Basic Information

Gene Symbol
-
Assembly
GCA_018231625.1
Location
DVQH01001765.1:1491-4871[-]

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 6 1.9e-15 3.4e-13 51.2 0.3 6 108 7 116 3 118 0.92
2 6 0.48 84 4.9 0.2 69 105 133 169 132 173 0.94
3 6 3.7 6.6e+02 2.0 0.1 74 108 444 478 417 480 0.89
4 6 1e-11 1.8e-09 39.3 1.6 20 109 587 679 578 680 0.90
5 6 0.37 65 5.3 0.1 71 108 697 734 696 736 0.91
6 6 6.1 1.1e+03 1.4 0.0 80 107 1062 1089 1020 1092 0.90

Sequence Information

Coding Sequence
ATGGCTTTGCAAACTTTGAATAACCCCAAAAGCTATGATCTTGTGGTTCGCTTTGCCGATACCAATCAGTGCTTCTACGTGAAACGAGATGAGTTGATGAGCAAATCAACATACTTTGAAGCATGGCTCTCGACCCGATGGATTTCATCTCCTGCGAATGAcagtaatagtaatagtaaaagTATCACCATCAAAGACTACGACTATGAAACGTTTGCGGCGTACTTTGAGTATCTTTACACTGGTCAAGTGGCGATCACTGACAGTCTCATTGAGTCCCTCTACAGCCTGGCACACTGTTACATCGAGCCTTCACTGATGACACTTTGTGAAGAGTACATCATGCAGAGGTTGAGTCAAGATATTGACTACTTTGCAACATTCTCGCCCGATCATAGATTTCTCTATTCACTTGCTGTGCAGATCAATGTTGCCAACTTGTACTATCTACTCCGGGCGTCTTTCAAGTTTCACGAGCAATGTCTCTATGAGCGATGCCAGAAGTTTGGACTGCAATTGATCAACACGGAAAATATGTCAAATGCTTACAAGGAGTCACACTGCTACTTCAGCAAGGAATTGCATCTTTGTTACGAGGAGTGGACCAAGAAAACCGCGGTTACGGTGGAAAACTGCTCCAATCTACTCGAGCTGGCCAGCGAGATGAACTTGATTGAGGTGGAGTATCGAGTGGAGTTCTTCATTCTACTCCAACTCACACGTGCCTCAGCCTCTGTGGAGAAAAAATTCAATGTCGATCATCTCCAACTATATCTCAAACTGACTCTCAAGCATGACTTGATATCCGTTTACGATGAACTAAGCGAGTTAATGTATTCGTGGTTTTGGACCTATGGAGCGAATAATTATCGTAATCTTGTGAAACCTGTCGAAATTTGGGCCATTCTGAAACAGTTCTACGAGATTGCGCTGGATTATAGCTCAGCAAGTGATCGATTTACCCAAATGATCGAATTGTGGGTTTTGTTTTGCCTTCGAGGTGGAGTGTTGGGAGAGGATTCGCCCATTCACGAGTGGTACTCCGAGCTGGTCACCTACGAACGTGGCCAAATGCGCAGTGTATTTGAAGAGAGATTGCTGGATGATCAAAgaccaacatttttgttcatCGATCTCGCCAAAGTGTGCCGCATGGCTCACCAACACGGAAGACTGAACAAGTGTGCTCAGTTCAGGCGGAATCTGAAGAAACACTTGCTCAAATGTGACTTTGAAGATGATGCCCTCGACGGGCAAAATTGCGACGTGCAATTTGTACTTAAACTGAGTGTAGACAATGAAATGAGAAAACTCGAGTCGTTACTTGTTAGCAAGTTGGAGTTAGATTCAACTACTTTGGACTCTTTGTACAATCTGGCTCAATACAGTGGCAGTGCTCATCTCAAGAATGAGTGCAACAACTTTATTCTAAACAAATTTGGCAGTAATACCAAATGGAACGAAATTTTATGGCTATACTCAGTGGCAACCGACTATGCCGAACTTGGCTTTGTCACTCAGCTTCAAAACTTAATTTGTCACGATTTTCGTTGCCGTCCAAGCGAGTGGAACCGAGTGGTACGTGGTTATGAAAAGGAACGCTTTAACCATCTGATCAGAGGCGAGTTAGTGCAATTTGGAGTGATCAGCATAATTTCGATTCAAAAAATTGGCCAACTTTGCGCCAGTGCCATACAGCAGTTGTGCAAGCCACTGAATCCGTCTTCGGATAATCTTGTGTTTCGTTTTGTCGATTCCAAGCGGTGTCTCTTCGCAAACCGAGATGAATTGGCAAGCAAATCGTTGTActtcaaaatgaaatttgcAAAACGATGGAATGAGTTTTCGAATAAGAGTAACTGCGTCATGATTACTATTAGTGACTATGACTACTATACCTTTGCGGCATACCTCGAATTTCTACACTCATGTTCGGTGAGCATCAATGATGATCTGATTGAGTCACTGTACAGTCTGGCCAAGTGCTATCTCGAGTCCTCACTAGTGGATCGTTGTGAGCGGTACATTGAGGAGCAGTTGAGAAaaaacatagactactttGTAACTTGTTCTCCCAAGCATCGAGATCTTTACTCAAGTTCGGTGCAAATCAGTGTCACCAATCTAAAGCTTCTCTACCATGCATCATCCGTCTTTCATGATGAAAATCTGTATGAGCGGTGTGAGGAGTTCACATTGCAACAGTTCGACACCGACAACATAGCTACTGCATACTTGGAGTCGCATTGTCACTTTAGTGAGAAGTTAAAACATGGTTTCGAGCAATGGATTAAGCAAACGGTGCCTAGTATGCAAAACTGTGCCAATTTGCTTGCGTTGGCCATCGAGATGAACATCAACGATGTGGTGTTTCGAGTGGAGTTGTTCATTCTTCAACAACTGAGACAGCATTCCACGTTACACGCAGAATGGATCGATTTTTCCTATCTTGCACTGTTTCTAAAGCTAACCCTGAAGCATAACTTGATTTCGGTTCACGAcgaattatacttttatattcgTTCGATGTGTTGCAAAGATGTACGCGACCAGCGAAGTAAGGTCGTTCGACCGCCTGCTGAAATTTGGTCCAAGTTGAGATTGCTCTACGAGATCGCTTTGGATTATGGTCCAAATCATGGGACGACATTCGCATGGCAAAGACTGGTCCATGACTGGGTGCTGAATCATATCCGATCTGGTGTTTGGCGAGAGGTTTCGTTGGTTCACGAATGGTATCGCGAGTTGGTCACCTACGAACGAGGCACCATACGTCGTGAGTTCGAAGTCACTCTACTTGGCATCGAGAGACGTCCCTTTTTGTTGCGTGATATTGGCCAGGTGTGTCGCATTGCTTACCAACATGGAAGACTGGAGAAGAGTGCTCATTTCCGGATCAACCTCGGGCAACACTTGCTTCAAGCCTTGTTCGAACCACTGGTCCTCGGAGCGCCGGATGATGAGAATGTCAAACTGGATGCACAGGATTCCAGTGTGGAGTATATGCTCAAACTATGCGTGGACTGTGAGATGACCGATATTGAGATAGTGCTGGTGCATCGATTGCAAATCGACTCGACCACCTTGGAATCGGCCTACAGTTTGGCACAACGTTGCGGCAGTTTGGTTCTTTCCAACCAATGTGACGGCTTCATCTTGAATCAGTTTGCCACCAGTCGAAACTGGCACGAGATGCATAAGCTCTTTTCGTTGGCCCACAAGTACACCACCAAAGCGTTTGTTGCCAAActtgaaaattcaattcatcGCGATTTGGATGAACGTCCAAACCAGTTGGAACCCTTGTCGATGCATCGCTTTCCTGGTAGACAATTTGGCTTAAGAAGGTTGAGGGAAATGTTTAGTGATATGCCTACTTAA
Protein Sequence
MALQTLNNPKSYDLVVRFADTNQCFYVKRDELMSKSTYFEAWLSTRWISSPANDSNSNSKSITIKDYDYETFAAYFEYLYTGQVAITDSLIESLYSLAHCYIEPSLMTLCEEYIMQRLSQDIDYFATFSPDHRFLYSLAVQINVANLYYLLRASFKFHEQCLYERCQKFGLQLINTENMSNAYKESHCYFSKELHLCYEEWTKKTAVTVENCSNLLELASEMNLIEVEYRVEFFILLQLTRASASVEKKFNVDHLQLYLKLTLKHDLISVYDELSELMYSWFWTYGANNYRNLVKPVEIWAILKQFYEIALDYSSASDRFTQMIELWVLFCLRGGVLGEDSPIHEWYSELVTYERGQMRSVFEERLLDDQRPTFLFIDLAKVCRMAHQHGRLNKCAQFRRNLKKHLLKCDFEDDALDGQNCDVQFVLKLSVDNEMRKLESLLVSKLELDSTTLDSLYNLAQYSGSAHLKNECNNFILNKFGSNTKWNEILWLYSVATDYAELGFVTQLQNLICHDFRCRPSEWNRVVRGYEKERFNHLIRGELVQFGVISIISIQKIGQLCASAIQQLCKPLNPSSDNLVFRFVDSKRCLFANRDELASKSLYFKMKFAKRWNEFSNKSNCVMITISDYDYYTFAAYLEFLHSCSVSINDDLIESLYSLAKCYLESSLVDRCERYIEEQLRKNIDYFVTCSPKHRDLYSSSVQISVTNLKLLYHASSVFHDENLYERCEEFTLQQFDTDNIATAYLESHCHFSEKLKHGFEQWIKQTVPSMQNCANLLALAIEMNINDVVFRVELFILQQLRQHSTLHAEWIDFSYLALFLKLTLKHNLISVHDELYFYIRSMCCKDVRDQRSKVVRPPAEIWSKLRLLYEIALDYGPNHGTTFAWQRLVHDWVLNHIRSGVWREVSLVHEWYRELVTYERGTIRREFEVTLLGIERRPFLLRDIGQVCRIAYQHGRLEKSAHFRINLGQHLLQALFEPLVLGAPDDENVKLDAQDSSVEYMLKLCVDCEMTDIEIVLVHRLQIDSTTLESAYSLAQRCGSLVLSNQCDGFILNQFATSRNWHEMHKLFSLAHKYTTKAFVAKLENSIHRDLDERPNQLEPLSMHRFPGRQFGLRRLREMFSDMPT

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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