Basic Information

Gene Symbol
-
Assembly
GCA_905475355.1
Location
FR997794.1:393218-406032[+]

Transcription Factor Domain

TF Family
zf-C2H2
Domain
zf-C2H2 domain
PFAM
PF00096
TF Group
Zinc-Coordinating Group
Description
The C2H2 zinc finger is the classical zinc finger domain. The two conserved cysteines and histidines co-ordinate a zinc ion. The following pattern describes the zinc finger. #-X-C-X(1-5)-C-X3-#-X5-#-X2-H-X(3-6)-[H/C] Where X can be any amino acid, and numbers in brackets indicate the number of residues. The positions marked # are those that are important for the stable fold of the zinc finger. The final position can be either his or cys. The C2H2 zinc finger is composed of two short beta strands followed by an alpha helix. The amino terminal part of the helix binds the major groove in DNA binding zinc fingers. The accepted consensus binding sequence for Sp1 is usually defined by the asymmetric hexanucleotide core GGGCGG but this sequence does not include, among others, the GAG (=CTC) repeat that constitutes a high-affinity site for Sp1 binding to the wt1 promoter [1].
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 4 0.00073 0.074 14.5 0.4 3 23 67 88 66 88 0.98
2 4 8.7 8.9e+02 1.7 1.4 1 20 125 144 125 146 0.88
3 4 0.14 14 7.4 0.3 3 21 582 599 581 600 0.94
4 4 0.00034 0.035 15.6 1.4 2 23 3372 3395 3371 3395 0.90

Sequence Information

Coding Sequence
ATGAATACGGGAGATGACGAACCGTCGTGCAGCTTAAACGGGAGGCTGCGGCCGCGAAAGGGTAACGCGGCCAGCCCGCACACTAAAGTGGCTCGCAGGACCGACAAGTTGGTCCACGAGAGGGCGAGGTCCAAGCCGTTGGCCGGCAAGCAGGATGAAGTCTCGAACAAGTCTGACTCGCCCCTTCCGCAAGTCCTTTGCCCCTACTGCGACAGAAAGTTTGCCACTAAACAAGCGGTCTCCAAGCACGTGCGCCGCGTGCACTTCTCGCCCAAGAGGGAATCTTGCCTGGGCTGTCTGTTCTGCAGCCACGCGGGGGCGGACGCCAACACCGTGCTCGCTCATATGGTGGACAGCCATTCAAATGAGTTCTTTGCGTGTCTCGAGTGCCACACTCGCTTTTCTTGCATGTCCGACCTGGCCGAGCACAAGTTGTCGCTTTGTGAAAAGCCCAAGCCGTTTCGTAACAATTTGCGACAGAAACCTTCCGCTCCCAGGAAGAATCCGAACAAGGTGAATCTCGATGGCAAGCACGATTTCGACAGTGCGACGGAGAAATACCAAGAGAGCCACGGTTTTAACGGCATCGTCATCTCGTGCGAGCTCAAACCGTCGCAGATGCACGACGGCGCCGACATAGAGGACAACATAACCACCAATTTGATATTGCCGCCCCGAAAAAGCCTGGGCGCAGTGGTGCCCGGTGCGGTCCTGGAGAAAAACGCCGTCATCGTTCTCGACGACATACAATGGAACAAGAGGATACCTCCGAACTTTTCGTTTCACAACACCGACGCCGACCAGATCCTGTCGCGATTGGGAGTGGTGCACCGTTCGCCACGCGCACCGGACGCCGCCCGCCGTGACTGGCTCAAGCTGGAGGAATCCCCCCAAAAGTTCGAGAAATGCTTCGATACTAACTTTTATACCAAAGTGGCGAGTAACGTTCAGGAGAACTTGGCCAAGTTCCTCGACGGCTCGTTCAACTTCAACCCGGACCCGGACAATACGATCAAAACCAGAAAGTCGAAGAACAGCGTCGTGATAAACACCGCCGAGGGATTCCCGATCTTGCTGGCGAGCGAGCAGTACTCGCGGCACGAGCCCGACGGGTACATGCCGCGCGGGGTGTCGCCCAAGCACAAGTGGAAGTGGGACGCCGTCGACGCCGACAAGCTCGTCGCCGACGCCGAGCAGAGGAAGCGCGACTCGCACGCCAACAACTGCATCATCACGCTAGTGTCGCGGCTCGACATTTGGACGCAGCTCTGCATGAGGAGGAAGTTCGACGACAAGTTCCGCTGCGCGCCCGTCGAGAAGAAGACCGAGAAGCGAAAGCTCATCGGCAGGGAACTGAAAGAGATCCTGGAGAGCCGCGAGATCCCAACGTCGTCGGCGCCGGCGTCCCGCCCGGCCGGCAGGAGCGGCGCGGCGCGCGACGGTGCCTTCCTGTCGCAGCTGGGCCTGGCGCCGGCGGCGGCGGCGGCCGCGCCCGCGCCCGCCGCCTCGGTGCTGAGCGGCGAGTGGGTGCGCCCCCGCGTGTACGTGTGTTGCGCGTGCGGCGCGCAGGCCCGCGACTGCCGCGCGCTCGCGGGCCACGCGGCGGCGCAGCATCCGCACGCGACCGTGCAGCACTACGAGATCGTGGGCGAGCCCCTGCTGGGCGCCGACATCTCGCGCCACCTGTACGTGCCTCCCGGCCAGGGCCACGCGCGGTCGCGCCCGCTGCGCGGCTTCCGCGACTGCACCAAGTGCGGCAAGTCGGTCTCGCTGGAGGACCTGCATCGCCACATGCTGGAGTGCGCCGGCGACGCGCCGGCGGTGCGCCGCAAGTGCCGCTATCGCCCCTTCGGCGTGCGCAGGCGCCGCACGCGCCTGCCCGACAACACCATCCGCAGGAAGATACGCAAGGACATCAGAAACAGACATAGACGGAAGACCCACATGAGGCCGAGGCCGCGGATCAGAACCGAAGTCGGAGACGCGGAAACCATTCGTAAAATGATCGCCGATTTGCCGGCCAAGCGACATCGCGTGCTCGTAAATCCGACGCTCCGCTCCGGAAGAAAACACGACAAACAACGTAATAAACTTCTGATGAAACGTCGCTCCTCGGCCGATCTGAGGAGCACCAAAAATACTTCCATGAAAGAAACGAACGACGGTGACTCCCGGGGCCCGACCAACGGGGACGACTCCGACGACGATTCCAACAAAGACGACGAAGACAACCTTCCCCTGAAGCCCAGAGCCACGAAGCTCAGTCTCAGAGCCCGGCAGAACCACAACGCGAATAGAGCGAAACGAAAAATTCTGATGAGAGGTTCCAACCTCAGAAACAATGTGGACGCTGCTAGCACCAGCGGTAGCGGCGGCGGAGGCGGAGGCGGACGAGTTAGCGGCGGAGACGGGATTGCCTCTAATAGAAATGAAAACCGTTCTGGCAACGCCCAGAACGCTGGTGGCATGGATGGGAACGGTGCCAGGGAGGACGGCGGAGAGGGGGGCGGCGGCGGCGGAGAGGGGGACCGCGGTGGTGCTGGGGGTGACCCCCCGCGGCCACCGCACTCGCCGGAGCCCGCGCCCGCGCCCGCGCCCAATGCGCCCCTCAAGCACTCCATCGCCAGCCTCACCGCCGACTGCGAGACGCACGACAAGTCCGTTCAGTTCCACCACTTGTTCCTGGTGCAACAGGAGTGCAACAATGCCACGCAGAACGACGCCGCCCAGCGCCCGCTCTTCGAGGACGAGGAGGGGACGTCCGAGCTGGACAAGCCTCCCTTATCGAGCGATCGCAAGGGTGCCATGTCCCCCGAATCGCTCGCTAGACAAAGCAAGTGCAAAAGAAGTTTGAGCTACTGCATTGCCATGCTCAAAAGCAAGCTCGTGGAGCCCGCCGACGAGGTGACCGGCCCCAACCAGATATCGGTGCAGTGCGGCGACGACGAGCCCCTGGACCCCAACCCCCGCTTCTATGTCCAAGGACCTGCCATCGCCGGCGAAGTGGACCCGAAGCCGGCCGAGATCTTTTCGCGGTCAGTTATTCACGAAACTGCATCCTTAGAGCGAGGGCCAAACAAAAGCGACGTTCGGTCGGAGAAGCCTAAAGAGACCGCACCACCGATCGAAGACACGCTGGTCTCGCTGGAGGCTCCTATTGCGTTGCCGCCGAGGGCCCAGGAGACCGGCGCCGGCAGACGAAAGAAATCCCCATCTGCTCCGCAGGAACTGCCAAATAACATCAATCAGATTCCTATTAAAAGGCAGTCTTCTCGACTAAGATCTACCACTAAAGCCGATTTGGCAGCCCAGAAACAACCCATTTATGATTTACCGTCGGAACTGGAAAGGGAAAGGGGAAAAGAAAAGGAACCCCAGAAGCAGCCCGGTGCCAATCCGCGCAGCAAGCGCGACTCGCGGCCCAAAGGCGCCAAGCGAGAGCGAGCCAACAAGAGCGACCACCAACCGCAGCGGAGCACTGCGAACGACCGGATGGCCGACGAACTCTTGCTAAACCAGTACAGGGCGGCCACGGCCGAGCAGGCCGCGTTGCGTCTCGACCACCGGTCGCCTCGCTCGGACCAACGCGCGTCCAGCGAAGAGCATCGCGCGTACGCCGAGTACAGGGCCAGATCCGAGCACCGGCACGGGCCGGAACACACCCAAGTGTCGGATCCCGCGGCGGCTTACCGGTCGGCGCGGCAGCTCCAGACCGTGATCGACCACATCTCGTGGGCCGAGCACCGCGCCGAGCGGATGGCTCTCGAGTACGGGCCGGCCATTCGCCCGATCCCCATGGCGGACCACCTGCCGGCCGCGGAGCGCACTTCGCACGACGAGCGCGCCTTGTCCTTGGAGCGCCGGCGACTATCGGAGCACATGGCGCTGGCCGACCAAGCACCCGTGGACTACAGGCCGAGAACTAATAAGGACTCTTATGTCGACGGACGACTGTACGCCACGTACCTGGATCAGATGGGTATCAACGAGCAGATATACTATACGGAGGCCAATGCATTGAGTGACGAAAAGTTACGTCGAGACAAAAAGCAAGCTACCAGAAGGGCATACTCAAAGAAAGTGGCGAGACCCGAGCAGAGGAATTATACGGAGCCGTACGTGGAGCGCGCCAATGCGATTGATCGGACTGCGCACAACAAGGCTTTAGCGAGAGATCAAAGGAGTTTCGTCGACGTCAGAGCGTACGACGAGCAGAGGCGCCTCGAAGGCCCTCCGTCGCTCATGGAACCCCGAATGTACGGGGACCAGCGGCTGCTGAAGGAGCAAATGCAGTACGGAAACTACGCTAGCCACCCCGGCCGCTCGAGCTCGCATTTAAGACCCAACTCCTGTGAATACAATACGTCGATTGATCAAAGGTGTGAGCCGAGAGTATTCGAGCCCAGTTTGAATGAATACGAAATACATAAAGCCTTACACGAATACAAAAACGCTGTAAACGAGCCGAGGGCTCACAAAGAACACAGTATGTTGCTTGATCGATCTAGATCGTCTACCGATTCAAGATGCTCTATAGAATATGCGAGGGCCAGGGATCAGGTCTATTCGGCGGAGCAGGTGGGCAAACATGCCACTGCGCACGATCCCCAAACTTATGTGGACGCAGAAATGGCAGATAAATTGCAATGTCAAAATAAACACGTACTGTTGCCTGACAATCACAATTTTATGGAGCAAACATCAAGTGATACAAATGTAGGCAAAGAGTGCTCAAATTACATGGAGCAAATGGTACTGCCCGAGGCATACGGCGAAAGCCAATATCGTGGGCAAAGTCACGCCGAAATGTATATTGAAAATGAAATGTCTTTAGAGGGATGCCGGGAACTCGGGCCAGAACAGCTTTTGATCACTAAAATGCCTGAAGAAATGTACTCTGATAATGAGTATGTATGTCTGCCACCTGAAATACAATCGGCGCACTCTTGTCCTAGGCCGCCTTCTGATTTAGCGGCGCCTTTGGACTTATCTGGCAAGTCTATCCCATTGCAACTATCCAACATATTATCAGAACGTGGCAACTCTTTGTTGGAGGATGAAGGCAAAAATTATAACACTCTAGATCTTTCTCACAAAACTATAGATACTGAGATTTTTTGTAAAGAGGTTGCCGTTTGTGGTAGTTTAGTCGATCTGCGGCCCAAATCTTCCGTGGATAATATTTATCAAAGAAATTCAGTGCCTACCGCCAAAGACACCAAGCCTATTACTAAAAAGGTAACTGACGTGTCATACAAGGTTTGCGAGGTCCCTACTGATCTCTCCATGAAAAACACAGCGAAGATTGATTGCTTAGAAAGAAAAATAAATAAAGAGGGCGTTGATGCTCCCGACATTTCGAGAATCGCAGTGATGCCTTCGGAAGGAACAGAAGTAGCGAAATGTAATTTTAAGCCTATTGGAGAAACAGTTGCAGTAAGTGAAGACAGTTCTCAAAATCCCAAAGATTTATTAAAGCAAAGTATAAGCCCGACCTCTGATATCGAAGGGCATGAACACGTAATGTTAGACATTCCTGAAAGCAAAGAAATTTGCGTTTCTATTGACTTAACGGCAGACGACGAAGGCACCGCTGTAGCGAAAATAGAAAAGGAACCCGAAAAGGCAACGACGCCGCCGGAAGAATTAATAGCATACACACCCATTAATCAAACCGCAGCCACCGACAGGAACGAGGATAAAAATTCACCGATCGTGGCCAGCGAAACTGATCATTTGGTTTCAGAAAAACAGCCTTATGCCCTTATGCCCACAGTAAAGCATCCTACGTTTGAGATGAGCACAAGTTCGGAGACCAATACAGCGGTGTCCGCCAGTGCGCCTGATTTCCCTCGACCCTCCGAGGCTTCAGCCGCTGCCACGAATTCAACGCTTTCAAAAAATACTGCTGCAATACTAGCCACTGAGGGTAATGATACTGAGAATAAGGAATTCGACGAAACTTCGTCTAACGTGCGCAATATGATTTCGGACACGTTGTCGTATGCCCCACCTCAGCAGGCCCTAAGCGTAACTACCGCTTCGGCGGTGCGTCTACCGGTGTACACCCTGCCAAATCCGGTTTCATCTACAACAATCACTAGGCATGAAAGCACTACGCCAGTGTATACGTTAGCTAATGCTTGTATATCTGTGACCAAAATTGAGACATCTAATGCTACCACTTTAACAAACTCGTTACTTACGATTGCGAGTACTGGAGCACCCTCAAGTTACGGTCCGCTGCCTAACGATAGATCGCCAGTTTCGCCACGGGCGGTTTCTAAGGTAGCGAGTGCTACAAGAAATACTAATGATAGTGACCTAGAAAACAATATGGAAAATACAAATGCATTCGCGAGTGGCCTGGACCAAGATTTTGACATGCAGAGAAAAATTGCTATGTTGCCCAAAGAATTAGTAGAAATATTAGGTACGATGCCGGCCGATCACCGCAACCAATTATTGAACGTTCTGCCACAATATGTTTCCACAACGACAGCTGCTTCTACTATGGCTAGGGACGCAAGAGACGTCAAATATAATACCACACAAGTTTATAGTAAAATGCCTTCCCCGGCAATAAACACAAAGCCACATTCAATGTATAGAGACGTTATGTCGCAACCTGAGTTCCGATATGGTGCTATGAACATGTCGCTCAATTACGAGTACCAAAGTACTTCACAATGCTCTGGTCCTTACGATCTCATGAGTGTTCATTCCGCGCCGTACTTGTTGCCCCCGCCGCCGCCGCCCCCACCTTTGCCTCCGCCTCCTTTACCACCGCTGCCACCACCGCTGCCCCTACCGTTGCCCCCACTACCACCACCATCAAGTCCCATGCATAGATCCCAGAGTCCCACAGATGATATTAAATCAAGGTCTCTAAATATACTAAAGCCAGTGAAAGAAGAAATTGCTGAAATGATCACTACGGATAACGAGAAGCAGTCTATCGAAGCGTCAAACGAAACGATCAATATACCAACTGAAAATAATGCTAATAAAATTATAGATTTGACTGATGAAGATTCGGTACCTGTCAGTCGTGAACTATTGCAGTTAGCGGAAGATTTGACTAAGACAGCCGTAATGCCTCCTCAAGATATTATGCATACTAATAAACAGAAAATAGTTAACGATAAAACTGCAAGTTTAAGGGCAGTTCGCATTAAAACACAGTCTGAAAAGAATAAAACCAGTTCCAGGGAAACTCGAGGTTTCTCTAAAACCCCCTTAGCGTCAGAAACACAGCCGGTGGTGATATCTGCCGTTGAGCCCGAAACTCCAATGGTTACCAAGACGACCGTAGAATCGAAGATACAAAATGGGGCCGAAGAAGTGAATATACTGTCAGAGTTACAAATAATTCGGGACGTCCAACAGGCAGAAGTCAGCAGCACTCAACATAGGCGTAATAATGTTGCACCCGTATGCCAATTACCCGCTGCAGCTACAAATGACGCAGCGGTACCAACTATTGACAAATTGACAAAAGGCACAAGTGGCCCGAGTGTATCAAACTGCACTCATAATGACGGCGCAAATTCCATTACGTTGAACAGTGGCCCGGGTCCGCTGGGCGAAACTGGTTCAAAAGTTAATACCGACCAAATAGCTCTTTCACACGACGCCTCTGCAAATATTAACGCCACCTCCGATACCGTTTATACTCCAAAACAAACAACGTCCGCTGGGGAACATTCTGTTTCTGATATCACACAGAACGACGACTCCTTGAATGAACTACGGAAAATTAATGTGAGCATTTCGGAAGATGATTCAGACGATAATGTTTCTCTAGCCGTTATAGTGCAAAAGAAACGACTTAGCCAGCAGAAACAAACGGAAAATAATGCAATGTCTATTGATATTGATATTGAACAGCCCGAACACAACTCGGTGGCATGCAGTACAAAGGTCGCGAGTGCAAATGTGCCTAAAACTGCGACATTTCAAATTCAATCGTCAGATGACCAGCCACCAGGAGCAGGTCAATTTACTGAAACAGAATTAAACACAACCCAGTCTAAACGAACGGAAGTCGATAACGAACAAGAGCACATCGTAACTTTAGTCGATGACTCCGAAAGAGAAACCAATATAAAAGTAGCAACGAATGCCAGTGCAAATAATATCAATGAAATGATTATTACCAAGGAACATATGTTTGTAAGTCCTTTGCTGGATAACAAAATAATTAACATGGTTAGCAAAGAATTAGATGTCAAAGTAGCATTGGATGATCAAAATCAACACGCAAGTGGAGCTGAACAAAAGACTGTAATTCTTAATGAAAATATAGTCAATAGTGGCGATAGTGAACCAAATGAAACAAAATATGAATCGCAACAACTTAATAAAAATCGAGTGTTGGCTGCGATCACGACTGGAGTGGGGTTAAATGACAATAGTTCGGGCAGAATTAAAGACATAGTAATACCCATCGCAGAAGTGAATAATGAGGCAGGTCTTCGTAATGAAAACTCGCAATCGTGTACAGAGATGGACGACATTGAGGAAAACGTACATATACCACTACGCCGTAGTAAGCGTGGGAAATCCATGTACGTAGAGAAACCAAATGAGAATGTAGAACAAAAACCACCACTCACGAAAAAACAATTAATATTTTCAAAATTACTGCTGGACGAAGAAAACGGCGCGCGTTACCAAGGTGTGGCAAAGCCGGAAAGGGCGATTGTCGATGATGAAATAGTGTCTTTAAACAGAAAGACTGTCGAGATCATTTCAAATGATATGGACCTACCAAATAAATCGGACGGAAGCAAGAGTAAATCTCATAAACGAAAACAAATAACTCAAAATAAACGAAAATTGAAAAAGAAAAAAATTACAAATAGTGATAATAAAAAGGAAACTGATGAAATCGGTATTGCGAACGATTTAAGTAACGACTGCACCAATGAGCAGACCAAGGAGGGCAAAGAAGCCACCTTCATACCATTGCCGGGCACGGGCCCGTCTAGCTATAACCCCACAGAATGTTACGATGGTGACACAGAGGACAAACGAACATCTGTGGACAAGATAATTGGAACTGGTGAACCACGCATAGTTGTGAAAGAAAACTTAACCAATGAAAAGCGCAAACATTGCATTTCAGAACCTTCAGAATCGGAGCAATTGTCTAAACCCAAGAGATATAAAACAAATACTAAACATTTTCCACATGAAGTAAAAGACCAACCGGAAGACGTTATTGAAGAGCCGCGTCCAAAACAGAAGCGACCGACACTGACGTCCGATACTCGCAAAACATGCTATATGCCTGCATCCCGTCGTACCCGCTCAAAGTCCGTAGTGGTCAAGTCATCGGCGGATAAATATGACCCCTACGACATTGACCTCGACGATATGATTGAAGATACAAAAATATTTAGATATAAAAAAGTCGCATCCGCTAAACAGATTCTGGAAAAACCAAAAAACACATCGAAAAAAGTAAGTAAAGCGGCTAATAGAGCAGAAACGTCTACTGGGACATTTACTGTAAACAAACCAATGAAACCATTACAGTCGAGCACTGACAATGATGTCTTTTCAAGTGACTGTAACGAATCCATGAGTGACTCGGATGATTCTTCAAAAAGCGATGTTCCACTAAAGAAATACGTAGAAGAGAGGAGAAGAAAACTCATCGCATCGGCAGACGCGGTTTCCGATGAGGATAGCAGTGATATTACTACTGGTTCCCACAGACATGGCGTCAAGGAACGGAGAAGCCGGCGTACGCTTGTGGCTTTCAACACGCTCGAAACATCCGAAGACACCAAAGAGGCCGACGAACAACTAAGGTCGGAACAATTTATGGAAAGTTTCGGCTTCTTCTCGCAAAGGAAACCTCGAAAATCGAACTTACTAGCTTCTAAAAAGATATCGGAAACATTTCATATAATAGCCAACGACAGTGACGATACGTACGGCCGGTACACGGAGCGCGCTACCAAACGGGCTCTGCAAAATGAAAATAGAAAGGCGGCCAACTCTAGCAATAATAACCAGCGGTCGCATCAAGCGCATTCCTCTACGAAGCGAGTGGTTAGATATGTACGCAAGAAAAAGGTGTTCGTTAAGCCGCTTCCAACCTACTGCGATGTATGTAAAAAGCAATTTAGGCGGTCCGATAACTATTTAAGGCATCAGATGTCGCTTCTACACATATCCAAACTGTCTGAAGTTGAAATGAAAATCAAAACTGCGCCAGTGCACGAGGAGCCTAATTATTTGATAGTATACAAACAACAACTCGACCGCCTAAAGGTTTTAACGGACAAATTGGCAAAGGCCAAAAAGAACTCCAAAACACCCGTCAATATAAAACTACCCACTCTAGACGAAATTTTGGTTAAAGTTAACAAGACAGTAAGAGAACGGCAGCTTTCCCAGCGCGGACTAAGTCGAGACGAAGCTCTCTTTCTTGATTGTTGCGAGCTCCTTAAATCCAATAAGAATGAAATGAACTGTACCGAAAAGAACGCAGCCCTGCGGGTTGAAGCGCCCAAGTACGCGTGTCCCCCGGAGAACACGGTCAAGGAATTCGATTTATTAGACAGACCCAGCAGAGGAGACGGCGACGTGGACTCCATCACCGCGAAGAACATCCTGGAAAGCGAAGAGGTTCGCAATTTGGAAAACGATTTGATCAGTGGCTTGAAGGAAGCAGCTAATGCCAATATGAGAAAAGTGGAATATCAGCGCAGCGTGAGCGACGTGGGAAGGGCGGACCGCGTCAAACTCAGCTACACCAACGACATTGAGTCCTATCGACACGGGCCGCGGGTCGCCGCTGCCGCCACTACTAAAGTAAAAAAACAACCCGGCTTCAAAGAAAAAATGTATCCAGACGTCACAGAACCCATTGACATGTTCGAGGACAAATTTGATAAAATCAAAAGGAAATGCCGATCGCAAGCTGCGCAAGCGAAACAGCTGCAGACACCCGCAGAGCCGGGCACTAGCCGCAAGAGCCGCAAGAAATCCGACAAGAAAAAAGGCAAGAAGAGCTCCAGCAAAAGTCGGCGGAGCACACAAGTGCTCACGAAGGGCGCTCTCAAGGGATTCGACGGCATCAAGGTGTCCATTCCCACTTCGGACATCAATATGCCCGCCATCGTCCACTCTATTGACAGTTCGGGGAAGAAAAAGAGAAAGAGTAGCTCCAAAAGAAAGAGGGACAAAAGGAAGACCGAGTGTAACCGGAAAGCCGAGCGGGAAAGCCGGGAAAAGACGGCTACCACTCCCCAGAAGAAGGTGGACGTTTACGAATTCATGGATACCGATGATGCAGAACTGTTCGAATTTAGGCCTTCCACGTTGATGGAGAGGTTCAAAAGCATGAGCCACAAAGAAACGCCGAGCACTTCCAAAGGGCAGGCAACCAAAGCGCAGGCCGACCCCGAGGACACGAGCGGCAGCCTCTCCGACGGAGACGACTTCGTCTACATGTCCGACGACTACGTGTGCAGCGACGACGAGACCGAGAACAGCCGGCTGTCCAGCGAGCTCGGCGCCCGCCCCGCCGGCGACCCGCACAGGAGCGCCTCGCTCAAGAGGAAGGATGCCCTCGAGAAGAACGCGGTCATGGGCAAAATATTCAAACACAACGCACTCCGGGCCGACAGAAGGCCCGCCAAAGCCAAGGAGTCGGTCAAGCCCGTGGCGGACTTGGACCAGTTGTTCGATAGTCTCCTGGAGGATGAGCCCAGCTCGTCCACGCTCAAAAACGACCAGCCCTCGCCCAAGAAGGACGGATCTATAGAAACTAAAAAAGCTGAATCGCCCGAGTATAAGGGTTACAATCGAACACCTAGCACGGACGACTTCGCTTCGTCCTACAGGTTTAGCACCTCCTCGCCCAAGCGCACGGGCGCCGTGATTTCGAAGGGGTACGAGCATTCGTTCGAGATGGAGTCTTCCATGTTCAACACGTTTAAGTCGTCCTTCAGGCGCGGACCCAGCGTGTCCAGGAAGCACGAGTCCAAGTCGGCATCGTCGAAAAGGCACGAGTCATCCACCGGGGTGCACGACGACGTCCCGCACACGTCGGCCACACCGGGGCGCCCGGACTCGCCGGCTACGGCTCGAAGCGACGACGAAGTGTCGTACAAGGCGCGCGAACCCAAGCTCGGGACGCGCACCTCCAGGCCCGATGAGGGGATCGGCACCAGCTACGATCTGAGCGACGCCCACGACGACTCCGGCGTGGCCAGGCAGCGCGCGCGTCGCAAGTGTACGGTGGGCAAACAGAATGTGCTGGCCGAGACGTGGAGCTCTGAGTCGGAACCCGACGCCGTCCCGCCGCGCCCGACCAGCGCAGAGTCCGTGGCGCCGGGCACCCGCCGTCGCAAGCCTCGCCGCCGCGACCACGGCGGTCCGCGCCGCGCCCGCCGCGAGCACGACGCCGTGCCGCCACGCCCACCCGCGCCGGGCGGCAGCGCCGTGCGGCCACGCGTGCGCGCGCCCGCCTGGCCCGGTGGCGCAGGCGCGGCGCCCGAGGAGCCCGAGCACCCGCAGCAGCACGGCTGGATCGTGGGCGACAGCCACAAGAAACTCGTCACCATGCTGGCGCACGCCAAAGGACGCAAGCGGACCAATGACGAGAAGCGTCATTTGCTGGAGTGA
