Query 007837
Match_columns 588
No_of_seqs 143 out of 405
Neff 3.5
Searched_HMMs 46136
Date Thu Mar 28 16:00:38 2013
Command hhsearch -i /work/01045/syshi/csienesis_hhblits_a3m/007837.a3m -d /work/01045/syshi/HHdatabase/Cdd.hhm -o /work/01045/syshi/hhsearch_cdd/007837hhsearch_cdd -cpu 12 -v 0
No Hit Prob E-value P-value Score SS Cols Query HMM Template HMM
1 PF02362 B3: B3 DNA binding do 99.7 2.2E-16 4.8E-21 132.7 10.4 98 359-460 1-100 (100)
2 PF03754 DUF313: Domain of unk 98.0 1.4E-05 3.1E-10 72.8 7.2 80 353-432 18-114 (114)
3 PF09217 EcoRII-N: Restriction 97.6 0.00021 4.4E-09 68.5 7.4 89 356-444 7-110 (156)
4 smart00249 PHD PHD zinc finger 67.5 2.9 6.2E-05 30.0 1.1 25 77-101 10-34 (47)
5 PF10844 DUF2577: Protein of u 66.7 24 0.00053 31.4 7.0 84 350-455 12-97 (100)
6 PF04014 Antitoxin-MazE: Antid 60.2 14 0.00029 28.4 3.7 31 427-458 13-43 (47)
7 KOG4718 Non-SMC (structural ma 34.7 15 0.00034 37.8 0.5 18 82-99 195-212 (235)
8 PF02643 DUF192: Uncharacteriz 33.4 81 0.0018 28.3 4.8 52 393-444 49-107 (108)
9 TIGR01439 lp_hng_hel_AbrB loop 33.2 71 0.0015 23.2 3.7 28 427-455 13-40 (43)
10 PF13248 zf-ribbon_3: zinc-rib 32.4 22 0.00047 24.7 0.8 15 77-91 12-26 (26)
11 COG2002 AbrB Regulators of sta 25.9 93 0.002 27.1 3.8 31 428-460 21-51 (89)
12 PRK03760 hypothetical protein; 25.1 1.2E+02 0.0027 27.9 4.6 27 419-445 90-116 (117)
13 TIGR00375 conserved hypothetic 25.1 31 0.00067 37.8 0.8 43 54-106 238-281 (374)
14 COG1998 RPS31 Ribosomal protei 25.1 32 0.00069 28.3 0.7 6 89-94 36-41 (51)
15 PF03120 DNA_ligase_OB: NAD-de 24.1 55 0.0012 28.9 2.1 35 426-461 41-76 (82)
16 TIGR01643 YD_repeat_2x YD repe 23.8 1.1E+02 0.0025 22.2 3.4 21 392-412 4-24 (42)
17 PF09149 DUF1935: Domain of un 23.6 91 0.002 28.4 3.4 68 385-458 13-80 (104)
18 PF09297 zf-NADH-PPase: NADH p 23.1 39 0.00084 24.2 0.8 24 58-90 5-30 (32)
19 COG5569 Uncharacterized conser 21.6 84 0.0018 29.3 2.7 28 428-455 77-104 (108)
20 PF12760 Zn_Tnp_IS1595: Transp 21.6 51 0.0011 25.4 1.2 26 58-90 20-46 (46)
21 PRK09838 periplasmic copper-bi 20.4 1.6E+02 0.0036 27.3 4.4 27 432-458 86-113 (115)
22 COG2947 Uncharacterized conser 20.3 1.1E+02 0.0024 30.2 3.3 30 427-458 36-65 (156)
No 1
>PF02362 B3: B3 DNA binding domain; InterPro: IPR003340 Two DNA binding proteins, RAV1 and RAV2 from Arabidopsis thaliana contain two distinct amino acid sequence domains found only in higher plant species. The N-terminal regions of RAV1 and RAV2 are homologous to the AP2 DNA-binding domain (see IPR001471 from INTERPRO) present in a family of transcription factors, while the C-terminal region exhibits homology to the highly conserved C-terminal domain, designated B3, of VP1/ABI3 transcription factors []. The AP2 and B3-like domains of RAV1 bind autonomously to the CAACA and CACCTG motifs, respectively, and together achieve a high affinity and specificity of binding. It has been suggested that the AP2 and B3-like domains of RAV1 are connected by a highly flexible structure enabling the two domains to bind to the CAACA and CACCTG motifs in various spacings and orientations [].; GO: 0003677 DNA binding, 0006355 regulation of transcription, DNA-dependent; PDB: 1WID_A 1YEL_A.
