Basic Information

Gene Symbol
-
Assembly
GCA_014737475.1
Location
JACXIV010000056.1:71415-90522[+]

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 44 0.13 1e+02 2.8 0.2 25 50 53 78 49 85 0.55
2 44 2.4 1.9e+03 -1.2 2.2 33 56 99 122 97 124 0.73
3 44 5.3 4.1e+03 -2.3 0.1 40 60 151 171 148 174 0.86
4 44 0.011 8.7 6.2 0.8 28 58 210 240 204 244 0.86
5 44 0.00094 0.73 9.7 6.4 29 63 345 379 343 381 0.88
6 44 0.033 25 4.7 2.1 24 61 400 437 399 441 0.89
7 44 0.0005 0.39 10.5 0.7 24 62 466 504 463 506 0.85
8 44 0.47 3.7e+02 1.0 5.6 21 64 519 562 511 563 0.88
9 44 0.0035 2.7 7.8 5.4 27 61 560 594 557 598 0.90
10 44 0.0025 1.9 8.3 5.8 23 64 598 639 596 640 0.94
11 44 0.042 32 4.4 2.9 26 59 629 662 627 664 0.91
12 44 0.008 6.2 6.7 4.6 21 64 659 702 658 703 0.93
13 44 0.0001 0.078 12.8 6.7 25 65 719 759 709 759 0.83
14 44 0.022 17 5.3 2.9 28 60 760 792 755 804 0.54
15 44 0.091 70 3.3 7.4 34 60 808 834 797 862 0.72
16 44 0.098 76 3.2 3.3 30 63 843 879 833 884 0.53
17 44 0.00016 0.12 12.1 3.4 25 64 869 908 858 909 0.72
18 44 0.081 63 3.5 3.1 24 62 903 941 900 943 0.77
19 44 0.0021 1.7 8.5 5.8 24 60 931 970 929 975 0.81
20 44 0.0073 5.6 6.8 0.3 33 63 992 1022 973 1024 0.83
21 44 0.00065 0.5 10.2 1.6 28 63 1015 1050 1004 1052 0.80
22 44 2e-05 0.016 15.0 6.2 27 63 1049 1085 1046 1087 0.88
23 44 1.6 1.3e+03 -0.7 0.1 29 48 1083 1102 1082 1106 0.63
24 44 0.021 16 5.4 0.2 29 62 1114 1147 1108 1149 0.83
25 44 0.041 32 4.4 1.0 36 64 1184 1212 1177 1213 0.88
26 44 0.0099 7.7 6.4 0.5 28 60 1204 1236 1198 1242 0.85
27 44 0.028 22 4.9 2.0 24 55 1228 1259 1218 1266 0.66
28 44 0.0095 7.4 6.5 3.6 24 64 1261 1303 1260 1304 0.84
29 44 0.0017 1.3 8.9 2.9 18 62 1313 1357 1309 1360 0.92
30 44 0.12 96 2.9 0.9 32 61 1362 1391 1358 1395 0.84
31 44 0.45 3.5e+02 1.1 0.2 24 63 1406 1445 1403 1447 0.91
32 44 0.0012 0.9 9.4 4.9 23 60 1447 1484 1441 1489 0.90
