Basic Information

Gene Symbol
-
Assembly
GCA_960531455.1
Location
OY482670.1:16098158-16103841[-]

Transcription Factor Domain

TF Family
THAP
Domain
THAP domain
PFAM
PF05485
TF Group
Zinc-Coordinating Group
Description
The THAP domain is a putative DNA-binding domain (DBD) and probably also binds a zinc ion. It features the conserved C2CH architecture (consensus sequence: Cys - 2-4 residues - Cys - 35-50 residues - Cys - 2 residues - His). Other universal features include the location of the domain at the N-termini of proteins, its size of about 90 residues, a C-terminal AVPTIF box and several other conserved residues. Orthologues of the human THAP domain have been identified in other vertebrates and probably worms and flies, but not in other eukaryotes or any prokaryotes [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 1.4e-05 0.0091 18.1 0.0 20 62 17 59 5 80 0.72
2 4 2e-07 0.00013 24.0 0.1 2 66 126 184 125 203 0.73
3 4 2.5e-06 0.0016 20.5 1.2 2 84 213 277 212 280 0.73
4 4 3.7e-05 0.023 16.8 0.1 2 85 1277 1345 1276 1358 0.68

Sequence Information

Coding Sequence
ATGTCTTCTCGTCGCTGCATTCTTGGCTGCCCACCAGGACCGGGTCCACTGTATGTATTTCCACCTGCAGTACATCCAAAAAGGCGCGCTCTATGGCTCAAACAACTTGGCATAAAATATTTGTCCAATAGATATTGCTACGTATGCTATCGCCATTTCAGCTCACGTATGATTTCTGGTCGTAGGGTAAATTACAACGGTTATCCAGATCAAAATCTGACTAGCTACGATCCAAGTGTGCCATATGATAATATACCAAAAGGACTCAATCCTGAATTTACAAGCGACGAACATGACGATGTTGAAATTGGAAACGGTGTTGGCGGTGCGCAAAAAATGAGCGcatttaaatccaaaaaagtagaAGGCCCAAAATGCCTAATGAACTGTGGAAATGCGAGTGGATTTCTTCGCTTGCCATCAATGGAGACTGACATGGAGCAACGCAAAAAATGGTTATACTTGCTTGTCAAAGATCCCAGTTGTCATACAAGCAATGATTTGTTCGTTTGTGTACGACATTTCGATGAGGAAATGTTACGTGCCGATAAAGATCCACGTGATGTTTATCCAAACAAACGTTTGCCACGACCACTGCAAGCACCGATACCGAAAGAGTTGGAAGCACATACGAAATGCATACAAAATTGCACATATTATAAACGGAAGTATAGTTTTCCGCAACGTGAGAGTGATGCTATAAGGCGTCGCATTTGGCTTGAACAATTCAGACGTAACAAAGATTTCCACAAAGAAGGATTGTATGCATGTGATGGCCATTTTAGTAAATCAATGTGTATCGATCACTATTTACGACCACTTGCCGTGCCAAATAAAAATCTACCAATAACTGAAAGTCTTTTTAAAGTGAACTTATGCCAAGAGAAGGGAAAATTTTTATCAACAAAAAAGGGGATGGTGAGAAAGTCAGAAGAGCAACCAACAGCGCCACCATCACCACCACCAAGTGAAATGTCAAATGAGCTGGACGATGAAGATTTGcctttcaataatttttctttaacACCACCAACTAGACAGCAAGCAAAAAACTGCAACAAGAAAACGAACATACTTGGTCGTCTAAATATGACACCAGTGCCGCCCACTATGCTGGATGATTCAGACTCGTCGCCGGCAGCATGTGAAATTAAAGTGCGCACGCTTGGCGTATTTTTACCCATTCGCACGGGTTATATGCAAACGATGGTTGAGAAAGTGGATCCTTTGACTGGTACGCCAACCGATTGTATAGAGCAAATTGAGCCAAAGTTGGGGTTAGATGTGTATAATATAAACAAAGAAGAAtatgaagatgatgatgatgaagaagatgaagaagaagatgaCGAAGAAGCGAATGATGAATGTGATGAAGAACGAGAGAAGGAGGAGCAGGAAGGAGAATCGGATGAGGAGCAGGAAGAGGAAGAGGAGGAGGAGCAAGTAGCTGATGTTTACGATAATATTGACGAGGAAGAGGATAACTATTTTGAAGTTGTAGATGATAAAGAGCAAGATACTGAAAGCTTTTACAATATCACTGATGAGCAAGAGGAGGATTATTATGAAAGCGAAAGCATAACGCCACTAGCGTATAATGAAGAAATTCACTATGAACAAGCAGATGCCCATGCAAATGACGAAGAGGGCGGTAAAATTATGGTATATGATGAATGTGATGAAGAGCTAGAGGAGCAGCAAGAGGAGGAGGAGCAAACAGCGGATAGCGATTACGATATGATTAACGAGCAAACGCAGAACCATTTAGAAGGTGTAGATGAACGGGAAAAGAAGAATGAGAATCAAGGCGTTAAGATAGTTTATGTAATAAGTGACGATGAAGGGGAGGACTATTATGAAAGCCAAATTAGAACTCCACTCACATATGATGACGGAATGCGCTATGAAAAATATGATAATACACGAAATGCTGTGAAAAGAAAAGCCAATTACGATGTTAGTAATGCTGATAAAACAAAAAGGCTGAAATATTTACAAATGCATGGTGAATCTGAAGGAGAAGAAGAAAAGGAACGGCAAGAGAATGAGAAAGTAATACAAGCAATTGAAAACAAAGAAGATCTAATTGACTCAGGCAAAGCCGATAGTAGCATGAAAAAGGTAACAACAACAATTCCAGCTATTGTTGGTAAATTACGACAAAAGGGAATACCTACCACGAAGTCTGCTAAAGAAATCGCACAATTATCTCCTCCACAGCCGGTGGATAAGTCCAATAAAGTTTGGATGTCTGTATTAACTGCTGATGAACCACTGAAAACCGCCAGCAGTGCCAATATAGCACATAAGATCCCCGCATATGTCATACATAAACCCAACACAAGTGTAGTAACTGAAACGCCTGCCAACACAGCCAGTAAACTCATGGTGAAAACTCTTGTAAAGCACAAGACAAACAAAAACGACATGCGCACTGCTACAATTAGCGCAAAGACGACGGCTTCGCCTGCTCTAAAATCCAACACACCCACACCCACTGTGGCGTTGCCAAATAGAGGTAAAGTAAATTTACCACAGAATGTGAAAACACTTATCAAACCATGCCGGGTCCTAGTAAAAAGAACGCCTGTCACCACAGCCACTAAACTCAGCTGGAAAAATTATCAAAAGTTCAAGGTAAACAAAAATTACACGCACACTGCTACAATTAGCGCAAAGCCGACTGCATGGCCTGCTCTAAAGTCCAAGACAAGCACACCCGCTTTTGCGTTGCCAATAAGGGTTAATATAAATTCACCACAGAAAGTGAAAACACTTATCAAACCATGCCGGGTCAGAATAAAGAAAACGCCTGCCACCACAGCCACTAAACTCGGCGCGAAAGCTGTTGAAAAGCTCAAGACAAACACAAACAACGTTCGCACTGCTACAATTAGCGCGAAGACAACTGTATTGCCTGCTGTAAATTCCAAGACAACCACACCCGCTGTTGCGTTGCCAAATAGACGTAATGTAAATTCACCACGGAATATGAGAATACCCGGCAAATCACGCCATGACGGCAAATCGGCAGGCATAAATGATTTGATAAATTTCGCAAAGCGAGGTACAACTTGGCGGGaagttttgaataaaataaCAGAGCCCAAGCATTCCACCACTCCGCCCGGCATTGATAGACTAAAGGAGGCTGTATTGAAAGGCACAAGTTGGCAGCAAGTGCGCGATTTAGCAAGAAAACAGCAAAGAAATGCTGGCAAGAGATTGACTAATGCTAACGTGGTGAATAAAAAGGATGAAGCTAAGCTTAAAGTAGAGTGCAACCAGAAAAAGCCAACAAGTACGACAACAACAACTAAGCTTGCATCGCAAGAAGTTAACAAAACAATGtattctgcattaaaaagtgGTAAAAATATCAAAAAGGTGAATGGTGAGGTAATTGTAGTggtgaataaaaatttaagtGCAGAACCGAAAGTAAGGGAGGAGCAATCGCAGCCGCCGCTCATTTGGGCGCAAACTAAAGAAACGgtgaaattaaaacaaaaaagcaacaacGAAAATGACAAGTGCGCGGAGGGAAAAGTTAGCAAGAGTATGGTGAATTTCGATTTGGCGGGCACAACAAGCACGCTTTTGAGTAAAAATACCAACGCGAGAGCATTTGAAATACTAGCAGGAAATGAAAAAGTAATAACAAGAAAagacacaacaacaacaccaaaaacagcaacaacgaATATGAAACTAACAATCGCTAACATCACCGGCGCCACCACTACGAGCCCAAAACCAAAGCAATCCACCACCATTATACCAACTCAACTAAAACTCCCCGCCAAATCACCATTACAGTTAGCATGCATACTAAAATGtcgcaaaattcaaaaattattcAGTTTACCCGATCCCGTATTGGATAGTGGAAGACGTCGACATTTTTGGTTATTGCAACTTGGCTTAGATGTTGCGTCCAATTGGCATGCGCAGGTGTATATTTGTGAGCGACATTTTGCGGCGAATATGTTTACAAAGGAGGGAAAGCTAACAGAGTATGCATATCCAAGCAAAAAGCAAACAGAAAGTAAAGCTTTGAAAGCTCCGACTCAAAACACACCACATCATGacacaacaagaacaacaatcTCAACACAAATGTGTGAGCTGCAGAGTCATGACGCTTTGTCTGCGTCTTGTGCTGAATTGCTTGAAGTGGCGCAGAGCGTCGATAATGAAATTAAGCGTTTAAAAATACTGATACGACTCAAACAGGATGCGGCTCGCTTAATAGCTGATCTAACTGGTGATGGAAATGATGATGCTGATTACAGCCACGAAGTGATAGATCTAACGTGA
Protein Sequence
MSSRRCILGCPPGPGPLYVFPPAVHPKRRALWLKQLGIKYLSNRYCYVCYRHFSSRMISGRRVNYNGYPDQNLTSYDPSVPYDNIPKGLNPEFTSDEHDDVEIGNGVGGAQKMSAFKSKKVEGPKCLMNCGNASGFLRLPSMETDMEQRKKWLYLLVKDPSCHTSNDLFVCVRHFDEEMLRADKDPRDVYPNKRLPRPLQAPIPKELEAHTKCIQNCTYYKRKYSFPQRESDAIRRRIWLEQFRRNKDFHKEGLYACDGHFSKSMCIDHYLRPLAVPNKNLPITESLFKVNLCQEKGKFLSTKKGMVRKSEEQPTAPPSPPPSEMSNELDDEDLPFNNFSLTPPTRQQAKNCNKKTNILGRLNMTPVPPTMLDDSDSSPAACEIKVRTLGVFLPIRTGYMQTMVEKVDPLTGTPTDCIEQIEPKLGLDVYNINKEEYEDDDDEEDEEEDDEEANDECDEEREKEEQEGESDEEQEEEEEEEQVADVYDNIDEEEDNYFEVVDDKEQDTESFYNITDEQEEDYYESESITPLAYNEEIHYEQADAHANDEEGGKIMVYDECDEELEEQQEEEEQTADSDYDMINEQTQNHLEGVDEREKKNENQGVKIVYVISDDEGEDYYESQIRTPLTYDDGMRYEKYDNTRNAVKRKANYDVSNADKTKRLKYLQMHGESEGEEEKERQENEKVIQAIENKEDLIDSGKADSSMKKVTTTIPAIVGKLRQKGIPTTKSAKEIAQLSPPQPVDKSNKVWMSVLTADEPLKTASSANIAHKIPAYVIHKPNTSVVTETPANTASKLMVKTLVKHKTNKNDMRTATISAKTTASPALKSNTPTPTVALPNRGKVNLPQNVKTLIKPCRVLVKRTPVTTATKLSWKNYQKFKVNKNYTHTATISAKPTAWPALKSKTSTPAFALPIRVNINSPQKVKTLIKPCRVRIKKTPATTATKLGAKAVEKLKTNTNNVRTATISAKTTVLPAVNSKTTTPAVALPNRRNVNSPRNMRIPGKSRHDGKSAGINDLINFAKRGTTWREVLNKITEPKHSTTPPGIDRLKEAVLKGTSWQQVRDLARKQQRNAGKRLTNANVVNKKDEAKLKVECNQKKPTSTTTTTKLASQEVNKTMYSALKSGKNIKKVNGEVIVVVNKNLSAEPKVREEQSQPPLIWAQTKETVKLKQKSNNENDKCAEGKVSKSMVNFDLAGTTSTLLSKNTNARAFEILAGNEKVITRKDTTTTPKTATTNMKLTIANITGATTTSPKPKQSTTIIPTQLKLPAKSPLQLACILKCRKIQKLFSLPDPVLDSGRRRHFWLLQLGLDVASNWHAQVYICERHFAANMFTKEGKLTEYAYPSKKQTESKALKAPTQNTPHHDTTRTTISTQMCELQSHDALSASCAELLEVAQSVDNEIKRLKILIRLKQDAARLIADLTGDGNDDADYSHEVIDLT

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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