Probab=99.68 E-value=2.2e-16 Score=132.72 Aligned_cols=98 Identities=24% Similarity=0.437 Sum_probs=69.7
Q ss_pred EEEecccccCCCCCcEEeehhhhcccCCCCCCCCCceEEEEeCCCCeEEEEEEEcCCCCCcceec-cCchhhhhccCCCC
Q 007837 359 FEKMLSASDAGRIGRLVLPKKCAEAYFPPISQPEGLPLKVQDSKGKEWIFQFRFWPNNNSRMYVL-EGVTPCIQNMQLQA 437 (588)
Q Consensus 359 F~KvLT~SDVg~lgRLVIPK~~AE~~FP~L~~~eG~~L~v~D~~GK~W~FRfryw~Nn~SR~YVL-eGWs~FVRsK~Lka 437 (588)
|.|+|+++|+.+..+|+||++.++.+. +....++.+.++|..|++|.+++.++. +..+ |++ .||.+||++++|++
T Consensus 1 F~K~l~~s~~~~~~~l~iP~~f~~~~~--~~~~~~~~v~l~~~~g~~W~v~~~~~~-~~~~-~~l~~GW~~Fv~~n~L~~ 76 (100)
T PF02362_consen 1 FFKVLKPSDVSSSCRLIIPKEFAKKHG--GNKRKSREVTLKDPDGRSWPVKLKYRK-NSGR-YYLTGGWKKFVRDNGLKE 76 (100)
T ss_dssp EEEE--TTCCCCTT-EEE-HHHHTTTS----SS--CEEEEEETTTEEEEEEEEEEC-CTTE-EEEETTHHHHHHHCT--T
T ss_pred CEEEEEccCcCCCCEEEeCHHHHHHhC--CCcCCCeEEEEEeCCCCEEEEEEEEEc-cCCe-EEECCCHHHHHHHcCCCC
Confidence 899999999998889999999999982 112357899999999999999999873 3334 555 59999999999999
Q ss_pred CCEEEEEEec-CCCeEEEEEEeCC
Q 007837 438 GDIVTFSRLE-PEGKLVMGFRKAS 460 (588)
Q Consensus 438 GDtVvF~R~e-pnGkL~IGvRRa~ 460 (588)
||.|+|+... ...++.|.+.|++
T Consensus 77 GD~~~F~~~~~~~~~~~v~i~~~~ 100 (100)
T PF02362_consen 77 GDVCVFELIGNSNFTLKVHIFRKS 100 (100)
T ss_dssp T-EEEEEE-SSSCE-EEEEEE---
T ss_pred CCEEEEEEecCCCceEEEEEEECc
Confidence 9999999975 3445799988863
No 2
>PF03754 DUF313: Domain of unknown function (DUF313) ; InterPro: IPR005508 This is a family of proteins from Arabidopsis thaliana (Mouse-ear cress) with uncharacterised function.
Probab=98.02 E-value=1.4e-05 Score=72.76 Aligned_cols=80 Identities=21% Similarity=0.427 Sum_probs=63.8
Q ss_pred CcccceEEEecccccCCC-CCcEEeehhhhcc--cCCC-----C-------CCCCCceEEEEeCCCCeEEEEEEEcCC-C
Q 007837 353 SVITPLFEKMLSASDAGR-IGRLVLPKKCAEA--YFPP-----I-------SQPEGLPLKVQDSKGKEWIFQFRFWPN-N 416 (588)
Q Consensus 353 s~~~~LF~KvLT~SDVg~-lgRLVIPK~~AE~--~FP~-----L-------~~~eG~~L~v~D~~GK~W~FRfryw~N-n 416 (588)
.....+|+|+|++|||.. .+||.||-..... +|=+ | ....|+.+.+.|..++.|..+++.|.- +
T Consensus 18 ~d~kli~~K~L~~tDv~~~qsRLsmP~~qi~~~dFLt~eE~~~i~~~~~~~~~~~Gv~V~lvdp~~~~~~m~lkkW~mg~ 97 (114)
T PF03754_consen 18 EDPKLIIEKTLFKTDVDPHQSRLSMPFNQIIDNDFLTEEEKRIIKEEKKNNDKKKGVEVILVDPSLRKWTMRLKKWNMGN 97 (114)
T ss_pred CCCeEEEeeeecccCCCCCCceeeccHHHhcccccCCHHHHHHHHHhhccCcccCCceEEEECCcCcEEEEEEEEecccC
Confidence 556889999999999995 7999999876533 2321 2 235789999999999999999999964 4
Q ss_pred CCcceecc-Cchhhhhc
Q 007837 417 NSRMYVLE-GVTPCIQN 432 (588)
Q Consensus 417 ~SR~YVLe-GWs~FVRs 432 (588)
..-.|+|. ||.+.|.+
T Consensus 98 ~~~~YvL~~gWn~VV~~ 114 (114)
T PF03754_consen 98 GTSNYVLNSGWNKVVED 114 (114)
T ss_pred CceEEEEEcChHhhccC
Confidence 56689995 99999863
No 3
>PF09217 EcoRII-N: Restriction endonuclease EcoRII, N-terminal; InterPro: IPR023372 There are four classes of restriction endonucleases: types I, II,III and IV. All types of enzymes recognise specific short DNA sequences and carry out the endonucleolytic cleavage of DNA to give specific double-stranded fragments with terminal 5'-phosphates. They differ in their recognition sequence, subunit composition, cleavage position, and cofactor requirements [, ], as summarised below: Type I enzymes (3.1.21.3 from EC) cleave at sites remote from recognition site; require both ATP and S-adenosyl-L-methionine to function; multifunctional protein with both restriction and methylase (2.1.1.72 from EC) activities. Type II enzymes (3.1.21.4 from EC) cleave within or at short specific distances from recognition site; most require magnesium; single function (restriction) enzymes independent of methylase. Type III enzymes (3.1.21.5 from EC) cleave at sites a short distance from