Basic Information

Gene Symbol
stc
Assembly
GCA_963691955.1
Location
OY829899.1:5456028-5463036[-]

Transcription Factor Domain

TF Family
zf-NF-X1
Domain
zf-NF-X1 domain
PFAM
PF01422
TF Group
Zinc-Coordinating Group
Description
This domain is presumed to be a zinc binding domain. The following pattern describes the zinc finger. C-X(1-6)-H-X-C-X3-C(H/C)-X(3-4)-(H/C)-X(1-10)-C Where X can be any amino acid, and numbers in brackets indicate the number of residues. Two position can be either his or cys. This family includes Swiss:P40798, Swiss:Q12986 and Swiss:P53971. The zinc fingers in Swiss:Q12986 bind to DNA [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 15 2 2.4e+04 -4.4 1.6 15 19 596 600 595 600 0.81
2 15 0.16 1.9e+03 -0.6 0.7 4 10 629 635 628 635 0.92
3 15 8e-06 0.096 13.1 16.2 4 19 643 658 641 658 0.93
4 15 0.0021 25 5.4 13.4 3 18 696 711 694 712 0.92
5 15 0.00019 2.3 8.7 11.3 1 18 753 770 753 771 0.98
6 15 7e-07 0.0085 16.5 11.9 1 19 812 834 812 834 0.88
7 15 2 2.4e+04 -5.4 2.2 6 10 864 868 864 868 0.94
8 15 0.0015 18 5.9 7.2 1 12 874 885 874 885 0.94
9 15 0.13 1.5e+03 -0.3 1.3 4 10 889 895 888 895 0.92
10 15 8e-09 9.7e-05 22.7 15.8 1 19 901 919 901 919 0.99
11 15 0.48 5.8e+03 -2.1 5.2 11 19 948 959 947 959 0.87
12 15 0.00073 8.8 6.9 9.7 10 18 966 974 963 975 0.92
13 15 1.6e-07 0.002 18.6 14.0 1 17 1011 1029 1011 1035 0.83
14 15 0.089 1.1e+03 0.2 10.7 1 18 1041 1061 1041 1062 0.87
15 15 0.54 6.5e+03 -2.3 0.3 8 12 1078 1082 1077 1082 0.81