33 44 0.041 32 4.4 4.9 31 63 1504 1536 1494 1544 0.63
34 44 3.7 2.9e+03 -1.8 12.4 37 64 1573 1600 1532 1601 0.87
35 44 0.00073 0.57 10.0 3.3 24 63 1602 1641 1600 1643 0.89
36 44 0.0026 2 8.3 3.1 30 58 1643 1671 1637 1674 0.88
37 44 0.03 23 4.9 3.9 30 63 1674 1707 1670 1709 0.92
38 44 0.048 37 4.2 2.5 27 60 1713 1746 1710 1750 0.84
39 44 0.00038 0.3 10.9 2.6 20 60 1741 1781 1741 1786 0.94
40 44 0.00044 0.34 10.7 1.4 24 64 1759 1799 1756 1800 0.91
41 44 0.015 11 5.9 0.9 31 61 1801 1831 1792 1833 0.81
42 44 0.01 7.8 6.4 4.8 21 55 1833 1867 1832 1868 0.93
43 44 0.0008 0.62 9.9 7.5 28 60 1861 1893 1857 1896 0.91
44 44 9.1 7e+03 -3.1 0.7 36 50 2078 2092 2057 2103 0.49

Sequence Information

Coding Sequence
ATGGAAGTTTGCCGGTGCGGATGTGAGGCATCATCGCAAGAATCGATCGATCCACCGCACGAGCCGTGCTGTTGTTGCAGTTACGATCCATTCAGCGACAAAGAAGCAGAAATCTATGACCTCTCGTTTGCCCTGAAGAAACTCACTATAATGAAGTGTCAAATGAAAAAGTGGCGAATGGAAAGACTTCAACTCGAGAGCGAAAATAGGTCTTTGAAACAAGCTCTCCAGTCATTCGGTGTAAATGCGGATGAGATATTGAAGCCCGATCCGCTGCTAGTGCACTCCCGAGAAGAAATCGAAAGGCTGCAAAATGCAAACGCGGTACTCCAAGATAAAGCGAGGGATCTTGAGGAAACTCTCGCCGAACGAGATTGCTGCGACGATCCTGATGCCACGATCCACTTCTTCAGAGAGAAGATGAGATATCTTAGAGAGGGTTTCGCGCTTGAAAAGAAAGAATTGCGGGACATGATATCGGATTTGAGGTTGAAGTTGGCGCAGACCGAAGAAGACATCAGCTGCCCCGCAATATATCGTTTAAGGGCAAAACTGCGTGATCTTATGAAAGGTGAAGCGGCTGAACAACAGATTTCCAAAGTCGTGGAGAAATCGATCGAAACTTTGGTGGAACTTTCTAAGAGCTGCGATGATCTGCGTTTGGAAAACGAACGTCTTCTTACTCAAGTGACAGACTTGCGTAGTGCATTGGTTGATCTCGAAGGAAAGGAAATGCCAGAAACGATATTGCAAACAGCCGAAACAACCACAGTGCCGGAATATATTGACATTTCGGATTTATTGCATAAGTTGAATAACTGCGAGGATACCGTGGCTGATCTAAGAAAGCAATTAGAAGAAAGAGACGAGCAGATTAATGCACTGAACAAAGAACTGGAATCGATGGTCAGTCAAAAAGACTTAGAGGAACAGATAGAAGCTATGAAAGAGGAACTTAGAAGGAAAGATGACAAGATCGCAGAACTCTTGAACAATCTAAGACAATCAGAAATAGACTTGTTGGGGTTATCTTCTCTGAAATCTGAAGTAGAGAACCTGAAATCAGAGTTACATGATCTCAAATCAGAGAGAGCCGAATTATTGAACGAACTAAACCAACTGCGAGAAGCACTGAAGGATCGAGACGATCAGATAATAGACTTACTGGAACAGAAGAACAAGTTGCAGGAAGACTACAAGAATAAGACGGCAGAGTTACAGTTAAAGCTCGATCAGGCATATGACGAGATCGGTGATTTGAAAGCTGAGATTACCAAACTGAAGAATGAGTTGGAAGAGTGTAAGATACTAAACGCGAAGCTGGAAGAGTGCTGTCTGGACAAGAATGCACTTTCGAAAAAGCTACACAGCATGGAAGAGCACTTTGCAGCCGCGAAAGTGATAATAGTAAATCTCGAAAGTGAGGTGGACACTTTAAGGCGAGACAAGGAAAATTTGTCGAACGAACTGGACGAGGCAAGGAAACAAGTGCAGGTGTTGACTGGACGACTGGAGGATGAAAGGGCAGCCAGGACCGCGCTGGAGAAGGAACTGAAGAGAAACCGAGATGAGATTGAATTGTTACAGAGGGAGATTTTAGATATGAAGGATCAGATCGATGCCGAGAGAAAAGAGAACGACAAACTTCGCGAAACGTTAGAAGCATCAGTCGGCGAGAACGAAAAGTTAAGGGCTCGGCTAGAGCAGCTGGAGAACGAGAACGATGCTCTGATGAAAAGGACAAAGGAGCTAGACAATTTGAATAACCAGCTAAGGAACGACTATGATAGCATGAAGCAGGCTGTGGACAATTTGCAAGCAGAAATCAATAAACTGGAGGATGAATTGGCCAAGGCGAAGCAAGAACGCGATACGTTGTTGAATAAGAATAACGGTATTAAAAAGCAGCTGGAACAAGCGATGGCGGAGAACGAGAGCCTGAGAGTCGAATTGGATGAAGCTGGTAAAGAACTTAATAAACTGAAACTACAGAAGGAGGAGATGCAGAAGAGCTTCGATGAGATCAAGCTCGAGAACGATTCACTGAAACGAGATATAAAGGCGTTAAGGGACGACCTTGAGGATTCCAGAAGGCAAATGGAGGAGCTAAAAGCCGCTGGTGACGCGTTGAAAGCGACAGATAAGGATAAGGTACTTGAACTCGCAAAGCTGCAACAACAAGTAGAGAACTTGGAGTTCGAAAAGAATCGCTTAACGAAGGAAAACGATGATTTGAAATCTAAAACAATGGAATTACAAGGAATGTTGGAGGAGTTGGATAAGTTAAGGGGAAGAAATACAGATTTACTCGCTGAAGTAGATCGTTTGAGAAAAGAATTAGAAAAAGCGTTGGAGGACATTGATCAATTGAAATCTGAAACAGGTTCCTTGAAGGATGGACTCGATAATTGTGTGGGCGAGATGCAAAAGCTGAAAATCGAAAATGATGAGCTCAAAAAGCAGAACGAAACTTTGAAATCTGAAATGCAAGAAATTACCGATCGCTTAATGAAAGACAATGACGATTTGGAAGCAAAAATCTCAGAATTGGAAGGAAAGTTAACCGAATTGGATAAAATGAAACTAGAAAATGTTGATTTGCTTGATGAAGTAGATCGTTTGAAACAGGAATTGGCAAAAGCCTGGGAAGAAATTGATCAATTGAAATCCGAAATAGCATCTCTGAAAAATGCACTCGATAAGTGCGTGGACGAGATGGAAAAGCTGAGAATTGAGAGTGATCAGCTTAAATTGGAGAGTGATCGCTCAACGAAGGAAATCGCCAATCTGAAAGCGAAAAACGCGGAATTGGAACAAAAATTAGTGGAATTTGATAAATTGAAGTCGGAAAATGCGGATTTACTTGGTGAAGTTGATCGTTTGAGACGCGAATTGGAAAAAGCCTTAGAGGTTATCGATCAATTGAAATCTGAGATAGATTCTTTGAAAAACGGACTGGATAAATGTGTTGGCGAGGTGGAACAGCTGAAAACAGCAAACAGCGGTTTGAAGTCTGAAATTCAGGGAATGAGGGGCGAAGGAGACAGTTTGACGGCGGAGTTAAATAATCTGAAGAATGAGAATTCCCTTTTGAAAGACGAAAGAGATCGATTGAGCAAGCAATTTAGCGACTGTAAGGTGGAAAACGAAAAATTCAGAGCAGAGAAGGCTCATTTGGAAACTGAAAACGAGAAGCTGGAAAGAGAGATAAACTCGTGCAAGGAAGAGAATGACAAATTAAAAGACGAACTTGTAAAATCACGGGAACAATTGCAGTCATCGAACGACGAATTGAATAAATTAAAGGCTAATCTCGACATCGCTGAGGACAAAATTTGGTCCCTGGAGCCGCTGATCTCCCGTTTGCAAAGTGAAAATGATAAACTGCGGGACGATTTGACGATTTTGAAGAACGAGGCCAACGATTTCAAAGAAAAATTGGCTAGAGAGACGACTGACAATGGAAAGATGCGAAACGATCTGAAGATATTGGAGGATCAGGTGTATGATCTGAATAACAAGCTGGTCAATGCTAGAGCAGTAGAAGACACTTTGAAACAGGAAAATCAAGGTCTGAAAGCCGAGTTATTAAATATGGATAATGATCTATCGAATTTGAAAGTGGAATGTGCGGATCTGAAACGAGAGATTACTAACCTGAAGAAATTAATTAATGAATTAAAAGAAAAAATTGCTAAACTGGAAGCAGACGTAAATCATTGGAAAATGGAGAACTGCAAACTTCAGTTGGAGATTGATAAATCGAAAGCTGATCTTGAGAAAGCATCGAAAGATTTGCTCGAATGCCAGGCTTCGAAGAAAGCACTAGAAGCAGAGGTGTACCGTCTCAAGATTGAGAAAGGCGAGCTTGACAAGAAGCTTGTCGATTTATCGTCTCAACTCGAGCAACAGGAAAAAGCATTCGAAGCAGAAAAATCGGCCAGAAATAAGAGTGATTCGGAAATTGCGGCCTTGAAGGAGGAACTGGATGCCTTGAAAAAGGAACTAGAAAAATTGAGAGTGGACAATAACAGACACAGAAATGAAATAGACGATCTAGGAAGACAGCTTGCAGTAACAAAAAATGAGCTGGAGAAGTGCAAAGAAGAGGTTTCTGTATTAAGAGATGCCAATAACGCGTTAAAGTCTCAATTGGATCCCTTAAAAAGTTTAAAGGATGAATATAATAAGTTGAAGGCTGATTTAGACTCTCTTAAAGAGGAGAACGTAAACATTCTGCAAGATAGGAAAAATTTCGAAGACGAGTATGCTAGGCTGAGAGGAGAAGGCGATGGACAGAAAGCAGAGATCGATAGATTGAGATCAAGCTTGAATGCAGAGAAGGCAGCTGCGGAAAAATTGAGGGCAGATTTTCAAAATTGTCAAACTGAGAACGATAGATTGCAAAAACAATTAAACGAAATGAAAAATGAGTTGGATGAATTAACAAAGGGAAACAATCGTATAAAGAACGAGATCGATAAGTTGAAGAAGGCGCTCGCGGACGCGGAAGCAAAGATAAAGTTTTTGGAAAGTGAACTATCCGATTTGTTAGCTGAGAAAAAAGAGTTGGTTAACGAACTCTATCGTTTCCGTGAACAGCTAAACAATCGTACAAACGAGTTAGAGGAGCAGATGACCGCAAAAGATGCGGCAAAGAAGGAATTGGCCGACGTGAAGGATGAGCTTACCGCTCTAAAAACGGCGTTGGGTAAGGTTCGCAGCGAAAACGATAAGCTGAGGAACGAGAACGAGAAGCTGAATGTGGAATTAGCCAATTTGAACGAGCAATTAGAAACTCTGAAGGACGATAATGCGAACCTGGAGAACGAAAACGCGAATCTGAAGAACGAAAACACGAATCTAAAAAATGACGATGCGAAATTGGCGGCTGAGTTAACTGGAACGAAAAACAAATTGGCAGAAGCGAAGAGACAGCTGAACGATCTAGAGAAAGAGAACGACGACTTGAAGAATAAAATAGCCGATCTCGAGAACACAGTGAACGAGCTTGCACCTTTGAAGAAACAATTAGAAGATGTTAAGAAAGAGCTGGATAGGCTGAGGCCAGAACTAGATAGATTGAAATCGGAAAATGCAGGATTGCAAAACAATTTAAATAACGCCATAGAGGAATCTAATAGGTTGAAAAATGATTTGGGCGAATTAAAAAGCGATTACGACAAATTGAAGTCTGAATTAGCTGACCTGAAGGAGGAGAGAGATAGTCAGAAAGAACGGAACGCGGAATCAGAGAAAGAATTAGCCAAAATAAAGAAAGAGAATGCGAATCTCAAGGGTGAGTTAGCCGATTGTCAAGCGGAGAACGAAAGATTGCGTAATGGATCGATAGATTTGAAGTCGCAAAATGCAAAACTGCATGACAATTTAAGCAAGGCGAAGAACGAAGCGAATAAATTAAAAGCCGATTTGGATAAATTGAAAAGCGACTATGGTGAGTTGCGGTCAGAATTAGGTAAACTAAGGGATGAAAAGAATAGACGCAAAGAACGCGATACTGCGTTAGCCACGGATCTGGATAAATTGAAGAAAGAGAATAACGAATTAGAAGATGGGAATAAGAAATTGAAAAGCCAGTTATTCGATTGCCAAGAGGAGAAGGAAAGGTTACGCAAGGAATTGGAAAAGCTGAGGAGAGAAAATGCAAAATTTAAAGAAGTGAAAAAGGTGGAGCCCAAAGAAACGGAGATGGACAAAGATATTTTGGATGACTGCGGTGATTTCATAAAGGCGAATGAATTAATGTGGAAGAAATTAAAAAAGCAGAATGATGGTGTGCTGCGCATTCGGAATTATATTAGATATTTGGAAGGTAAAGCTAAAGAACCGAAAATGGCGGACAGGCCGGAAGAAGAACCAAAAATTGATCCAGTATTAAGGAAAGACATTGCAGATTTGTTGAAGAAATCTCACGATTTATCTAATGATATCTATCAAACGGAACAAGAAATAAAAAATCTCGGAGCTAAACCTGGCGAGGGCATTTTCGATCCTGACAGCTGGTTAAATTCGTTGACATTGACACAGTTAGCAGAGCTGCACGATAAGATTTGCCAGTTGACATCGGACATGGTGCACCAGGATAGCAGAGCGGTGCCGTGCGATGGTTATGAACCAGCTACTCCGTCAAAGGCGGATTATAATATTTTGAATCAGCGTATAGCTGCTTTGCAAAAACAGATAGCGGAGAAGCAAATGGAGGCAGGCTGGAAGCTCCAGGAACTGAGGAGGGCTCTTCAAACCGAGCAGGCTAACTTAATTCGAATCTCTGATCAGATGAACTTTGAGAGAAAACGTAATTTGAACCTTCAGCATAGCATGGATGATTCACAATAA
Protein Sequence
MEVCRCGCEASSQESIDPPHEPCCCCSYDPFSDKEAEIYDLSFALKKLTIMKCQMKKWRMERLQLESENRSLKQALQSFGVNADEILKPDPLLVHSREEIERLQNANAVLQDKARDLEETLAERDCCDDPDATIHFFREKMRYLREGFALEKKELRDMISDLRLKLAQTEEDISCPAIYRLRAKLRDLMKGEAAEQQISKVVEKSIETLVELSKSCDDLRLENERLLTQVTDLRSALVDLEGKEMPETILQTAETTTVPEYIDISDLLHKLNNCEDTVADLRKQLEERDEQINALNKELESMVSQKDLEEQIEAMKEELRRKDDKIAELLNNLRQSEIDLLGLSSLKSEVENLKSELHDLKSERAELLNELNQLREALKDRDDQIIDLLEQKNKLQEDYKNKTAELQLKLDQAYDEIGDLKAEITKLKNELEECKILNAKLEECCLDKNALSKKLHSMEEHFAAAKVIIVNLESEVDTLRRDKENLSNELDEARKQVQVLTGRLEDERAARTALEKELKRNRDEIELLQREILDMKDQIDAERKENDKLRETLEASVGENEKLRARLEQLENENDALMKRTKELDNLNNQLRNDYDSMKQAVDNLQAEINKLEDELAKAKQERDTLLNKNNGIKKQLEQAMAENESLRVELDEAGKELNKLKLQKEEMQKSFDEIKLENDSLKRDIKALRDDLEDSRRQMEELKAAGDALKATDKDKVLELAKLQQQVENLEFEKNRLTKENDDLKSKTMELQGMLEELDKLRGRNTDLLAEVDRLRKELEKALEDIDQLKSETGSLKDGLDNCVGEMQKLKIENDELKKQNETLKSEMQEITDRLMKDNDDLEAKISELEGKLTELDKMKLENVDLLDEVDRLKQELAKAWEEIDQLKSEIASLKNALDKCVDEMEKLRIESDQLKLESDRSTKEIANLKAKNAELEQKLVEFDKLKSENADLLGEVDRLRRELEKALEVIDQLKSEIDSLKNGLDKCVGEVEQLKTANSGLKSEIQGMRGEGDSLTAELNNLKNENSLLKDERDRLSKQFSDCKVENEKFRAEKAHLETENEKLEREINSCKEENDKLKDELVKSREQLQSSNDELNKLKANLDIAEDKIWSLEPLISRLQSENDKLRDDLTILKNEANDFKEKLARETTDNGKMRNDLKILEDQVYDLNNKLVNARAVEDTLKQENQGLKAELLNMDNDLSNLKVECADLKREITNLKKLINELKEKIAKLEADVNHWKMENCKLQLEIDKSKADLEKASKDLLECQASKKALEAEVYRLKIEKGELDKKLVDLSSQLEQQEKAFEAEKSARNKSDSEIAALKEELDALKKELEKLRVDNNRHRNEIDDLGRQLAVTKNELEKCKEEVSVLRDANNALKSQLDPLKSLKDEYNKLKADLDSLKEENVNILQDRKNFEDEYARLRGEGDGQKAEIDRLRSSLNAEKAAAEKLRADFQNCQTENDRLQKQLNEMKNELDELTKGNNRIKNEIDKLKKALADAEAKIKFLESELSDLLAEKKELVNELYRFREQLNNRTNELEEQMTAKDAAKKELADVKDELTALKTALGKVRSENDKLRNENEKLNVELANLNEQLETLKDDNANLENENANLKNENTNLKNDDAKLAAELTGTKNKLAEAKRQLNDLEKENDDLKNKIADLENTVNELAPLKKQLEDVKKELDRLRPELDRLKSENAGLQNNLNNAIEESNRLKNDLGELKSDYDKLKSELADLKEERDSQKERNAESEKELAKIKKENANLKGELADCQAENERLRNGSIDLKSQNAKLHDNLSKAKNEANKLKADLDKLKSDYGELRSELGKLRDEKNRRKERDTALATDLDKLKKENNELEDGNKKLKSQLFDCQEEKERLRKELEKLRRENAKFKEVKKVEPKETEMDKDILDDCGDFIKANELMWKKLKKQNDGVLRIRNYIRYLEGKAKEPKMADRPEEEPKIDPVLRKDIADLLKKSHDLSNDIYQTEQEIKNLGAKPGEGIFDPDSWLNSLTLTQLAELHDKICQLTSDMVHQDSRAVPCDGYEPATPSKADYNILNQRIAALQKQIAEKQMEAGWKLQELRRALQTEQANLIRISDQMNFERKRNLNLQHSMDDSQ

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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