Query         013027
Match_columns 451
No_of_seqs    186 out of 905
Neff          4.5 
Searched_HMMs 46136
Date          Fri Mar 29 08:47:39 2013
Command       hhsearch -i /work/01045/syshi/csienesis_hhblits_a3m/013027.a3m -d /work/01045/syshi/HHdatabase/Cdd.hhm -o /work/01045/syshi/hhsearch_cdd/013027hhsearch_cdd -cpu 12 -v 0 

 No Hit                             Prob E-value P-value  Score    SS Cols Query HMM  Template HMM
  1 PF02365 NAM:  No apical merist 100.0 2.5E-42 5.3E-47  303.1   7.2  128    5-135     1-129 (129)
  2 cd07446 CRD_SFRP2 Cysteine-ric  16.3      58  0.0013   29.6   0.5   35  395-429    21-55  (128)
  3 PHA00692 hypothetical protein   14.7      68  0.0015   26.1   0.5    9    4-12     36-44  (74)
  4 cd07453 CRD_crescent Cysteine-  14.0      72  0.0016   29.4   0.5   34  395-428    19-52  (135)
  5 cd07463 CRD_FZ9 Cysteine-rich   12.3      78  0.0017   28.8   0.2   33  396-428    20-52  (127)
  6 KOG3238 Chloride ion current i  12.1 2.1E+02  0.0046   28.4   3.1   62    6-68    110-171 (216)
  7 cd07462 CRD_FZ10 Cysteine-rich  11.6      81  0.0017   28.7   0.1   34  396-429    20-53  (127)
  8 cd07442 CRD_SFRP4 Cysteine-ric  10.9      96  0.0021   28.3   0.3   35  395-429    19-53  (127)
  9 cd07455 CRD_Collagen_XVIII Cys  10.5      98  0.0021   28.1   0.2   34  395-428    21-54  (123)
 10 smart00265 BH4 BH4 Bcl-2 homol  10.5 2.8E+02   0.006   19.2   2.4   20   14-33      4-23  (27)

No 1  
>PF02365 NAM:  No apical meristem (NAM) protein;  InterPro: IPR003441 The NAC domain (for Petunia hybrida (Petunia) NAM and for Arabidopsis ATAF1, ATAF2, and CUC2) is an N-terminal module of ~160 amino acids, which is found in proteins of the NAC family of plant-specific transcriptional regulators (no apical meristem (NAM) proteins) []. NAC proteins are involved in developmental processes, including formation of the shoot apical meristem, floral organs and lateral shoots, as well as in plant hormonal control and defence. The NAC domain is accompanied by diverse C-terminal transcriptional activation domains. The NAC domain has been shown to be a DNA-binding domain (DBD) and a dimerization domain [,]. The NAC domain can be subdivided into five subdomains (A-E). Each subdomain is distinguishable by blocks of heterogeneous amino acids or gaps. While the NAC domains were rich in basic amino acids (R, K and H) as a whole, the distribution of positive and negative amino acids in each subdomain were unequal. Subdomains C and D are rich in basic amino acids but poor in acidic amino acids, while subdomain B contains a high proportion of acidic amino acids. Putative nuclear localization signals (NLS) have been detected in subdomains C and D []. The DBD is contained within a 60 amino acid region located within subdomains D and E []. The overall structure of the NAC domain monomer consists of a very twisted antiparallel beta-sheet, which packs against an N-terminal alpha-helix on one side and one shorter helix on the other side surrounded by a few helical elements. The structure suggests that the NAC domain mediates dimerization through conserved interactions including a salt bridge, and DNA binding through the NAC dimer face rich in positive charges [].; GO: 0003677 DNA binding, 0006355 regulation of transcription, DNA-dependent; PDB: 1UT4_A 3SWM_B 4DUL_B 3SWP_D 1UT7_B 3ULX_A.
Probab=100.00  E-value=2.5e-42  Score=303.08  Aligned_cols=128  Identities=48%  Similarity=0.869  Sum_probs=96.7