recognition site; require ATP (but doesn't hydrolyse it); S-adenosyl-L-methionine stimulates reaction but is not required; exists as part of a complex with a modification methylase methylase (2.1.1.72 from EC). Type IV enzymes target methylated DNA. Type II restriction endonucleases (3.1.21.4 from EC) are components of prokaryotic DNA restriction-modification mechanisms that protect the organism against invading foreign DNA. These site-specific deoxyribonucleases catalyse the endonucleolytic cleavage of DNA to give specific double-stranded fragments with terminal 5'-phosphates. Of the 3000 restriction endonucleases that have been characterised, most are homodimeric or tetrameric enzymes that cleave target DNA at sequence-specific sites close to the recognition site. For homodimeric enzymes, the recognition site is usually a palindromic sequence 4-8 bp in length. Most enzymes require magnesium ions as a cofactor for catalysis. Although they can vary in their mode of recognition, many restriction endonucleases share a similar structural core comprising four beta-strands and one alpha-helix, as well as a similar mechanism of cleavage, suggesting a common ancestral origin []. However, there is still considerable diversity amongst restriction endonucleases [, ]. The target site recognition process triggers large conformational changes of the enzyme and the target DNA, leading to the activation of the catalytic centres. Like other DNA binding proteins, restriction enzymes are capable of non-specific DNA binding as well, which is the prerequisite for efficient target site location by facilitated diffusion. Non-specific binding usually does not involve interactions with the bases but only with the DNA backbone []. This entry represents the N-terminal effector-binding domain of the type II restriction endonuclease EcoRII, which has a DNA recognition fold, allowing for binding to 5'-CCWGG sequences. It assumes a structure composed of an eight-stranded beta-sheet with the strands in the order of b2, b5, b4, b3, b7, b6, b1 and b8. They are mostly antiparallel to each other except that b3 is parallel to b7. Alternatively, it may also be viewed as consisting of two mini beta-sheets of four antiparallel beta-strands, sheet I from beta-strands b2, b5, b4, b3 and sheet II from strands b7, b6, b1, b8, folded into an open mixed beta-barrel with a novel topology. Sheet I has a simple Greek key motif while sheet II does not []. The domain represented by this entry is only found in bacterial proteins.; PDB: 3HQF_A 1NA6_A.
Probab=97.57 E-value=0.00021 Score=68.50 Aligned_cols=89 Identities=21% Similarity=0.347 Sum_probs=57.5
Q ss_pred cceEEEecccccCCCC----CcEEeehhhhcccCCCCCC----CCCceEEEEeCCC--CeEEEEEEEcCC----CCCcce
Q 007837 356 TPLFEKMLSASDAGRI----GRLVLPKKCAEAYFPPISQ----PEGLPLKVQDSKG--KEWIFQFRFWPN----NNSRMY 421 (588)
Q Consensus 356 ~~LF~KvLT~SDVg~l----gRLVIPK~~AE~~FP~L~~----~eG~~L~v~D~~G--K~W~FRfryw~N----n~SR~Y 421 (588)
...|.|.||+.|++.+ .++.|||..++.+||.+.. .+.+.|.+++..+ ..|+||++|+-| ..+..|
T Consensus 7 ~~~~~K~LSaNDtGaTGgHQaGiyIpk~~~~~lFp~~~~~~~~Np~~~~~~~~~s~~~~~~~~r~iYYnn~~~~gTRNE~ 86 (156)
T PF09217_consen 7 WAIYCKRLSANDTGATGGHQAGIYIPKSAAELLFPSINHTKEENPDIWLKARWQSHFVTDSQVRFIYYNNRLFGGTRNEY 86 (156)
T ss_dssp EEEEEEE--CCCCTTTSSS--EEEE-HHHHHHH-GGG-SSSSSS-EEEEEEEETTTT---EEEEEEEE-CCCTTSS--EE
T ss_pred eEEEEEEccCCCCCCcCcccceeEecccHHHHhCCCCCcccccCCceeEEEEECCCCccceeEEEEEEcccccCCCcCce
Confidence 4689999999999963 5899999988999988754 2458899999877 679999999932 246679
Q ss_pred eccCchhhhhccC-CCCCCEEEEE
Q 007837 422 VLEGVTPCIQNMQ-LQAGDIVTFS 444 (588)
Q Consensus 422 VLeGWs~FVRsK~-LkaGDtVvF~ 444 (588)
-+++|+....--+ =.+||.++|.
