Basic Information

Gene Symbol
-
Assembly
GCA_947347705.1
Location
OX374641.1:14495333-14505303[+]

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 2 1.2e-05 0.0059 17.5 2.2 35 63 344 372 339 374 0.89
2 2 2.8e-05 0.014 16.3 1.8 31 63 1074 1106 1055 1108 0.80

Sequence Information

Coding Sequence
ATGGGTTCGCAGCCGGCCAATCTCCAACACAGTGCGGCTGCCCTCGGGCATTGCACGGCCGCACAAACCCGTAGCCCTGCATTTATGTGGGGTCGGGGGCTGGGCGTATggggcttgccctgtgcgtctggctgtgaggaagaaaacctctctaaaaaattaccctGGTGGGGCCCCCTTGGGGGGCAGCGGAGCTTCGGCTCGGTGGATGGCGGCCTTCAAGGCCGCGGTCCGTTTTTGAGCGGATGGTGTTGGGAGCGGTTTCGCTCGTGGCGCACTCGCGTCATTTGTTGTAGCAAGGCTCTTCTCAGGGCCAGTGGTGCTTCGGCACGGTGCATGGCAGATCTCCAAGGTCTGCGGCGCGACATGCTTGCTTTCCCGGTAGTTGAGGAGAGAGAGGAAAGGAGTGGTAGGAGAAGTAGTGGTAGATTGAAGAAGAAGGCGCATTCCATCTGCGTGCAAGAGTGTGAGGTGGTTCTCACGGACTGCCTCAATGTCGCAATGTCGGACGATGATGGTTCGGCATCTGTTTGCAGTACAATCCTAGGGACAACGTCAGGGAGAAAGCGACCACACGAGCCCACGCGGGAACGTGCTCCATTTGACTCAGACAGCGATTCCAGCGCTAAATCGGTCTTAGCATCGAAAGTGTCAGCAGCCGGCCCAAGCAGAGGCCGCGCTTCAAAAGTAGAAGAGCTCACAGGTCTCGCCGAAGCTAAACGGCAGCTTAATGCGGCCAAACGAGAGGAACTCCGGCTGAGAACTGAAGAAGATCTGGCAGATCGTCTGGACAGACGGAGCTTGCGATCCGGCTCGACGGGTGGTACGGACGTATTTATGTCCCCCGATGAAGGCCCGCTTGCAACACATATCGGGGCATCTGTGCAAGGCGACCTTGATattataagagaggttgccaaaaaatcaggccatctcaagggcacattccagaaggctcttaacgaggcCACGTGCTCGATAGCCAACAGCACACGTGCTCTACTGAAATGTTCGGCCTCGTCTGAAAACACCAAGCTGCTGGCGGACAATGAACGCCTAAAACGTGAAGTGGCTGAGCTCAGGCGAGAGCTTGCAGAGTTGCGAAGTGAATTCCGCACTAGAGAGTGGCGCGATGCATCGGCCCCGCTGGCCCAACCGGAAACGGGTGTACCAGCATACTTTGAGGAGTGGTCGCGCTCTATTATGAAATCCATGGGCAATATGATTGCTGCAAAGTTTGACGGACTAGAGCGCGATGAGAGGCTTCTGCCTCCCAAAAACCATCGGCCTCCGCTCGCCGCGGAGAAGAGGAGAGATATGGAAGTCTCCACTGCTGTTGCGTCCACATCGGCGGCCTCTCAAAAGACCGCCCCATCGAGAATTTTCACCAGTTCCAAGACTGCGTCAGGGACAAAACCTGCAGCTGCCTCCTCTGTCCAACAAACTAAACAGGGGAAGGGAAAAAAGAAGGGTCAGAAGGCGGTACCAGCTCCACAGTCTATCCCACCGCTGACGTCTCAAAGTGTGACAGAAGCGCCTCCATCTGTGGCTGAGCCTGAACGTGACGGTGAAGGCTGGAGCACTGTGGTCAGCCGCGCCAAAAAGAAAATCCGACCGGCGGCCTCATCGTCTGCGCCCGCTCCTGCTCCTACGGCGCATCCTGGGCGACTGCGAACTCATTATCCGCTCGTTAGGGTAATGGGTTCGGAGCCGGCCAATCTCCAGCACGGTGTGGCTGCCTTCGGGCATTGCACGGCCACACAAGCCCGTAGCCCTGCTCTTTTGTGGGGTCGGGGGCTGGGCGTATggggcttgccctatgcgtctggctgtgaggaagaaaacctctataaaaaatcaccctGTGGGGCCCCCTTGGGGGGCAGTGGAGCTTCGGCTCGGTGGATGGCGGCCTTCAAGGCCGCGGTCCGTTCTGGCGGACGGTGTCGGGAGCAGTTCTGCTCGTGGCGCATCTGCGCCTTTTCTTTGGGAAAGGCCTTCTTCAGGGAGGCCAGGGGACTTCGGTCGTGGGATGGCGGTCCTGCAAGGCCCGCGGAACGTTCAGCGTTCGTTCGGCGTGGGGCGCATCAACGCTCCAGTACAGTGCGGTTGCCTTCGGGCATtgcacggccgcacaaacccgtagccctgctcttttgtagggtcgggggcccggcgcaaaagcgtcgggctgcgaggaagaaaacctctataaaaaattaccctGTGGGGCCCCCTTGGGGGGCAGCGGAGCTTCGGCTCGGTGGATGGCGGCCTGCAAGGTCGCGGTCCGTTCTGGCGGACGGTGGTCGTCGCGCGTTTGCGCTTTTAATGGGGAAAGGCCTTCTTCAGGAGGGCCAGGGGACTTCGGTCGTGGGATGGCGGGCCTTCAAGGCCCGCGGAACGTTCAGCGTTCGCTCGGCGCTGGGGCGCTTCAACGCTCCTTTTTCGTCAGCTCTTGGGGCCTGCCTTAACTGGCCGGTCCCGACGGAGCTTGCCTTAGTTGGCTGGCTcagcggctgcctacgggcggcgtggcacggcggaccttcaaggagTAGCTCGCTAGTGAGCCTAAATAACACGGACAACGCACCCTGTCCCAAAATGAGTGGTGCCGTAGTAGTCTTGAAGGACATCCTAGTAGGGAAAGAAGTTGATGCGCGCCGTCCACAAACAAGTGGCGCGACCTCTGTTAAAAAAGTAGTGAAAGTCGACGGGACGGATAGAGAATCGGACTTTGGCTCATGCTGGTCTGTTGAATCGGTGGAATCCCGGTCCGGACGAAAAAGAGTGAGGACCCAACGACGTAGAGGGTCACACAGTGATGGGACAGGTTCTGGCACTGACAGCGCCTCTAGCTCAGGCTGTGCAGTTGCCAAGCCAAAGAAAATAGCCGCAGTCGGTGACATCGACGCTAGAAAGCAGTACAACAAAGAGCTTCGTGAATCTATAGAGCTCGAAGCCGAGAAAGAATTTGCCGAAGAAATTGCGCTAAAGCGACAGCGCTCTGGATCAGTGAACACAGGCTCATGTGGAATGTCGTTAGATGAAGAGCCACGTGCGGCCCTGATTTTTAAATCTGTAGAGGAAGAGCTGAAGACTATTCTAAAAGTGGCAACCACTTCCAGCCATCTCAAGGGTACCTACCAAAAGGCCCTCAAAGTCTCCGCAGCTACAATCAAGGACAAAACTCTCGCGCTCCTAAAATGCACGGTGACAGACGAAGTCGCCAAACTCGAAAGAGAGAATAGACGACTATCAGAAGACATCAATGATCTACGTAAGCAGCTAGACGAATTACGCGCTAAAAGAGACGTGCATGCTGATGTGCAGCAATCTTTCAAGCCTGAAGATATAATTCAAGCAGTGTCAAGTATTGTAGATGACAAGATCAGAGTGGCCACAACATCTGTCACTAACATGATCAATGCCCGCATCGAGGGTCTTAAGACGGCTGACAGACCCCGGCCATCGTTGGCTGCGGATAAAAAGAAGGTCTCTCCACTTACGGAATCCAATTTGCCTCCAGCAACAACGACTAAGATCCCTTCGGGAATAAAATCCAAGTGTGGCAAGTTAACGCTTATTCCCTGCACATCAGCCCAAAAGGGCAAAAGAAAGACTAAAGGGAAAAAGATCACGGCAGCATCGGCAACGAACCCGGCCTCTGCCAAACAGACGGAGCCCAGTACGTCTACCGCTCCAGCTGCCTCCACTTCGTCAGAGGAAGCCCCTTGGACTGAGGTAGTTAAACGTGGTGCACAGAAAAAGCAGGCAAAAACCGCGGCTGCTCAGCCTAATTCTAAGGCCCCAGCACAAAACGCCAAGGATGCACAGTCTAAGACGAAAAAGCCACGCAAGGTCAGAGAgcctcgcacggctgcggtggtgctcactatcggcccagaggcagaaaaacgtggcatcacatatgctgaggtgattcggaaagcacgaaccaccatcaatatagaagagctcggtatcccgccaataaacaccaccaccgcggtcactggtgccaaaatactacaggtatctggtgaggaacaggttgcaaaagctgacgctctcgctgagcaactgagaagtatttttgaggatgaggacattcgcgtctcccgacctaccaaatgtatggagctctctatcattggcctggatgactccattctaaaagaggaaatagtcaccgctgttgcgataaaagggaactgcgctcaccatcaagttagagtgggtgaaatacgtcctggtcctgggaatatgggcgtcgcgtgggtgtcatgccccattgctgcagctaaaaagatccttgaggcaggacgtctccttgtcgggtggagctcagcacgtgttcgggcagtggaaaagcttccaataagatgttaccgctgtcttgagagaggacatgcccggcagcaatgtatgggtgaagacagaagcgacttgtgcttccgctgtggaaagtccggtcataaggcggccaaatgcttagctgagccccactgcttaatttgtgcggctactaaaagaacagcgggacacgttatgggaggtaggagctgtaaggctcctatcataacacctaagaagggcaagacagcggctaggacccaagccgccaagcaggctgcaacagaacagcccatggacacgactccaatcgccgatggatctacacccaatgtctag
Protein Sequence
MGSQPANLQHSAAALGHCTAAQTRSPAFMWGRGLGVWGLPCASGCEEENLSKKLPWWGPLGGQRSFGSVDGGLQGRGPFLSGWCWERFRSWRTRVICCSKALLRASGASARCMADLQGLRRDMLAFPVVEEREERSGRRSSGRLKKKAHSICVQECEVVLTDCLNVAMSDDDGSASVCSTILGTTSGRKRPHEPTRERAPFDSDSDSSAKSVLASKVSAAGPSRGRASKVEELTGLAEAKRQLNAAKREELRLRTEEDLADRLDRRSLRSGSTGGTDVFMSPDEGPLATHIGASVQGDLDIIREVAKKSGHLKGTFQKALNEATCSIANSTRALLKCSASSENTKLLADNERLKREVAELRRELAELRSEFRTREWRDASAPLAQPETGVPAYFEEWSRSIMKSMGNMIAAKFDGLERDERLLPPKNHRPPLAAEKRRDMEVSTAVASTSAASQKTAPSRIFTSSKTASGTKPAAASSVQQTKQGKGKKKGQKAVPAPQSIPPLTSQSVTEAPPSVAEPERDGEGWSTVVSRAKKKIRPAASSSAPAPAPTAHPGRLRTHYPLVRVMGSEPANLQHGVAAFGHCTATQARSPALLWGRGLGVWGLPYASGCEEENLYKKSPCGAPLGGSGASARWMAAFKAAVRSGGRCREQFCSWRICAFSLGKAFFREARGLRSWDGGPARPAERSAFVRRGAHQRSSTVRLPSGIARPHKPVALLFCRVGGPAQKRRAARKKTSIKNYPVGPPWGAAELRLGGWRPARSRSVLADGGRRAFALLMGKGLLQEGQGTSVVGWRAFKARGTFSVRSALGRFNAPFSSALGACLNWPVPTELALVGWLSGCLRAAWHGGPSRSSSLVSLNNTDNAPCPKMSGAVVVLKDILVGKEVDARRPQTSGATSVKKVVKVDGTDRESDFGSCWSVESVESRSGRKRVRTQRRRGSHSDGTGSGTDSASSSGCAVAKPKKIAAVGDIDARKQYNKELRESIELEAEKEFAEEIALKRQRSGSVNTGSCGMSLDEEPRAALIFKSVEEELKTILKVATTSSHLKGTYQKALKVSAATIKDKTLALLKCTVTDEVAKLERENRRLSEDINDLRKQLDELRAKRDVHADVQQSFKPEDIIQAVSSIVDDKIRVATTSVTNMINARIEGLKTADRPRPSLAADKKKVSPLTESNLPPATTTKIPSGIKSKCGKLTLIPCTSAQKGKRKTKGKKITAASATNPASAKQTEPSTSTAPAASTSSEEAPWTEVVKRGAQKKQAKTAAAQPNSKAPAQNAKDAQSKTKKPRKVREPRTAAVVLTIGPEAEKRGITYAEVIRKARTTINIEELGIPPINTTTAVTGAKILQVSGEEQVAKADALAEQLRSIFEDEDIRVSRPTKCMELSIIGLDDSILKEEIVTAVAIKGNCAHHQVRVGEIRPGPGNMGVAWVSCPIAAAKKILEAGRLLVGWSSARVRAVEKLPIRCYRCLERGHARQQCMGEDRSDLCFRCGKSGHKAAKCLAEPHCLICAATKRTAGHVMGGRSCKAPIITPKKGKTAARTQAAKQAATEQPMDTTPIADGSTPNV

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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