Basic Information

Gene Symbol
Hr39
Assembly
GCA_947538915.1
Location
OX384534.1:14967080-14971024[+]

Transcription Factor Domain

TF Family
SF-like
Domain
zf-C4|SF-like
PFAM
AnimalTFDB
TF Group
Zinc-Coordinating Group
Description
The ligand binding domain of nuclear receptor steroidogenic factor 1 (SF-1): SF-1, a member of the nuclear hormone receptor superfamily, is an essential regulator of endocrine development and function and is considered a master regulator of reproduction. Most nuclear receptors function as homodimer or heterodimers, however SF-1 binds to its target genes as a monomer, recognizing the variations of the DNA sequence motif, T/CCA AGGTCA. SF-1 functions cooperatively with other transcription factors to modulate gene expression. Phospholipids have been determined as potential ligands of SF-1. Like other members of the nuclear receptor (NR) superfamily of ligand-activated transcription factors, SF-1 has a central well conserved DNA binding domain (DBD), a variable N-terminal domain, a flexible hinge and a C-terminal ligand binding domain (LBD). [1, 8, 3, 11, 6, 5, 12, 10, 9, 2, 4, 7]
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 3 3.2e+04 -13.6 21.1 45 163 203 291 99 395 0.58
2 4 3.7e-08 0.00039 20.8 0.0 1 21 493 513 493 517 0.92
3 4 0.045 4.7e+02 0.7 0.7 88 152 550 608 525 624 0.48
4 4 1.4e-70 1.5e-66 226.3 0.4 200 408 620 823 604 823 0.96

