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DRT1 encodes a TBP- (TATA box-binding protein) associated phosphoprotein that represses both basal and activated levels of transcription.
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Knockdown of DR1 (show DR1 Antibodies) resulted in reductions of viral RNA and protein production, demonstrating that DR1 (show DR1 Antibodies) acts as a positive host factor in influenza A virus replication.
The physiological functions of human Dr1 include regulation of polymerase III transcription.
NC2 (show GTF2H5 Antibodies) controls TBP (show TBP Antibodies) binding and maintenance on DNA that is largely independent of a canonical TATA sequence
the initiator core promoter element antagonizes repression of TATA-directed transcription by negative cofactor NC2 (show GTF2H5 Antibodies)
Data show that NC2beta (show DR1 Antibodies) is specifically involved in neuroblastoma (show ARHGEF16 Antibodies) pathogenesis and may be considered a new neuroblastoma (show ARHGEF16 Antibodies) biomarker.
ATAC Is a GCN5/PCAF-containing acetylase complex with a novel NC2-like histone fold module that interacts with the TATA-binding protein
heterodimerization with NC2alpha masks the nuclear localization signal in NC2beta (show DR1 Antibodies), which prevents nuclear export of the NC2 (show GTF2H5 Antibodies) complex
This gene encodes a TBP- (TATA box-binding protein) associated phosphoprotein that represses both basal and activated levels of transcription. The encoded protein is phosphorylated in vivo and this phosphorylation affects its interaction with TBP. This protein contains a histone fold motif at the amino terminus, a TBP-binding domain, and a glutamine- and alanine-rich region. The binding of DR1 repressor complexes to TBP-promoter complexes may establish a mechanism in which an altered DNA conformation, together with the formation of higher order complexes, inhibits the assembly of the preinitiation complex and controls the rate of RNA polymerase II transcription.
, TATA-binding protein-associated phosphoprotein
, negative cofactor 2-beta
, protein Dr1