Basic Information

Gene Symbol
SNAPC4
Assembly
GCA_014465815.1
Location
CM025335.1:20766706-20774713[+]

Transcription Factor Domain

TF Family
MYB
Domain
Myb_DNA-binding domain
PFAM
PF00249
TF Group
Helix-turn-helix
Description
This family contains the DNA binding domains from Myb proteins, as well as the SANT domain family [1].
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 6 0.23 4.8e+02 2.3 0.1 2 17 572 587 571 589 0.87
2 6 1.5 3.2e+03 -0.3 0.0 22 43 709 732 695 734 0.81
3 6 9.1e-10 1.9e-06 29.2 0.1 3 45 743 787 741 788 0.95
4 6 7.7e-14 1.6e-10 42.2 0.4 2 46 796 844 795 844 0.95
5 6 2.7e-07 0.00058 21.2 0.0 1 43 850 892 850 894 0.96
6 6 9.2e-17 1.9e-13 51.6 1.0 1 43 901 944 901 947 0.97

Sequence Information

Coding Sequence
ATGGATTTCGTCATATTTGTGATCAGAGTTTGGTATCTGAATTTGGTGCCTCAGGGGTGGTATTACTTTCCTATTTTGATGTCTCAACTGAGCTCAAGTGCCAGTGATGACGATGAATCAGGCTCAAGTGCCAGTGATGACGATGAATCAGGCTCAAGTGCCAGTGATGACGATGAATCAGGCTCAAGTGCCAGTGATGACGATGAATCAGGCTCAAGTGCCAGTGATGACGATGAATCAGGCTCAAGTGCCAGTGATGATCTTGAATCAGGCTCAAGTGCCAGTGATGACGATGAATCAGAAAATTCATATGAGGGGGAATTGTTGAACCAGATTCTTGAAGAACGTGTTCCACTTACGGATATAATAGATGGAGAAAGCAAGCCGCTGAATTCAGATACCAATAGTGTTCAAGTATATGATGAATCAATGCTGTTGACATCGAATGAAAGACCCGGAGCAAGCAAGGAATTTTCAGGTGTGGAGTATTCAGTTGAAGACATCAAAATGGAAAGTAACACCACCCTTGAGGCACCAAATTCAGATACCAACTGTGATCTCAAATATGACGAATCTAAGCTGTTGGCATTGGAGGAAAAAACCAGAGCATCCGAGAAGTTTTCTAGAGATCTGAGACGTGAAATGAGAAGAGATCTTGAATCAGGCTCAAGTGCCAGTGATGACGATGAATCAGGCTCAAGTGCCAGTGATGACGATGGATCAGAAAATTCATTCGAGGAGGGATCGTTGAGCCAGAATCTTGGAGAATTGAACGTACAAGCTGCACTTACGAAGAAGATAAGTGAAGAATGGAAACCTCAAAAAACAATCGAAATTATTGATTTTGAAACAAATTTTAATACAGCAAGTATCAGTTGTGGTGAAGAATCCAAAGTATTTCAAGAACAAACTGTGCATGCTAAGAAGAATCCAGAAGTAGGACAAAAACCGAAATATTTTAAGAATTTGAAACCCAGAGCACATCTTCATGATTTATTGATTGAGAAATGTTTAAAGGAAAAGTCTAAAAAATCAGCATTATACATTGAATCTGAAAAGGAACTTGGAAAAATAACTGAAAATATTGATCTCAATTCAAATGTAAGTATTTTGAGTCGCAATAAGTCACAAATTGTTTCAGAAAAGAAACTGTTCAAAGAGTTCTTCAATTTTGTCCAAAACACACCTGAAAATATTGATTTCAAACCAAAAGTAGATGACAATCAAGACACATGCTCAGAAATTCTGTGCCACAGAATTCTCTTTGACAAGAATTCGAGAAATGTGAAAAAGCTTGGAAGAGAAAGTAAACTCTTGAAAGAGAGAAAAAATACTTATCAAAGTGTGGAATTGACAGAGGAGTTGGAAATGTCGAAAGGGAATTCAGATCTCTGTAAATTATCCATTGATAATAAAAGTATAAGTAAAGATAGAGTGACAAAAGCTAAGGAAGTAAATGCCAACAAACAAGCTTTTCTTTTCGATTACAAAATTCGTATTGAAAAAGCATTTCAAGAAAATCTCAAACTACAAAAAATGATTCCTGAACATGAACCTACAAAGAAGGGTAGAAAATGGACTAATTATACGGCCGCGATATTTGGAATGCCCTATTTTAAAGACAAAAATAAAAAATTTTCCTGTCCGCCAAATGCCGACACCATATTACGAATTGAAAGCGGCCATCCTTTGAACCCAGCTCGTGACGATTCTGGCAAGTGGACGAAAAAAGAGATTTCTAAATTGAAATCGAGTGTGGAGGAAATTCTCAGAGACAAACTCCTATCCAATCTCTCCGCTCAAGTGAATGAGATTAAAGAATCCAATGTATTAGAAAGTACCACTTCGGGCAGTGTCAATGCCAATATGTCGTCATCCAGTGTGGCCGAATCCAGTCCGCCGCTTGTGAATAAACGAAAATGTCGTGTGAAAACTTCGAAAACACGTGCTACTTCAAAAAGTACAAATCGCCAACCGAGTACTGGTAGGCGTGTTAAAAATTGCAATCCAAAGAAGAATGCATCCCAACTTAGGAGTCTTGATATATTGAATCAGAAAATCAGTCAAGGGAGAGCAATGTCCTTGATTGAGCTGATGTCAGAAGTGAATATAGATGACGAATATGACTGGCAAGTAATTTCTACCAACACATTCTCACTATCTCGAAGTGCAAGTGAATGCCAAGGCTATTTCAAAATGATTCATGATCCCTCTTTGAATCATGAAGGATGGACCAAAGAAGAGAATGACATGTTGGTGTTGCTTGCTGATAAATACTCTTGTCAAGATTGGGATGCAATTGCAACTGATTTGGGTACTAATCGTTCCGCTTATCAATGCTGTTCGCATTTTGAGAAAAATTTCGATAAAAATATCAGGGTAACTGGTAAGTGGTCCAAAGATGAAGATGATAAGTTGATAGATGCAGTTAAAAAGTTCCAAGTGGGAAACCATATACCATGGTGGAAAATCTCTTATTTCATGACAACACGATCAGTAAATCAGATTCGCTCGCATTGGACTAATACACTAGATCCTCACCTCAAAAAGGGCCGATTCACCCCCAAAGAGGACAAACTCCTTTTGACAGCTATAGATAAGCGTGGACTCTCTTTTAGATCGGCGGCAACTTTGTTTAAAAACCGCACTGCACGTCAAATAAAAGGCCGTTACATAAGAAAGATGGAGAACGCAAGGACCAAGGGTCGATGGAGTTTGGAAGAGGACAAAACACTACTGAAACTAGTTGACGAGATAGGCGTTGGCAAATGGAAAAAAATCAGTGAACACTTCAAAACCAGAACACGTACTCAAGTTAGACAGAGGTACAATCACATCAAATCTTTAATGGATCAATATCCAGGTCTTGAAGTTGAAGATTTATGTCGAAGAGCAGCGTCTAAGAAATCAGCAAAACAAACTGATGAAGAAACTCCTAAAAATGCAGCTGTTGCTTGCAACACCAATTCTTTGGTTGCCTCAAGTGAAACTGATAAAAATATAACATGTGAAGCCGAAGTATCTAAAGATGCATCTAATACTAGGAAAACTAGAAAAAAATCAAAAGTACTTGTGGATGTCAGCATGCCAACTGAAAGTGCAGCTGTTGCTTCCAACACCAAGTCTTTGGTCGCCTCAAGTGAAGCTGATCTAGAGATTGACGGATCTAAAGATGCACCTAATACTAGGAAAACTAGAAAAAAATCAAAATTACTTGTGGATGTCAGCATGCCAACTGAAAGTGCAGCTGTTGCTTCCGACACCAAGTCTTTGGTCGCCTCAAGTGAAGCTGATCTAGAGATTGACGGATCTAAAGATGCACCTAATACTAGGAAAACTAGAAAAAAATCAAAATTACTTGTGGATGTCAGCATGCCAACTGAAAGTGCAGCTGTTGCTTCCGACACCAAGTCTTTGGTCGCCTCAAGTGAAGCTGATCTAGAGATTGACGGATCTAAAGATGCACCTAATACTAGAAAAACTGGGAAAAGAAAATCAGAAGTTAGTGTAGATGCCATTATGCCACCACCAAAACGAACTAAAACATTAGGTGCTATCAATAAAGACCAACGTGGAAACGATTTCATTTTGAAATCAAGAAACAAAAAAACTTACAAAAAAAAATCACCAGTTAGAGAAAAGTTGCTAAGATACTTTCAAGAGGCATATCCGATGCAAGAAGTTGTCGGCAAGAAAACCTGGAATGATACAGATATCTCAACTCAAGCAAAAGTGATGTTCGATCTCAGTCACATTCTGAGGGTAGATTACAGCTATATCGATGATCCAAATAGACAGAGGGCTGTGAGGCCGTTCATGCTCAAAAATATAGTGAATAGAATGTTGGAGAATCACGGTGATAAACTTCTGAGGTTGAATCCAGCGACTAGCGATCACCACTCGAATGAAGATCGAAGGCCGGAATGTGACGTGGCTGAGAGTGACACATCTTACATCGACTACGTGCCTGTTCCAGTTAATCACGGTGATGAACTTCTGAGGTTGAATCCAGCGACTAGCGATCACCACTCGAATGAAGATCGAAGGCCGGAATGTGATGTGGCCGAGAGTGACACATCTCACATCGACTACGTGCCTGTTCCAGTTGAAGAGACCCTCTGTGCCGACCCATTCCCAGGTGACTTTGACGACGACAGCGACCGAATTCTGTTCTCACCGAGGCGGGAGGACAAAGATGCAGAACGAGAAAAGCAGAGGCAGTTGGTGCAAGAGAAGAAGAAAGAGTTTATGGAATTTACGTACCTAGTGCCTCCAAACGTATCAACAGCAGTGGGCTTCCGATCGCTGCTTCTAGTTGAGCCCAAGTTGAGGGAGCCCAAGTTGAGGGACCCCAACGCCAACGATGACCAAGGCAGCGACGCCCCGCCGCCGCCGCCGCCCGACTACACCCCCAGCCAGTTTCGCATGAAGAACGCCGCCGCCGTCGCCGCCTCCGACGCTCACCTCCACAACCAATGTGTCCGCTTCACTAAGGAAGAAGCCATTCACATGTTCCAGGAACGGCTCAAAGCTCTCTTTGCGGGCCCAATTGTCATGAGCGAATGCGCTGATCGCCACTTCACTGTAAATAATCTACCCATGTACAAAAGCGGGCCACTTTCAAAAAACAAAAGAGATTAA
Protein Sequence
MDFVIFVIRVWYLNLVPQGWYYFPILMSQLSSSASDDDESGSSASDDDESGSSASDDDESGSSASDDDESGSSASDDDESGSSASDDLESGSSASDDDESENSYEGELLNQILEERVPLTDIIDGESKPLNSDTNSVQVYDESMLLTSNERPGASKEFSGVEYSVEDIKMESNTTLEAPNSDTNCDLKYDESKLLALEEKTRASEKFSRDLRREMRRDLESGSSASDDDESGSSASDDDGSENSFEEGSLSQNLGELNVQAALTKKISEEWKPQKTIEIIDFETNFNTASISCGEESKVFQEQTVHAKKNPEVGQKPKYFKNLKPRAHLHDLLIEKCLKEKSKKSALYIESEKELGKITENIDLNSNVSILSRNKSQIVSEKKLFKEFFNFVQNTPENIDFKPKVDDNQDTCSEILCHRILFDKNSRNVKKLGRESKLLKERKNTYQSVELTEELEMSKGNSDLCKLSIDNKSISKDRVTKAKEVNANKQAFLFDYKIRIEKAFQENLKLQKMIPEHEPTKKGRKWTNYTAAIFGMPYFKDKNKKFSCPPNADTILRIESGHPLNPARDDSGKWTKKEISKLKSSVEEILRDKLLSNLSAQVNEIKESNVLESTTSGSVNANMSSSSVAESSPPLVNKRKCRVKTSKTRATSKSTNRQPSTGRRVKNCNPKKNASQLRSLDILNQKISQGRAMSLIELMSEVNIDDEYDWQVISTNTFSLSRSASECQGYFKMIHDPSLNHEGWTKEENDMLVLLADKYSCQDWDAIATDLGTNRSAYQCCSHFEKNFDKNIRVTGKWSKDEDDKLIDAVKKFQVGNHIPWWKISYFMTTRSVNQIRSHWTNTLDPHLKKGRFTPKEDKLLLTAIDKRGLSFRSAATLFKNRTARQIKGRYIRKMENARTKGRWSLEEDKTLLKLVDEIGVGKWKKISEHFKTRTRTQVRQRYNHIKSLMDQYPGLEVEDLCRRAASKKSAKQTDEETPKNAAVACNTNSLVASSETDKNITCEAEVSKDASNTRKTRKKSKVLVDVSMPTESAAVASNTKSLVASSEADLEIDGSKDAPNTRKTRKKSKLLVDVSMPTESAAVASDTKSLVASSEADLEIDGSKDAPNTRKTRKKSKLLVDVSMPTESAAVASDTKSLVASSEADLEIDGSKDAPNTRKTGKRKSEVSVDAIMPPPKRTKTLGAINKDQRGNDFILKSRNKKTYKKKSPVREKLLRYFQEAYPMQEVVGKKTWNDTDISTQAKVMFDLSHILRVDYSYIDDPNRQRAVRPFMLKNIVNRMLENHGDKLLRLNPATSDHHSNEDRRPECDVAESDTSYIDYVPVPVNHGDELLRLNPATSDHHSNEDRRPECDVAESDTSHIDYVPVPVEETLCADPFPGDFDDDSDRILFSPRREDKDAEREKQRQLVQEKKKEFMEFTYLVPPNVSTAVGFRSLLLVEPKLREPKLRDPNANDDQGSDAPPPPPPDYTPSQFRMKNAAAVAASDAHLHNQCVRFTKEEAIHMFQERLKALFAGPIVMSECADRHFTVNNLPMYKSGPLSKNKRD

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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