Basic Information

Gene Symbol
-
Assembly
GCA_001263575.1
Location
NW:106339-113663[+]

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 10 0.001 0.46 9.8 0.0 37 62 291 316 287 318 0.90
2 10 0.0014 0.64 9.4 5.4 25 64 585 624 584 625 0.88
3 10 0.0018 0.79 9.1 8.3 25 63 620 658 619 660 0.88
4 10 0.0029 1.3 8.3 6.8 25 60 676 711 669 715 0.66
5 10 0.0074 3.3 7.1 4.0 26 58 716 748 710 754 0.63
6 10 0.0075 3.4 7.0 5.0 30 62 762 794 757 804 0.56
7 10 0.11 49 3.3 0.7 25 57 806 838 805 843 0.89
8 10 0.0014 0.63 9.4 7.3 23 63 902 942 897 944 0.92
9 10 0.02 9.1 5.7 3.4 25 54 932 961 930 964 0.71
10 10 0.12 52 3.2 0.5 32 54 985 1007 984 1010 0.72

Sequence Information

Coding Sequence
ATGGCGCCAGCAGCGGTGGCTGTTTTCGTAATATCGCTGTTCGTAGAATCGTTCTCAGCACCGAACGGGTGTATCAGATGTGTGACATCAGATACTACCGGTGGCTACCAGACGCAGAGTGGTTGGGTAAATAGCAACAACTTATCGCAGAGGTCAGCAAATTTGGAAGATTTGACACAACAAGTAGAGGGTGAACTCGGTGGACCCCACAATCAGTTAGCCTTTGATAATACCAGGCCTGGAAACTGGAGGGACGTGAAGCAGTATCGAACAGCTGACGGTCATGGTAGGGTGTACGAAGAGCAAGGTCAACAAGTTCAAGGCCCAGTCCGAGTgagatattacaaaaaaaatttcacctcgagCTACAGCAGCGGAAACCCAGGTGGTTTTGAAGTACCGTCTTTATCTGGATTTGATTCTGACAACATTCGATACGGCAGTCAATCGGCAAACCAGGGCAGTTTTGGCCAGGAACAGAACTCTGCTTACGATCAATCTGCAATCCGTGAAAATTCATACGCTTCGCAGGGTTCTTTACATTCGGCAAATCAATTCAACAGCCAGGATGAAAGACTAGGAAGTCAACAGCGTCGCGTAACGAGCAGTCAGTTTGGCGAAAATACATCCGGATTCAACAGTCGATCGACGCAGCAAGGATTGTCTGAACAGGAATCACTGAGGCCAGGAAATTGGACCACAGCTAACACTTATAAAACTGACGGAGGTAACGGCAGGGTATACGAAGAACGAGGACAAGTTGTTACAGGACCgcaaaaaattcgtttctaCAGGAAAAATTATACCTCGACTTACAGCTCGGATGGCGGGATTCCAAATTTGATTTCAGGGACTGATGGAGCTACAACCTTTGAAAGAGAAGTACAGCAACTGCAAAAACAGATTGATTCTATGGGACGAGAGGTTCATCAAACTGGTCAACATTTCTCAAATAGCGATTACGCGCAGCAGACTTCTATAAATTACGGACAGTCAAGTCCGACTGTAGACCGTACAAACTTCAGACATGTGTCAACGACAGGTAACTACGGGTCACAGAACTATGATAACTTGGGATTAAATTCTCAACAAATACGGCACGGTGCTTATGACAGCGAAAGTCAACGTGTATATCAGACTGGGAGCAGTATTAATAGGCAAATAGAAAGTGGAAACCAAAGGGGTCAAACTTATGGCCACATGACCGGCAGCTACGACAATACCAATGGACATGGTGCTGGGGGAGTACAAAGACCGATTTACCCAGAATCAAATACTCGGCAAACTCAGCGTCATTATCTTTCTCAGTCTGAGCGGGAAGAGTATATACGCAATCACGGGTCTCAAAGTTGGAACCAAGATCAAGTGTCCACTGGTAATTTGAATCGTGAGCAGCAAATTCATCATTCTTCATCACATAACGCAGGAACAGGACCAGGCCGCATTCAGCATTatgatcaatttcaaactacctcttcgtcttcgtccCAGTATCCGAATATTGACAGACGATACCTCCAAGCTGATAGTAATAGAGAAACACAACAGACGCATGGTGTGAGCCAGGATAAAACCGTCGGTAATAATTATCACAGGAATTACAGAATTCAATCTGGAAGACTGAGTACACAGGGTATTGATTTAGGGCGACTGGCACACGGACCTGATTGTGTAGATACTGCAAGTGGACATACCTCGTATGAGCAATCCCAATATCATACACAATATAGACGGAATACTGAAGATTTTGATCAACAAACCCAACATATCAACCAGCACACGGAAGATCTTACCCAGCAAACAGAAGATCTTACCCAACAAATAGAAGATCTTACCCAACAAACACAGGATCTTACCCAGCAAACGGAGGATCTTACCCAGCAAACGGAGGATCTTACCCAGCAAACACAGGATCTTACTCAGCAAACAGAGGATTTAACTCAGCAAACACAAGATCTTACCCAACAGACGGAGGATTTTAGTCAACAATCACAGGGTGTTATTGAGCAATCAGGAGACCTTACCCAGCAAACACAGGATCTTACCCAGCAAACACAGGATCTCACTCAACAAACAGAGGATTTAACCCAGCAAACACAAGATCTTACCCAACAGACGGAGGATTTTAGTCAACAATCACAGGGTCAAACACAGGATCTTACCCAACAAACGGAGGATCTTACCCAGCAAACACAGGATCTTACCCGGCAAACACAAGACTTTACCCAACAGACGGAGGACTTTAGTCAACAATCGCAGGGTGTTATTGAGCAATCGGGAGACCTTACCCAGCAAACAGAGGATCTTGCCCAGCAAACACAGGATCTTACTCAACAAACAGAGGATCTTACCCAGCAAACACAAGACTTTACCCAACAGACGGAGGACTTTACGCAACAATCACAGGATTTCACACAGCAAACGGAAGAACTCCCTCAACAAACACAAGGATATATTCAACAATCGCAAGATCTGACGCAACAGATAGAAGATCTTCCTCAACAAACGGAAGGATTTATTGCAGAATCAGGAAACCTTGGCCAGCAAGCTGAGGATCTTACCCAACAAACCGTAGATGTGACACAAAGTCTTCAACCAGAATCTGGTCACTCCATAGATGTAGGGGAGCCAAACTATGTGCCGCatgtatcaaattttaaagatgtgcatgaattatttttcgatcatgaaaaagaagacaatAGACGTCAACAGATAGAGAAGATCTCTTCACAAGAGGAAGATCTCACCCAACAAACACAAGATCTTAACCAAGAAACAGAGGACCTTACCCAGCAAACACAGGACCTTACCCAGCAGACGGAGGACTTTAATCAACAATCGCAGGATCTCACTCAAGAAACGGAAGACCTCTCACAGCAAATTACTGGTGGAAATTCAGACTTTGGACAGCAGACTAATTGGGGGCTCGATCATTTTCAAGTTGGAGATCAACAGGCCGAAGATCTGAACCAAAGAACACAGGGTCTCACTCAAGAAACGGAAGACCTCTCACAGCAAATTACTGGTGGAAATTCAGACTTYGGACAGCAGAMTAATTGGGGGCTCGATCGTTTTCAAGTTGGAGGTCAACAGGCCGAAGATCTGAACCAACAAGCAACAAGTAACTCAGGAATTTACAATggaaatttaaatcaattcgGACAAGATCAAGTATTGGACTACCCAGCGCAAGTGGGAATACAGCCTGCACCAAAACCAAAACCAAAACGTCCAAAACACAGAACAATCCACATACAAGAATTCTCCACAGAACAGGAACAGCCATCAACGGCTAATATACAAAATGGTGCACCAGAAATCATTGTGACTTCCCCATCAAACAGAGGAGATCAACCCAGTCATGAAACAATTTCCAATACAGAATTATACAGTAGTGAACAGTCACATCGAGTTCAGCCGACTAAAACTGGGGGCCGTCGGAGGAATAGGTATTATGGCATTCAACATAAACCTCAAGTTAACCAAGGAGAACATGGGCAGGATTCGCAAGTAGAGCATGTTCCAAACGAGGTAACGACCAGCCAAGAGCCGACTCTAAGATACACCCATGTAAGTCAACTTGACAAACAGAATTCAGACGATTCAAATGTCAATCCAAAAAGTGTACAACCGATTCCTCAGATTGGAACCAGAATTCTAGAAGCATACGGAGCAAATGGACCATACAACAGTGATCATGAACCAGATTTATTTAATACTGTTAAACCAAATCCAAGTGCAACATTACCACCTGTCTATGGCGACAAGGAGCCTTTCGAAATTATTTGGTCTTACGCagttccaaaaatttttaccaatacCGCCGCTCCAACTACATCCACAGAGCCCACAACTACATCCACAGAGCCCACAAGTACATCCACAGAGCCCACTACTATGACCACCGAGGTCTCAATTCCAACAACCACTGAGCCTCCAATTTCTACATCCACAACTGTCCCTCCGCCAACAACAACTGCTGCTCCCTCATTATGGCGCAGATTTAGAAACAGAGTTAGTAACACAATAGACAAAGCCAGAGAACGCGCAGCGAGTATCTTTGGTTAA
Protein Sequence
MAPAAVAVFVISLFVESFSAPNGCIRCVTSDTTGGYQTQSGWVNSNNLSQRSANLEDLTQQVEGELGGPHNQLAFDNTRPGNWRDVKQYRTADGHGRVYEEQGQQVQGPVRVRYYKKNFTSSYSSGNPGGFEVPSLSGFDSDNIRYGSQSANQGSFGQEQNSAYDQSAIRENSYASQGSLHSANQFNSQDERLGSQQRRVTSSQFGENTSGFNSRSTQQGLSEQESLRPGNWTTANTYKTDGGNGRVYEERGQVVTGPQKIRFYRKNYTSTYSSDGGIPNLISGTDGATTFEREVQQLQKQIDSMGREVHQTGQHFSNSDYAQQTSINYGQSSPTVDRTNFRHVSTTGNYGSQNYDNLGLNSQQIRHGAYDSESQRVYQTGSSINRQIESGNQRGQTYGHMTGSYDNTNGHGAGGVQRPIYPESNTRQTQRHYLSQSEREEYIRNHGSQSWNQDQVSTGNLNREQQIHHSSSHNAGTGPGRIQHYDQFQTTSSSSSQYPNIDRRYLQADSNRETQQTHGVSQDKTVGNNYHRNYRIQSGRLSTQGIDLGRLAHGPDCVDTASGHTSYEQSQYHTQYRRNTEDFDQQTQHINQHTEDLTQQTEDLTQQIEDLTQQTQDLTQQTEDLTQQTEDLTQQTQDLTQQTEDLTQQTQDLTQQTEDFSQQSQGVIEQSGDLTQQTQDLTQQTQDLTQQTEDLTQQTQDLTQQTEDFSQQSQGQTQDLTQQTEDLTQQTQDLTRQTQDFTQQTEDFSQQSQGVIEQSGDLTQQTEDLAQQTQDLTQQTEDLTQQTQDFTQQTEDFTQQSQDFTQQTEELPQQTQGYIQQSQDLTQQIEDLPQQTEGFIAESGNLGQQAEDLTQQTVDVTQSLQPESGHSIDVGEPNYVPHVSNFKDVHELFFDHEKEDNRRQQIEKISSQEEDLTQQTQDLNQETEDLTQQTQDLTQQTEDFNQQSQDLTQETEDLSQQITGGNSDFGQQTNWGLDHFQVGDQQAEDLNQRTQGLTQETEDLSQQITGGNSDFGQQXNWGLDRFQVGGQQAEDLNQQATSNSGIYNGNLNQFGQDQVLDYPAQVGIQPAPKPKPKRPKHRTIHIQEFSTEQEQPSTANIQNGAPEIIVTSPSNRGDQPSHETISNTELYSSEQSHRVQPTKTGGRRRNRYYGIQHKPQVNQGEHGQDSQVEHVPNEVTTSQEPTLRYTHVSQLDKQNSDDSNVNPKSVQPIPQIGTRILEAYGANGPYNSDHEPDLFNTVKPNPSATLPPVYGDKEPFEIIWSYAVPKIFTNTAAPTTSTEPTTTSTEPTSTSTEPTTMTTEVSIPTTTEPPISTSTTVPPPTTTAAPSLWRRFRNRVSNTIDKARERAASIFG

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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