T Consensus 87 RIT~~G~~~~~~~~~~tGaL~vla 110 (156)
T PF09217_consen 87 RITRFGRGFPLQNPENTGALLVLA 110 (156)
T ss_dssp EEE---TTSGGG-GGGTT-EEEEE
T ss_pred EEeeecCCCccCCccccccEEEEE
Confidence 9999987666433 3689988776
No 4
>smart00249 PHD PHD zinc finger. The plant homeodomain (PHD) finger is a C4HC3 zinc-finger-like motif found in nuclear proteins thought to be involved in epigenetics and chromatin-mediated transcriptional regulation. The PHD finger binds two zinc ions using the so-called 'cross-brace' motif and is thus structurally related to the PF10844 DUF2577: Protein of unknown function (DUF2577); InterPro: IPR022555 This family of proteins has no known function
Probab=66.74 E-value=24 Score=31.37 Aligned_cols=84 Identities=13% Similarity=0.160 Sum_probs=48.0
Q ss_pred CCCCcccceEEEecccccCC--CCCcEEeehhhhcccCCCCCCCCCceEEEEeCCCCeEEEEEEEcCCCCCcceeccCch
Q 007837 350 DSNSVITPLFEKMLSASDAG--RIGRLVLPKKCAEAYFPPISQPEGLPLKVQDSKGKEWIFQFRFWPNNNSRMYVLEGVT 427 (588)
Q Consensus 350 d~ns~~~~LF~KvLT~SDVg--~lgRLVIPK~~AE~~FP~L~~~eG~~L~v~D~~GK~W~FRfryw~Nn~SR~YVLeGWs 427 (588)
+.+.+....|-++++.+-+. -.++++|+++ .-++|..-......+.+....+. +-.
T Consensus 12 ~~~~p~~i~~G~V~s~~PL~I~i~~~liL~~~--~L~i~~~l~~~~~~~~~~~~~~~----------------~~~---- 69 (100)
T PF10844_consen 12 EASNPVDIVIGTVVSVPPLKIKIDQKLILDKD--FLIIPELLKDYTRDITIEHNSET----------------DNI---- 69 (100)
T ss_pred hcCCCceeEEEEEEecccEEEEECCeEEEchH--HEEeehhccceEEEEEEeccccc----------------cce----
Confidence 34444455899999999743 2345889875 23455421222233333322110 000
Q ss_pred hhhhccCCCCCCEEEEEEecCCCeEEEE
Q 007837 428 PCIQNMQLQAGDIVTFSRLEPEGKLVMG 455 (588)
Q Consensus 428 ~FVRsK~LkaGDtVvF~R~epnGkL~IG 455 (588)
.|.-...|++||.|...|.+.+.+|+|=
T Consensus 70 ~i~~~~~Lk~GD~V~ll~~~~gQ~yiVl 97 (100)
T PF10844_consen 70 TITFTDGLKVGDKVLLLRVQGGQKYIVL 97 (100)
T ss_pred eEEEecCCcCCCEEEEEEecCCCEEEEE
Confidence 0556678999999999997634456653
No 6
>PF04014 Antitoxin-MazE: Antidote-toxin recognition MazE; InterPro: IPR007159 This domain is found in AbrB from Bacillus subtilis. The product of the abrB gene is an ambiactive repressor and activator of the transcription of genes expressed during the transition state between vegetative growth and the onset of stationary phase and sporulation []. AbrB is thought to interact directly with the transcription initiation regions of genes under its control []. AbrB contains a helix-turn-helix structure, but this domain ends before the helix-turn-helix begins []. The product of the B. subtilis gene spoVT is another member of this family and is also a transcriptional regulator []. DNA-binding activity in this AbrB homologue requires hexamerisation []. Another family member has been isolated from the Sulfolobus solfataricus and has been identified as a homologue of bacterial repressor-like proteins. The Escherichia coli family member SohA or Prl1F appears to be bifunctional and is able to regulate its own expression as well as relieve the export block imposed by high-level synthesis of beta-galactosidase hybrid proteins [].; PDB: 2L66_A 2GLW_A 3TND_D 2W1T_B 2RO5_B 2FY9_A 2RO3_B 1UB4_C 3ZVK_G 1YFB_B ....
