Broyles S S, Li J, Moss B
Department of Biochemistry, Purdue University, West Lafayette, Indiana 47907.
J Biol Chem. 1991 Aug 15;266(23):15539-44.
Vaccinia virus RNA polymerase requires the heterodimeric protein, vaccinia early transcription factor (VETF), for transcription of early gene templates in vitro. We have analyzed the vaccinia growth factor promoter sequences interacting with VETF at the nucleotide level and provide evidence that the factor contacts the DNA at two separate sites. DNase I protection analysis showed that VETF was found to nucleotides -12 to -29 relative to the transcription initiation site, and also to nucleotides +8 to +10 downstream of the initiation site. The importance of both binding sites for stable complex formation was supported by methylation interference analysis. Using synthetic oligonucleotides encoding different parts of the vaccinia growth factor promoter, it was shown that nucleotides down-stream of the transcription initiation site are required for stable complex formation. Competition binding experiments demonstrated that only the upstream binding site contributes significantly to binding specificity. Binding to two separated DNA sequences results in a bend in the promoter DNA as demonstrated by electrophoretic mobility shift analysis of permuted DNA fragments. These findings suggest that VETF activates transcription by sequence specific binding and structural alteration of the promoter DNA helix.
痘苗病毒RNA聚合酶在体外转录早期基因模板时需要异二聚体蛋白——痘苗早期转录因子(VETF)。我们已在核苷酸水平分析了与VETF相互作用的痘苗生长因子启动子序列,并提供证据表明该因子在两个不同位点与DNA接触。DNase I保护分析表明,相对于转录起始位点,VETF在核苷酸-12至-29处被发现,同时在起始位点下游的核苷酸+8至+10处也被发现。甲基化干扰分析支持了两个结合位点对于稳定复合物形成的重要性。使用编码痘苗生长因子启动子不同部分的合成寡核苷酸,结果表明转录起始位点下游的核苷酸对于稳定复合物形成是必需的。竞争结合实验表明,只有上游结合位点对结合特异性有显著贡献。如经置换的DNA片段的电泳迁移率变动分析所示,与两个分开的DNA序列结合会导致启动子DNA弯曲。这些发现表明,VETF通过序列特异性结合和启动子DNA螺旋的结构改变来激活转录。