Q ss_pred             CCCceeECCChHHHHHHHHHHHHCCCCCCC-CcccccCcCCCCCCCCCCccCCCCCCCceEEEEecCCCCCCCCCccccc
Q 013027            5 GVVGFRFHPTDEEIVTYFLERKMCGLDFPA-HTIADVVDVCKYEPWELPQRSSMPKEDRVWYFFNAPVPKYANSKRINRT   83 (451)
Q Consensus         5 LPpGFRF~PTDEELV~~YL~~Ki~G~plp~-~vI~e~vDVY~~ePWdLP~~~~~~~~e~eWYFFS~r~rKy~nG~R~nRa   83 (451)
                      |||||||+|||+|||.+||++|+.|.+++. ++|.+ +|||++|||+||+...  +.+.+||||+++++++++|.|++|+
T Consensus         1 LP~G~rF~PtD~ELi~~yL~~k~~g~~~~~~~~i~~-~Diy~~~P~~L~~~~~--~~~~~~yFF~~~~~~~~~~~r~~R~   77 (129)
T PF02365_consen    1 LPPGFRFRPTDEELINHYLRPKILGEPLPCEDVIHD-VDIYSAHPWELPAKFK--GGDEEWYFFSPRKKKYPNGGRPNRV   77 (129)
T ss_dssp             --TTEEE---HHHHHHCTHHHHHTT-HHCS-CHSEE---GGGS-GGGCHHHSS--S-SSEEEEEEE----------S-EE
T ss_pred             CCCceEecCChHHHHHHHHHHHhcCCCCCcccceee-cccCccChHHhhhhcc--CCCceEEEEEecccccCCccccccc
Confidence            899999999999999999999999999887 79999 9999999999995322  2377999999999999999999999


Q ss_pred             cCCcEEEeeccCeeEEcCCCcEEEEEEEeEeeeCcCCCCcccCceEEEEEeC
Q 013027           84 TNSGFWKSTCKDREIWDERGKKIGLKKNLVFHEGRVPNGIRTKWVMHEYHSL  135 (451)
Q Consensus        84 tggGyWKatG~~K~I~~~~g~vVG~KKtLvFY~GrapkG~KT~WvMHEYrL~  135 (451)
                      +++|+||++|+.++|.+.++.+||+||+|+||.++.+++.+|+|+||||+|.
T Consensus        78 ~~~G~Wk~~g~~~~i~~~~g~~iG~k~~l~f~~~~~~~~~kt~W~M~EY~L~  129 (129)
T PF02365_consen   78 TGGGYWKSTGKEKPIKDPGGKVIGFKKTLVFYSGKSPNGKKTGWVMHEYSLE  129 (129)
T ss_dssp             ETTEEEEEECEEEEEEE-TTCEEEEEEEEEEEESSTTS-EEEEEEEEEEEE-
T ss_pred             ccceEEeecccccccccccceeeeeEEEEEEEeccCCCCCcCCeEEEEEEeC
Confidence            9999999999999999976669999999999999888999999999999984


No 2  
>cd07446 CRD_SFRP2 Cysteine-rich domain of the secreted frizzled-related protein 2 (SFRP2), a regulator of Wnt activity. The cysteine-rich-domain (CRD) is an essential part of the secreted frizzled related protein 2 (SFRP2), which regulates the activity of Wnt  proteins, key players in a number of fundamental cellular processes such as embryogenesis and postnatal development. SFRPs antagonize the activation of Wnt signaling by binding to CRD domains of frizzled (Fz) proteins, thereby preventing Wnt proteins from binding to these receptors. SFRPs and Fz proteins both contain CRD domains, but SFRPs lack the seven-pass transmembrane domain which is an integral part of Fzs. As a Wnt antagonist, SFRP2 regulates Nkx2.2  expression in the ventral spinal cord and anteroposterior axis elongation. SFRP2 also has a Wnt-independent function as an enhancer of procollagen cleavage by the TLD proteinases. SFRP2 binds both procollagen and TLD, thus facilitating the enzymatic reaction by bringing togeth
Probab=16.29  E-value=58  Score=29.64  Aligned_cols=35  Identities=23%  Similarity=0.584  Sum_probs=27.8

