Basic Information

Gene Symbol
-
Assembly
GCA_016906905.1
Location
JAFDUZ010000049.1:506265-546323[-]

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 7 0.0006 0.24 11.9 0.5 38 63 414 439 407 442 0.82
2 7 4.6e-05 0.018 15.5 1.6 32 63 965 996 959 997 0.91
3 7 0.00029 0.11 13.0 0.8 31 61 1394 1424 1387 1427 0.90
4 7 0.00036 0.15 12.7 0.6 32 63 1850 1881 1843 1883 0.86
5 7 3.1e-05 0.013 16.1 1.3 32 64 2324 2356 2318 2357 0.90
6 7 0.00016 0.066 13.8 1.1 31 60 2808 2837 2801 2841 0.89
7 7 0.00041 0.16 12.5 1.0 34 63 3261 3290 3250 3292 0.87

Sequence Information

Coding Sequence
ATGTTTGTCGCAAACCGCACCCCCCTTAAAGTACATAAAGTTGCCCACTCGCCCAAAAAAGCAGAGGAGCTGATGCTCCCCCCAACTGCAAAAGTTAGGGATAGCATCGGTGAGTGGGAAGAAAGGACCACAGACAAAACCCCTCCACCCTCCACATCAAGATCCACTCCAGAAACGGTGGCCCCCACAAAACCACCAAAAAAGACCACCGCATCAATCATGACGGGAAAAAAGAACACCGTCTCCAGGACCCTAGAGGTGTCTGCAAGCCCTCCACAGTCCACGACTTACAAAAGCCCGACGGACGAGGCAAAGGCCCTTTGGCAGAAGGCGAATGACAGCCTCAACTCCTCGAGGAACATGAAGTCGGAGGTGAAGAAAGAGGTGATGGCGGTATTGGACCGCCTCTACCAAATTATTAAGGAAGGAGAGAAAGAGAGACGGATTAACAAGGAAGTGGAAAAAGAGGAAGGTGAAGGGAAGAAGGTAGCAGCCCAAATGACCTTACTGTGTGACGCGGAGTCCACAGTACAAACGATGAAGGAGCTCATGGGGGAGCTGAAACAGCATTGTAAAGTCGTAGCGGAGTGCGGGCACTTTACACTCGCACTTTCGCAACAGCTCAAGGAATCGGCTCCCCCACAGCATCCCGGCGCATGTGCCAGCGAAGCGACATCCTACGCTCGTGGTGGCCTGAGCCAGGGGGGCTGTAGTTCCGGGGGTGCGGAGGCGGTATCCGCCCAGACCGCACCAACGGGTGTACGTAGCGATGCTACGATAGAGGAGCGTTCGTTCCTGTCGGAGACGACCACCGACTCCGACGCTACACAGAGAGGTGAGCGGGGACCTCGCAAGCGTTCTCGCTCGAGATTACGAACTAGTGACGGCGACTCAGACACCAGCTTGGAGACCGAGGTAGAGGTCCCCAAGCAAAAAAGAGGCCGGGGAAGGCCTCCAACCACGGGCAAATGGGTTGGCTTTCTAAAGTCAAAACAAGACCTGGCGAGACAGAAAGCCGCAGCGGAATATGAAGAGGCTGTGAAAAGCCTAGAGAAGAAGGCCCACGCGACTCGAATCGCGGTTCAGGGCAAGCGCACTGAGTGCCCGCGCGAGGAGCAGCCGCTCACTTGCGCAACATCAGAGGAGCTGCACAACGCCATCGAGGCGGAGTGCGGGCTCATAGCGGAGGCAGCAGGGAAAACTGGCCTCCTGACCTCAACGGAGGAAACGAGGCGGGTGTTCCGAGAGAATGCTCGGCTCAAAGGAGAAGTGGCGGAACTGCGCCAAGAAATTGCGCAGCTCCGGTCGGAAGTGCGGGCGACAGTCTCTGCCGCACCACCGACTCCTATGGAGACCGCGATAGCTCCTTCGTCGAGCTCAAGCGCGAGGCCGGTTCCACCGGTAGAAAGAGAGGAGTGGATGCGGGCGGCCATGCTGGAGATAGGCTCCATGGTGAACGCCCGCATCGAGTCTCTGGAGGCGAGACTTAGCTTGCCTCCGGAGCGAATACGTCCGCCGCTGGCCGCCGATGCCAAGGCATCAAAAACTGTGGCCAAACAGCCTTCCACTTCCACTGGGAAGAAAGTTGCTGAGCCCAAGGACAAGGGTACCCAAAGTCGGAAGGCCGCAGCACCTTCAACTTCCAACGCCGGTGAAGAGACCTGGACCCTCGTCGCCGGCAAGAAGAAGAAGAAGCCGGCTCAGAAACCATCTGCCCAGCCACCGCAGATGGCTAAAAGAAAGAGCAAGAAAAGGCTCAAAAAGCCTAAATCTAAGAGGACAATTAAGCCACCGCGCACCCAGGCGGTGGTGATTTCAGCGCCACCAGAAGAAAAGGTTAATTACGCCGATGTGCTCAAGAACGTACGGAACAAGGTGAATCTAGCCGAATTGGGTATAGAAGGCGGATTCAAGTTCCGTACGACGGCATCTGGCGCGCGGCTGCTAGAAATGCCTGCCGTCGTGAGCACCGAGAAGGCGGATCTTCTGGCGGCTCGAATCAAGATGGCCCTCCCGGAGACGATGAGAGTCGTCCGGCCTCACAAGTCGGAGCCGGAGAGGACTCCTCCAGCGGTGAGTTTGGCCTTGGACGTCACCAACCAGGAGGCCCCACCCGTCTCGGACGGGGAATACGCCGGAATAATTGGGAGACTCCGGGGCAAAAAGACTGCCCCAGGGCCGGACGGCGTGCAAGCCCGCGTGCTTGTGCTTGCGCTGGAGGCAGGGAAAAGGGGCGAGGCGCGAGACATGGGCAGGCAGTACTGTCCCGCAGACGTGGAGAGATGGAGAAGGAGGGGCAATGCAGCCATGATGGCGAGGGGCTACAGTTCCGGGGGTGCGGAGGCGGTATCCGCCCAGACCGCACCATCGGTGGTTTTGGAACGGTCGTTCCTTTCGGAAACGACTACCGATTCCGACGCGACGGCGGGACGCAAGCGGGTACCTCGCAAGCGATCCCGCTCAGGTTTAAGGACGTGTGACGGGGACTCCGACTCCAGTGTGGAGACGGAGGTCGAGGTCCCTAAACTGAAGAGAGGCAGAGGAAGGCCTCCGACCACGGGCCAGTGGGTCGGCTTCTTAAAGGCGAAGCAGGAGCACAGTAGGGCCAGAGCTGACGCCGAATACAAGGAGGCAGTAAGCAACTTAGAGAAGAGGGTGTACGACACACGGATCGCAATAAAGGACAAGCGAGTAGAGTGTCCAGGAGTTCTCCAGCCGATGACCAGTGCAACGGCTGAAGAGCTTAATAAGGCCATTGACGCAGAGTGTGGGCTGATCGCAGAGGCGGCGGCTAAGTCATCGCACCTGAAGGGGCAGGTCCTCCGGACCTTCAAGCTGAGCGTCGCGGCAATTAAAGAGCGAGCGGCGGAACTATCGTCACTGACCGTGTCGGAGGAGACTCGAAGGGTCTCAGCCGAGAACGCGCGACTCAGGGAAGAAGTCGCGGAACTACGCACGGAGATCGCGCAGCTCCGAGCGGAACTGAAGGTGGCCACAACGCCAGCCGTCGAACCGACGATTCGTATGGAGACCGAGGCTGCTCCTGCGGTGCCCCAGGGCGCGACGCCGCGTCGATCCTCGGATATGGATGAATGGATGCGGGCGGCCATGCTGCAGATTGGCAACATGGTTAACGCTCGCATCGAATCCTTGGAGGGGAGGCTGAATTTGCCACCCGAACGGGTTCGTCCACCATTGGCTGCCGATGCCAAGGCGACGAAAGCAGCGGCTCAACAGCCTACGCTCCTAAAAGAGAACACGAGCGGCAAGAAAGCTGCGGGCTCCAGAAAAAAGGGTGCCCAAAGACCGGGAACTGTAGCAGTTTCAAACGCTGGTGAGGAGGCCTGGACCCTCGTCACCGGCAAGAAAAAGAAGAGCGCCTCAGAACCGACGATCCCTTGGCGGAGGCGTCGAGGCGTAGGAGGATGGGGCAGCGTAGGTGGTTGCACCGAGCTGCGATGCCGTAGTGGGTGGCCTGCGGACGAATGTCGCTGGGGCGACAGACGTCCGCATTGCACAGGCACCCACCGCGAGGATGAGAGCGAGCCTTATGGGTTTCTGCTCGCTCTCATGCCCAACAGGGCGAGGAGGGGTGGCCTGAGCCAGGGGGGCTGCAGTTCCGGGGGTGCGGAGGCGGTATCCGCCCAGACCGCACCATCGGTGGTTGAGGACAGGTCGTTTCTGTCAGAGACGACCACGGACTCAGAGGCGACGGCGGGAAGCAAGCGAGGTCCTCGCAAGCGATCCCGTTCTGGATTACGAACATGCGACGGGGACTCCGACACCAGCGTGGAGATGGAGGTCGAAATCCCGAAGCAGAAGCGAGGCAGGGGAAGGCCTCCTACAACGGGAAAGTGGGTCGGGTTCCTGAAGGCGAAGACTGAGCTGGCCAAGGCCAGGGCAGACGCCGAGTTTCAGGAAGCCGTAAAAACGATGGAAGAGAGGGTATATGCGACGCGTAAAGTAGTCGAGAAAAAGCGTGTTGCATGCCCTACCGAAGAGACGCCGATCACGGCTGCATCGGCGACTGAGCTGCACAATGCCATTGAGGCGGAGTGCAGCCTCATTGCAGAGGCGGCGGCGAAATCATCGAACCTTAAAGGTCAAATCATCAAGACCTTTAAGCAGAGCGTCGCCTCGATTAAAGAGAGGGCCGCTGAATTGTCCTCGCTAACGACGACTGAGGAGACGAGGCGACTTTTCAAGGAAAATGCTCGTCTCAGGGGCGAAGTAACAGAACTGCGCCAGGAAATCGCGCAGCTCCGGGCTGAGATATGGACCAGAGCGTCTCCGGTCGTACCACAGATTGAGAGACCGAGTCCAACCGTCATGGAGACAGAGGTCACTCCTGCGGCGCTTCCGGGCGCAGTGTCGGCTCCACCCATGGATAAGGATGAGTGGATGCGTGCGGCCATGCTAGAGATAGGGAGTATGGTCAACGCCCGCATAGAATCGCTGGAGGCCAGGCTTAACCTGCCTCCCGAGCGGGTGCGTCCACCGCTGGCCACTGATAGCAAGGCGGCAAACACAACGGTCAGGCAGCCTACGCTGCAAAAGAAGAAGAAGAATGAGAGGAAGGCTGCGGGCTCCCAGAAGAAGGGTGTCCAAAGCGTGGCGGAGGTGGTAGCACCTCCTGTCACGAACGCCGGTGATAGGGCCTGGACCCTGGTCACCGGCAAGAAAAAGAGGAAGAAGTCGGCATCCAAATCGGCAACTCAGCCGCCGCCGAAGCCCAAGAAGGGGAATGGACCAAAAAAGCCCAAGTCCAAACGTGCCAGGAAGCCTCCGCGTACTCAGGCAGTCGTGATTGCCGCGCTGCCAGAGGAGAAGCTGGACTACGCCGAGGTTCTCAGGAACGTGCGTAGTAAGGTGAACCTGTCCCAATTGGGCATTGAGGGCGGGTTCAAGTTCCGCACGACGGCGACCGGCGCGCGGTTGCTGGAAATGCCAGCTTCCGGTGACCTGAGCCAGGGGGGCTACAGTTCCGGGGGTGCGGAGGCGGTATCCGCCCAGACCGCACCATCGGTGGTATTGGAACGGTCGTTCCTTTCGGAAACGACTACCGATTCCGATGCGACGGCGGGACGCAAGCGGGTACCTCGCAAGCGATCCCGCTCAGGTTTGAGGACTTGTGACGGGGACTCCGACTCCAGCGTGGAGACCGAGGTCGAAGTCCCGAAACAGAAGAGAGGCAGGGGAAGGCCTCCTACAACGGGTCAATGGGTCGGCTTCCTAAAGGCTAAGCAGGAGCATGCTAAGGCCAGAGCTGACGCCGAGTATAGGGAGGCTGTAAGCAACCTAGAGAAGAGGGTGTACGACACACGGACCGCAGTAAAAGACAAGCGAGTCGAGTGTCCAGGAGTTCTTCAGCCGATGAGCAGTGCAACGGCCGAAGAACTGAACAATGCCATCGACGCAGAGTGTGGGCTGATCGCAGAGGCGGCGGCAAAGTCAAAGCACCTCAAAGGGCAGGTGCTGAGGACTTTCAACTTAAGCGTCGCGGCGATAAAAGAAAGGGCAGCAGAGCTATCCTCGCTGACCATCTCGGAGGAGACTCGAAGAGTCGCTGTCGAGAACGCGCGACTCAGGGGGGAAGTTGCGGAACTGCGCAAGGAGATCGCGCAGCTCCGAAACGAAATGAAGGCGACTACGGGGCCAACCATCGCACCGAGTCGTATGAAGACCGACGCCGCCCCTGCGGTGCCTCAGGGCGCGACGCCGGGTCGACCTCTGGATATGGAGGAATGGATGCGGGCGGCCATGCTGCAGATCGGGAACATGGTTAACGCCCGCATCGAATCATTGGAGGGGCGACTAAACTTGCCGCCTGAGCGAGTACGTCCACCACTGGCGGCGGACGCCAAAGCGGCCAATACCGCTGCGAAGCAACAGCCGCGTCTCAGTGGGAAGGGAGTAAAAGCTCCTCAGGCAAAAGGTGCGGGTCCTTTGAAAGAAGGCAGCCAGGTGGCAGCCCCCTCAGTCCCAAAGGCCAACAAAGAGGCTGGCTGGACACTAGTGGCCAGAAAAAAGAAGGCGGCCAAGAAGCCACCGCCAAAACAAAAGGGGAAAGGGCCTAAAAAGCCCAAAAAGAAACGAAATGCGAAGCCGCCGCAACCGACGATCCCTTGGCGGAGGCGTCGAGGCGTAGGAGGATGGGGCAGCGTAGGTGGTTGCACCAAGCTGCGATGCCGTAGTGGGTGGCCTGCGGACGAATGTCGCTGGGGCGACAGACGTCCGCATTGCACAGGCCCCCACCGCGAGGATGAGAGCGAGCCTTATGGGTTTCTGCTCGCTCTCATGCCCAATAGGGCGAGGAGGGGTGACCTGAGCCAGGGGGGCTGTACTTCCGGGGGTGTGGAGGCGGTATCCGCCCAAACCGCACCAACGGAACAAAAATCGGACTCCACGTCCAGACGTGCGCGTCAGCGCCAAGAGAAGGAGAAGCGTAGCGCTCTAATTGACGAAGAGAGGTCGTTTCTCTCTGAGACCACGACGGACTCCGACGGGTCGAAGAGAGGACGAAAACGATCCCGGTCAGGTATTAGACAAGATGGGGAAAGCGGCTCTGACTCCAGCAGAGAAAGAGATCGCGAAGTTCCTACCCAGAAAAGGGGCCGCGGTAGGCCTCCTACAACAGGGCAGTGGGTAGGCTTTCTAAAGGCAAAGCAGGAACATGCTAAAGCCAGAGCTGAAGCCGAATTTAAAGAGGCCGTAAGCAATATGGAAGAGAAGGTGTATGACACTCGGACTGCAATAAAAGGCAAGCGGGTGGAGTGCCCAGCAGTTCATCAGCCGATAACCAGTGCTACGGCTGAAGAACTTAGTAAGGCCATTGATGCAGAGTGTGGGCTGATCGCAGAGGCGGCAGCTAAGTCATCACACCTCAAGGGGCAGGTTCTCCGGACCTTCAAGCTGAGCGTCGCGGCAATAAAAGAGCGGGCGACGGAATTATCGTCATTGACCGTGTCGGAGGAGACTCGCAGGGTCTCAGCCGAGAACGCACGACTCAGGTGGGAAGTCGAGGAACTGCGCAAAGAGATCGCGCAGCTCCGATCAGAATTGAAGGCGACCACGGGGCCAGCCGTCGAACCGAGTCGTATGGAGACCGATGCCGCTCCTGTGGTGCCTCCGGGTGCGACGTCGGGTCGATCTCCGGATATGGAGGAATGGATGCGGGCGGCCATGCTGCAGATTGGCAACATGGTTAACGCCCGCATCGAATCATTAGAAGCGAGGCTAAACTTGCCGCCAGAGCGAGTGCGTCCACCACTTGCAGCGGATGCCAAAGCGGCCAAAACAGTGGCAAAGCAGCAGCCGCGACTCGGCGGGCAGGGAGCCAAAGCCCCTCAGAAAAAAGGTGCGGGCCCTGGGAAAGAAGGCGGCCAGAGACTGGAGGTAGCAGGCCCTTCAGCTTCAAAGGACAGCGAAGAGAACAGCTGGACACTAGTGGCCAAAAGAAGAAGGCGAGCAAGAAGCCTCCACCGCCAACGAAGAAGAGACGCGAGCATAAATTATGCGGACGTCCTAAAGAACGTGCGGAACCACGTGAACCTGGCCGAACTAGGGCTGGAGGGCGGGTTCAAGTTCCGCAAGACGGCGACCGGCGCTCGTTTATTGGAGATGCCCCCTGCGGAGGTGGTGGCACCAAGCTACGCTGCCCTGGTGGGTGGCCTGCGGACGAATGTCGCTGGGGCGACAGGCGTCCGCATTGCACAGGTCCCCCGCGAGGATGAGAGCGAGCCTACGGGTTTCTGCTCGCTCTCATGCCCAACAGGGCGAGGAGGGTCTGCGTCCACTTTTGACGCAGACAACGCTGCGACGGTCAGACGGGGCCAGGGGGGCTGCAGTTCCGGAGGTGTGGAGGCGGTATCCGCCCAGACCGCACCACCGGAAGCACGTAGCGATGCTACAACAGAAGAGCGTTCGTTCCTGTCGGAGACCACCACCGACTCGGACGCTACGCAGGGCCGAGAGCGAGGAGCCCGCAAACGTTCTCGAATGAGGACGAGCGACGGCGACTCGGACACCAGCTTGGAGACCGAAGTAGAGGTCTCCAAGCAGAAGAGAGGCAGGGGAAGGCCTCCTACAACGGGAAAATGGGTCGGGTTCCTGAAGGCAAAGACTGAGCTGGCCAAGGCCAGAGCAGATGCCGAGTATCAGGAAGCAGTACAAAGCATGGAAGAGCGGGTATATGTGACGCGAAAGGAAGTAGAGAAGAAGCGGGTTGCATGTCCTAGCGAGGAGAAGCCGATCACTGTCGCATCGGCTACCGAGCTGCACAACGCCATTGCGGTGGAGTGCGGCCTCATTGCGGAGGCAGCGGCAAAATCTTCGCACCTTAAAGGTCAAGTCATCAGGACCTTTAAACAGAGCGTTGCCTCGATCAAGGAGCGGGCTGCTGAGTTGTCCTCGTTGACCACGACTGAGGAGACGAGGCGGCTCTTCAAAGAGAATGCGCGGCTCAGAGCGGAGGTGTCAGAGCTGCGCCAGGAGATTGCGCAACTTCGGACGGACCTATGGACCAGACCTGCTCCGATCGTACCACCGACTGAGAGACCTGGTCCAACGGCAATGGAAACAGAGGCCACTCCTAAGGCGCTTCCGGGCGCAGTGTCGGCTCCACCCACGGATAAGGATGAGTGGATGCGGGCGGCCATGCTAGAGATAGGGAGTATGGTCAACGCCCGCATAGAATCGCTGGAGGCCAGGCTTAACCTGCCTCCCGAGCGTGTGCGTCCGCCGCTGGCCGCCGATAGTAAGGCGGCGAACACAACGGTCAGGCAGCCTACGCTGCAAAAGAAGAAGAAGAATGAGAGGAAGGCTGCGGGCCCCCAGAAGAAGGGTGTCCAAAGCGTGGCGGAGGTGGTAGCACCTCCTGTCACGAACGCCGGTGATAGGGCCTGGACCCTGGTCACCGGCAAGAAAAAGAGGAAGAAGTCGGCATCCAAATCGGCAACTCAGCCGCCGCCGAAGCCCAAGAAGGGGAATGGACCTAAAAAGCCCAAGTCCAAACGTGCCAGGAAGCCTCCGCGTACTCAGGCAGTCGTGATTGCCGCGCTGCCGGAGGAGAAGCTGGACTACGCCGAGGTTCTCAGGAACGTGCGTAGCAAAGTTAACCTGTCCCAATTGGGCATCGAGGGCGGGTTCAAGTTCCGCACGACGGCGACCGGCGCGCGGTTGCTGGAAATGCCAGCTTCCGGGGGCTACAGTTCCGGGGGTGCGGAGGCGGTATCCGCCCAGACCGCACCATCGGTGGTTGAGGACAGGTCGTTTCTCTCAGAGACGACCACGGACTCAGAGGCGACGGCGGGAAGCAAGCGAGGTCCTCGCAAGCGATCCCGTTCCGGGATGAGAACCTGCGACGGGGACTCCGACACCAGCGTGGAGACGGAGGTCGAAGTCCCGAAGCAGAAGAGAGGCAGGGGAAGGCCTCCGACCACGGGTCAGTGGGTCGGCCTTTGGAAGGCCAAGCAGGACTTGGCCAAGAAGAAGGCAGCCTCCGAGTACGAGGACGTCGTAAAAGACTTGGAGAAGAAAGCGCACGAAACACGGACGAAGATGAATAAAAAGCGTCCTGAGCGTCCGCGAGAAGAGCAGCCGCTCACCAACGCTACGGCGGCTGAACTTCACGGCGCCATAGAGGTGGAGTGCGGTCTTATCGCTGAGGCAGCGGGTAAGTCGTCGCATCTCAAAGGTCAGATGCTACGAACCTTTAAGATGAGCGTAGCGTCGATCAAAGAAAGGGCCGCAGAACTGGCCTCACTGACGTCAACGGAAGAGACGAGGCGTGTATTTAAGGAAAACGCACGGCTCAAGGGGGAGGTGGCGGAGCTGCGCCAAGAAATTGCGCAGCTCCGGGCGGAAGTGCGGGCGTCAGTCCCTGCCGCACCACCGACTCCGATGGAGAATACGGTAGCTCCTACAACACATTCGAGCGCGAGGCCGGTTCCTCCGGCAGATAGAGAGGAGTGGATGCGGGCGGCCATGCTGGAGATAGGCTCCATGGTCAACGCCCGCATCGAGTCTTTGGAGGCAAGACTCAGTTTGCCTCCGGAGCGAGTGCGTCCGCCGCTGGCCGCCGATGCCAAGGCGGCTAAAGCCGCGGCCAATCAGCCTGCTACTTCCAGAGGGAAGAGAGCTGCGCTGCAGAAGAGTGTACAAAGGTCGGAGGAGGCTGCAGCGCCTTCACCTTCCAACGCCGATGAAGAGGCCTGGACTCTCGTCACCGGTAACAGAAGGAGGAAGAAATCGGTCCAGAAACCATCTGCCCAGCCACCGCAGAAGGCAAAAGGAAAGAAGGAGAAAAGGCTCAAAAAGCCCAAACCCAAAAGGACGGTGAAGCCACCACGCACGCAGGCGGTGGTGATTGCAGCACCGCCAGAGGAGAAGGTCGACTACGCCGCCGTGCTCAAGAACGTACGGAACAAGGTGAATTTAGCCGACTTGGAAATAGAAGGCGGATTCAAGTTCCGCGGCTACGGTGACCGAGCGGACGTCCCGCGAGGAAACGATGAACGTCGACAATGCCTAACGCGGCCCGCTCGGTCATCCAGGCGACGGGGTAGCGTAGGAGGTGGTGGCACCGAGTTGCGCTGCCGTAGTGGGTGGCCTGCGGACGAATGTCGCTGGGGCGACAGGAGTCCGCATTGCACAGGCCCCCCGCGAGGATGA
