Basic Information

Gene Symbol
-
Assembly
GCA_014737365.1
Location
JACXIL010000150.1:9607-24906[-]

Transcription Factor Domain

TF Family
TF_bZIP
Domain
bZIP domain
PFAM
AnimalTFDB
TF Group
Basic Domians group
Description
bZIP proteins are homo- or heterodimers that contain highly basic DNA binding regions adjacent to regions of α-helix that fold together as coiled coils
Hmmscan Out
# of c-Evalue i-Evalue score bias hmm coord from hmm coord to ali coord from ali coord to env coord from env coord to acc
1 43 0.35 3.4e+02 1.4 0.2 25 48 53 76 49 83 0.62
2 43 0.91 8.7e+02 0.1 1.0 33 56 99 122 95 124 0.73
3 43 5 4.8e+03 -2.3 0.1 40 60 151 171 147 174 0.86
4 43 0.025 24 5.1 0.4 30 58 212 240 204 245 0.82
5 43 0.003 2.8 8.1 6.0 29 63 345 379 343 381 0.87
6 43 0.44 4.2e+02 1.1 9.7 24 64 400 440 390 441 0.92
7 43 0.00099 0.95 9.6 0.5 24 60 466 502 465 506 0.84
8 43 0.22 2.1e+02 2.1 4.4 22 64 520 562 508 563 0.80
9 43 0.042 40 4.4 6.7 20 63 560 603 554 605 0.92
10 43 0.03 29 4.9 7.8 24 64 599 639 596 647 0.63
11 43 0.035 34 4.6 6.8 18 59 621 662 619 664 0.91
12 43 0.033 31 4.7 7.6 21 64 659 702 654 703 0.92
13 43 0.0004 0.39 10.9 3.9 28 65 722 759 709 759 0.87
14 43 0.012 11 6.2 3.7 23 61 755 793 753 797 0.75
15 43 0.0031 3 8.0 1.0 27 63 794 830 788 832 0.79
16 43 0.0047 4.5 7.4 1.0 28 59 827 858 826 863 0.90
17 43 1.1e-05 0.01 15.9 2.2 25 65 869 909 867 909 0.93
18 43 0.015 14 5.8 0.4 33 63 905 935 904 937 0.88
19 43 0.11 1e+02 3.1 5.2 35 58 956 979 942 986 0.77
20 43 0.012 12 6.1 3.0 23 55 958 997 956 1007 0.45
21 43 0.026 25 5.1 0.0 26 59 989 1022 984 1024 0.74
22 43 0.0067 6.4 7.0 3.5 28 59 1026 1057 1014 1063 0.59
23 43 7.2e-05 0.069 13.3 3.4 32 62 1065 1095 1057 1098 0.88
24 43 0.12 1.2e+02 2.9 0.7 28 60 1093 1125 1092 1129 0.85
25 43 0.00077 0.74 10.0 0.3 21 62 1117 1158 1116 1160 0.92
26 43 0.0066 6.3 7.0 1.6 26 58 1178 1210 1166 1217 0.76
27 43 0.0099 9.4 6.4 2.1 35 64 1215 1244 1203 1259 0.58