Q ss_pred             CCCCCCccccchhhhhhhccCcccchhhhhccchh
Q 013027          395 SDTDLPGIVGHESVVDELQHTPKYHKYFEARCSTQ  429 (451)
Q Consensus       395 ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~  429 (451)
                      ..|.+|-++||++..+-++..-.|.-.....|+.+
T Consensus        21 n~T~~PN~lgH~sq~ea~~~~~~~~pLv~~~C~p~   55 (128)
T cd07446          21 TNMRLPNLLGHETMKEVLQQAGSWIPLVQKQCHPD   55 (128)
T ss_pred             CcccCCcccCCCCHHHHHHHHHHHHHHHhcCCChh
Confidence            46789999999998877777777777777788743


No 3  
>PHA00692 hypothetical protein
Probab=14.72  E-value=68  Score=26.08  Aligned_cols=9  Identities=44%  Similarity=0.619  Sum_probs=7.1

Q ss_pred             CCCCceeEC
Q 013027            4 HGVVGFRFH   12 (451)
Q Consensus         4 ~LPpGFRF~   12 (451)
                      ..||||||-
T Consensus        36 eyppgfrfg   44 (74)
T PHA00692         36 EYPPGFRFG   44 (74)
T ss_pred             ecCCCcccc
Confidence            468999985


No 4  
>cd07453 CRD_crescent Cysteine-rich domain of the crescent protein. The cysteine-rich domain (CRD) is an essential part of the crescent protein, a member of the secreted frizzled-related protein (SFRP) family, which regulates convergent extension movements (CEMs) during gastrulation and neurulation. Xenopus laevis crescent efficiently forms inhibitory complexes with Wnt5a and Wnt11, but this effect is cancelled in the presence of another member of the SFRP family, Frzb1. A potential role for Crescent in head formation is to regulate a non-canonical Wnt pathway positively in the adjacent posterior mesoderm, and negatively in the overlying anterior neuroectoderm.
Probab=14.04  E-value=72  Score=29.41  Aligned_cols=34  Identities=18%  Similarity=0.547  Sum_probs=28.1

Q ss_pred             CCCCCCccccchhhhhhhccCcccchhhhhccch
Q 013027          395 SDTDLPGIVGHESVVDELQHTPKYHKYFEARCST  428 (451)
Q Consensus       395 ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~  428 (451)
                      ..|.+|-++||++..+-++....|.-..+..|+.
T Consensus        19 n~T~~PN~lgH~sq~ea~~~~~~~~pLv~~~C~p   52 (135)
T cd07453          19 SEMRIPNLLEHETMAEVIQQSSSWLPLLARECHP   52 (135)
T ss_pred             CcccCCcccCCCCHHHHHHHHHHHHHHHhcCCCh
Confidence            3578999999999888777777888888888874


No 5  
>cd07463 CRD_FZ9 Cysteine-rich Wnt-binding domain (CRD) of the frizzled 9 (Fz9) receptor. The cysteine-rich domain (CRD) is an essential extracellular portion of the frizzled 9 (Fz9) receptor, and is required for binding Wnt proteins, which play fundamental roles in many aspects of early development, such as cell and tissue polarity, neural synapse formation, and the regulation of proliferation. Fz proteins serve as Wnt receptors for multiple signal transduction pathways, including both beta-catenin dependent and -independent cellular signaling, as well as the planar cell polarity pathway and Ca(2+) modulating signaling pathway. CRD containing Fzs have been found in diverse species from amoebas to mammals. 10 different frizzled proteins are found in vertebrata. Fz9 may play a signaling role in lymphoid development and maturation, particularly at points where B cells undergo self-renewal prior to further differentiation.
Probab=12.32  E-value=78  Score=28.79  Aligned_cols=33  Identities=21%  Similarity=0.410  Sum_probs=27.1

