Cannon W, Austin S, Moore M, Buck M
AFRC-IPSR Nitrogen Fixation Laboratory, University of Sussex, Falmer, Brighton, UK.
Nucleic Acids Res. 1995 Feb 11;23(3):351-6. doi: 10.1093/nar/23.3.351.
The complexes forming between the alternative sigma factor protein sigma N (sigma 54), its holoenzyme and promoter DNA were analysed using the hydroxyl radical probe and by photochemical footprinting of bromouridine-substituted DNA. Close contacts between the promoter, sigma N and its holoenzyme appear to be restricted predominantly to one face of the DNA helix, extending from -31 to -5. They all appear attributable to sigma N and no extra close contacts from the core RNA polymerase subunits in the holoenzyme-promoter DNA complex were detected. We suggest that the apparent absence of close core RNA polymerase contacts in the region of the promoter DNA to be melted during open complex formation is important for maintaining the closed complex. Results of the hydroxyl radical footprinting imply that sigma N makes multiple DNA backbone contacts across and beyond the -12, -24 consensus promoter elements, and the photochemical footprints indicate that consensus thymidine residues contribute important major groove contacts to sigma N. Formation of the open complex is shown to involve a major structural transition in the DNA contacted by sigma N, establishing a direct role for sigma N in formation of the activated promoter complex.
利用羟基自由基探针并通过对溴尿苷取代的DNA进行光化学足迹分析,对替代σ因子蛋白σN(σ54)、其全酶与启动子DNA之间形成的复合物进行了分析。启动子、σN及其全酶之间的紧密接触似乎主要局限于DNA螺旋的一个面,从-31延伸至-5。它们似乎都归因于σN,在全酶-启动子DNA复合物中未检测到核心RNA聚合酶亚基的额外紧密接触。我们认为,在开放复合物形成过程中,启动子DNA待解链区域明显缺乏核心RNA聚合酶的紧密接触对于维持封闭复合物很重要。羟基自由基足迹分析结果表明,σN在-12、-24共有启动子元件及其两侧与多个DNA主链接触,光化学足迹表明共有胸腺嘧啶残基对σN形成重要的大沟接触。开放复合物的形成显示涉及σN接触的DNA中的主要结构转变,确立了σN在活化启动子复合物形成中的直接作用。