555553


No 39 
>PF06849 DUF1246:  Protein of unknown function (DUF1246);  InterPro: IPR010672 The last two steps of de novo purine biosynthesis are:  i) conversion of 5-aminoimidazole-4-carboxamide-1-beta-D-ribofuranosyl 5'-monophosphate (AICAR) to 5-formaminoimidazole-4-carboxamide-1-beta-D-ribofuranosyl 5'-monophosphate (FAICAR) ii) conversion of FAICAR to inosine5'-monophopsphate (IMP)  In bacteria and eukaryotes, these steps are catalysed by the well-characterised bifunctional enzyme PurH []. Archaea do not appear to posses PurH, however, and perform these reactions by a different mecahnism []. In archaea, step i) is catalysed by the well-conserved PurP protein, while step ii) is catalysed by the PurO enzyme in some (though not all) species [, ]. This entry represents the N-terminal domain of PurP. Its function is not known, though it is almost always found in association with IPR009720 from INTERPRO.; GO: 0000287 magnesium ion binding, 0005524 ATP binding, 0016879 ligase activity, forming carbon-nitrogen bonds, 0006188 IMP biosynthetic process; PDB: 2PBZ_C 2R85_B 2R87_E 2R84_A 2R86_A 2R7L_A 2R7N_A 2R7K_A 2R7M_A.
Probab=22.76  E-value=4.1  Score=31.24  Aligned_cols=23  Identities=39%  Similarity=0.771  Sum_probs=13.5

Q ss_pred             CcCCCCCeEEEEeC-C--ceeEeEec
Q 046614           36 SSVANKGHFVVYTT-D--EKRFTVPL   58 (142)
Q Consensus        36 ~~~vpkG~~~VyVG-e--~~RfvVp~   58 (142)
                      ..-||.|-|++||| |  .++|.||+
T Consensus        67 ~I~VPhgSfv~Y~G~d~ie~~~~vP~   92 (124)
T PF06849_consen   67 AIFVPHGSFVAYVGYDRIENEFKVPI   92 (124)
T ss_dssp             EEE--BTTHHHHH-HHHHHHT-SS-E
T ss_pred             eEEecCCCeeEeecHHHHhhcCCCCe
Confidence            55699999999999 3  25577775


No 40 
>PF14974 DUF4511:  Domain of unknown function (DUF4511)
Probab=22.75  E-value=2.9e+02  Score=20.62  Aligned_cols=41  Identities=10%  Similarity=0.135  Sum_probs=26.8

Q ss_pred             HHHHHHHHhhhhhcCCCCCCCeEecCcHHHHHHHHHHHhccChHHHH
Q 046614           64 NVFIELLRMSEEEFGLPSFGPITLPCDSTFLNYVMSLIKGRMPEELE  110 (142)
Q Consensus        64 p~F~~LL~~aeeEfG~~~~G~L~iPCd~~~Fe~vl~~i~~~~~~~~e  110 (142)
                      |+.-++--..=+.|||..+|.     -+..|-+++..+++++ .|+.
T Consensus        47 Pva~qiq~~VIk~yGF~~~~e-----G~~~f~~~i~~~e~~D-~eva   87 (105)
T PF14974_consen   47 PVATQIQMEVIKKYGFPESRE-----GVMQFAQLIRELEKDD-PEVA   87 (105)
T ss_pred             HHHHHHHHHHHHHcCCCCCcc-----hHHHHHHHHHHHHccC-HHHH
Confidence            334444444556799985322     2468999999998887 5555


No 41 
>COG4923 Predicted nuclease (RNAse H fold) [General function prediction only]
Probab=21.98  E-value=1e+02  Score=26.02  Aligned_cols=15  Identities=13%  Similarity=0.592  Sum_probs=11.2

Q ss_pred             CCeEecCcHHHHHHH
Q 046614           83 GPITLPCDSTFLNYV   97 (142)
Q Consensus        83 G~L~iPCd~~~Fe~v   97 (142)
                      ....|||.+..+...
T Consensus        87 SvF~vPcR~A~Y~~~  101 (245)
T COG4923          87 SVFSVPCRAALYSDI  101 (245)
T ss_pred             ceeccchHHHHHHHH
Confidence            455789988888766


No 42 
>COG5381 Uncharacterized protein conserved in bacteria [Function unknown]
Probab=21.93  E-value=1.7e+02  Score=23.71  Aligned_cols=58  Identities=16%  Similarity=0.128  Sum_probs=38.7

Q ss_pred             HHHHHhhhhhcCCCCCCCeEecC------------------cHHHHHHHHHHHhccChHHHHHHHHhhccC-CCccCccc
Q 046614           67 IELLRMSEEEFGLPSFGPITLPC------------------DSTFLNYVMSLIKGRMPEELEKVLLNFLPT-SHFSASTS  127 (142)
Q Consensus        67 ~~LL~~aeeEfG~~~~G~L~iPC------------------d~~~Fe~vl~~i~~~~~~~~e~~~l~s~~~-~~c~~~~~  127 (142)
                      .||++.|-   -|...|+|+|--                  ++..||++++.|--+++.|+-..-|-.-+. ++|+.|.-
T Consensus        69 NELiENAV---Kfra~geIvieasl~s~~f~~kvsN~vd~~t~~~f~~ll~~it~gDP~dLlieRiEanA~~~d~~gSgl  145 (184)
T COG5381          69 NELIENAV---KFRATGEIVIEASLYSHKFIFKVSNIVDLPTTIDFENLLKVITEGDPLDLLIERIEANALESDCEGSGL  145 (184)
T ss_pred             HHHHHhhh---cccCCCcEEEEEEeccceEEEEecccCCCccHHHHHHHHHHHhcCChHHHHHHHHHhhccCCCCccccc
Confidence            46666654   355566776643                  578999999999999999865444443333 47877654