Q ss_pred             CCCCCccccchhhhhhhccCcccchhhhhccch
Q 013027          396 DTDLPGIVGHESVVDELQHTPKYHKYFEARCST  428 (451)
Q Consensus       396 ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~  428 (451)
                      .|.+|-++||++..+-.+....|+......||.
T Consensus        20 ~T~~PN~lgh~sq~ea~~~~~~f~pLv~~~Csp   52 (127)
T cd07463          20 LTRMPNFLGHDSQREAAIKLNEFAPLVEYGCHV   52 (127)
T ss_pred             cccCCcccCCcCHHHHHHHHHHHHHHHhcCCCh
Confidence            478999999999877777777788888888884


No 6  
>KOG3238 consensus Chloride ion current inducer protein [Inorganic ion transport and metabolism]
Probab=12.06  E-value=2.1e+02  Score=28.37  Aligned_cols=62  Identities=15%  Similarity=0.258  Sum_probs=35.8

Q ss_pred             CCceeECCChHHHHHHHHHHHHCCCCCCCCcccccCcCCCCCCCCCCccCCCCCCCceEEEEe
Q 013027            6 VVGFRFHPTDEEIVTYFLERKMCGLDFPAHTIADVVDVCKYEPWELPQRSSMPKEDRVWYFFN   68 (451)
Q Consensus         6 PpGFRF~PTDEELV~~YL~~Ki~G~plp~~vI~e~vDVY~~ePWdLP~~~~~~~~e~eWYFFS   68 (451)
                      --+|||+|+|.--+.-.---..-..-+-+....+ .+-|.-+=|+.-+....+++...||=+.
T Consensus       110 i~e~rfvpsDk~~l~a~f~qfcecqel~p~P~ED-~~~~dgee~~mea~d~~~gDs~~~~t~d  171 (216)
T KOG3238|consen  110 ITEFRFVPSDKSALEAMFTQFCECQELNPDPDED-EDDYDGEEYDMEAHDAGQGDSPNSYTYD  171 (216)
T ss_pred             cccceecCCchhHHHHHHHHHHhhhhcCCCcccc-ccccccchhhhhhhhccCCCCccccccc
Confidence            4589999999766553333333333222222455 6667777777765555455566666553


No 7  
>cd07462 CRD_FZ10 Cysteine-rich Wnt-binding domain (CRD) of the frizzled 10 (Fz10) receptor. The cysteine-rich domain (CRD) is an essential extracellular portion of the frizzled 10 (Fz10) receptor, and is required for binding Wnt proteins, which play fundamental roles in many aspects of early development, such as cell and tissue polarity, neural synapse formation, and the regulation of proliferation. Fz proteins serve as Wnt receptors for multiple signal transduction pathways, including both beta-catenin dependent and -independent cellular signaling, as well as the planar cell polarity pathway and Ca(2+) modulating signaling pathway. CRD containing Fzs have been found in diverse species from amoebas to mammals. 10 different frizzled proteins are found in vertebrata. The cellular functon of Fz10 is unknown.
Probab=11.57  E-value=81  Score=28.73  Aligned_cols=34  Identities=21%  Similarity=0.450  Sum_probs=25.7

Q ss_pred             CCCCCccccchhhhhhhccCcccchhhhhccchh
Q 013027          396 DTDLPGIVGHESVVDELQHTPKYHKYFEARCSTQ  429 (451)
Q Consensus       396 ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~  429 (451)
                      .|.+|-++||++..+-.+....|+...+..|+..
T Consensus        20 ~T~~PN~lgH~~q~ea~~~~~~f~pLv~~~C~p~   53 (127)
T cd07462          20 MTRMPNLMGHENQREAAIQLHEFAPLVEYGCHSH   53 (127)
T ss_pred             ceeCCcccCCcCHHHHHHHHHHHHHHhccCCChh
Confidence            4779999999997766666666777777777753


