Dsor010033.1
Basic Information
- Insect
- Drosophila sordidapex
- Gene Symbol
- foxn3
- Assembly
- GCA_035043295.1
- Location
- JAWNNA010000910.1:4524864-4529979[-]
Transcription Factor Domain
- TF Family
- Fork_head
- Domain
- Fork_head domain
- PFAM
- PF00250
- TF Group
- Helix-turn-helix
- Description
- The fork head domain is a conserved DNA-binding domain (also known as a winged helix) of about 100 amino-acid residues. Drosophila melanogaster fork head protein is a transcription factor that promotes terminal rather than segmental development, contains neither homeodomains nor zinc-fingers characteristic of other transcription factors [1]. Instead, it contains a distinct type of DNA-binding region, containing around 100 amino acids, which has since been identified in a number of transcription factors (including D. melanogaster FD1-5, mammalian HNF-3, human HTLF, Saccharomyces cerevisiae HCM1, etc.). This is referred to as the fork head domain but is also known as a 'winged helix' [1, 2, 3]. The fork head domain binds B-DNA as a monomer [2], but shows no similarity to previously identified DNA-binding motifs. Although the domain is found in several different transcription factors, a common function is their involvement in early developmental decisions of cell fates during embryogenesis [3].
- 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 1 6.1e-36 6.7e-33 112.7 0.3 1 86 720 803 720 805 0.96
Sequence Information
- Coding Sequence
- ATGTCAACAGATAATCCCACACAGCTGCTAACACAACACGATTTGAGCCAATTTCGAGGCCAACTTCAGACGGCAGTAGCCGCAACCACAGcggtggtggcagcagcagcagctgccacgcACGGTTATCGCAGCGTGGCAGGCCCAACGCCGGCAACCACAGCACCGTCAACGAACGGACACGGACATAGTAACGGTAACGGGCACGGCGGGCACATGAGCTCCGgctcaaaatatgttttcgtGCATCGCGACGGCTTTGCAACATATCAAAACAGTGCACCACCATTGGCAGTctgcactgctgctgctgctgccagtggtGGTGccggtggtggcggtggtggtggtgctagTGGTGGTGCAGTGACAGGTGCAACTGGTGGCAGCATTGTGTTGCTAGCCACCGAACCGCTGGAACTGAGCTCAGCCGATGCTTTGGGCacgactgcagcagcactgGCGTCTTCTGTCGCCGACGATGGTGAGCTGCGTCCGTTGTCCTGGCTAAATGACAGCAATCTGATCAAAGGCattgtgacaacaacaacaacaacagcagcagcagcggcagcagcagcaacagctcaagTCAAACGCGGCGGTGCAATGGCGCTCAAATCGAcgccaaccacaacaacagcagcgacgacaacCACCAGCACAGTGGGCAACAATATTTGGTTTGTTGGCGATTTAATCGAAGAGCTGCCACCGcatggcaatgccaatgagCAATcaaacgagcagcagcagcagcagcaacatcaacaaccaccaacaacagcaccacccGCCTTATATAGCACCACAACGGTGCACAAGGGACCTAGCGGTACCACCACCGTTGTCGAGTATAAAGCAGCGAGCAAAGCGaatgccgccgccgcagcagcagcggcgtctGCTGCCGGTGCCTATTTGCCGCGTGTTGCAACGAGCAACAGTTTTGTggccgcaacaacagcagcagcaagcgtcaagcaacaacagcaacagatatTTGTCAGCAGCAATGGGACGagtgcaacagttgccactGCCTACAAATCAACTGGCAACACAACAACGCATCATCCGCACAAGAAATATTTGCGTGAGAAGATGAATGTTCATGTTGATCAaaacaacaccagcaccataagcaacaacatcaacatcaacaacaacagcaacaacaacaattgcaaccacaacaataacaacaacaacaacagtcatgTGGTGGCATCAACAGTAACTGTGGTCAGCTCACCCGCCACCTCAAACAACTCAACGCTTAGCTCGTGCTCAGCATCGGGCTCATCGACGGCTGCCGTCAACGGTGGCAGCAGTCCGGTGCCCAAAGCCAGCAGCTTCAAGGCGGTCTTTGATGCCGTTAATTACACAACGccacccaacagcagcagcaatatcatCACCACCAACGAACAGCTGACGGCATCCTCAACGGTGGTCAGCACCACAACGCTGCAGCCGGGCTACAATTTCGTTAGCCATGTGAGCAGCTTGCAACAGCCGCATGTCATctcacaacaacaacccgcCAATATTGCCTCACCGGAGACGATGGCGGGTGGTGCGGCATTGTTGCCGCCCGGCGCCTACTACAGTGCGGTGGTGTCCCGTTCTGGTGCCTTGCAGCTGTCGGTgtcgccaccgccaccacccaCAACGCCGACGGCGGCACACAATGGCTCtggttccggttccggttGCGGCTCAGTTTCGGGTTCTGCTTCCGCCTCGGGCAACCTCAATCAGCGTAGTCCCAGCAGCTATGCCAGCTATGACAATGAGGATTCGCTCAAGGAGTTCGATTTGGTGCTGGGCAACGTGACGCGGATAAATACCAGCACGCCCCAGTATCATCCCCtgaccaaaaacaataacaacaacaacaaccacattaataacagcagcagcagcaataacaacatttcATCTACTAGCGGCAGCTACGGCGGCACTTctaatggcaacaacaacagcagcaacaataataataacaacaacaacaacaacagcagcaacaataataacaacaacaacaacaataataacaacaacaacaataacattatcAATAGCAATAACGCGcctcaaaagcaaaagcatcCCAACAATGTGCCATACGATCCATTCGTGCATACCAATAACAAGCCGCCATATAGTTTTAGTTCCTTAATATTCATGGCCATTGAGGACTCGAATGAGAAGGCGCTGCCAGTGAAGGAAATTTATGCGTGGATCGTGCAACATTTTCCGTACTTCAAAACGGCGCCGAACGGCTGGAAGAATAGCGTGCGGCACAATCTGTCGCTGAACAAGAGCTTTGTGAAGGTGGAGAAGGCGCCGAACATGGGCAAGGGTTCGCTGTGGCGCGTTGAGCCGCAACAGCGTCAAAATCTCATGCAGGCCCTCAATCGATCGCCCTACTTTCCCAACTCGGCCGTCGACAAGATTAGCCCCATGCTCAAGAGTCCCAATGGCACTAATGCTggcggcaacggcagcggcatCGTTAGCTATGACTGCTTGGATGGCGCCGCCGTTGTGCCGCCAACGCCTGCCACGCCCGCCAAAGCCAACGGGGCACTGGCGGTGGCCAATGGTCCAAATGGACCAaatggtggcagcagcaatccCGCCATGCCCACATCAGCCGGCAATGCTGCTGGCGGCAGCCATGTTCGCTTCGATCCCAAACTGTTTCCCAATCTGTCCAAGGCATTTCGCAATATTGAGGAGCCGCCGCTGCTCTTTGACGTTCTAAACGAGGAGCTGCCTGGCGATTATGtgactaacaacaacaacaacaacatcaacaataataatagcaacaccaacaattgCAAGTACAGCTATGTCATTTCGAATGCAACTGGCagtggagctggagcagtGACTGGACCTGAacctggagctggagctggagctgttcCGGCAGCAACTGTTCCCGTCTGTGCCTTCAATTTTGAGCGTTTGGCACGCGACTGCGGCGCCGATAGCATCGACGACGTTCACGCAGCGGCGGCGATGCTTTTCCTCAAACACGGATCAAAAGCCTTCGGTGAATCATATCAAAATGGTGCACCGGTGATAACCAGTTCGCCCAGTGAGGATCACACCTACTCGGCGGGCGGCAATAGCAATGCGGATAGTGGCGCCTCAACGCCGCTGACCAATGGCAATGGGCAAGCCGCCCAGCAGACACAGCCCAGCGTTGGCCATGGCGCCGACAGCAATTGTGCCAGCTCCGATGCGGCCTACGACAGCAGCGAGGAGAATCACAACATCACGCCAGAAGAACTGGCCGATCAGCAGCGGCATCGTGATGGCGTCGACGCcctgctctcgctctcgcgcTCGTCAATTGTCGAGTGCGGCTCGTCGACGGCAACGACGCACTATCatagcaatggcagcagcggcagtagcCATGGCTCGCCGCACAAGCGTGCCTCCAGTCGCAGCGTAGAGGAGGAGAAATGGCAGCACATGGATGTCCACTATCagccgcatcagcagcatcagcattatcagcatcagcaggtCACCGGTGTCTATACGaatggcagcggcagcaaaatGGCGCTACTTAGCAGCGCCGCCGCCAATGTGGCCGCCGCCGGTGCGCTAatccagcaccagcagcagcagcatcagcatcagcagagaCCGCTCTACGAGGAGGCATACAGCGCAACTGTGGCTCCAACTGGGACGGGCAGCAGCGCTGCAAACAGTTTGTATATGCAAAGCATGAGCTGTATGCCAGCTGGCGGCAGCATCGCAACGGTTGGCAGCGGGCAGCCAATGCTCTCACTCAGTGCTGCTATGGCCAATGCTGTGGCGACCAAGAGCAAAGTGAAGCCATTGCGGGGACTGCGCACCAGGATCAAGCGGAAGGCCGCCTGGATGCGGTGA
- Protein Sequence
- MSTDNPTQLLTQHDLSQFRGQLQTAVAATTAVVAAAAAATHGYRSVAGPTPATTAPSTNGHGHSNGNGHGGHMSSGSKYVFVHRDGFATYQNSAPPLAVCTAAAAASGGAGGGGGGGASGGAVTGATGGSIVLLATEPLELSSADALGTTAAALASSVADDGELRPLSWLNDSNLIKGIVTTTTTTAAAAAAAATAQVKRGGAMALKSTPTTTTAATTTTSTVGNNIWFVGDLIEELPPHGNANEQSNEQQQQQQHQQPPTTAPPALYSTTTVHKGPSGTTTVVEYKAASKANAAAAAAAASAAGAYLPRVATSNSFVAATTAAASVKQQQQQIFVSSNGTSATVATAYKSTGNTTTHHPHKKYLREKMNVHVDQNNTSTISNNININNNSNNNNCNHNNNNNNNSHVVASTVTVVSSPATSNNSTLSSCSASGSSTAAVNGGSSPVPKASSFKAVFDAVNYTTPPNSSSNIITTNEQLTASSTVVSTTTLQPGYNFVSHVSSLQQPHVISQQQPANIASPETMAGGAALLPPGAYYSAVVSRSGALQLSVSPPPPPTTPTAAHNGSGSGSGCGSVSGSASASGNLNQRSPSSYASYDNEDSLKEFDLVLGNVTRINTSTPQYHPLTKNNNNNNNHINNSSSSNNNISSTSGSYGGTSNGNNNSSNNNNNNNNNNSSNNNNNNNNNNNNNNNNIINSNNAPQKQKHPNNVPYDPFVHTNNKPPYSFSSLIFMAIEDSNEKALPVKEIYAWIVQHFPYFKTAPNGWKNSVRHNLSLNKSFVKVEKAPNMGKGSLWRVEPQQRQNLMQALNRSPYFPNSAVDKISPMLKSPNGTNAGGNGSGIVSYDCLDGAAVVPPTPATPAKANGALAVANGPNGPNGGSSNPAMPTSAGNAAGGSHVRFDPKLFPNLSKAFRNIEEPPLLFDVLNEELPGDYVTNNNNNNINNNNSNTNNCKYSYVISNATGSGAGAVTGPEPGAGAGAVPAATVPVCAFNFERLARDCGADSIDDVHAAAAMLFLKHGSKAFGESYQNGAPVITSSPSEDHTYSAGGNSNADSGASTPLTNGNGQAAQQTQPSVGHGADSNCASSDAAYDSSEENHNITPEELADQQRHRDGVDALLSLSRSSIVECGSSTATTHYHSNGSSGSSHGSPHKRASSRSVEEEKWQHMDVHYQPHQQHQHYQHQQVTGVYTNGSGSKMALLSSAAANVAAAGALIQHQQQQHQHQQRPLYEEAYSATVAPTGTGSSAANSLYMQSMSCMPAGGSIATVGSGQPMLSLSAAMANAVATKSKVKPLRGLRTRIKRKAAWMR
Similar Transcription Factors
Sequence clustering based on sequence similarity using MMseqs2
- 100% Identity
- iTF_00570209; iTF_00558469; iTF_00499398; iTF_00566598; iTF_00592902; iTF_00485671; iTF_00494919; iTF_00619650; iTF_00606875; iTF_00521159; iTF_00548615; iTF_00524936; iTF_00497193; iTF_00497961; iTF_00576873; iTF_00616009; iTF_00501613; iTF_00518253; iTF_00595760; iTF_00527854; iTF_00482040; iTF_00564463; iTF_00535122; iTF_00560050; iTF_00496403; iTF_00500116; iTF_00513269; iTF_00552117; iTF_00498679; iTF_00521977; iTF_00609689; iTF_00573857; iTF_00576155; iTF_00557023; iTF_00543552; iTF_00542250; iTF_00511084;
- 90% Identity
- iTF_00592902;
- 80% Identity
- -