Sequence Information

Coding Sequence
ATGTCTCAGTGGAACAATTCATACGCTTACAACAATCAGTACCAGCAGGACTCGAATGGCTGGAACGGCGACCCTGCTAACCAATATGCTAATCATGCATATTACAGCAGGCCGGATGCTAATGGCCAATATGTGAGTTTTAATGAATTCCTTACTCAAATGCAAAACAGCAATGTTGCTGCTCCGAGCAACACTGGATCCTTCAACAATGCTCAATATGATAACTATACCACTGGGCAATATAACTATCAAAATATGCCTTCATCATCCCAAACTCAGCTAGACTATAACTATGGATCATCAGGTGGATCTAATGAAGCCAGTGCATATCCTCAGAAGAAGTTCAATGCTACATCATCGAACCAGAACACATACTCAGCGAGTGCCCCATTCAAGTCTAACCTCACTGCCACTGCTGTAGAATTTGTTCCAAAAAGTTCTTTTCCCAATCCCTCGGGTAGTCAGAACATTCCAGAGTCTTCCAATAGTTACAAAGATGTAAGTGATGGTGCTAATGAAACACAATCCAAACATGGCAGCTCATCAGACCGAAACTGGCGACATAGACCACAAAAATCTAGTGATACTAATGACCAAAAACCAGTCTCTAATATGCAACAAGATAGCCAGAAAAGTTATGGCCGCAATCGTGATAATTTACAACGAAACtatgaaaataatggtaggaataataaaaaagaagaCTATAGCACTGAAAGCAATACTACTAGTAATGAAACGAATGGCAGAAGTCAAGAGTATCAGAGTCATGAAGCAAGTAATGTGAACCGAGAGCCACGTCAAAAGAACTATGATTCAAGTAGGAACCAAGAAACCAGACGGAATCAAGATTCACGTCAAAGTGAACGAAACCAAGAACCTAGAAACAGAAACAATAATGACAGAGGCCAAGACACTAAAAGAAATAATGATTCTAATAGCAGGAACAGAGATTCTGCCAATTTTGATTCAAATGACAGGGGCCAAGAATCAAGGGATGATTCTAATAGGTATGAACCTCGAAATGAACGTCGTAACCAGTCAAAAGGCAACCCTAGAACTAAAGCTAACAAAGATGATAGAACTTTCTATAATAGTGGTGTTTCAAAAGATAGTCAAGATAGTAGAGGCCGTGGTGAAGACTCTGGAAGAACTGATGATAAAAGCCGAGACAGCAATGGCTGGTCAGAAAATCAACAGAGGGATAATCACAGAAGAGAGGCCAGAGATAGTTATAATTCTAGAGATAATTATGGAAGAGAAGGTAGATCGGATGGTTCAGGGAGAGTGCAAAGGAATTGGGCTGGTACCCAGCGCACAAGAGGAGACAGAAGAGAAAACGATGAACAATTTGCTAATACATACAGCCAGAAAGAGGAAAGAGACAGAACTGATTGGAGCTATGATAGAGGAGAAAGGGACAAAGGATATGATAGGGATAGGTATGATAAGTCAGAAAGAGAAAGAGGATATGATAGAGATAGATATGATAAACCAGACAGAGAAAGGGGATATGATAGAGACAGATATGATAGGCAAGACAAACAGAAAAATAGTCCTGCAAGGTTTAAAAGCAAGCAACAGACTGATTGTGCCAACAAAGAGATGACCCAACGGGAACGCCTCACAGAACAGCTAGATAAAGGAACACTAGAATGCCTTGTGTGCTGTGATAGAGTGAGACAGACAGACCCAGTGTGGTCCTGCTCTAACTGCTTTCATGTGCTTCATCTTAGATGTATTAGGAAATGGGCTATGAGTAGTGTAATTGAGGGTAAATGGCGCTGCCCCGCATGTCAGAACACAAGCAAGGCAATCCCCACGGAATACCGCTGCATGTGCGGCGCGATTCGCTCGCCGGACTACCAGCGCGGCAGCGTCGCGCACACCTGCGGAAAGTCATGTAAACGAGAACGGACCTGCGTCCATCCGTGCACGCTGCTCTGCCATCCCGGCCCGTGTCCGCCGTGCCAGGCCACTGTTAACAAGCAATGCGGTTGTGGCGCGGAAACGCGTTCCATCCTATGCAGCAGTAAACTAGCGCAAGTGTGCGGACGGACCTGCAACCGCACACTGTCCTGTCGCGTGCACACGTGCGGAAAGGAGTGCCACGAGGGAGGCTGCGACGACTGTGGCAACACTGTCACTCAAGTATGCTACTGCCCGGCCGCTACAGAGCGCACAGTGGCCTGCACCGCTGAAACCGGCAGCGTATCACAATGGCAATGCGGCCGCGGATGTGGACGTATCCTGACGTGCGGCGCGCACGTGTGTCGCGCGGAGTGCCACGCGCCGCCCTGCCCCTCCTGCGCGCTCCTACCCAGCGCCATAGCGTCGTGTCCGTGCGGCAAGATGCAACTGGACAAGAAGGCCCGTAAAGCGTGCACGGACCCGATTCCTCTGTGCGGCAACATTTGCGCCAAGCCGCTGTCGTGCGGACCATCTGGCGATAAACATTTCTGCAAACTTGTCTGCCATGAAGGCCCCTGCCCCGTATGTCCGGACAGCACCCTGGTGCAGTGCCGCTGTGGCCACTCCAGCCGCGACGTGCCGTGCGCTGACTTGCCCGAGATGCTCAACAATGTGCTCTGTCAGAAGAAATGTAACAAGAAACTATCATGCGGTCGTCACCGATGCCGCGCGACGTGCTGCGACGCGGCATCGCACCGCTGCAGTGTGACCTGCGCCCGCTCGCTCACGTGCGGCCTGCACCGCTGCGAGGAGTTCTGCCACACCGGCCACTGCCCGCCCTGCCCGCGACTCAgtttcgACGAGCTCCGCTGCGAATGCGGCGCGTCCGTGCTGCTGCCCCCCGTGGCGTGCGGGGCCCGCGCGCCCCCCTGCGACGGGCCCTGCCCCCGCGCGCGCCCCTGCAGCCACCCCCCGCACCACTCGTGCCACTCCGGCGAGTGTCCCCCCTGCGTCGTGCTCACCACCAAGAAGTGCTATGGAGGACATGAGGAGAGAAAGACCATACCGTGTTCGTTAGAAGAGTTCTCCTGCGGTCTACCGTGCGGGAAGCCGCTACCTTGCGGGAAACACAACTGCATCAAGACCTGCCACAAAGGACCTTGTGATACTGGGAAATGCACCCAGCCGTGTACAGAGAAACGCCCCGCCTGCGGTCACCCTTGCAGCGCTCAGTGCCACGCCCCTCGCGCGtgccccgccgccgcgccgtgCCGCGCCGCCGTGCGCGCCGCCTGCCCCtgcggccgccgcgccgcgccgcgcccctgCCACGAGAACAGCAAGGACCTGGCCAGAATAATGAGTGCCTTAGCTGTGACTAAGATGCAAGAAGGAGGTGCTATTGAAATCACGGAGCAACGCCCTGCAAACATGCTAAAGACTTTGGAGTGTGACGACGAGTGCCGTGTGGAGGCCCGCACGCGCCAGATGGCGCTGGCGCTGCAGATCCGCAACCCCGACGTGTCGGCCAAACTGGCGCCGCGCTACAGCGACCACGTGCGCGCCACCGCACAACGCGAGCCCGCCTTCGCGCAGCAGATACACGACAAACTGACGGACCTCGTGCAACTCGCTAAGAAGTCGAAACAGAAGACGCGCGCGCATTCGTTCCCGTCCATGAACTGGCAGAAGCGGCAGTTCATACACGAGCTGTGCGAACACTTCGGCTGCGAGAGCGTGGCCTACGACGCGGAGCCCAATCGGAACGTCGTCGCTACCGCTGATAAGGAAAAGTCATGGTTGCCCGCGATGAGCGTGCTGGAGGTGCTGGGGCGCGAGGCGGGCAAGCGGCGCGTGCCCGGGCCCGTGCTGCGCGCGCCCGCACagcccgccgccgcgcccgacgCCGCCAAATCTGGAAGCGGCTGGGCCACACTCACCTCTTCGAAGACCAACGCATGGGCCGCTCGCAGCCAGACTCAAGCCAAACCTGAACCGAAGCCCGAACCGAAAATAGACTACTTCGACAACCCTCCCGATAACTGA
Protein Sequence
MSQWNNSYAYNNQYQQDSNGWNGDPANQYANHAYYSRPDANGQYVSFNEFLTQMQNSNVAAPSNTGSFNNAQYDNYTTGQYNYQNMPSSSQTQLDYNYGSSGGSNEASAYPQKKFNATSSNQNTYSASAPFKSNLTATAVEFVPKSSFPNPSGSQNIPESSNSYKDVSDGANETQSKHGSSSDRNWRHRPQKSSDTNDQKPVSNMQQDSQKSYGRNRDNLQRNYENNGRNNKKEDYSTESNTTSNETNGRSQEYQSHEASNVNREPRQKNYDSSRNQETRRNQDSRQSERNQEPRNRNNNDRGQDTKRNNDSNSRNRDSANFDSNDRGQESRDDSNRYEPRNERRNQSKGNPRTKANKDDRTFYNSGVSKDSQDSRGRGEDSGRTDDKSRDSNGWSENQQRDNHRREARDSYNSRDNYGREGRSDGSGRVQRNWAGTQRTRGDRRENDEQFANTYSQKEERDRTDWSYDRGERDKGYDRDRYDKSERERGYDRDRYDKPDRERGYDRDRYDRQDKQKNSPARFKSKQQTDCANKEMTQRERLTEQLDKGTLECLVCCDRVRQTDPVWSCSNCFHVLHLRCIRKWAMSSVIEGKWRCPACQNTSKAIPTEYRCMCGAIRSPDYQRGSVAHTCGKSCKRERTCVHPCTLLCHPGPCPPCQATVNKQCGCGAETRSILCSSKLAQVCGRTCNRTLSCRVHTCGKECHEGGCDDCGNTVTQVCYCPAATERTVACTAETGSVSQWQCGRGCGRILTCGAHVCRAECHAPPCPSCALLPSAIASCPCGKMQLDKKARKACTDPIPLCGNICAKPLSCGPSGDKHFCKLVCHEGPCPVCPDSTLVQCRCGHSSRDVPCADLPEMLNNVLCQKKCNKKLSCGRHRCRATCCDAASHRCSVTCARSLTCGLHRCEEFCHTGHCPPCPRLSFDELRCECGASVLLPPVACGARAPPCDGPCPRARPCSHPPHHSCHSGECPPCVVLTTKKCYGGHEERKTIPCSLEEFSCGLPCGKPLPCGKHNCIKTCHKGPCDTGKCTQPCTEKRPACGHPCSAQCHAPRACPAAAPCRAAVRAACPCGRRAAPRPCHENSKDLARIMSALAVTKMQEGGAIEITEQRPANMLKTLECDDECRVEARTRQMALALQIRNPDVSAKLAPRYSDHVRATAQREPAFAQQIHDKLTDLVQLAKKSKQKTRAHSFPSMNWQKRQFIHELCEHFGCESVAYDAEPNRNVVATADKEKSWLPAMSVLEVLGREAGKRRVPGPVLRAPAQPAAAPDAAKSGSGWATLTSSKTNAWAARSQTQAKPEPKPEPKIDYFDNPPDN

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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