Probab=60.23 E-value=14 Score=28.44 Aligned_cols=31 Identities=26% Similarity=0.338 Sum_probs=24.2
Q ss_pred hhhhhccCCCCCCEEEEEEecCCCeEEEEEEe
Q 007837 427 TPCIQNMQLQAGDIVTFSRLEPEGKLVMGFRK 458 (588)
Q Consensus 427 s~FVRsK~LkaGDtVvF~R~epnGkL~IGvRR 458 (588)
.++.+..+|++||.|.|.-.+ +|++.|.-.+
T Consensus 13 k~~~~~l~l~~Gd~v~i~~~~-~g~i~i~p~~ 43 (47)
T PF04014_consen 13 KEIREKLGLKPGDEVEIEVEG-DGKIVIRPVK 43 (47)
T ss_dssp HHHHHHTTSSTTTEEEEEEET-TSEEEEEEST
T ss_pred HHHHHHcCCCCCCEEEEEEeC-CCEEEEEECC
Confidence 367888899999999999864 6677775443
No 7
>KOG4718 consensus Non-SMC (structural maintenance of chromosomes) element 1 protein (NSE1) [Chromatin structure and dynamics]
Probab=34.66 E-value=15 Score=37.78 Aligned_cols=18 Identities=39% Similarity=0.829 Sum_probs=15.4
Q ss_pred cccccCCCccccchhhhh
Q 007837 82 RCCESCGKRVHCGCITSV 99 (588)
Q Consensus 82 R~C~~C~KrlHCGCI~S~ 99 (588)
+.|.+||-|.|||||.--
T Consensus 195 ~rCg~c~i~~h~~c~qty 212 (235)
T KOG4718|consen 195 IRCGSCNIQYHRGCIQTY 212 (235)
T ss_pred eccCcccchhhhHHHHHH
Confidence 468899999999999753
No 8
>PF02643 DUF192: Uncharacterized ACR, COG1430; InterPro: IPR003795 This entry describes proteins of unknown function.; PDB: 3M7A_B 3PJY_B.
Probab=33.43 E-value=81 Score=28.31 Aligned_cols=52 Identities=23% Similarity=0.273 Sum_probs=30.1
Q ss_pred CceEEEEeCCCCeEEEEEEEcCCC-------CCcceeccCchhhhhccCCCCCCEEEEE
Q 007837 393 GLPLKVQDSKGKEWIFQFRFWPNN-------NSRMYVLEGVTPCIQNMQLQAGDIVTFS 444 (588)
Q Consensus 393 G~~L~v~D~~GK~W~FRfryw~Nn-------~SR~YVLeGWs~FVRsK~LkaGDtVvF~ 444 (588)
-+.|.+.|..|++=....-..|.. ..-.|+|+-=..++..+++++||.|.|-
T Consensus 49 pLDi~fld~~g~Vv~i~~~~~P~~~~~~~~~~~a~~vLE~~aG~~~~~~i~~Gd~v~~~ 107 (108)
T PF02643_consen 49 PLDIAFLDSDGRVVKIERMVPPWRTYPCPSYKPARYVLELPAGWFEKLGIKVGDRVRIE 107 (108)
T ss_dssp -EEEEEE-TTSBEEEEEEEE-TT--S-EEECCEECEEEEEETTHHHHHT--TT-EEE--
T ss_pred eEEEEEECCCCeEEEEEccCCCCccCCCCCCCccCEEEEcCCCchhhcCCCCCCEEEec
Confidence 367778888887655554432221 2236899866677889999999999873
No 9
>TIGR01439 lp_hng_hel_AbrB looped-hinge helix DNA binding domain, AbrB family. This DNA-binding domain family includes AbrB, a transition state regulator in Bacillus subtilis, whose DNA-binding domain structure in solution was determined by NMR. The domain binds DNA as a dimer in what is termed a looped-hinge helix fold. Some members of the family have two copies of the domain in tandem. The domain is found usually at the N-terminus of a small protein. This model excludes members of family TIGR02609.
Probab=33.24 E-value=71 Score=23.24 Aligned_cols=28 Identities=21% Similarity=0.514 Sum_probs=22.7
Q ss_pred hhhhhccCCCCCCEEEEEEecCCCeEEEE
Q 007837 427 TPCIQNMQLQAGDIVTFSRLEPEGKLVMG 455 (588)
Q Consensus 427 s~FVRsK~LkaGDtVvF~R~epnGkL~IG 455 (588)
.+|.+..++..||.|.+.... +|.+.|.