No 43 
>PF04332 DUF475:  Protein of unknown function (DUF475);  InterPro: IPR007427 This entry contains proteins that are predicted to be an integral membrane proteins with multiple transmembrane domains.
Probab=21.80  E-value=55  Score=28.51  Aligned_cols=16  Identities=25%  Similarity=0.542  Sum_probs=14.5

Q ss_pred             CChHHHHHHHHHHhhh
Q 046614            2 INSKRLIELARKWQKM   17 (142)
Q Consensus         2 ~~~kkL~~~~kKWq~~   17 (142)
                      +|++.|+.|..+|||+
T Consensus         6 VNA~vLk~Ms~~Wq~~   21 (294)
T PF04332_consen    6 VNATVLKRMSPFWQRR   21 (294)
T ss_pred             hhHHHHHhhhHHHHHH
Confidence            6899999999999983


No 44 
>cd06080 MUM1_like Mutated melanoma-associated antigen 1 (MUM-1) is a melanoma-associated antigen (MAA).  MUM-1 belongs to the mutated or aberrantly expressed type of MAAs, along with antigens such as CDK4, beta-catenin, gp100-in4, p15, and N-acetylglucosaminyltransferase V.  It is highly expressed in several types of human cancers.  The PWWP domain, named for a conserved Pro-Trp-Trp-Pro motif, is a small domain consisting of 100-150 amino acids. The PWWP domain is found in numerous proteins that are involved in cell division, growth and differentiation. Most PWWP-domain proteins seem to be nuclear, often DNA-binding, proteins that function as transcription factors regulating a variety of developmental processes.
Probab=20.63  E-value=1.4e+02  Score=20.97  Aligned_cols=39  Identities=18%  Similarity=0.204  Sum_probs=32.5

Q ss_pred             CCCeEEEEeCCc-----eeEeEeccCCCcHHH---HHHHHhhhhhcC
Q 046614           40 NKGHFVVYTTDE-----KRFTVPLEYLSRNVF---IELLRMSEEEFG   78 (142)
Q Consensus        40 pkG~~~VyVGe~-----~RfvVp~~yL~hp~F---~~LL~~aeeEfG   78 (142)
                      ++-+.+.+.|+.     .++-+...|+.|+.+   +.|++++.|.|.
T Consensus        28 ~~k~~V~FfG~~~~~a~~~~~~l~p~~~~~~~~ek~~~~~k~ke~~~   74 (80)
T cd06080          28 KQKARVNFIGDNMQSEKKGIRVVKRWLKHFDCTEKQKLTNKAKESYE   74 (80)
T ss_pred             CCEEEEEEeCCCCceeccchhhcccccccHHHHHHHHHHHHHHHHHH
Confidence            556777788874     788888999999999   489999999876


No 45 
>PF12926 MOZART2:  Mitotic-spindle organizing gamma-tubulin ring associated;  InterPro: IPR024332 The MOZART2 family of proteins (also known as FAM128 and Mitotic-spindle organizing protein 2) operate as part of the gamma-tubulin ring complex, gamma-TuRC, one of the complexes necessary for chromosome segregation. This complex is located at centrosomes and mediates the formation of bipolar spindles in mitosis; it consists of six subunits. However, unlike the other four known subunits, the MOZART proteins, both 1 and 2, do not carry the conserved 'Spc97-Spc98' GCP domain, so the TUBGCP nomenclature cannot be used for it. The exact function of MOZART2 is not clear [].
Probab=20.02  E-value=2.2e+02  Score=20.68  Aligned_cols=48  Identities=15%  Similarity=0.298  Sum_probs=35.6

Q ss_pred             cHHHHHHHHhhhhhcCCCCCCCeEecCcHHHHHHHHHHHhccChHHHHHHHHhhccC
Q 046614           63 RNVFIELLRMSEEEFGLPSFGPITLPCDSTFLNYVMSLIKGRMPEELEKVLLNFLPT  119 (142)
Q Consensus        63 hp~F~~LL~~aeeEfG~~~~G~L~iPCd~~~Fe~vl~~i~~~~~~~~e~~~l~s~~~  119 (142)
                      .+.=+||.+.++-- |        |+=|..+|+.++.+++-+.+.+.--.+|.++.+
T Consensus        24 s~eE~EL~ELa~~A-G--------v~~dp~VFriildLL~~nVsP~AI~qmLK~m~s   71 (88)
T PF12926_consen   24 SAEEVELYELAQLA-G--------VPMDPEVFRIILDLLRLNVSPDAIFQMLKSMCS   71 (88)
T ss_pred             CHHHHHHHHHHHHh-C--------CCcChHHHHHHHHHHHcCCCHHHHHHHHHHHHc
Confidence            33444666666542 2        355789999999999999988888889998844


Done!