No 8  
>cd07442 CRD_SFRP4 Cysteine-rich domain of the secreted frizzled-related protein 4 (SFRP4), a Wnt antagonist. The cysteine-rich domain (CRD) is an essential part of the secreted frizzled-related Protein 4 (SFRP4), which regulates the activity of Wnt proteins, key players in a number of fundamental cellular processes such as embryogenesis and postnatal development. SFRPs antagonize the activation of Wnt signaling by binding to the CRDs domains of frizzled (Fz) proteins, thereby preventing Wnt proteins from binding to these receptors. SFRPs are also known to have functions unrelated to Wnt, as enhancers of procollagen cleavage by the TLD proteinases. SFRPs and Fz proteins both contain CRD domains, but SFRPs lack the seven-pass transmembrane domain which is an integral part of Fzs.
Probab=10.92  E-value=96  Score=28.30  Aligned_cols=35  Identities=17%  Similarity=0.370  Sum_probs=27.9

Q ss_pred             CCCCCCccccchhhhhhhccCcccchhhhhccchh
Q 013027          395 SDTDLPGIVGHESVVDELQHTPKYHKYFEARCSTQ  429 (451)
Q Consensus       395 ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~  429 (451)
                      ..|.+|-++||++.-+-.+..-.|+-..+..||..
T Consensus        19 n~T~~PN~lgH~~q~ea~~~~~~f~pLv~~~Csp~   53 (127)
T cd07442          19 NITRMPNHLHHSTQENAVLAIEQYEELVDTGCSPV   53 (127)
T ss_pred             CcccCcCccCCCCHHHHHHHHHHHHHHHcCCCCcc
Confidence            45789999999998877767777888888888743


No 9  
>cd07455 CRD_Collagen_XVIII Cysteine-rich domain of the variant 3 of collagen XVIII (V3C18 ). The cysteine-rich domain (CRD) is an essential part of the variant 3 of collagen XVIII (V3C18), which regulates major cellular functions such as the differential epithelial morphogenesis of early lung and kidney development. V3C18 is a 170 kD protein, which is proteolotically processed into the CRD-containing 50 kD glucoprotein precursor that binds Wnt3a through its CRD domain and suppresses the Wnt3a-induced stabilization of beta catenin. Full-length V3C18 is unable to inhibit Wnt signaling.
Probab=10.52  E-value=98  Score=28.13  Aligned_cols=34  Identities=21%  Similarity=0.307  Sum_probs=25.9

Q ss_pred             CCCCCCccccchhhhhhhccCcccchhhhhccch
Q 013027          395 SDTDLPGIVGHESVVDELQHTPKYHKYFEARCST  428 (451)
Q Consensus       395 ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~  428 (451)
                      .-|.+|-++||++.-+-.+..-.|+-..+..||.
T Consensus        21 n~t~~PN~lgH~sq~ea~~~~~~f~pLv~~~Csp   54 (123)
T cd07455          21 RSFWLPNFLNHTSVEEVRAVLAEWAWLLESGCHP   54 (123)
T ss_pred             ccccCCcccCCCCHHHHHHHHHHHHHHHhCCCCh
Confidence            3577999999999877666666677777777774


No 10 
>smart00265 BH4 BH4 Bcl-2 homology region 4.
Probab=10.50  E-value=2.8e+02  Score=19.17  Aligned_cols=20  Identities=15%  Similarity=0.358  Sum_probs=15.9

Q ss_pred             ChHHHHHHHHHHHHCCCCCC
Q 013027           14 TDEEIVTYFLERKMCGLDFP   33 (451)
Q Consensus        14 TDEELV~~YL~~Ki~G~plp   33 (451)
                      .-.|||.+|+.-|+.-+..+
T Consensus         4 ~nRelV~~yv~yKLsQrgy~   23 (27)
T smart00265        4 DNRELVVDYVTYKLSQNGYE   23 (27)
T ss_pred             chHHHHHHHHHHHHhhcCCC
Confidence            45799999999998865543


Done!