Protein Sequence
MNTGDDEPSCSLNGRLRPRKGNAASPHTKVARRTDKLVHERARSKPLAGKQDEVSNKSDSPLPQVLCPYCDRKFATKQAVSKHVRRVHFSPKRESCLGCLFCSHAGADANTVLAHMVDSHSNEFFACLECHTRFSCMSDLAEHKLSLCEKPKPFRNNLRQKPSAPRKNPNKVNLDGKHDFDSATEKYQESHGFNGIVISCELKPSQMHDGADIEDNITTNLILPPRKSLGAVVPGAVLEKNAVIVLDDIQWNKRIPPNFSFHNTDADQILSRLGVVHRSPRAPDAARRDWLKLEESPQKFEKCFDTNFYTKVASNVQENLAKFLDGSFNFNPDPDNTIKTRKSKNSVVINTAEGFPILLASEQYSRHEPDGYMPRGVSPKHKWKWDAVDADKLVADAEQRKRDSHANNCIITLVSRLDIWTQLCMRRKFDDKFRCAPVEKKTEKRKLIGRELKEILESREIPTSSAPASRPAGRSGAARDGAFLSQLGLAPAAAAAAPAPAASVLSGEWVRPRVYVCCACGAQARDCRALAGHAAAQHPHATVQHYEIVGEPLLGADISRHLYVPPGQGHARSRPLRGFRDCTKCGKSVSLEDLHRHMLECAGDAPAVRRKCRYRPFGVRRRRTRLPDNTIRRKIRKDIRNRHRRKTHMRPRPRIRTEVGDAETIRKMIADLPAKRHRVLVNPTLRSGRKHDKQRNKLLMKRRSSADLRSTKNTSMKETNDGDSRGPTNGDDSDDDSNKDDEDNLPLKPRATKLSLRARQNHNANRAKRKILMRGSNLRNNVDAASTSGSGGGGGGGRVSGGDGIASNRNENRSGNAQNAGGMDGNGAREDGGEGGGGGGEGDRGGAGGDPPRPPHSPEPAPAPAPNAPLKHSIASLTADCETHDKSVQFHHLFLVQQECNNATQNDAAQRPLFEDEEGTSELDKPPLSSDRKGAMSPESLARQSKCKRSLSYCIAMLKSKLVEPADEVTGPNQISVQCGDDEPLDPNPRFYVQGPAIAGEVDPKPAEIFSRSVIHETASLERGPNKSDVRSEKPKETAPPIEDTLVSLEAPIALPPRAQETGAGRRKKSPSAPQELPNNINQIPIKRQSSRLRSTTKADLAAQKQPIYDLPSELERERGKEKEPQKQPGANPRSKRDSRPKGAKRERANKSDHQPQRSTANDRMADELLLNQYRAATAEQAALRLDHRSPRSDQRASSEEHRAYAEYRARSEHRHGPEHTQVSDPAAAYRSARQLQTVIDHISWAEHRAERMALEYGPAIRPIPMADHLPAAERTSHDERALSLERRRLSEHMALADQAPVDYRPRTNKDSYVDGRLYATYLDQMGINEQIYYTEANALSDEKLRRDKKQATRRAYSKKVARPEQRNYTEPYVERANAIDRTAHNKALARDQRSFVDVRAYDEQRRLEGPPSLMEPRMYGDQRLLKEQMQYGNYASHPGRSSSHLRPNSCEYNTSIDQRCEPRVFEPSLNEYEIHKALHEYKNAVNEPRAHKEHSMLLDRSRSSTDSRCSIEYARARDQVYSAEQVGKHATAHDPQTYVDAEMADKLQCQNKHVLLPDNHNFMEQTSSDTNVGKECSNYMEQMVLPEAYGESQYRGQSHAEMYIENEMSLEGCRELGPEQLLITKMPEEMYSDNEYVCLPPEIQSAHSCPRPPSDLAAPLDLSGKSIPLQLSNILSERGNSLLEDEGKNYNTLDLSHKTIDTEIFCKEVAVCGSLVDLRPKSSVDNIYQRNSVPTAKDTKPITKKVTDVSYKVCEVPTDLSMKNTAKIDCLERKINKEGVDAPDISRIAVMPSEGTEVAKCNFKPIGETVAVSEDSSQNPKDLLKQSISPTSDIEGHEHVMLDIPESKEICVSIDLTADDEGTAVAKIEKEPEKATTPPEELIAYTPINQTAATDRNEDKNSPIVASETDHLVSEKQPYALMPTVKHPTFEMSTSSETNTAVSASAPDFPRPSEASAAATNSTLSKNTAAILATEGNDTENKEFDETSSNVRNMISDTLSYAPPQQALSVTTASAVRLPVYTLPNPVSSTTITRHESTTPVYTLANACISVTKIETSNATTLTNSLLTIASTGAPSSYGPLPNDRSPVSPRAVSKVASATRNTNDSDLENNMENTNAFASGLDQDFDMQRKIAMLPKELVEILGTMPADHRNQLLNVLPQYVSTTTAASTMARDARDVKYNTTQVYSKMPSPAINTKPHSMYRDVMSQPEFRYGAMNMSLNYEYQSTSQCSGPYDLMSVHSAPYLLPPPPPPPPLPPPPLPPLPPPLPLPLPPLPPPSSPMHRSQSPTDDIKSRSLNILKPVKEEIAEMITTDNEKQSIEASNETINIPTENNANKIIDLTDEDSVPVSRELLQLAEDLTKTAVMPPQDIMHTNKQKIVNDKTASLRAVRIKTQSEKNKTSSRETRGFSKTPLASETQPVVISAVEPETPMVTKTTVESKIQNGAEEVNILSELQIIRDVQQAEVSSTQHRRNNVAPVCQLPAAATNDAAVPTIDKLTKGTSGPSVSNCTHNDGANSITLNSGPGPLGETGSKVNTDQIALSHDASANINATSDTVYTPKQTTSAGEHSVSDITQNDDSLNELRKINVSISEDDSDDNVSLAVIVQKKRLSQQKQTENNAMSIDIDIEQPEHNSVACSTKVASANVPKTATFQIQSSDDQPPGAGQFTETELNTTQSKRTEVDNEQEHIVTLVDDSERETNIKVATNASANNINEMIITKEHMFVSPLLDNKIINMVSKELDVKVALDDQNQHASGAEQKTVILNENIVNSGDSEPNETKYESQQLNKNRVLAAITTGVGLNDNSSGRIKDIVIPIAEVNNEAGLRNENSQSCTEMDDIEENVHIPLRRSKRGKSMYVEKPNENVEQKPPLTKKQLIFSKLLLDEENGARYQGVAKPERAIVDDEIVSLNRKTVEIISNDMDLPNKSDGSKSKSHKRKQITQNKRKLKKKKITNSDNKKETDEIGIANDLSNDCTNEQTKEGKEATFIPLPGTGPSSYNPTECYDGDTEDKRTSVDKIIGTGEPRIVVKENLTNEKRKHCISEPSESEQLSKPKRYKTNTKHFPHEVKDQPEDVIEEPRPKQKRPTLTSDTRKTCYMPASRRTRSKSVVVKSSADKYDPYDIDLDDMIEDTKIFRYKKVASAKQILEKPKNTSKKVSKAANRAETSTGTFTVNKPMKPLQSSTDNDVFSSDCNESMSDSDDSSKSDVPLKKYVEERRRKLIASADAVSDEDSSDITTGSHRHGVKERRSRRTLVAFNTLETSEDTKEADEQLRSEQFMESFGFFSQRKPRKSNLLASKKISETFHIIANDSDDTYGRYTERATKRALQNENRKAANSSNNNQRSHQAHSSTKRVVRYVRKKKVFVKPLPTYCDVCKKQFRRSDNYLRHQMSLLHISKLSEVEMKIKTAPVHEEPNYLIVYKQQLDRLKVLTDKLAKAKKNSKTPVNIKLPTLDEILVKVNKTVRERQLSQRGLSRDEALFLDCCELLKSNKNEMNCTEKNAALRVEAPKYACPPENTVKEFDLLDRPSRGDGDVDSITAKNILESEEVRNLENDLISGLKEAANANMRKVEYQRSVSDVGRADRVKLSYTNDIESYRHGPRVAAAATTKVKKQPGFKEKMYPDVTEPIDMFEDKFDKIKRKCRSQAAQAKQLQTPAEPGTSRKSRKKSDKKKGKKSSSKSRRSTQVLTKGALKGFDGIKVSIPTSDINMPAIVHSIDSSGKKKRKSSSKRKRDKRKTECNRKAERESREKTATTPQKKVDVYEFMDTDDAELFEFRPSTLMERFKSMSHKETPSTSKGQATKAQADPEDTSGSLSDGDDFVYMSDDYVCSDDETENSRLSSELGARPAGDPHRSASLKRKDALEKNAVMGKIFKHNALRADRRPAKAKESVKPVADLDQLFDSLLEDEPSSSTLKNDQPSPKKDGSIETKKAESPEYKGYNRTPSTDDFASSYRFSTSSPKRTGAVISKGYEHSFEMESSMFNTFKSSFRRGPSVSRKHESKSASSKRHESSTGVHDDVPHTSATPGRPDSPATARSDDEVSYKAREPKLGTRTSRPDEGIGTSYDLSDAHDDSGVARQRARRKCTVGKQNVLAETWSSESEPDAVPPRPTSAESVAPGTRRRKPRRRDHGGPRRARREHDAVPPRPPAPGGSAVRPRVRAPAWPGGAGAAPEEPEHPQQHGWIVGDSHKKLVTMLAHAKGRKRTNDEKRHLLE

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
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90% Identity
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80% Identity
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