Basic Information

Gene Symbol
Btbd7
Assembly
GCA_963855885.1
Location
OY979654.1:239213-264524[+]

Transcription Factor Domain

TF Family
BTB
Domain
zf-C2H2|ZBTB
PFAM
PF00651
TF Group
Zinc-Coordinating Group
Description
The BTB (for BR-C, ttk and bab) [6] or POZ (for Pox virus and Zinc finger) [1] domain is present near the N-terminus of a fraction of zinc finger (Pfam:PF00096) proteins and in proteins that contain the Pfam:PF01344 motif such as Kelch and a family of pox virus proteins. The BTB/POZ domain mediates homomeric dimerisation and in some instances heteromeric dimerisation [1]. The structure of the dimerised PLZF BTB/POZ domain has been solved and consists of a tightly intertwined homodimer. The central scaffolding of the protein is made up of a cluster of alpha-helices flanked by short beta-sheets at both the top and bottom of the molecule [2]. POZ domains from several zinc finger proteins have been shown to mediate transcriptional repression and to interact with components of histone deacetylase co-repressor complexes including N-CoR and SMRT [5, 3, 4]. The POZ or BTB domain is also known as BR-C/Ttk or ZiN.
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 14 5.6e-07 0.00022 22.0 0.0 9 43 141 174 133 203 0.89
2 14 0.0046 1.8 9.4 0.0 20 42 305 327 276 335 0.77
3 14 0.0064 2.5 9.0 0.1 21 42 452 473 427 481 0.88
4 14 0.0039 1.5 9.7 0.1 21 40 548 567 523 570 0.91
5 14 0.0074 2.9 8.7 0.4 22 44 568 590 566 604 0.82
6 14 0.0086 3.3 8.5 0.2 21 42 617 638 612 646 0.86
7 14 0.0011 0.41 11.5 0.1 21 48 765 793 738 800 0.85
8 14 0.0081 3.1 8.6 0.2 21 42 813 834 809 842 0.85
9 14 0.0038 1.5 9.7 0.1 21 44 959 982 932 996 0.84
10 14 0.0068 2.6 8.9 0.1 21 42 1009 1030 985 1038 0.88
11 14 0.0041 1.6 9.6 0.2 21 44 1109 1132 1082 1143 0.84
12 14 0.0041 1.6 9.6 0.2 21 44 1159 1182 1132 1196 0.84
13 14 2.1e-05 0.0083 16.9 0.0 21 79 1209 1269 1205 1281 0.80
14 14 3.5 1.4e+03 0.1 0.0 81 105 1303 1327 1296 1331 0.85