Sequence Information

Coding Sequence
ATGTCGGAGCAGAACGGGCCCCCGGAGGGCCCAGGCTGGTGGCCTCCGGCCCAATCCTGGAAATCGTCGTCGGCCCCTGCGAGACCAGAAGCCGGAAAAAACGTATCTGTGACCACCATCAACGTTCCACCAGCCCACGAAATGCATGATGGTAAAAATGTTAAGTATTTGGGCGGGCGGAACGGTGTGACGGTGTCCGTTGTGTCCGGATGCGGGACCGGAAATGAACCCGAAAATGACGGAGCGGACAGCGACGGTGAAGTTAGCAAGATCGACTTCCGGGGAGTAAATTTACGTACGAAGAAAAAGAGGGACGCGCCAGAAGGCCAGGAAAGCGATGCCAGCACCGTTACAGAGGCGATGCTACAGCAACCAGAACGCCCCATGTCCTGGGAAGGAGAACTTTCCGACCAGGAAATGTCTTCGAATACGATTACTAATCAAGACCATGAAGAAACTTCAATGGAAGGAGTTCAAGTATGCAGTGCAAGCCCAGGACCAGCACACGCACCGCAAGAGCCCAAATTTCCTATAAAACTTGAGCCAGATTTCCGCTCAAGCCCAGCCCCACCACTAGGACCCCTAAGTGATACAACCCTATCAAACACCCAGCAACAACAACAACAACAGCAACAACAACACCAACACAATATCGACGGGCTTGAGCAGAACCAACAAAGCGATTTGCCATTACTTGTTGGAAAACTACTCGGAGGATATAACAATGCTACTCCTAATCACAGCCCAGTTCTTAACCCAAGACATCATCTGACCAAACATAGCCACACGAGATCGCAGGTTCCATCGCCAGATTCGGCGATCCATTCAGCCTACAGCGTATTTAGCTCCCCTACCCAAAGCCCACACGCTGCTCGTCACTCAGCGCTTGGAGCTGGAAGCCCTGTGCCGTCTTCATCGTTGTCACTCTCACGTCACAGTTTCAACAATTCCACATCCTCGCTTTCGTTGTCGCTATCACATTCGCTATCCCGAAATAACTCGGATGCATCCAGCAGCTGTTACAGCTATGGGTCTCTAAGCCCGCCAACACATTCGCCTGTGCAACAACCGAGGCACTCTCATTCGCATACTTCGCATACTCATCATCAGGTTGGAGCACAGGGTAGCCCTTTGCATTTGCCAGTATCTCATCACTATTCGACAACAAATTCAGAGCTTTCCGAAGGGTTGAGTGAGGACCAGGAAGACTGTAAGATAGCGCCAGCTACAGCGGGAATTTCCACCAGGCAACAGCTCATTAATAGCCCCTGTCCAATCTGTGGTGATAAAATCAGCGGCTTTCATTACGGTATATTCTCGTGCGAATCGTGCAAAGGATTCTTCAAGAGGACTGTACAGAACAGAAAAAATTACGTCTGTCTTAGGGGAGCGGGATGCTCGGTGACTGTAGCAACCCGAAAAAAGTGCCCTGCTTGTAGATTCGATAAATGCCTGAATATGGGAATGAAGTTGGAAGCTATTAGAGAAGACAGAACTCGAGGAGGCAGAAGTACCTATCAATGCAGTTACACGCTACCAGCAAATTTAGTAGGCTGTACTTCCGGTGGATTACCTGGCGACAAAATGGCTGGCGGAACATGCAGCCCTGCACCCCCTGGATATGAACATCACCATTCGGCGAGACACCATTCTAATCATTCGCATAAACTTCACGTTGTACCGCAACTTTTGCAAGAAATTATGGACGTCGAACATTTGTGGCATTATAATGACAATGATAGAACTACTAGTGCCCAAAGCAGTGGCAGCAGCAGTAAATCTGAACAGCCTAGGCCGAGCTCTGCGGGACCTCAAAATACCGAACATGAACAACACCCACCTAGTAATGCTAATAGTAATGCTAACCCTTCGCAGCATCCAGACTTTTTGTCTAATCTGTGCAATATCGCAGATCATAGGCTTTATAAAATCGTCAAATGGTGCAAGAGCTTGCCCCTATTTAAAAACATTTCAATTGACGATCAAATTTGTCTCCTTATAAATTCTTGGTGCGAATTGTTGCTCTTCTCATGCTGCTTTAGAAGCGTTAATACTCCGGGAGAGATTAGAGTTTCACTTGGGAAGTCAATTACACTTGAACAAGCCAGACAACTCGGTCTTGCTAGTTGCATCGAAAGAATGTTGGCTTTCACCAACAACCTTAGGCGATTGAGAGTCGACCAATATGAATACGTCGCAATGAAGGTCATTGTTTTGCTAACTTCTGACACAAGCGAGTTGAAAGAACCAGAAAAAGTTCGAGCATCTCAAGAGAAAGCATTGCAGGCATTACAACAATATACAATTGCAATGTATCCAGAAATGCCAGCAAAATTTGGCGAACTACTTCTTAGGATCCCAGACTTGCAGCGAACATGCCAAGCAGGGAAGGAGCTACTCAGTGCTAAACGAGCTGAGGGAGAAGGCAGTTCGTTCAATTTATTAATGGAACTGCTCAGAGGGGACCACTGA
Protein Sequence
MSEQNGPPEGPGWWPPAQSWKSSSAPARPEAGKNVSVTTINVPPAHEMHDGKNVKYLGGRNGVTVSVVSGCGTGNEPENDGADSDGEVSKIDFRGVNLRTKKKRDAPEGQESDASTVTEAMLQQPERPMSWEGELSDQEMSSNTITNQDHEETSMEGVQVCSASPGPAHAPQEPKFPIKLEPDFRSSPAPPLGPLSDTTLSNTQQQQQQQQQQHQHNIDGLEQNQQSDLPLLVGKLLGGYNNATPNHSPVLNPRHHLTKHSHTRSQVPSPDSAIHSAYSVFSSPTQSPHAARHSALGAGSPVPSSSLSLSRHSFNNSTSSLSLSLSHSLSRNNSDASSSCYSYGSLSPPTHSPVQQPRHSHSHTSHTHHQVGAQGSPLHLPVSHHYSTTNSELSEGLSEDQEDCKIAPATAGISTRQQLINSPCPICGDKISGFHYGIFSCESCKGFFKRTVQNRKNYVCLRGAGCSVTVATRKKCPACRFDKCLNMGMKLEAIREDRTRGGRSTYQCSYTLPANLVGCTSGGLPGDKMAGGTCSPAPPGYEHHHSARHHSNHSHKLHVVPQLLQEIMDVEHLWHYNDNDRTTSAQSSGSSSKSEQPRPSSAGPQNTEHEQHPPSNANSNANPSQHPDFLSNLCNIADHRLYKIVKWCKSLPLFKNISIDDQICLLINSWCELLLFSCCFRSVNTPGEIRVSLGKSITLEQARQLGLASCIERMLAFTNNLRRLRVDQYEYVAMKVIVLLTSDTSELKEPEKVRASQEKALQALQQYTIAMYPEMPAKFGELLLRIPDLQRTCQAGKELLSAKRAEGEGSSFNLLMELLRGDH

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
iTF_00174217;
90% Identity
iTF_00938835;
80% Identity
iTF_01412425;