Basic Information

Gene Symbol
ct
Assembly
GCA_008044355.1
Location
VNKF01010723.1:73966-107126[-]

Transcription Factor Domain

TF Family
CUT
Domain
Homeobox|CUT
PFAM
PF02376
TF Group
Helix-turn-helix
Description
The CUT domain is a DNA-binding motif which can bind independently or in cooperation with the homeodomain, often found downstream of the CUT domain. Multiple copies of the CUT domain can exist in one protein (eg Swiss:P10180).
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 3 4.7e-27 4.4e-23 81.2 0.0 3 72 553 623 551 628 0.95
2 3 4.6e-32 4.3e-28 97.2 0.0 3 77 1015 1090 1013 1092 0.96
3 3 2.8e-31 2.6e-27 94.7 0.0 3 76 1210 1284 1208 1287 0.96

Sequence Information

Coding Sequence
ATGCAATCGAACGCCGACGATAtggagaccgagaccgagaccagAACTGAGCCAAGTGCGACAACGCAGGCGTTGGAACTTCTAGAGGACACCAACAACAAGGATGTGTCGTCGTCGTTATCGGTGGAGGCTAGTTTAAATGTTAGCAATAATCATGCGACAGCCGATAGTAGCAATAATAGTTGTAGTCGAaagaacagcagcagcaatgctGAGAGCAATGCCAACGAGCAacatgttgttgctgtggccGAGGACGATGATTGcgccaataacaacaacaccaataccaccaccaccagcaacaacaacagcaatagcaacaacaacaacaataataataataacaataacaacaataccACAACAACCAGCAACACAGccaccagcaacaccaacaccaataataacaacaacagcaacaccaataacaacaacaccaacagcaacaacaacaacagcagcagcggcaacagcgagaagcgcaagaagaagaataacaacaacaacaacggccaGCCAGCTGTTCTATTAGCTGCCAAAGACAAAGAGATTAAAGCactgctggaggagctgcagcgccTGCAGGCCCTGGAGCAGACGCACCTGGTGCAGATCCAGCGGCTGGAGGAGCACCTGGAGGTCAAGCGGCAGCACATCATCCGTCTGGAGGCCCGCCTCGACAAGCATCAGATCAACGAGGCCCTGGCGGAGGCCACCGCCCTGGCCGCTGCCACAGCCGCTGccaccaataataataataataacaatagtCAGAGCAGCGACCACAACAAGCTGAGTGCTGCTGCCACCGAGGCATCCGTCAGTGATCCTGTGGAGAACACCGAAGACCAGGTCATCGAGGCGGAGGAAGAGGACGAGGACCAGGCCATGCTGGTGGACACCAACGAGGAGGCCACACCGCCGTCGGCGGTGAAGACGGAGGAGcgacagcagcggcaggagcaggacgacgaggacgatgaggatgaggaggaggcggccgaGGATCGGGATTTGGCTGACAATGTCAACGATGGCAACGAGATCAAAGTCGAAAAGGAACAGCACAGCCCGCTGGACCTGAACGTGCTCAGTCCGCAGTCGGCCAtcgccgctgcagctgccgccgccgctgccgccgcctgtgCCAACGACCCCAACAAATTCCAGGAGCTGCTCATGGAGCGGACCAAGGCCCTGGCCGCCGAGGCGCTCAAGAATGGCGCCAGCGATGCCGCCAATGCCATTAGCGAAGAGTCCAGCTCGAACTCCAGTGCCACCAGCACACCCACCGCGGGAGCTGGAGTAGGAGCCCTCAATGGCAGCAAGTccttgctgcagcagcagggcgaGGATGCCACCAATGGCCTGGCCGCCGCTGCAATGGCCGCCCATGCCCAGCATGCGGCCGCCGCTGCCTTGGGACCGGGATTCTTGCCCGGACTGCCGCCTGCCTTCCAGTTTGCCGCCGCCCAGGTGGCCGCTGGCGGGGATGTGGGTCGCGGCCACTATCGCTTTGCGGATGCGGAAATGCAACTGCCACCGGGAGCCTCAATGGCCGGCCGGCTAGGGGAGTCACTCATCCCGAAGGGCGATCCCATGGAGGCCAAGCTGCAGGAGATGCTGCGGTACAACATGGACAAGTACGCCAACCAGGCACTGGACACCCTGCACATCTCGCGGCGGGTGAGGGAGCTTCTCTCCGTGCACAATATCGGCCAGCGGCTGTTCGCCAAGTACATCCTCGGCCTCTCCCAGGGCACTGTGTCCGAGCTGCTCAGCAAGCCGAAGCCCTGGGACAAGCTGACGGAGAAGGGGCGCGACAGCTACCGGAAGATGCACGCCTGGGCCTGCGACGATAATGCCGTCATGCTGCTCAAGTCGCTGATACCCAAGAAAGATTCTGGCCTGCCGCAGTACGCGGGTCGCGGTGCCGGCGGCGCTGGCGGCGATGACTCCATGTCCGAGGATCGCATCGCCCACATCCTCAGCGAGGCCTCCTCGCTGATAAAGCAGAGCAGCGTGGCCCAGCAGCGGGAGCACGAGCGCCGTCATGGTGGCGGCCCTGGCACCGGCGACGACTCGCACAGCAACGAGGACAGCAAGTCGCCACCCCAGAGCTGCACCTCCCCCTTCTTcaaggtggagcagcagctgaagcagcagcaacagcagcagcagcagcagcacctcaCTCCCGAGCAggctgccgccgcccagcAGCGGGAGAGGGAGCGCGAGCaaagggagcgggagcagcagcagcggctgcggcaCGAGGATCTCGCCCAGGACAAGATGGCGAGGCTCTACCAGGAGCTAATTGCGCGCACTCCGCGCGAGGCACCATTCCCCAGCCTGTTCTTCTCACCCATCTTCGGAGGTGGAGCCGGCATGCCAGGAGCCGCCGGGAACGCCTTTCCCGCCGCGATGGCCGACGAGAACATGCGGCATGTGTTCGAGCGGGAGATTgccaagctgcagcagcagcaccaggcgcagcagcagcagcagcagcagcagttccccAACTTCTCCAGCCTGATggccctgcagcagcaggtgctcaATGGGGCGCAGGATCTCTCGCTGGCGGCCGCAGCCGCCAAGGACATCAAGCTGAATGGCCAGCGCTCCTCCCTGGAGCACAgtgccggcagcagcagctgctccaagGATGGCGAACGAGATGAGCCTGCCTACCGCAAGTCCGAGGGGGGTGGCACTCCTGCACCACCAGCCCCACCCTCCTCTGTGACGGCAGCCGGAGCATCAGCGCCAGGATCGaccagcggaggaggaggaggagctgcgagCAGCAACTCGGCGGCGCCCAGTCCGCTGAGCAACTCCATACTGCCGCCGGCTTTGAGTAGCCAGGGTGAGGAGTTTGCGGCCACCGCCAGTCCGCTGCAGCGGATGGCCTCCATCACCAACTCGCTGATCACCCAGCCCCCGGTGACGCCGCACCACAGCACGCCCCAAAGGCCCACCAAGGCGGTCCTGCCCCCCATCACCCAGCAGCAGTTCGATATGTTCAACAACCTCAACACGGAGGACATTGTCCGCCGCGTCAAGGAGGCCCTCTCCCAGTACTCCATCTCGCAGCGCCTCTTCGGCGAGTCCGTTCTCGGGCTCTCCCAGGGCTCCGTCTCCGACCTCCTGGCCCGCCCCAAGCCCTGGCACATGCTCACCCAAAAGGGACGAGAACCCTTCATTCGCATGAAGATGTTCCTCGAAGACGAGAATGCGGTGCACAAGCTGGTGGCCAGCCAGTACAAGATTGCCCCCGAGAAGCTAATGCGCACGGGCAGCTACAGTGGCAGCCCACAGATGCCCCAGGGACTGGCCAGCAAGATGCAGGCCGCCTCCCTGCCCATGCAGAAGATGATGAGCGAGCTGAAGCTGCAGGAGCCGGCACAGGCACAGCATCTCATGCAGCAGATGCAGGCGGCGGCCATCCTGCCACCCTCAGCGGGCTCCAATCCCAGCCAGAATCAGAGCCAGCCCCCCTCCTCAAACAGCGAGAAGAAGCCCATGCTGATGCCCGTGCATGGCACCAATGCCATGAGGAGCCTGCACCAGCACATGTCCCCCACGGTGTACGAAATGGCTGCCTTGACACAGGACCTGGACACGCACGACATCACCACCAAGATCAAGGAGGCCCTGCTGGCCAATAACATTGGCCAGAAGATCTTCGGCGAGGCGGTGCTTGGCCTCTCCCAGGGCTCTGTGTCCGAGCTACTGAGCAAGCCCAAGCCCTGGCACATGCTCTCCATCAAGGGCCGGGAGCCCTTCATCCGGATGCAGCTCTGGCTGAGCGATGCCAACAATGTGGAGCGGCTGCAGTTGCTCAAGAATGAGCGAAGGGAGGCCAGCAAGCGACGTCGCAGCACTGGACCCAATCAGCAGGACAACAGCAGTGATACCTCCTCCAATGACACCAATGACTTCTACACCAGCAGTCCAGGGCCAGGATCAGTGGGTTCCGGGGTGGGTGGTGCCCCGCCGAGCAAAAAGCAGCGTGTGCTCTTCTCCGAAGAGCAAAAGGAGGCTTTGCGGCTGGCCTTTGCTTTGGATCCATACCCCAACGTGGGCACCATTGAGTTCCTGGCCAATGAGCTCAGTTTGGCCACGCGGACCATCACCAATTGGTTCCACAACCATCGGATGCGCTTGAAGCAGCAGGTGCCCCATGGCCAGCCGGGGCAGGATAACCCCATACCGAGCAGGGAGAGCACCAGCGCCACCCCCTTCGATCCCGTCCAGTTCCGCAtcctgctgcagcagcgccTCGTGGAGCTGCACAAGGAGCGGATGGGTTTGAGTGGAGCGCCCATCCCTTATCCCCCTTACTTCGCAGCTGCCGCTCTGCTGGGTCGCAGCCTGGCGGGGATTCccggagcggcagcagcggcaggagcggcggcagcagcggccgccGTGGGCGCCTCCACGGGAGACGAGCTGCAGGCTCTGAACCAGGCCTTCAAGGAGCAGATGAGCGGGTTGGACCTGTCCATGCCCACGCTTAAGAGGGAACGCAGCGACGACTACCAGgatgagctggagctggcccaCCACCATCAGCTCAGCGACAATGAGTCCCTGGAGGGTGGCCAGGATCAGCTGGAGGAGAACAAGTCCACCAGCGACTACGAGAAGGCTCTGCACAAATCCGCTTTGGCCTCGGCGGCAGCCGCGGCTGCCTACATGTCCAATGCGGTGCGGAGTTCACGGCGGAAGCCAGCTGCCCCCCAGTGGGGATCCTCGGAGTACGGCGGAGGAAGGGAGGAGTCCGAGCAGGGAGAGAAGCCAGCCGGGGAGGAGCACGAGCATGCCCAGCTGGAGATCGATCAGCGGTTCATGGAGCCCGAGGTGCACATCaagcaggaggaggacgacgaggaggaggaggagcagcccaGTCTGGAGGAGGatagccagcagcagcagcagctcaaggTGGTCAACGAGGAGAAGCTGCGCCTGGTGCGAGTCCGGCGACTGAGCAGCTCGGGCAATGGCTCCTCAGATGAGATGCCCGCTCCCACGGCTCCCCCGGCGGCGACTCCAGCTGCTCCGGAGGCCACCAGCGGCCGGAGCAGTCCTCTGGCGGTGACCGCCAGTCCTGCCTCCGCGGCAGCCTGGAACTACTAG