Sequence Information

Coding Sequence
ATGAGCCGGCTGCTCTGCTGCCTGCGCGCGCGACCCAGCGACATGGGCGCCGCGCTCTCGCACCCCCAGGAGGGCGACGCGTGTGACGGCGGGCTGGCCGTCGCGCCGCCTTCGCCGCCCACCATGGCCGACGTCATACGGGAGCGCAAGAAGAAGGCGGGCGGCGCAGCGCTCGGCACGCTCCGCCGACGTCTCGCAGCCGCCGCGCGGCGTCCGCGCGACGCGCGCCCCGACAGAGgcTGCGAGCACGCGCGCTTCATCCGCTCGGTGGTGTCGTCGTGGCGGCTGGCGGAGGTGTTCCTGCTGTGCGAGGAGCTGGAGGCGGGCGCCGCGCTGCGCGACCTCGCCACGCAGGCCGAGCTGGCGCGCGAGCCGGCGCCCGCGCTGCACGCGGACCTGGCCGCGCTCTACCGCGACCGCTGGTGGTGCGACGTGGAGGTGGTGGGCGCGGGCTGGTCGCTGCCAGCGCATCGCGTGATCCTCGCGGCGCGATGCACCTACTTCCGCGACCTCCTGCAGAGATACCCCAATTGTGTCCGGGTGCCTCTGGAGGGCGCGGGGGGGTCTCTGTCGCGGGTCGAAGCCGACGCAGTGCTGCTTACGCTGTACGCAGGTTCGGCCGCGCCACGCTTAGTGACTTGCGACTCTTGCGCCGGCTGGGAGAGAGGCCTGAACACGGACGCAGAGCTGGACATCATCAGCGTCGAAAACTCCACGCTGCGGCGCGGCTGCTCGTGCGGCGTGGCGGGGCGCGTGGACGCGGCGCGGCTGCGGCGGCTGGGCGACGTGCTGGGCTTCTGCGTGGACGGCCTGCACCGGGACATGCGCTATCTGCTGGACTCCGGTGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCCGCGCGCTCCCGGTTCTTCaggtatctctctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCCGCGCGCTCCCGGTTCTTCaggtatctctctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCAGGTATCTCTCTCTCTCACTGCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCaggtatctctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCAGGTATCTCTCTCTCTCACTGCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCCGCGCGCTCCCGGTTCTTCagCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCaggtatctctctctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCaggtatctctctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCaggtatctctctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCaggtatctctctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCaggtatctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCaggtatctctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCaggtatctctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCaggtatctctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCaggtatctctctctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCaggtatctctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCaggtatctctctctctctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCaggtatctctctctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCaggtatctctctctctctctctctcactgCGAGATGTGCGACGCGCGGCTGTCGTGGGCGgagggcgcggcggccgcgtcgTACGGGTTCCGCAGCGCCATGGAGCTGCCGTGCCACCGCCTGCTGCTCGCTGCGCGCTCCCGGTTCTTCAGGAGCGTGATGTCGCGgcgctgcggcgcgggcgcgggcgcgggcgccgtGTGCGTGGACGAGAAGGTGCTGCCGCGGCGgttcgcgcgcgcgctgctgcacgCCGCCTACACCGACCAGGTGGACCTGACCCTCATCAGCCGGAGCTCCTCGCCATCTTCCACCATTagcgccggcggcggcggcacgtTGCGTGGCGGCAGCGGGCGCGGCTCTTCGGCGGCCATGTTGGACGACGCCTTCCAGCTGTACGAGATCGCGAGGTTCCTCGAGATGCCGATAGTGGCGCAGGGCTGCGAGGACGCGGCCGCCAGGGCTCTGTCCGCGGACACGCTGCCGCGGGTGCTCCGCTGGGCCTCCGCGCCGCACGCCAGCGCCTGGCTGCACCGGTATGATGTGCAGGTTCAGATGCCGATAGTGGCGCAGGGCTGCGAGGACGCGGCCGCCAGGGCTCTGTCCGCGGACACGCTGCCGCGGGTGCTCCGCTGGGCCTCCGCGCCGCACGCCAGCGCCTGGCTGCACCGGTATGATGTGCAGGTTCAGATGCCGATAGTGGCGCAGGGCTGCGAGGACGCGGCCGCCAGGGCTCTGTCCGCGGACACGCTGCCGCGGGTGCTCCGCTGGGCCTCCGCGCCGCACGCCAGCGCCTGGCTGCACCGGTATGATGTGCAGGTTCAGATGCCGATAGTGGCGCAGGGCTGCGAGGACGCGGCCGCCAGGGCTCTGTCCGCGGACACGCTGCCGCGGGTGCTCCGCTGGGCCTCCGCGCCGCACGCCAGCGCCTGGCTGCACCGGTATGATGTGCAGGTTCAGATGCCGATAGTGGCGCAGGGCTGCGAGGACGCGGCCGCCAGGGCTCTGTCCGCGGACACGCTGCCGCGGGTGCTCCGCTGGGCCTCCGCGCCGCACGCCAGCGCCTGGCTGCACCGGTATGATGTGCAGGTTCAGATGCCGATAGTGGCGCAGGGCTGCGAGGACGCGGCCGCCAGGGCTCTGTCCGCGGACACGCTGCCGCGGGTGCTCCGCTGGGCCTCCGCGCCGCACGCCAGCGCCTGGCTGCACCGGTATGATGTGCAGGTTCAGATGCCGATAGTGGCGCAGGGCTGCGAGGACGCGGCCGCCAGGGCTCTGTCCGCGGACACGCTGCCGCGGGTGCTCCGCTGGGCCTCCGCGCCGCACGCTAGCGCCTGGCTGCACCGGCAGGCGATGCGCTTCCTGCGCGACGAGTTCCCGGCGATCATGAGCTCGGCGGCGGGAGCGCGCCTGCcccgcgcgccgctcgccgccgcgctcgcgtcGCCGTTCCTGCAGGCCAGCGAGGCGCAGGCGCTGCGCGGCGTGCTGCGCTGGGCCGAGCGcgccgcgcagccgccgcagcagccgccgcccgcAGGTCAGCACCCGCTGTAG
Protein Sequence
MSRLLCCLRARPSDMGAALSHPQEGDACDGGLAVAPPSPPTMADVIRERKKKAGGAALGTLRRRLAAAARRPRDARPDRGCEHARFIRSVVSSWRLAEVFLLCEELEAGAALRDLATQAELAREPAPALHADLAALYRDRWWCDVEVVGAGWSLPAHRVILAARCTYFRDLLQRYPNCVRVPLEGAGGSLSRVEADAVLLTLYAGSAAPRLVTCDSCAGWERGLNTDAELDIISVENSTLRRGCSCGVAGRVDAARLRRLGDVLGFCVDGLHRDMRYLLDSGEMCDARLSWAEGAAAASYGFRSAMELPCHRLLLAARSRFFRYLSLSLSLRDVRRAAVVGGGRGGRVVRVPQRHGAAVPPPAARRALPVLQVSLSLSLTARCATRGCRGRRARRPRRTGSAAPWSCRATACCSLRAPGSSGISLSHCEMCDARLSWAEGAAAASYGFRSAMELPCHRLLLAARSRFFRYLSLSLTARCATRGCRGRRARRPRRTGSAAPWSCRATACCSLRAPGSSGISLSHCEMCDARLSWAEGAAAASYGFRSAMELPCHRLLLAARSRFFSAMELPCHRLLLAARSRFFRYLSLSLSHCEMCDARLSWAEGAAAASYGFRSAMELPCHRLLLAARSRFFRYLSLSLSLRDVRRAAVVGGGRGGRVVRVPQRHGAAVPPPAARCALPVLQVSLSLSLTARCATRGCRGRRARRPRRTGSAAPWSCRATACCSLRAPGSSGISLSLSHCEMCDARLSWAEGAAAASYGFRSAMELPCHRLLLAARSRFFRYLSLSHCEMCDARLSWAEGAAAASYGFRSAMELPCHRLLLAARSRFFRYLSLSLTARCATRGCRGRRARRPRRTGSAAPWSCRATACCSLRAPGSSGISLSLSLRDVRRAAVVGGGRGGRVVRVPQRHGAAVPPPAARCALPVLQVSLSLSHCEMCDARLSWAEGAAAASYGFRSAMELPCHRLLLAARSRFFRYLSLSLSHCEMCDARLSWAEGAAAASYGFRSAMELPCHRLLLAARSRFFRYLSLSLTARCATRGCRGRRARRPRRTGSAAPWSCRATACCSLRAPGSSGISLSLSLSHCEMCDARLSWAEGAAAASYGFRSAMELPCHRLLLAARSRFFRYLSLSLSHCEMCDARLSWAEGAAAASYGFRSAMELPCHRLLLAARSRFFRYLSLSLSHCEMCDARLSWAEGAAAASYGFRSAMELPCHRLLLAARSRFFRSVMSRRCGAGAGAGAVCVDEKVLPRRFARALLHAAYTDQVDLTLISRSSSPSSTISAGGGGTLRGGSGRGSSAAMLDDAFQLYEIARFLEMPIVAQGCEDAAARALSADTLPRVLRWASAPHASAWLHRYDVQVQMPIVAQGCEDAAARALSADTLPRVLRWASAPHASAWLHRYDVQVQMPIVAQGCEDAAARALSADTLPRVLRWASAPHASAWLHRYDVQVQMPIVAQGCEDAAARALSADTLPRVLRWASAPHASAWLHRYDVQVQMPIVAQGCEDAAARALSADTLPRVLRWASAPHASAWLHRYDVQVQMPIVAQGCEDAAARALSADTLPRVLRWASAPHASAWLHRYDVQVQMPIVAQGCEDAAARALSADTLPRVLRWASAPHASAWLHRQAMRFLRDEFPAIMSSAAGARLPRAPLAAALASPFLQASEAQALRGVLRWAERAAQPPQQPPPAGQHPL

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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