Basic Information

Insect
Udea olivalis
Gene Symbol
-
Assembly
GCA_947369235.1
Location
OX376340.1:18952900-18971840[+]

Transcription Factor Domain

TF Family
bHLH
Domain
HLH domain
PFAM
PF00010
TF Group
Basic Domians group
Description
A basic helix-loop-helix (bHLH) is a protein structural motif that characterizes one of the largest families of dimerizing transcription factors.It should not be confused with the helix-turn-helix domain.The motif is characterized by two α-helices connected by a loop. In general, transcription factors including this domain are dimeric, each with one helix containing basic amino acid residues that facilitate DNA binding. In general, one helix is smaller, and, due to the flexibility of the loop, allows dimerization by folding and packing against another helix. The larger helix typically contains the DNA-binding regions. bHLH proteins typically bind to a consensus sequence called an E-box, CANNTG. The canonical E-box is CACGTG (palindromic), however some bHLH transcription factors, notably those of the bHLH-PAS family, bind to related non-palindromic sequences, which are similar to the E-box. bHLH TFs may homodimerize or heterodimerize with other bHLH TFs and form a large variety of dimers, each one with specific functions.https://en.wikipedia.org/wiki/Basic_helix-loop-helix
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 25 0.24 1.1e+02 3.5 0.1 38 53 10 25 3 25 0.89
2 25 0.014 6.1 7.5 0.2 22 53 92 124 90 124 0.90
3 25 0.036 16 6.2 0.2 22 53 191 223 189 223 0.90
4 25 0.014 6.1 7.5 0.2 22 53 290 322 288 322 0.90
5 25 0.014 6.1 7.5 0.2 22 53 389 421 387 421 0.90
6 25 0.036 16 6.2 0.2 22 53 488 520 486 520 0.90
7 25 0.044 20 5.9 0.2 22 53 587 619 585 619 0.90
8 25 0.014 6.1 7.5 0.2 22 53 686 718 684 718 0.90
9 25 0.036 16 6.2 0.2 22 53 785 817 783 817 0.90
10 25 0.044 20 5.9 0.2 22 53 884 916 882 916 0.90
11 25 0.014 6.1 7.5 0.2 22 53 983 1015 981 1015 0.90
12 25 0.022 9.8 6.8 0.1 22 53 1082 1114 1080 1114 0.92
13 25 0.022 9.8 6.8 0.1 22 53 1181 1213 1179 1213 0.92
14 25 0.022 9.8 6.8 0.1 22 53 1280 1312 1278 1312 0.92
15 25 0.014 6.1 7.5 0.2 22 53 1379 1411 1377 1411 0.90
16 25 0.022 9.8 6.8 0.1 22 53 1478 1510 1476 1510 0.92
17 25 0.036 16 6.2 0.2 22 53 1577 1609 1575 1609 0.90
18 25 0.014 6.1 7.5 0.2 22 53 1676 1708 1674 1708 0.90
19 25 0.036 16 6.2 0.2 22 53 1775 1807 1773 1807 0.90
20 25 0.029 13 6.5 0.2 22 53 1874 1906 1872 1906 0.90
21 25 0.044 20 5.9 0.2 22 53 1973 2005 1971 2005 0.90
22 25 0.036 16 6.2 0.2 22 53 2072 2104 2070 2104 0.90
23 25 0.036 16 6.2 0.2 22 53 2171 2203 2169 2203 0.90
24 25 0.1 46 4.7 0.1 22 53 2270 2302 2269 2302 0.86
25 25 0.036 16 6.2 0.2 22 53 2369 2401 2367 2401 0.90

Sequence Information

Coding Sequence
ATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGGCCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCCCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGGCCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGTAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCCCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGGCCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCATTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCCCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGGCCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGCAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACTCATTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCCCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGGCCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGCAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACTCATTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCCCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGGCCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAACTACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAACTACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAACTACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCCCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGGCCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAACTACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCCCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGGCCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGCGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGCGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGAATGACCTGCGCAGAGCCATTCCTCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGGCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGCAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAAATACAATGGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGCAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAAGCAGTGTATTGCTCTGCCCCGAGGTGCCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAGGAAACGCGTTCGGGGGGCCGAAGAAAACGACTGACCTGCGCAGAGCCATTCCTCACATGAAAAAATACAATCGAGGCTTATTGAAAATCCAAACACTGACGCTGACCAGGAACTACGTTAAGTCACTGACGAATGCCATTGATGACTTGAATTGGAAGGCGCCACGATACAATGTATTGCTCTGCCCCGAGGTGGCGGTGAAGGAGGAGATCGAGAACGAGGAGATAGTGAACGAGGAGTACAAGCGCAGCGCCGAGTCGCCGCTGGAAGAGCGCATGCAGCACACTCAATAG
Protein Sequence
MKKYNRGLLKIQTLTLARNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLARNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHVAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLTRNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLARNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLARNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLTRNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLTSNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNSFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLARNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLTRNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLTSNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNSFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLARNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKNYNRGLLKIQTLTLTRNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKNYNRGLLKIQTLTLTRNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKNYNRGLLKIQTLTLTRNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLARNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKNYNRGLLKIQTLTLTRNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLTRNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLARNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGSAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLTRNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGSAHAAHSIGNAFGGPKKTNDLRRAIPHMKKYNRGLLKIQTLTLTRNYVKSLTNAIDDLNWKAPRYKQCIALPRGGGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLTSNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLTRNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLTRNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNGGLLKIQTLTLTSNYVKSLTNAIDDLNWKAPRYKQCIALPRGAGEGGDRERGDSERGVQAQRRVAAGRAHAAHSIGNAFGGPKKTTDLRRAIPHMKKYNRGLLKIQTLTLTRNYVKSLTNAIDDLNWKAPRYNVLLCPEVAVKEEIENEEIVNEEYKRSAESPLEERMQHTQ

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
iTF_01503518;
90% Identity
iTF_01503518;
80% Identity
-