Protein Sequence
MQSNADDMETETETRTEPSATTQALELLEDTNNKDVSSSLSVEASLNVSNNHATADSSNNSCSRKNSSSNAESNANEQHVVAVAEDDDCANNNNTNTTTTSNNNSNSNNNNNNNNNNNNNTTTTSNTATSNTNTNNNNNSNTNNNNTNSNNNNSSSGNSEKRKKKNNNNNNGQPAVLLAAKDKEIKALLEELQRLQALEQTHLVQIQRLEEHLEVKRQHIIRLEARLDKHQINEALAEATALAAATAAATNNNNNNNSQSSDHNKLSAAATEASVSDPVENTEDQVIEAEEEDEDQAMLVDTNEEATPPSAVKTEERQQRQEQDDEDDEDEEEAAEDRDLADNVNDGNEIKVEKEQHSPLDLNVLSPQSAIAAAAAAAAAAACANDPNKFQELLMERTKALAAEALKNGASDAANAISEESSSNSSATSTPTAGAGVGALNGSKSLLQQQGEDATNGLAAAAMAAHAQHAAAAALGPGFLPGLPPAFQFAAAQVAAGGDVGRGHYRFADAEMQLPPGASMAGRLGESLIPKGDPMEAKLQEMLRYNMDKYANQALDTLHISRRVRELLSVHNIGQRLFAKYILGLSQGTVSELLSKPKPWDKLTEKGRDSYRKMHAWACDDNAVMLLKSLIPKKDSGLPQYAGRGAGGAGGDDSMSEDRIAHILSEASSLIKQSSVAQQREHERRHGGGPGTGDDSHSNEDSKSPPQSCTSPFFKVEQQLKQQQQQQQQQHLTPEQAAAAQQREREREQREREQQQRLRHEDLAQDKMARLYQELIARTPREAPFPSLFFSPIFGGGAGMPGAAGNAFPAAMADENMRHVFEREIAKLQQQHQAQQQQQQQQFPNFSSLMALQQQVLNGAQDLSLAAAAAKDIKLNGQRSSLEHSAGSSSCSKDGERDEPAYRKSEGGGTPAPPAPPSSVTAAGASAPGSTSGGGGGAASSNSAAPSPLSNSILPPALSSQGEEFAATASPLQRMASITNSLITQPPVTPHHSTPQRPTKAVLPPITQQQFDMFNNLNTEDIVRRVKEALSQYSISQRLFGESVLGLSQGSVSDLLARPKPWHMLTQKGREPFIRMKMFLEDENAVHKLVASQYKIAPEKLMRTGSYSGSPQMPQGLASKMQAASLPMQKMMSELKLQEPAQAQHLMQQMQAAAILPPSAGSNPSQNQSQPPSSNSEKKPMLMPVHGTNAMRSLHQHMSPTVYEMAALTQDLDTHDITTKIKEALLANNIGQKIFGEAVLGLSQGSVSELLSKPKPWHMLSIKGREPFIRMQLWLSDANNVERLQLLKNERREASKRRRSTGPNQQDNSSDTSSNDTNDFYTSSPGPGSVGSGVGGAPPSKKQRVLFSEEQKEALRLAFALDPYPNVGTIEFLANELSLATRTITNWFHNHRMRLKQQVPHGQPGQDNPIPSRESTSATPFDPVQFRILLQQRLVELHKERMGLSGAPIPYPPYFAAAALLGRSLAGIPGAAAAAGAAAAAAAVGASTGDELQALNQAFKEQMSGLDLSMPTLKRERSDDYQDELELAHHHQLSDNESLEGGQDQLEENKSTSDYEKALHKSALASAAAAAAYMSNAVRSSRRKPAAPQWGSSEYGGGREESEQGEKPAGEEHEHAQLEIDQRFMEPEVHIKQEEDDEEEEEQPSLEEDSQQQQQLKVVNEEKLRLVRVRRLSSSGNGSSDEMPAPTAPPAATPAAPEATSGRSSPLAVTASPASAAAWNY

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
iTF_00531553;
90% Identity
iTF_00531553;
80% Identity
iTF_00531553;