Basic Information

Gene Symbol
Fasn
Assembly
GCA_012977825.2
Location
Scaffold:1244333-1269191[-]

Transcription Factor Domain

TF Family
zf-GATA
Domain
zf-GATA domain
PFAM
PF00320
TF Group
Zinc-Coordinating Group
Description
This domain uses four cysteine residues to coordinate a zinc ion. This domain binds to DNA. Two GATA zinc fingers are found in the GATA transcription factors. However there are several proteins which only contain a single copy of the domain.
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 1e-11 2.6e-08 33.3 7.6 1 34 509 540 509 541 0.94
2 3 1.4e-18 3.6e-15 55.2 6.1 1 35 569 602 569 603 0.98
3 3 1.4 3.4e+03 -2.3 0.3 23 27 1803 1807 1801 1810 0.56

Sequence Information

Coding Sequence
GACACGATGAAGGAAAACCTGCAGAAGCAAGACGTTAAGATCGAGTGGGAGAACCATCAGCAGGAGGAAGGTTCACCCCATCAAGAGCCACAGCAACAATCACCCGTGGAAAGTCCACGAAGTGTGATAACCAGCCATCGGCACGTGCGAACCATCAACGCTTCTGGCCTCATAGAGACTCGCGTCGAACCCGAACCTGCTTCACCGGATAATAGACAGACTGAACTACAGCAGCAGCAGCAGCAGCAGCAGCAACAACACATTGTGCAACAGCAGCAGTCGAGATCCATCAAACAGGAGACTCAGGAACCACCACCGCCGTATACAGAGGAGCCACATCAGCAGCAACAGTATCACATACAGATGTCCCATGAACACAGTCCCGACGACCAGCAGAGAGTCGTCGAACAGAAGCAACAACAGCATGTGATTTATGCGACGAGTAATGGACAGGAGATGCAGGTCGATGGGGCTGAGACTCCAGAGGGGACTATCACTATGAACGTTGAAGAGAGAACTAGGTACGAGACGCCAGCACCAGACCGCGTAGAGGTCGACGGTGTAACGTACGTGACTTACAACGAGAGTCAGCTTCGAGCTCGGGACGGCCACGTAATAACCGTCCAGGAGCATCACCAACAGCAACAACAACAGCGTCAGTCAGTTCCACCCCAGCGTTATAGTCCCCACGACCAGATCCAATCAGACCAACAACAACAACAACAACAACAACAGCGTTACCAGACCTCACCCGTAGCTTCGGAGACCTACGAGGCCCAGTCTCTGGTCTCCCAGACACCTGGGAATCAACAGCTCAGTTCACCTGGCCAGAACTACTCTCCACCACTAGACGTCATCAGGTCAGGACAGCAGCAGCAACAACACTTAGTTGCCTACACCGATGGCGCCAGCATCAAGTACAGCGCCGAGGTCAGCGTCGCCGCGGAGAACCTCAAGCCGTCCAGCACGTATACCACTCTGGAGACAGTTCCTCTAGCGCCGACCCCAGCGGGACCTTACACGACCCAGTACATCACTACCGAGGCGTTCCAGCAAGTGCCGACGAGTTATGGTTACCACAAGCACCCGGAGATCGTCTTTTGCCCTATATCTAGTCAAGCGAGAGGTGGCGAGATTGACCATCCGACGAACGTGTACATAAAATCGGACCCAACCCTGACCTCCTCGTCGCTAATGCGCGCATCCCTCCAATACGAGCAGCCATCCTCACCGTCTCAAATGAACGGCTATCCTGGCGGTTGTCAGTTCATCAAGCCGACAAACGACCAGTACTGGGCCCCGCCAACAGGCCCATCACCGCCACCAGGTTTCGACTACGCACAGGGTTACGGAGCAGTACCGATCTCGGCTGCAGCTGTGGCCGCTGCTGCCGATCCAAACGGTATCATGTTCTCCGGTGGATCTTACGTCGCCAACGGGCCCACTTCACCCTGGACGTCTAATCCGATCTTGACCAGTGCCGAGGATGCCTTCGATGGACCTGGTGCTGAAATCGGCAGGGAGTGTGTCAATTGCGGAGCTCATACGACTCCACTGTGGAGGAGGGATGGAACCACTTACTTGTGCAACGCTTGTGGAATCTGCAGTAAGACCAATGGGATCAGCCGGCCACCCACGCAGAGGGCCAAACCCAAAACGTCCGTACCACCGGTGAGTACTGGCGGCAGAAGGCTAGGCGTGAGATGCGCAAATTGCAGCACCACAACGACAACACTCTGGCGAAGGAACAACAACGGCGAGCCAGTCTGCAATGCCTGCGGACTTTACTTCAAACTTCACGGCGTAAACCGACCAATGAGTATGAAAAAAGACGGCATCCAGACGAGAAAAAGGAAACCGAAGAATCATGCGAACGTTAACAACAATCACGGAGTTTCTAACGCTATCCACAAGCCCGAGATCAAGTCCAGCCTACTTGTTACTCCGAGAAAGATGCCGAGTTACGACGCAAATAAGCCGGACCATAAGGTTGTGATATCCGGTATTGCCGGACGTTTTCCCAAATCGGAAAATGTGACCGAGTTTCAGAAGAATCTGCTGAACAAAGTCGACTGCGTCACTGTCGATCATGGACGATGGGACATCGATTCGCCGAAAGTACCACAACGATTGGGTGTATGCAGTAATGTTGAAAAATTCGATCGGGTCTTTTTCGGAGTCCACACCAGACTCACCGCCATTATGGACCCTGTGTCAAGATTACTGCTGGAACATAGTTTCGAGGCAATTATGGATGCTGGTATAAACCCTCGAAGTTTGAGAGGAGCAAATATCGCCGTGTTTACGGCTACGAATCTGTCGGAATCGGAAAAGACTGTGTTTCATCATAAAGTACAGCAAGATGGTTTCGGTATCATGGGTAGCAGCAAGGCTATGATCCCGAATCGTATCTCATTCTTTCTCGGCTTGAACGGACCAAGTGTGAACATGGATAGTGCATGCGCTGGCTCTGGTTCAGCTCTGGAGCGCGCTTATCATTCTATTAAGGCAGGTGATTGCGACGGCGCGATCGTCGCTGGCGGCATTTTGTCCCTGCATCCACATATCTCTTACCAACTGAAAGCTTTAGGTCTCTTGTCAGCCGACGGCTACACCAGAAGCTTCGACGACAGCGGCGACGGCATGACTCGTAGCGACGGCATAGCTGTGCTGTTCCTGCAGCGGGAATCCGATGCCAGGCGAATCTATCACGAGGTGGTGAATGTTCGCAGTATGCACATGCCGTGTTACAACATCAAAAATGTCATGTACCCTAAGTCCGAACCTCAGGCCGAGTTGATGAACGAGTTGCTGAAGGAGAGCGGAATCAGTCCCAACGAAGTTGGCTTCGTCGAAGCCAGTGGCGTTGGTCTTAAGGATATGGATGCCGATGAGTTGAATGCCATCGACGCGGTATATGGAAAACGAGGAAAGCCTATTCTCGTTGGGTCCGTCAAGAGCAATGTCGGTGACGCCATTTCTGCAAACACCATCAATGGTATTATTAAGATGATAGTAGCATCGGAGACTGGACAGATTCCGCCTAATTTACATTACGATAAGCCCAACTCAAAGGCCCCTGGCTTGAAAGAGGGCAGGATACGCATTCCTACAGAGGTACAGTACCCAGTTGGTAGAGGAACACCTTCGATATCTTCTCTTGTCAAGTGGGATCATGATACCGATTGGCTAGTCAACTTCTACACACCAGTAGATGAAGTAAAGGAAGGAGAGAGGGCAGTCGAAATAAATTTGAATGACGAAGAATATAAGTATCTTCGGGGAAATGTTGTCGATGGAAAAGTAGTTCTTCCAATCTCATTGTGTTTAGTTCAGGCTTGGGAAATTTTGAAGAACTTTGATGCGCAAGCATCACACGACATTGTATTTGACGAGATCAAAGTTCACAAACTAACTGTACCAGTTCCTGAAAATGAGATATTAAACTTCATTGTCATGCTCCCTAAAGGAACCGGAAAGTTTGAAGTCATTGAATCTGATACTTTAGTCATGTCTGGTACAATACGAGAAACCAAAGCTCCAAGTCAAGAGCGTCTCGATGACAAAAATACAAAGCATTCGGCAAGTGACAAGTACGAAATAAGCCAAAAAGATTTTTACAATGAAATGGAAATGCGCGGATACCAATACTCAGGAGAATTCAAGAGTGTACTTAAGTCATCGCTAGATGGAGCCAGTGGTTTAATCAGATGGAACGATAACTGGGTAACGTTTATCGACAATGCTTTGCAGCTTTATGCTTTTGGTGATGACTCTCGACGTGTGCAACTACCATTGTTGATTCGGAAGATTGTTATTGATAAGACAAAGCAAGAAACTGCGGTTAAGAGTTCAAAAGATATTCATGCTACAACGAACAAGAAATTGAATTTCGTATCTGTTGGAGGATTAGAAATTCAAGGCCTTAAATTTTCTGTGCTTCCAAAGAATTTAGAACAAAACAAAATAACCACCGACGTTCAGACTATCGTTCTAAACGTTGACCAGTCTCCATTGTCACTGGCTACCAGTTTACGTGTGATTTTACAATTAATCATAGAAAATACTTTCGTTACTAAAATACTGAAGCTTCAATTGATTAAAAATAATGATTCGCATAAACTTGATAAATTCAATTCTGCTGTTTACGATACACCTGAAGCCTCTTTGTATGACATCGAGACCATAGCTTACGAAGAAGCTACGTTTAACAAAGCTTTGACTGTAATAACGGACAACCTTAAAGATTACGACTTAACTGAAATATCTAAAAAATTAGGAAGAGGTAAATTCTTCTTAGCATTCGTGCCTGGTAATCAAGAAGATGCATATGTAAAATCAGCCAAAGATGCAGGACTCAATGTCGTTTTAATTCACAAACACTCCGCGGAAACCTTATTGCTGTGTCGTAAGAAGCAATCGTTTACAAACGTCCAAGTTATCAATGCTTCTAAAAATATCAAGGATACCATCAGTAAAATTAAAAATATAAAACTTTTGTCTGACAATGAACGGATTGTCGTGCTCAATAAATCAGAAAATAGCGCAAGCATCACTGAATTTTTAGATCAATTGGAGGAATCAATTAATTTGGAAAGAGTAAGATACTTTGATGTTCAAGATTCTAATGTATTCAATAATGGATTTAGCGACCCATCGCTTAAAAAGCAATTAGAATCAGACTTGCTGGTCAATATTTTAACGCCTACAAAAGTTTGGGCTACACTCCGGCCTATAAAAATTACCCTATGTCCAAAGTCATGCAAAAGTTGGAATGCAAATCCGATTTACTCATACGACCCAAACAACGTCAATTGGACTGAAGGCGCTGGCATTGAAGACGTCAACAGCATTGTGAAGGTCGAATATGCAGCATTGAATCCTCAAGATGTTCTCATAGCAAACAAAAGTTTCTATGCCGAACCATCTGAATTAATTGGAAAAAATAGAATCTTCCGTTCAAGTTTGGGCCTTGAGTTTTCTGGATTAGATTCCAAGGGTAACAGAGTGATGGGAGTGACTCCAGGAAACTCGATGTCGAACTTTGTTAATGCCGACGCAGGATTGATGTGGGCAGTGCCAAAATCTTGGAGCTTTGAAGATGCAGCAACTGTTCCTCTTTCATATCTCGTAGCTTATTCGGCTCTGATCGTCAAAGCCGAAGTAAAAGCAGGAGAAAAAGTCATGGTTGTTAATCCATGCACTGGTCTGGGTCTAGCAGTTTTGAATTTGGCAGTTCAGAAAAAATGCGACGTCTTTGTAAGTTATGAAACAGAAGATGAAAAGAAGTTGTTAAAGTCAACAGTTCCCAGCATCCCGGAAAATCGATTAATCAAAATAGTCGGTGATACCTACCGAGATGACGTTCTTCTCAAGACGAATGGACAAGGTGTCGATGTTGTTATTTGCAATAACTGCAAAGTTAAGAAATTAGAAGTATTCTTCACGATGTCAAAACGTCAGGCTCGTGTTGTATTAATTAGCGATTTGAATGAAAGTATAATTCACGAAACCATTGGAATGGAAATCTTCTTGAAAGAAATAAGTCTATACTCAGTTGTACCTAAACGAATAATACTGGCAGACGCAGCAACTAAAATTTCTCTATCGAATATGTTGAAGGACGGAATCAATTCTGGCATTGTTAAGCCGTTAGCAAGAAATATTTACAAGCGGGAATCACTAAACAAAGCCTTTAAGAATTGTCTGAATAATACACAACTAGGAAAGATTATAGTCAAGGTACAGCCAGATGGTTCAAACAAAAACGAAGGTCAAGCTCTACCACGAATATTGTGTTCCAGCCATAAATCGTACTTAATTATCGAGGGTTTAACAAACTTTGGTTTAGAATTGATAGATTGGTTAATCACGCGAGGTGCGAGACGAGTTGTCATCGGTTCATCTTTAAATAACGATAATGGGTACAAAAATCTGCGCTTGGCACTTTGGCAGAGCTACGGTGTGCAAATAGTTTTGCAAAAACAGCTTGATCTGTCGCAACAGCAGATTATCAAGGGCTTATTTAAAGAAGCTTCATCTCTTGGATCAGTCGACGGCGTTTTTGATTTGCGACGAACGGATGTAAACACTTCAGCTTCAAAAGACTCACTGATACTGACCACGAAGACGGCTGACGAAGAATCAAGATCTACATGCCCAGAGCTGCGATTGTTCGTTGTGTGTTCTACAGTAGCAAATGCTGGAAGTTTAACGTCAATTAAGAAATTTGGTCAAGTTAAGAGCAACGACAGTCTGCGAGATCAAGTAGTACAAGAGATTTTAGAAAGAAGGAAAAATAATGGATTGCATGGACTGTTGATTCGTTGGGGACTTGAAAATTCTACCAGCAAGTACAGCAATTCTGTGAATTCAAATATAACCTTGCCTCCCGTAACAAAGTATTTAGAAAAATTGGACGAAATTTTGGGAACCGAAGAAAAGCTTGTTGAAGTTTCTTACGTTGTTCCAGCCACTAAAGAGGTTGAGGAAGACCCCACAGAAATCGAAGATGATGACGGAAATTCCGAACAAAAGGAAGCTGAAGAATTTGTTCGAGGTCTTTATGAACAGTATGGCGTGCATGTCGAAGGATTCTCATATTTACAAGTGTAA
Protein Sequence
DTMKENLQKQDVKIEWENHQQEEGSPHQEPQQQSPVESPRSVITSHRHVRTINASGLIETRVEPEPASPDNRQTELQQQQQQQQQQHIVQQQQSRSIKQETQEPPPPYTEEPHQQQQYHIQMSHEHSPDDQQRVVEQKQQQHVIYATSNGQEMQVDGAETPEGTITMNVEERTRYETPAPDRVEVDGVTYVTYNESQLRARDGHVITVQEHHQQQQQQRQSVPPQRYSPHDQIQSDQQQQQQQQQRYQTSPVASETYEAQSLVSQTPGNQQLSSPGQNYSPPLDVIRSGQQQQQHLVAYTDGASIKYSAEVSVAAENLKPSSTYTTLETVPLAPTPAGPYTTQYITTEAFQQVPTSYGYHKHPEIVFCPISSQARGGEIDHPTNVYIKSDPTLTSSSLMRASLQYEQPSSPSQMNGYPGGCQFIKPTNDQYWAPPTGPSPPPGFDYAQGYGAVPISAAAVAAAADPNGIMFSGGSYVANGPTSPWTSNPILTSAEDAFDGPGAEIGRECVNCGAHTTPLWRRDGTTYLCNACGICSKTNGISRPPTQRAKPKTSVPPVSTGGRRLGVRCANCSTTTTTLWRRNNNGEPVCNACGLYFKLHGVNRPMSMKKDGIQTRKRKPKNHANVNNNHGVSNAIHKPEIKSSLLVTPRKMPSYDANKPDHKVVISGIAGRFPKSENVTEFQKNLLNKVDCVTVDHGRWDIDSPKVPQRLGVCSNVEKFDRVFFGVHTRLTAIMDPVSRLLLEHSFEAIMDAGINPRSLRGANIAVFTATNLSESEKTVFHHKVQQDGFGIMGSSKAMIPNRISFFLGLNGPSVNMDSACAGSGSALERAYHSIKAGDCDGAIVAGGILSLHPHISYQLKALGLLSADGYTRSFDDSGDGMTRSDGIAVLFLQRESDARRIYHEVVNVRSMHMPCYNIKNVMYPKSEPQAELMNELLKESGISPNEVGFVEASGVGLKDMDADELNAIDAVYGKRGKPILVGSVKSNVGDAISANTINGIIKMIVASETGQIPPNLHYDKPNSKAPGLKEGRIRIPTEVQYPVGRGTPSISSLVKWDHDTDWLVNFYTPVDEVKEGERAVEINLNDEEYKYLRGNVVDGKVVLPISLCLVQAWEILKNFDAQASHDIVFDEIKVHKLTVPVPENEILNFIVMLPKGTGKFEVIESDTLVMSGTIRETKAPSQERLDDKNTKHSASDKYEISQKDFYNEMEMRGYQYSGEFKSVLKSSLDGASGLIRWNDNWVTFIDNALQLYAFGDDSRRVQLPLLIRKIVIDKTKQETAVKSSKDIHATTNKKLNFVSVGGLEIQGLKFSVLPKNLEQNKITTDVQTIVLNVDQSPLSLATSLRVILQLIIENTFVTKILKLQLIKNNDSHKLDKFNSAVYDTPEASLYDIETIAYEEATFNKALTVITDNLKDYDLTEISKKLGRGKFFLAFVPGNQEDAYVKSAKDAGLNVVLIHKHSAETLLLCRKKQSFTNVQVINASKNIKDTISKIKNIKLLSDNERIVVLNKSENSASITEFLDQLEESINLERVRYFDVQDSNVFNNGFSDPSLKKQLESDLLVNILTPTKVWATLRPIKITLCPKSCKSWNANPIYSYDPNNVNWTEGAGIEDVNSIVKVEYAALNPQDVLIANKSFYAEPSELIGKNRIFRSSLGLEFSGLDSKGNRVMGVTPGNSMSNFVNADAGLMWAVPKSWSFEDAATVPLSYLVAYSALIVKAEVKAGEKVMVVNPCTGLGLAVLNLAVQKKCDVFVSYETEDEKKLLKSTVPSIPENRLIKIVGDTYRDDVLLKTNGQGVDVVICNNCKVKKLEVFFTMSKRQARVVLISDLNESIIHETIGMEIFLKEISLYSVVPKRIILADAATKISLSNMLKDGINSGIVKPLARNIYKRESLNKAFKNCLNNTQLGKIIVKVQPDGSNKNEGQALPRILCSSHKSYLIIEGLTNFGLELIDWLITRGARRVVIGSSLNNDNGYKNLRLALWQSYGVQIVLQKQLDLSQQQIIKGLFKEASSLGSVDGVFDLRRTDVNTSASKDSLILTTKTADEESRSTCPELRLFVVCSTVANAGSLTSIKKFGQVKSNDSLRDQVVQEILERRKNNGLHGLLIRWGLENSTSKYSNSVNSNITLPPVTKYLEKLDEILGTEEKLVEVSYVVPATKEVEEDPTEIEDDDGNSEQKEAEEFVRGLYEQYGVHVEGFSYLQV

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
-
90% Identity
-
80% Identity
-