T Consensus 13 ~~~r~~l~~~~gd~~~i~~~~-~~~l~l~ 40 (43)
T TIGR01439 13 KEIREKLGLKEGDRLEVIRVE-DGEIILR 40 (43)
T ss_pred HHHHHHcCcCCCCEEEEEEeC-CCEEEEE
Confidence 478999999999999999763 6766653
No 10
>PF13248 zf-ribbon_3: zinc-ribbon domain
Probab=32.38 E-value=22 Score=24.69 Aligned_cols=15 Identities=20% Similarity=0.662 Sum_probs=12.4
Q ss_pred CCCCccccccCCCcc
Q 007837 77 NASGWRCCESCGKRV 91 (588)
Q Consensus 77 ~~sGWR~C~~C~Krl 91 (588)
.+.++|-|..||.+|
T Consensus 12 ~~~~~~fC~~CG~~L 26 (26)
T PF13248_consen 12 IDPDAKFCPNCGAKL 26 (26)
T ss_pred CCcccccChhhCCCC
Confidence 467899999999875
No 11
>COG2002 AbrB Regulators of stationary/sporulation gene expression [Transcription]
Probab=25.90 E-value=93 Score=27.08 Aligned_cols=31 Identities=13% Similarity=0.272 Sum_probs=22.9
Q ss_pred hhhhccCCCCCCEEEEEEecCCCeEEEEEEeCC
Q 007837 428 PCIQNMQLQAGDIVTFSRLEPEGKLVMGFRKAS 460 (588)
Q Consensus 428 ~FVRsK~LkaGDtVvF~R~epnGkL~IGvRRa~ 460 (588)
...+..++++||.|.|+.....|++ -++|..
T Consensus 21 eiR~~lgi~~Gd~lei~~~~~~~~i--vl~k~~ 51 (89)
T COG2002 21 EIREALGIKEGDVLEIIVDGDGGRI--VLKKYK 51 (89)
T ss_pred HHHHHhCCCCCCEEEEEEeCCCCEE--EEEECC
Confidence 5567889999999999998655763 344443
No 12
>PRK03760 hypothetical protein; Provisional
Probab=25.15 E-value=1.2e+02 Score=27.92 Aligned_cols=27 Identities=22% Similarity=0.491 Sum_probs=20.9
Q ss_pred cceeccCchhhhhccCCCCCCEEEEEE
Q 007837 419 RMYVLEGVTPCIQNMQLQAGDIVTFSR 445 (588)
Q Consensus 419 R~YVLeGWs~FVRsK~LkaGDtVvF~R 445 (588)
-.|+|+==..++.+.++++||.|.|.+
T Consensus 90 a~~VLEl~aG~~~~~gi~~Gd~v~~~~ 116 (117)
T PRK03760 90 ARYIIEGPVGKIRVLKVEVGDEIEWID 116 (117)
T ss_pred ceEEEEeCCChHHHcCCCCCCEEEEee
Confidence 348987444456789999999999876
No 13
>TIGR00375 conserved hypothetical protein TIGR00375. The member of this family from Methanococcus jannaschii, MJ0043, is considerably longer and appears to contain an intein N-terminal to the region of homology.
Probab=25.10 E-value=31 Score=37.77 Aligned_cols=43 Identities=23% Similarity=0.339 Sum_probs=28.7
Q ss_pred HHHHhh-ccccccccccccccccCCCCCccccccCCCccccchhhhhhhhhhhh
Q 007837 54 LTLILC-VYRSIYEEGRFCDTFHVNASGWRCCESCGKRVHCGCITSVHAFTLLD 106 (588)
Q Consensus 54 ~~~~LC-~CgsayE~~~FCe~FH~~~sGWR~C~~C~KrlHCGCI~S~~~~~lLD 106 (588)
|+-+-| +|+.-|+.. + ..+-||+ |. |||+|-=| |.--..+|=|
T Consensus 238 Yh~~~c~~C~~~~~~~---~---~~~~~~~-Cp-CG~~i~~G--V~~Rv~eLad 281 (374)
T TIGR00375 238 YHQTACEACGEPAVSE---D---AETACAN-CP-CGGRIKKG--VSDRLRELSD 281 (374)
T ss_pred cchhhhcccCCcCCch---h---hhhcCCC-CC-CCCcceec--hHHHHHHHhc
Confidence 678889 998877643 1 1233788 88 99998766 4444555656
No 14
>COG1998 RPS31 Ribosomal protein S27AE [Translation, ribosomal structure and biogenesis]
Probab=25.07 E-value=32 Score=28.30 Aligned_cols=6 Identities=50% Similarity=1.104 Sum_probs=4.4
Q ss_pred Cccccc
Q 007837 89 KRVHCG 94 (588)
Q Consensus 89 KrlHCG 94 (588)
+|+|||
T Consensus 36 dR~~CG 41 (51)
T COG1998 36 DRWACG 41 (51)
T ss_pred ceeEec
Confidence 478887
No 15
>PF03120 DNA_ligase_OB: NAD-dependent DNA ligase OB-fold domain; InterPro: IPR004150 DNA ligases catalyse the crucial step of joining the breaks in duplex DNA during DNA replication, repair and recombination, utilizing either ATP or NAD(+) as a cofactor []. This family is a small domain found after the adenylation domain DNA_ligase_N in NAD+-dependent ligases (IPR001679 from INTERPRO). OB-fold domains generally are involved in nucleic acid binding.; GO: 0003911 DNA ligase (NAD+) activity, 0006260 DNA replication, 0006281 DNA repair; PDB: 2OWO_A 1TAE_A 3UQ8_A 1DGS_A 1V9P_B 3SGI_A.
Probab=24.15 E-value=55 Score=28.88 Aligned_cols=35 Identities=20% Similarity=0.323 Sum_probs=22.3
Q ss_pred chhhhhccCCCCCCEEEEEEecCCC-eEEEEEEeCCC
Q 007837 426 VTPCIQNMQLQAGDIVTFSRLEPEG-KLVMGFRKASS 461 (588)
Q Consensus 426 Ws~FVRsK~LkaGDtVvF~R~epnG-kL~IGvRRa~~ 461 (588)
=.+|+++++|..||.|.++|. .+. -.++++-+..+
T Consensus 41 N~~~i~~~~i~~Gd~V~V~ra-GdVIP~I~~vv~~~r 76 (82)
T PF03120_consen 41 NYDYIKELDIRIGDTVLVTRA-GDVIPKIVGVVKEKR 76 (82)
T ss_dssp SHHHHHHTT-BBT-EEEEEEE-TTTEEEEEEE-GGG-
T ss_pred CHHHHHHcCCCCCCEEEEEEC-CCccceEeEeehhcC
Confidence 358999999999999999995 233 25555554433
No 16
>TIGR01643 YD_repeat_2x YD repeat (two copies). This model describes two tandem copies of a 21-residue extracellular repeat found in Gram-negative, Gram-positive, and animal proteins. The repeat is named for a YD dipeptide, the most strongly conserved motif of the repeat. These repeats appear in general to be involved in binding carbohydrate; the chicken teneurin-1 YD-repeat region has been shown to bind heparin.
Probab=23.84 E-value=1.1e+02 Score=22.18 Aligned_cols=21 Identities=14% Similarity=0.213 Sum_probs=17.8
Q ss_pred CCceEEEEeCCCCeEEEEEEE
Q 007837 392 EGLPLKVQDSKGKEWIFQFRF 412 (588)
Q Consensus 392 eG~~L~v~D~~GK~W~FRfry 412 (588)
.|..+.+.|..|..|+|.|--
T Consensus 4 ~g~l~~~~~p~G~~~~~~YD~ 24 (42)
T TIGR01643 4 AGRLTGSTDADGTTTRYTYDA 24 (42)
T ss_pred CCCEEEEECCCCCEEEEEECC
Confidence 478889999999999998753
No 17
>PF09149 DUF1935: Domain of unknown function (DUF1935); InterPro: IPR015232 This entry represents a conserved region found in various bacterial and eukaryotic hypothetical proteins, as well as in the cysteine protease calpain. Its function has not, as yet, been defined. ; PDB: 1R75_A 2FE0_A.
Probab=23.60 E-value=91 Score=28.42 Aligned_cols=68 Identities=21% Similarity=0.358 Sum_probs=39.4
Q ss_pred CCCCCCCCCceEEEEeCCCCeEEEEEEEcCCCCCcceeccCchhhhhccCCCCCCEEEEEEecCCCeEEEEEEe
Q 007837 385 FPPISQPEGLPLKVQDSKGKEWIFQFRFWPNNNSRMYVLEGVTPCIQNMQLQAGDIVTFSRLEPEGKLVMGFRK 458 (588)
Q Consensus 385 FP~L~~~eG~~L~v~D~~GK~W~FRfryw~Nn~SR~YVLeGWs~FVRsK~LkaGDtVvF~R~epnGkL~IGvRR 458 (588)
+|-++..+|+..++.|...+.|.|- |+.+.|.+.=--.|-..-.+++.+.....+.+.+|.+.+.+--
T Consensus 13 ~~cF~~~~GlLfRiv~~~~~~WaFY------NDT~~y~m~V~v~F~~~S~v~~lg~t~~~~~~~~g~~~~~v~V 80 (104)
T PF09149_consen 13 YPCFKERNGLLFRIVDEKEGRWAFY------NDTKDYEMHVTVTFGPDSSVKPLGNTTVEREEEDGETVAEVVV 80 (104)
T ss_dssp EESSTTTT-SEEEEEETTTTEEEEE------E--SSEEEEEEEEEETT-EEEE-TT-EEEEE-TTSEEEEEEEE
T ss_pred EEeecCCCcEEEEEEECCCCEEEEE------eCCCcEEEEEEEEECCCCcEEECCCcEEEEecCCCcEEEEEEE
Confidence 3333333499999999888899873 6777777664445555555677665566644567766555443
No 18
>PF09297 zf-NADH-PPase: NADH pyrophosphatase zinc ribbon domain; InterPro: IPR015376 This domain has a zinc ribbon structure and is often found between two NUDIX domains.; GO: 0016787 hydrolase activity, 0046872 metal ion binding; PDB: 1VK6_A 2GB5_A.
