Cses001574.1
Basic Information
- Insect
- Cotesia sesamiae
- Gene Symbol
- ct
- Assembly
- None
- Location
- scaffold:23622-32659[+]
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 5.4e-28 4.8e-24 84.2 0.0 2 72 450 521 449 526 0.95 2 3 1.1e-32 1e-28 99.1 0.0 3 77 842 917 840 919 0.96 3 3 5.2e-31 4.7e-27 93.8 0.0 3 75 1049 1122 1047 1126 0.95
Sequence Information
- Coding Sequence
- ATGAGAATAATAGGAGAAAACAATTCCCGCGATCGTTTACCCCACCGTTTACTGTTGACTCCTGATGCTCCTCCACCTCCCCTAGTAGAACTCGCACACGGGACGGTTAACGCATTCAGCCTAAGGAACACCAGCTTGATCAACTGTTTTACTTTACAGATCAACCAGCTAGTGGAGGAGGTAACGAGGCTACAGCAGAACCTCCAGCGACTCCAAGAGACCACTGCAGCGGCAACTGCCAGACTAGAGGAAGAGCTAGAATCCAGGCGCCAGCATATCAACCGGCTCGAAGCCAAACTAGAGCGGCAACGGGACTACGATGACCTCAAACGTGAAATCAGCGTTCTTAGATCAGTGGATCTGTCCCAGATTCCAACCGGAGAACCTGGAAAGAGTTTGGAGCACCTGCTGATGGAGCGGAACAAAGCTCTTCAGCAGGCCGAGTCTCTTAAATCCTCAACGCCTGACACCGTCGGTGGACTAGCTTCGCCCCTGCACCGCGCCTCAACCGCGTCACCCCACATCGGAGGTGTTGGTATTAGCGTCGGTGGTGGAAGAAGCTCAACCCCCGCCCACCCATCAGCCTCCCGCCTGACCCCAACTCCAACAGGGGCCCAGAACCTCCTGTTCCCACCTCCCCTCCAGAATGTCGAGACCTTTGGGTCATTTCTGGGCGAGGAGATAGTCGCCAATTGGCGGCGGTCTTTAGAACGCTCGATAATGAGCCAACAGAGCTCGACTGCCCAATCAGTAGCTGTTCAGTCCCTGGGTATCCAGCAGAATTCCGCCACTGGGGCAATAGCAACCCCACAAGCTAACGCAGCAATTCAATCATCAAATCACCCATCTCCGTCAACAGATCTAGTATCAGCGTCGACGACGTCAGCTCCAAATCCACCACCCGCTAAGTCAGTCACGCCGATATCCAGCTGCGTTGACGCGTCAGAAAAAGCCCCAACACCGATTCCTGGTCATGAGACACCAGCACCTCCAACGCCGACGTCAACTGGGGCGTTGACGTCACCCAGTGCTGCGCCAACCAGCCAGGAGGCTCCTAACTCTGTCAACTTCAGCGTCAATGGCTCCATCATTGGGCCTAGGAGTCCTGATGAGTGCCACAACAACAATAACAGCCATCACCTCACCAACAACAACATTGGACTCAGTGTTCTGGACAGTCTCAAGTCCCCGTTCAGGTTCGATGACAGGAACCACCCGTTCCGGTTTGGTGATGAGTTTGGAGCAGCTGGAATGGCCGGTCGTCTTGGTGAGTCCTTGATCCCAAAAGGCGATCCGATGGAGGCTAGGCTTCAGGAGATGCTTCGCTACAACATGGACAAGTATGCTAGCCAGAACCTGGACACTCTTCACATTGCCAGGCGTGTTCGTGAACTCCTGTCCATTCACAATATTGGCCAGAGACTGTTTGCCAAGTATGTGCTGGGACTCAGTCAAGGAACTGTCAGTGAGCTGCTAAGCAAACCCAAGCCCTGGGACAAGCTGACGGAAAAAGGCAGAGACTCGTACAGAAAAATGCACGGATGGGCCTGTGATGAAAACGCCGTGCTGCTTCTCAAGTCCTTGATACCCAAAAAAGGCAAAGAGCAAGGCATCCCTCCGTTTGCTCGAGCGACAACAGAAGGTCCAGACATCAGTGACGACAGGATCGCTCACATGTTCAACGAATCCAGTCAGCATTTGCAACAACTATCCCGAGAGCCTGAGACCTCCAATGACGCTGACAGCAAGAGTCCAAGCCGACTGGGATGTCCAAGTCCCTTCGGCAAGGACAGGTACGACTCCCAAAATCGGAGGATCAAGAAGTATGAGAACGATGACATTCCCCAAGAAAAAGTCGTGAGGATTTACCAAGAAGAGCTTGCTAAGTTAATGGGCCGACGAGTGGACGACATCCGGCCACGAGATTTCCCACCAAGCGCTCAGAACCTTGGGATGGAGCGGAGCCAGGACGACATCAGAATGGCTCTAGACGCGTACCACCGGGAGCTCCAGAAACTAAACGCTCCTGGTCAGAATCCTACTTTGACAGGAATCCCAGGCCTGCCGTCCCTTCCAGGCCTCCTGGCGTTGCACCAACAAGCGCTGCATCAGAACCACTTGTCTGCTAACGGAGCAGGAGTCCAGGACCTTAGTCTGAGTAAGGTCGACGCCAGAGGCAAGCTGATGAACGGAGTCTCTGAGGAGGACAAGGAGAAGATGGAAGAAGCAATGCGCCATGCTGGAAGCGCGTTTAGCTTAGTGAGGCCCAAGCAGGAACCTGGTACCCAGTCAACTCCTGGTGGTTCCAGTGCTAGCTCTCCCCTCGGCAACTCTATTCTCCCTCCAGCGATGACACCCAGCGAAGAATTCGCTGGTACAGCAGCTGCGAGTCCTCTTCAGCGCATGGCATCGATTACCAACAGCTTGATCAGCCAACCGTCCACCCAGACCCACCACTCAGCGAACCAGCGGCCACTCAAGGCGGTTCTTCCTCCAATCACCCAGCAGCAGTTTGATCTTTACAATAATCTTAATACCGAGGATATTGTTAAGAGGGTCAAGGAGCAGCTGTCCCAGTATTCCATATCCCAGAGACTGTTTGGCGAGTCCGTTTTAGGGCTAAGCCAGGGGTCAGTTTCGGACCTTCTGGCCAGGCCGAAGCCCTGGCACATGTTGACCCAGAAAGGCCGCGAGCCTTTCATCCGAATGAAGATGTTCCTGGAGGACGAGCAAGCGGTCCACAAGCTGGTTGCTAGCCAGTATAAAATAGCGCCTGAGAAGCTGATGCGGACCGGAGGCTACGGCGGCCTGCCTCCTTGCGGAACACCAATGAAGCCAATGCCACCAACGAAACTGGTGCAGGAGCAGCTCCAGAATGCAGCAAAAGCCCAGGCAGCGGCTCAAGCAGCAGCTCAAGCCCAGCACGAGCTACAACTAGGGCCTCCACCAACCCAGACACCTCAACCACCTCCACCGATGATGATGGCATCATCACATCACCCTCACGTCCAGCTTACCATGGAGCTCCAAAAGAAACAAGCACAGCAGCAAATGGGTCTCCACTCCCCCCATCAAATGACATCACCACTCCGAAGCCTGCACCCCCACATCTCCCCCAGTGTCTACGAAATGGCCGCGCTGACTCAGGACCTGGACACCCAGACCATTACCACCAAGATCAAAGAGGCCTTGTTGGCAAACAACATTGGCCAGAAAATCTTCGGCGAGGCTGTTCTAGGCTTGAGCCAAGGATCCGTCAGTGAGTTGCTGAGCAAACCCAAGCCCTGGCACATGCTGAGCATTAAAGGCCGCGAACCCTTCATTAGAATGCAACTGTGGCTCTCAGACGCCCACAACGTCGACAGACTCCAAGCTTTGAAGAACGAACGGCGCGAGGCCAACAAGAGAAGACGTTCTTCTGGTCCAGGTCACGACAACAGTTCAGACACCAGCAGTAATGACACTGCCGAGTTCTACCATGCGGCATCTCCTGGTCCAGGTCCTCCTTCAGCTAAGAAGCAGCGCGTCCTGTTCTCCGAAGAACAGAAGGAAGCTCTCAGACTGGCCTTTGCGTTGGATCCGTACCCCAACGTAGCGACCATCGAGTTCCTGGCAAGCGAGCTAGCGCTGTCGTCCAGGACAATCACCAACTGGTTCCACAATCACAGGATGCGGTTGAAGCAGCAGACTCCCCATGGCCAGCCTGAGCCGCAATCACCACGCGAGCCTGGTCAGCCTTTCGACCCAGTCCAGTTCCGGCTGCTTCTGAACCAAAGACTCCTGGAGATCCAGAAAGAGCGGCTAGGACTCGGTAACATGCCTATCCCCTACTCGCCGTACTTCAACCCGAACCTGGCTACCTTGATGACCAACGCCTTGAAGGAACAGTGCTCAGGCCTGGACCTGTCCATGGGATCGCTGAAGCGCGAACCTAATCCGGAGTACGAGGATGATGATGGAGACGACATGAGCAACGTAGGCAGTGAAGATTCCGACGCTTCTGGTGGAAGCATCAAGCGCGAACCTGATCTCAATCAACAAACCAGTGCTCCTGCTGGAAGATCCAGCAGACGCAAGCCTGCTGCTCCTCAATGGGTCAATCCTGAGTGGCAGGAACCTGCCAGGACTGGGGATGAGGTCATCATCAATGGTGTCTGTGTTATGAAGACCGATGATTACGGCGTGAAGCGCGAGGCCGAGGAGACTGTCAGGGTCGAACCTACCCCTGTTTCGGACAGATACGATGATGATGCTGCCTCCGAAGCCTCTTCTGTCTCCAATGCGCCTGAGCGAGACGTCCCCACTCCCAGTCCCAGTCTCAAGTCCCAGGGCCAGAACTCCCCCCCTCCCTCCCCCAGGCCCGAGGGAAACGAATCGCCCAAAGAGGTTAAACACGAGCCCGATGAGACCTGGGACTACTGA
- Protein Sequence
- MRIIGENNSRDRLPHRLLLTPDAPPPPLVELAHGTVNAFSLRNTSLINCFTLQINQLVEEVTRLQQNLQRLQETTAAATARLEEELESRRQHINRLEAKLERQRDYDDLKREISVLRSVDLSQIPTGEPGKSLEHLLMERNKALQQAESLKSSTPDTVGGLASPLHRASTASPHIGGVGISVGGGRSSTPAHPSASRLTPTPTGAQNLLFPPPLQNVETFGSFLGEEIVANWRRSLERSIMSQQSSTAQSVAVQSLGIQQNSATGAIATPQANAAIQSSNHPSPSTDLVSASTTSAPNPPPAKSVTPISSCVDASEKAPTPIPGHETPAPPTPTSTGALTSPSAAPTSQEAPNSVNFSVNGSIIGPRSPDECHNNNNSHHLTNNNIGLSVLDSLKSPFRFDDRNHPFRFGDEFGAAGMAGRLGESLIPKGDPMEARLQEMLRYNMDKYASQNLDTLHIARRVRELLSIHNIGQRLFAKYVLGLSQGTVSELLSKPKPWDKLTEKGRDSYRKMHGWACDENAVLLLKSLIPKKGKEQGIPPFARATTEGPDISDDRIAHMFNESSQHLQQLSREPETSNDADSKSPSRLGCPSPFGKDRYDSQNRRIKKYENDDIPQEKVVRIYQEELAKLMGRRVDDIRPRDFPPSAQNLGMERSQDDIRMALDAYHRELQKLNAPGQNPTLTGIPGLPSLPGLLALHQQALHQNHLSANGAGVQDLSLSKVDARGKLMNGVSEEDKEKMEEAMRHAGSAFSLVRPKQEPGTQSTPGGSSASSPLGNSILPPAMTPSEEFAGTAAASPLQRMASITNSLISQPSTQTHHSANQRPLKAVLPPITQQQFDLYNNLNTEDIVKRVKEQLSQYSISQRLFGESVLGLSQGSVSDLLARPKPWHMLTQKGREPFIRMKMFLEDEQAVHKLVASQYKIAPEKLMRTGGYGGLPPCGTPMKPMPPTKLVQEQLQNAAKAQAAAQAAAQAQHELQLGPPPTQTPQPPPPMMMASSHHPHVQLTMELQKKQAQQQMGLHSPHQMTSPLRSLHPHISPSVYEMAALTQDLDTQTITTKIKEALLANNIGQKIFGEAVLGLSQGSVSELLSKPKPWHMLSIKGREPFIRMQLWLSDAHNVDRLQALKNERREANKRRRSSGPGHDNSSDTSSNDTAEFYHAASPGPGPPSAKKQRVLFSEEQKEALRLAFALDPYPNVATIEFLASELALSSRTITNWFHNHRMRLKQQTPHGQPEPQSPREPGQPFDPVQFRLLLNQRLLEIQKERLGLGNMPIPYSPYFNPNLATLMTNALKEQCSGLDLSMGSLKREPNPEYEDDDGDDMSNVGSEDSDASGGSIKREPDLNQQTSAPAGRSSRRKPAAPQWVNPEWQEPARTGDEVIINGVCVMKTDDYGVKREAEETVRVEPTPVSDRYDDDAASEASSVSNAPERDVPTPSPSLKSQGQNSPPPSPRPEGNESPKEVKHEPDETWDY
Similar Transcription Factors
Sequence clustering based on sequence similarity using MMseqs2
- 100% Identity
- iTF_00377873;
- 90% Identity
- iTF_00377784;
- 80% Identity
- iTF_00381722;