28 43 0.0012 1.2 9.3 1.5 17 62 1323 1368 1311 1371 0.87
29 43 0.26 2.5e+02 1.9 1.5 31 61 1372 1402 1366 1406 0.86
30 43 0.17 1.6e+02 2.5 0.8 24 54 1403 1433 1398 1440 0.54
31 43 0.18 1.7e+02 2.4 0.6 24 63 1417 1456 1414 1458 0.91
32 43 0.0038 3.6 7.7 6.9 26 62 1475 1511 1456 1514 0.76
33 43 0.02 19 5.4 2.9 25 56 1516 1547 1514 1556 0.86
34 43 0.006 5.7 7.1 6.9 27 65 1574 1612 1556 1612 0.82
35 43 7.3e-05 0.07 13.2 5.1 24 63 1613 1652 1612 1654 0.90
36 43 0.0038 3.7 7.7 4.4 27 61 1651 1685 1648 1689 0.88
37 43 0.86 8.2e+02 0.2 6.1 30 63 1685 1718 1683 1720 0.78
38 43 0.026 25 5.1 2.1 27 57 1724 1754 1720 1757 0.87
39 43 2.7e-05 0.026 14.6 6.5 20 64 1752 1796 1752 1797 0.94
40 43 0.013 12 6.0 1.4 31 61 1812 1842 1797 1846 0.75
41 43 0.004 3.9 7.7 2.7 21 55 1844 1878 1842 1881 0.84
42 43 0.00096 0.92 9.7 5.1 27 60 1871 1904 1868 1907 0.91
43 43 7.7 7.4e+03 -2.9 1.1 36 51 2089 2104 2068 2115 0.51

Sequence Information

Coding Sequence
ATGGATGTTTGCCGGTGCGGATGCGAGGCATCGTCGCAAGAATCGATCGATCCACTGCACGAGCCGTGCTGTTGCTGCAGTTACGATCCATTCAGCGACAAAGAAGCAGAAATCTACGACCTCTCGTTTGCCCTGAAGAAGCTCACTGTAATGAAGTGTCAGATGAAAAAGTGGCGAATGGAAAGACTTCAACTCGAGAGCGAAAATAGGTCTCTGAAACAAGTCCTCCAATCATTCGGTGTAAATGCGGATGAGATATTGAAGCCCGATCCGCTGCTAGTGCACTTCCGAGAAGAAATCGAAAGGCTGCAAAATGCAAACGCGGTGTTGCAAGATAAAGCGAGGGATCTTGAGGAAACTCTCGCCGAGCGAGATTGCTGTGACGATCCTGACGCCACGATCCACTTTCTCAGAGAGAAGATAAGATATCTTAGAGAGGGTTTCGCGCTTGAAAAGAAAGAATTGCGAGACATGATATCGGATTTGAGGCTAAAGCTGGCGCAGACCGAGGAGGACATCAGCTGCCCCGCGATATATCGTTTAAGAGCAAAGCTGCGTGATCTCATGAAAGGTGAAGTGGCTGAACAACAGATTTCCAAAGTTGTGGAGAAATCGATCGAAACATTGGTAGACCTTTCTAAGAGCTGCGATGATCTGCGTTTGGAAAACGAACGTCTTCTTGCTCAAGTGACAGACTTGCGCAGTGCATTGGTTGATCTCGAAGGAAAGGAAACGCCAGAAACGATATTCCAAACGGCCGAAACAACTACAGTGCCGGAGTATATTGACATTTCAGATTTATTGGATAAGCTGAACAACTGTGAGGATATCGTGGCTGATCTAAGAAAACAGTTAGAACAAAGAGACGAGCAGATCGATGCACTGAACAAAGAACTGGAATTGATGATTAGTCAAAAAGGTTTAGAGGAACAGATAGAGGCCATGAAAGAGGAACTTAGGAAGAAAGATGACAAGATCGCAGGACTCCTGAACAACTTAAGACAATCAGAAATAGACTTGTTGGGGTTATCTTCTCTGAAATCCGAAGTGGAGAACTTGAAATCAGAGTTACATGATCTCAAATCAGAGAGAACTGAATTATTGAACGAACTAAACAAACTGCGAGAAACACTGAAGGATAGAGATGATCAGATAATAGATTTACTGGAGCAGAAGAACAACTTGGAGAAAGAGTACAAGAATAAGACGGTAGAATTACAGTTAAAACTCGATCAGGCAAATAATGAGATCAATGATTTGAAAGCTGAGATAAACAAACTGAAGAATGAGTTGGAAGAGTGTAAGAAGCTAAACGCGAAGCTAGAACAGTGCTGTTTGGACAAGAACGCACTTTCGGGAAAGCTACACGGCTTCAAAGAAGACCTTGCAACCGCGAAAGCGATAATAGCGAATCTCGAAACTGAGGTGGACACTTTAAGGCGAGACAAGGAAAATTTGTCGAACGAACTGGACGAGGCAAGGAAACAGGTGGAGGCGTTCACTGGACGACTGGAGGATGAAAGGGCGGCCAGGACCGCATTGGAGAAGGAACTGGAGAGAAACCGAGATGAGATTGAATTGTTACAGAGGGAGATTTTCGATCTGAAAGATCAGATCGATGCCGAAAGGAAGGAGAACGACGAGCTTCGTGAAATTTTAGAAGCATCGGTCGACGAGAGGGAAAAGTTGAGAGTTCGGTTAGAGCAGCTGGAGAACGAGAATTATGATCTGATGGAAAAGATGAAGAAGCTAGACAATTTGAATAACCAGCTAAGGAATGACTACGATAATATGAAACAGGCTTTGGACAATTTGCAAACAGAGATCAACAAACTGGAGGATGAATTGGCTAAGGCGAAGCAAGAACGTGATGCGTTGTTGAACGAGAATAACGGTATCAGAAAGCAGCTGGAACAAGCGATGGCGGAGAACGAGAGTCTGAGAGCTGAATTGGACGAAGCTGGTAAAGAACTTAATAAACTGAAACTACAGAAGGACGAGCTACAGAAGAGACTCGATGAGATCAATCTCGAGAACGATTCACTGAAACGAGATATGAAGGCGTTAAGGGATGACCTTGAGGATTCCAGAAGGCAAGCGGAGGAGCTAAAAGCCGCTGGTGACGCGTTGAAAGCGACGGATAAGGATAAGGTACTTGAATTTGCAAAGCTGCAAGAACAAGTAGAGAACTGCAAGTTCGAAAAGAATCGTTTAACGAAGGAAAATGATGATTTGAAATCTAAAATAATAAAATTACAAGGAAAGTTGGAGGAGTTGGATAAGTTAAAGGGAAAAAATACAGATTTACTGGCTGAAGTAGATCGTTTGAGAAAAGAATTAGAAAAAGCGTTGGAGGACATTGATCAATTGAAATCCGAAATAGGTTCCTTGAAGGATGGACTCGATAATTGTGTGGACGAGATGCAAAAGCTGAGAATCGAAAATGGCGACCTCAAAGAACAGAACGAAACCTTGAAGTCTGAGATGCAAGCAATTACCGATCGCTTAATGAAAGACAATGACGATTTAAAAGCAAAAATCTCAGAATTGGAAGAAAAGTTAAGTGAATTGCATAAAATAAAACTAGAAAATGTTGATTTGCTTGATGAAGTAGATCGTTTGAAACAGGAATTGGCAAAAGCCTGGGAAGAAGTTGATCGATTGAAATCCGAAGTAGCATCTCTGAAAAACGCACTCGATAAGTGCGTGGACGAGATGGAAAAGCTAAGAACTGAGAGCGATCAACTTAAATTGGAGAATCAAACTTTCAAGTCTGATATTCATGGACTTGATGATCGCTTAACGAAGGAAATCGCCAATCTGAAAGCAAAAAACGCGGCATTGGAAGAAAACTTAGTGGCATTCGATAAATTGAAGTTGGAAAATGAGGATTTACTTGGTGAAGTCGATCGTTTGAGACGTGAATTGGAAAAAGCCTTAGAGGATATCGATCAATTGAAATCTGAGATAGGTTCTTTGAAAAACGGACTGGATAAATGTGTTGGCGAGATGGATCAGCTGAGAACCGAAAACGGCAGTTTAAAGTCCGAAATTCAGGGAATGAGGGGCGAAGGGGACAGTTTGTCGGCGGAGTTAAATAATTTGAAGAATGAGAATTCTCTTTTGAAAGACGAAAGAGATCGATTGAGCAAGCAATTGAGCGTCTGTAAGATGGAAAACGAAAAATTCAGAGTAGAGAAGGCTCACCTGGAAGCTGAAAACGAGAAGCTGGAAGGAGAGATAAATTCGTGCAAGGAAAAGAATGACAAATTAAAAGACGAACTTGGAAAATCACGGGAACAATTGCAGTCATCGAACGACGAATTGAATAAATTAAAGGCTAATCTCGACAGAGCTGAAGACAAAATTCGGTCTCTGGAGCCGCTGATCTCCCGTTTGCATAGTGAAAATGATAAATTGCGGGACGATTTGACGAGTTTGAAGAACGAGGCCAATGATTTCAAAGCAAAATTGGCTAGAGAAACGGCTGACAATGAAATGATGCAGAACGATCTGAAGATACTGGAGGATCAGGTGCACGATCTAAGTAAGAATCTGGTCAATGCTAGAGCAGAAAATGACACTTTGAAACAGGAAAATCAAGGTCTAAAAACAAAGTTATTAAATATGGATCATGATCTATCGAATTTGAAAGTGGAATGTTCGGATCTGAAACAAGAGATTGCTGATCTGAAGAAATTAATCGATGAATTAAAAGAAAAAATTGCTAAACTGGAAGCAGACATAGATCATTGGAAAATGCAGAACTGCAAACTTCAGTTGGACATTGATAAATCGAAAGCTGATCTTGAGAAAGCCTTGAAAGATTTGCTCGAATGCCAGGCTTCGAAGAAAACACTAGAAGCAGAGATGTACCGCCTCAAGATTNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNCTCAACTCGAGCAACAGGAAAAAGCATTCGAAGCAGAAAAATCGGCCAGAAATAAGGGTGATTCAGAAATCGCGGCCTTGAAGGAGGAACTGGATGCCTTGAAAAAGGAACTAGGAAAATTGAGAGCTGACAACAACAGATACAGAAATGAAATAGACGACCTAGGAAGACAGCTTGCGGTAACAAAAAATGAACTGGAGAAGTGCAAAGAAGAGGTTTCTGTATTAAGAGATGCCAATAACGCGCTAACGTCTCAATTGGATCCCTTGAAAAGTTTAAAGGACGAATATAATAAGTTGAAGGCTGATTTAGACTCTCTTAAAGAGGAGAACGTAAATCTTCTGCAAGATAGGAAAAATTTCGAAGACGAGTATACTAGGCTGAGAGGAGAAGGCGATGGACAGAAAGCAGAGATCGATAGATTGAGATCAAACTTGAATGCACAGGAGGCAGCTGCGAAAGAATTGAGGGCAAATCTTCAAAATTGCCAAACTGAGAACGATAGACTGCAACAGCAATTAAACGAAGTGGAAAATGAGTTGGATGAACTAACAAAGGGAAACAATCGTATAAAGAACGAGATCGATAAGCTGAAGAAGGCGCTCGCGGACGCGGAAGCAAAGATAAAGTTGCTGGAAATTGAACTATCCGATTTGTTAGCCGAGAAAAAAGAATTGGTCAACGAACTCTCTCATTTCCGCGAACAGCTAAGCAATCGTACAAACGAGATAGAAGAGCAGATGGCCGCGAAAGATGCGGCCAAGAAGGAATTGGCCGACATGAAGGATGAGCTAACCGCTCTAAAAGCGGCGTTGAATAAGGTTCGCAGCGAAAACGATAAGCTGAGGAACGAGAACGAAAAGCTGAATGTGGAATTAACCAAGTTGAAAGGGCAATTAGAAACTCTGAAGGATGATAATGCGAAGTTGGAAAATGAAAACGCGAATCTGAAGAACGAAAACGCGAATCTAAAGAATGACAATGCGAAATTGGCGGAGGAGTTAACTGGAACGAAAAACAAATTGGCAGAAACGGAGAAACAGCTGAACGATCTAGAGAAAGGAAACGACGACTTGAATAACAAAATAGCCGATCTCGAGAACACAGTGAACGAGCTCAAACCTTTGAAGGAACAATTAGAAGATGCAAAAAAAGAACTGGATAGGCTGAGGCCAGAGCTAAATAGATTGAAATCACAGAATGCAGAACTGCAAAACAATTTAAATAACGCCATAGAGGAATCGAATAGGTTAAGAAATGATTTGGACAAATTAAAAAGCGATTACGACAAATTGAAGTCTGAATTAGCTGACCTGAAGGAGGAGAGAGATAGTCAGAAAGAACGGAACGCAGAATTGGAGAAAGAATTAGCCGAAATAAAGAAAGAGAATGCGAATCTCAAGGGCGAGTTAGCCGATTGTCAAGCGGAGAATGAAAGATTGCGTAATGGATTGACAGATTTAAAGTCGCAAAATGTAAAACTGCAGGACGATTTAAACAAGGCGAAGAACGAAGCGAATAAATTAAAAGCTGATTTGGATAAATTGAAAAGCGATTATGGTGAGTTGCGGTCGGAATTAGGTAAACTAAGGGATGAGAAGAATAGATACAAAGAACGCTATACTGAGTTAGCCACGGATCTGGATAAATTGAAGAAAGAGAATGACGAGTTAAAAGATGGGAATGAGAAACTGAAAAGCCAGTTATTCGATTGCCAAGAGGAGAGGGAAAGGTTAGGCAAGGAATTGGGAAAGCTGAGAAGAGAAAATGCAAAATTGAAAGAAGTGAAAAGGGTGGAGCCCAAGGAAACGGAGATGGACAAAGATATTTTGGATGACTGTGGTGATTTCATAAAGGCGAATGAATTACTGGAGAAGAAATTCAAAAAACAGAATGAAGGTGTGCTGCGCATTTGGAATTATATTAGATATTTGGAAGGTAAAGCTACAGAACCGAAAATGGCGGACAGGCCGGAAGAAGAACCAGAAATTGATCCAGTATTAAGGAAAGACATTGCAGATTTGTTGAAGAAATCTCACAATTTATCTAATGATATCTATCAAACGGAACAGGAAATAACAAATCTTGGAGCTAAACCTGGCGAGGGCCTTTTCGATCCTGACAGTTGGCTAAACTCGTTGACATTGACACAGTTAGCTGAACTTCACGATAAGATTTGCCAGTTGACATCGGACATGGTGCACCAGGACAGCAGAGCGGTACCGTGCGATGGTTATGAACCAGCGACTCCGTCAAAGGCGGATTATAATATTTTGAACCAGCGTATAGCTGCTTTGCAGAAACAGATAGCGGAGAAGCAAATGGAGGCAGGCTGGAAGCTCCAGGAACTGAGGAGGGCTCTTCAAAATGAACAGGCTAACTTAATTCGAATCTCCGATCAGATGAACTTTGAGAGAAAACGCAATTTGAACCTTCAGCATAGCATGGATGATTCACCGTAA
Protein Sequence
MDVCRCGCEASSQESIDPLHEPCCCCSYDPFSDKEAEIYDLSFALKKLTVMKCQMKKWRMERLQLESENRSLKQVLQSFGVNADEILKPDPLLVHFREEIERLQNANAVLQDKARDLEETLAERDCCDDPDATIHFLREKIRYLREGFALEKKELRDMISDLRLKLAQTEEDISCPAIYRLRAKLRDLMKGEVAEQQISKVVEKSIETLVDLSKSCDDLRLENERLLAQVTDLRSALVDLEGKETPETIFQTAETTTVPEYIDISDLLDKLNNCEDIVADLRKQLEQRDEQIDALNKELELMISQKGLEEQIEAMKEELRKKDDKIAGLLNNLRQSEIDLLGLSSLKSEVENLKSELHDLKSERTELLNELNKLRETLKDRDDQIIDLLEQKNNLEKEYKNKTVELQLKLDQANNEINDLKAEINKLKNELEECKKLNAKLEQCCLDKNALSGKLHGFKEDLATAKAIIANLETEVDTLRRDKENLSNELDEARKQVEAFTGRLEDERAARTALEKELERNRDEIELLQREIFDLKDQIDAERKENDELREILEASVDEREKLRVRLEQLENENYDLMEKMKKLDNLNNQLRNDYDNMKQALDNLQTEINKLEDELAKAKQERDALLNENNGIRKQLEQAMAENESLRAELDEAGKELNKLKLQKDELQKRLDEINLENDSLKRDMKALRDDLEDSRRQAEELKAAGDALKATDKDKVLEFAKLQEQVENCKFEKNRLTKENDDLKSKIIKLQGKLEELDKLKGKNTDLLAEVDRLRKELEKALEDIDQLKSEIGSLKDGLDNCVDEMQKLRIENGDLKEQNETLKSEMQAITDRLMKDNDDLKAKISELEEKLSELHKIKLENVDLLDEVDRLKQELAKAWEEVDRLKSEVASLKNALDKCVDEMEKLRTESDQLKLENQTFKSDIHGLDDRLTKEIANLKAKNAALEENLVAFDKLKLENEDLLGEVDRLRRELEKALEDIDQLKSEIGSLKNGLDKCVGEMDQLRTENGSLKSEIQGMRGEGDSLSAELNNLKNENSLLKDERDRLSKQLSVCKMENEKFRVEKAHLEAENEKLEGEINSCKEKNDKLKDELGKSREQLQSSNDELNKLKANLDRAEDKIRSLEPLISRLHSENDKLRDDLTSLKNEANDFKAKLARETADNEMMQNDLKILEDQVHDLSKNLVNARAENDTLKQENQGLKTKLLNMDHDLSNLKVECSDLKQEIADLKKLIDELKEKIAKLEADIDHWKMQNCKLQLDIDKSKADLEKALKDLLECQASKKTLEAEMYRLKIXXXXXXXXXXXXXXQLEQQEKAFEAEKSARNKGDSEIAALKEELDALKKELGKLRADNNRYRNEIDDLGRQLAVTKNELEKCKEEVSVLRDANNALTSQLDPLKSLKDEYNKLKADLDSLKEENVNLLQDRKNFEDEYTRLRGEGDGQKAEIDRLRSNLNAQEAAAKELRANLQNCQTENDRLQQQLNEVENELDELTKGNNRIKNEIDKLKKALADAEAKIKLLEIELSDLLAEKKELVNELSHFREQLSNRTNEIEEQMAAKDAAKKELADMKDELTALKAALNKVRSENDKLRNENEKLNVELTKLKGQLETLKDDNAKLENENANLKNENANLKNDNAKLAEELTGTKNKLAETEKQLNDLEKGNDDLNNKIADLENTVNELKPLKEQLEDAKKELDRLRPELNRLKSQNAELQNNLNNAIEESNRLRNDLDKLKSDYDKLKSELADLKEERDSQKERNAELEKELAEIKKENANLKGELADCQAENERLRNGLTDLKSQNVKLQDDLNKAKNEANKLKADLDKLKSDYGELRSELGKLRDEKNRYKERYTELATDLDKLKKENDELKDGNEKLKSQLFDCQEERERLGKELGKLRRENAKLKEVKRVEPKETEMDKDILDDCGDFIKANELLEKKFKKQNEGVLRIWNYIRYLEGKATEPKMADRPEEEPEIDPVLRKDIADLLKKSHNLSNDIYQTEQEITNLGAKPGEGLFDPDSWLNSLTLTQLAELHDKICQLTSDMVHQDSRAVPCDGYEPATPSKADYNILNQRIAALQKQIAEKQMEAGWKLQELRRALQNEQANLIRISDQMNFERKRNLNLQHSMDDSP

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
iTF_00232996;
90% Identity
iTF_00216838;
80% Identity
-