Ross Wilma, Schneider David A, Paul Brian J, Mertens Aaron, Gourse Richard L
Department of Bacteriology, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.
Genes Dev. 2003 May 15;17(10):1293-307. doi: 10.1101/gad.1079403.
The C-terminal domain of the Escherichia coli RNA polymerase (RNAP) alpha subunit (alphaCTD) stimulates transcription initiation by interacting with upstream (UP) element DNA and a variety of transcription activators. Here we identify specific substitutions in region 4.2 of sigma 70 (sigma(70)) and in alphaCTD that decrease transcription initiation from promoters containing some, but not all, UP elements. This decrease in transcription derives from a decrease in the initial equilibrium constant for RNAP binding (K(B)). The open complexes formed by the mutant and wild-type RNAPs differ in DNAse I sensitivity at the junction of the alphaCTD and sigma DNA binding sites, correlating with the differences in transcription. A model of the DNA-alphaCTD-sigma region 4.2 ternary complex, constructed from the previously determined X-ray structures of the Thermus aquaticus sigma region 4.2-DNA complex and the E. coli alphaCTD-DNA complex, indicates that the residues identified by mutation in sigma region 4.2 and in alphaCTD are in very close proximity. Our results strongly suggest that alphaCTD, when bound to an UP element proximal subsite, contacts the RNAP sigma(70) subunit, increasing transcription. Previous data from the literature suggest that this same sigma-alphaCTD interaction also plays a role in transcription factor-mediated activation.
大肠杆菌RNA聚合酶(RNAP)α亚基的C末端结构域(αCTD)通过与上游(UP)元件DNA和多种转录激活因子相互作用来刺激转录起始。在此,我们鉴定了σ⁷⁰(σ(70))的4.2区域和αCTD中的特定取代,这些取代降低了含有部分但并非全部UP元件的启动子的转录起始。这种转录减少源于RNAP结合的初始平衡常数(K(B))的降低。突变型和野生型RNAP形成的开放复合物在αCTD和σ DNA结合位点交界处的DNA酶I敏感性方面存在差异,这与转录差异相关。根据先前确定的嗜热水生栖热菌σ 4.2区域 - DNA复合物和大肠杆菌αCTD - DNA复合物的X射线结构构建的DNA - αCTD - σ 4.2三元复合物模型表明,σ 4.2区域和αCTD中通过突变鉴定的残基非常接近。我们的结果强烈表明,αCTD与UP元件近端亚位点结合时,会与RNAP σ⁷⁰亚基接触,从而增加转录。文献中的先前数据表明,这种相同的σ - αCTD相互作用在转录因子介导的激活中也起作用。