Probab=23.06 E-value=39 Score=24.25 Aligned_cols=24 Identities=33% Similarity=0.861 Sum_probs=12.8
Q ss_pred hh-ccccccccccccccccCCCCCc-cccccCCCc
Q 007837 58 LC-VYRSIYEEGRFCDTFHVNASGW-RCCESCGKR 90 (588)
Q Consensus 58 LC-~CgsayE~~~FCe~FH~~~sGW-R~C~~C~Kr 90 (588)
-| +||+.-+ ..+.|| |-|..||..
T Consensus 5 fC~~CG~~t~---------~~~~g~~r~C~~Cg~~ 30 (32)
T PF09297_consen 5 FCGRCGAPTK---------PAPGGWARRCPSCGHE 30 (32)
T ss_dssp B-TTT--BEE---------E-SSSS-EEESSSS-E
T ss_pred ccCcCCcccc---------CCCCcCEeECCCCcCE
Confidence 36 7776543 345677 679999865
No 19
>COG5569 Uncharacterized conserved protein [Function unknown]
Probab=21.60 E-value=84 Score=29.26 Aligned_cols=28 Identities=29% Similarity=0.288 Sum_probs=21.2
Q ss_pred hhhhccCCCCCCEEEEEEecCCCeEEEE
Q 007837 428 PCIQNMQLQAGDIVTFSRLEPEGKLVMG 455 (588)
Q Consensus 428 ~FVRsK~LkaGDtVvF~R~epnGkL~IG 455 (588)
+=..=.+|++||.|.|--...+|++.+.
T Consensus 77 d~a~lsglKeGdkV~fvferv~gk~tv~ 104 (108)
T COG5569 77 DQAKLSGLKEGDKVEFVFERVNGKLTVQ 104 (108)
T ss_pred cHHHhhccccCCcEEEEEEeeCCEEEEE
Confidence 3345578999999988777779987654
No 20
>PF12760 Zn_Tnp_IS1595: Transposase zinc-ribbon domain; InterPro: IPR024442 This zinc binding domain is found in a range of transposase proteins such as ISSPO8, ISSOD11, ISRSSP2 etc. It may be a zinc-binding beta ribbon domain that could bind DNA.
Probab=21.55 E-value=51 Score=25.40 Aligned_cols=26 Identities=23% Similarity=0.645 Sum_probs=17.9
Q ss_pred hh-ccccccccccccccccCCCCCccccccCCCc
Q 007837 58 LC-VYRSIYEEGRFCDTFHVNASGWRCCESCGKR 90 (588)
Q Consensus 58 LC-~CgsayE~~~FCe~FH~~~sGWR~C~~C~Kr 90 (588)
-| +||+. +.+.....+-..|..|+++
T Consensus 20 ~CP~Cg~~-------~~~~~~~~~~~~C~~C~~q 46 (46)
T PF12760_consen 20 VCPHCGST-------KHYRLKTRGRYRCKACRKQ 46 (46)
T ss_pred CCCCCCCe-------eeEEeCCCCeEECCCCCCc
Confidence 38 99985 2233344788899999875
No 21
>PRK09838 periplasmic copper-binding protein; Provisional
Probab=20.43 E-value=1.6e+02 Score=27.33 Aligned_cols=27 Identities=19% Similarity=0.326 Sum_probs=19.3
Q ss_pred ccCCCCCCEEEEEEe-cCCCeEEEEEEe
Q 007837 432 NMQLQAGDIVTFSRL-EPEGKLVMGFRK 458 (588)
Q Consensus 432 sK~LkaGDtVvF~R~-epnGkL~IGvRR 458 (588)
-.+|++||.|.|.-. +.++.+++.+++
T Consensus 86 l~~lk~G~~V~F~~~~~~~~~~i~~i~~ 113 (115)
T PRK09838 86 MSEIKTGDKVAFNFVQQGNLSLLQDIKV 113 (115)
T ss_pred hccCCCCCEEEEEEEEcCCcEEEEEEee
Confidence 358999999999643 445556667765
No 22
>COG2947 Uncharacterized conserved protein [Function unknown]
Probab=20.28 E-value=1.1e+02 Score=30.20 Aligned_cols=30 Identities=13% Similarity=0.294 Sum_probs=20.9
Q ss_pred hhhhhccCCCCCCEEEEEEecCCCeEEEEEEe
Q 007837 427 TPCIQNMQLQAGDIVTFSRLEPEGKLVMGFRK 458 (588)
Q Consensus 427 s~FVRsK~LkaGDtVvF~R~epnGkL~IGvRR 458 (588)
..|+|+ .+.||.+.||-..-.+-=++|+-+
T Consensus 36 RNfmR~--M~iGD~~fFYHSNc~~pgIvGl~~ 65 (156)
T COG2947 36 RNFMRD--MKIGDLGFFYHSNCKPPGIVGLAE 65 (156)
T ss_pred HHHHHh--cccCceEEEEecCCCCCCceehhh
Confidence 468888 789999999997534444455443
Done!