Protein Sequence
MFVANRTPLKVHKVAHSPKKAEELMLPPTAKVRDSIGEWEERTTDKTPPPSTSRSTPETVAPTKPPKKTTASIMTGKKNTVSRTLEVSASPPQSTTYKSPTDEAKALWQKANDSLNSSRNMKSEVKKEVMAVLDRLYQIIKEGEKERRINKEVEKEEGEGKKVAAQMTLLCDAESTVQTMKELMGELKQHCKVVAECGHFTLALSQQLKESAPPQHPGACASEATSYARGGLSQGGCSSGGAEAVSAQTAPTGVRSDATIEERSFLSETTTDSDATQRGERGPRKRSRSRLRTSDGDSDTSLETEVEVPKQKRGRGRPPTTGKWVGFLKSKQDLARQKAAAEYEEAVKSLEKKAHATRIAVQGKRTECPREEQPLTCATSEELHNAIEAECGLIAEAAGKTGLLTSTEETRRVFRENARLKGEVAELRQEIAQLRSEVRATVSAAPPTPMETAIAPSSSSSARPVPPVEREEWMRAAMLEIGSMVNARIESLEARLSLPPERIRPPLAADAKASKTVAKQPSTSTGKKVAEPKDKGTQSRKAAAPSTSNAGEETWTLVAGKKKKKPAQKPSAQPPQMAKRKSKKRLKKPKSKRTIKPPRTQAVVISAPPEEKVNYADVLKNVRNKVNLAELGIEGGFKFRTTASGARLLEMPAVVSTEKADLLAARIKMALPETMRVVRPHKSEPERTPPAVSLALDVTNQEAPPVSDGEYAGIIGRLRGKKTAPGPDGVQARVLVLALEAGKRGEARDMGRQYCPADVERWRRRGNAAMMARGYSSGGAEAVSAQTAPSVVLERSFLSETTTDSDATAGRKRVPRKRSRSGLRTCDGDSDSSVETEVEVPKLKRGRGRPPTTGQWVGFLKAKQEHSRARADAEYKEAVSNLEKRVYDTRIAIKDKRVECPGVLQPMTSATAEELNKAIDAECGLIAEAAAKSSHLKGQVLRTFKLSVAAIKERAAELSSLTVSEETRRVSAENARLREEVAELRTEIAQLRAELKVATTPAVEPTIRMETEAAPAVPQGATPRRSSDMDEWMRAAMLQIGNMVNARIESLEGRLNLPPERVRPPLAADAKATKAAAQQPTLLKENTSGKKAAGSRKKGAQRPGTVAVSNAGEEAWTLVTGKKKKSASEPTIPWRRRRGVGGWGSVGGCTELRCRSGWPADECRWGDRRPHCTGTHREDESEPYGFLLALMPNRARRGGLSQGGCSSGGAEAVSAQTAPSVVEDRSFLSETTTDSEATAGSKRGPRKRSRSGLRTCDGDSDTSVEMEVEIPKQKRGRGRPPTTGKWVGFLKAKTELAKARADAEFQEAVKTMEERVYATRKVVEKKRVACPTEETPITAASATELHNAIEAECSLIAEAAAKSSNLKGQIIKTFKQSVASIKERAAELSSLTTTEETRRLFKENARLRGEVTELRQEIAQLRAEIWTRASPVVPQIERPSPTVMETEVTPAALPGAVSAPPMDKDEWMRAAMLEIGSMVNARIESLEARLNLPPERVRPPLATDSKAANTTVRQPTLQKKKKNERKAAGSQKKGVQSVAEVVAPPVTNAGDRAWTLVTGKKKRKKSASKSATQPPPKPKKGNGPKKPKSKRARKPPRTQAVVIAALPEEKLDYAEVLRNVRSKVNLSQLGIEGGFKFRTTATGARLLEMPASGDLSQGGYSSGGAEAVSAQTAPSVVLERSFLSETTTDSDATAGRKRVPRKRSRSGLRTCDGDSDSSVETEVEVPKQKRGRGRPPTTGQWVGFLKAKQEHAKARADAEYREAVSNLEKRVYDTRTAVKDKRVECPGVLQPMSSATAEELNNAIDAECGLIAEAAAKSKHLKGQVLRTFNLSVAAIKERAAELSSLTISEETRRVAVENARLRGEVAELRKEIAQLRNEMKATTGPTIAPSRMKTDAAPAVPQGATPGRPLDMEEWMRAAMLQIGNMVNARIESLEGRLNLPPERVRPPLAADAKAANTAAKQQPRLSGKGVKAPQAKGAGPLKEGSQVAAPSVPKANKEAGWTLVARKKKAAKKPPPKQKGKGPKKPKKKRNAKPPQPTIPWRRRRGVGGWGSVGGCTKLRCRSGWPADECRWGDRRPHCTGPHREDESEPYGFLLALMPNRARRGDLSQGGCTSGGVEAVSAQTAPTEQKSDSTSRRARQRQEKEKRSALIDEERSFLSETTTDSDGSKRGRKRSRSGIRQDGESGSDSSRERDREVPTQKRGRGRPPTTGQWVGFLKAKQEHAKARAEAEFKEAVSNMEEKVYDTRTAIKGKRVECPAVHQPITSATAEELSKAIDAECGLIAEAAAKSSHLKGQVLRTFKLSVAAIKERATELSSLTVSEETRRVSAENARLRWEVEELRKEIAQLRSELKATTGPAVEPSRMETDAAPVVPPGATSGRSPDMEEWMRAAMLQIGNMVNARIESLEARLNLPPERVRPPLAADAKAAKTVAKQQPRLGGQGAKAPQKKGAGPGKEGGQRLEVAGPSASKDSEENSWTLVAKRRRRARSLHRQRRRDASINYADVLKNVRNHVNLAELGLEGGFKFRKTATGARLLEMPPAEVVAPSYAALVGGLRTNVAGATGVRIAQVPREDESEPTGFCSLSCPTGRGGSASTFDADNAATVRRGQGGCSSGGVEAVSAQTAPPEARSDATTEERSFLSETTTDSDATQGRERGARKRSRMRTSDGDSDTSLETEVEVSKQKRGRGRPPTTGKWVGFLKAKTELAKARADAEYQEAVQSMEERVYVTRKEVEKKRVACPSEEKPITVASATELHNAIAVECGLIAEAAAKSSHLKGQVIRTFKQSVASIKERAAELSSLTTTEETRRLFKENARLRAEVSELRQEIAQLRTDLWTRPAPIVPPTERPGPTAMETEATPKALPGAVSAPPTDKDEWMRAAMLEIGSMVNARIESLEARLNLPPERVRPPLAADSKAANTTVRQPTLQKKKKNERKAAGPQKKGVQSVAEVVAPPVTNAGDRAWTLVTGKKKRKKSASKSATQPPPKPKKGNGPKKPKSKRARKPPRTQAVVIAALPEEKLDYAEVLRNVRSKVNLSQLGIEGGFKFRTTATGARLLEMPASGGYSSGGAEAVSAQTAPSVVEDRSFLSETTTDSEATAGSKRGPRKRSRSGMRTCDGDSDTSVETEVEVPKQKRGRGRPPTTGQWVGLWKAKQDLAKKKAASEYEDVVKDLEKKAHETRTKMNKKRPERPREEQPLTNATAAELHGAIEVECGLIAEAAGKSSHLKGQMLRTFKMSVASIKERAAELASLTSTEETRRVFKENARLKGEVAELRQEIAQLRAEVRASVPAAPPTPMENTVAPTTHSSARPVPPADREEWMRAAMLEIGSMVNARIESLEARLSLPPERVRPPLAADAKAAKAAANQPATSRGKRAALQKSVQRSEEAAAPSPSNADEEAWTLVTGNRRRKKSVQKPSAQPPQKAKGKKEKRLKKPKPKRTVKPPRTQAVVIAAPPEEKVDYAAVLKNVRNKVNLADLEIEGGFKFRGYGDRADVPRGNDERRQCLTRPARSSRRRGSVGGGGTELRCRSGWPADECRWGDRSPHCTGPPRG

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
-
90% Identity
-
80% Identity
-