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DNA melting by RNA polymerase at the T7A1 promoter precedes the rate-limiting step at 37°C and results in the accumulation of an off-pathway intermediate

机译:RNA聚合酶在T7A1启动子处进行的DNA融解在37°C的限速步骤之前进行,并导致非通路中间体的积累

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摘要

The formation of a transcriptionally active complex by RNA polymerase involves a series of short-lived structural intermediates where protein conformational changes are coupled to DNA wrapping and melting. We have used time-resolved KMnO4 and hydroxyl-radical X-ray footprinting to directly probe conformational signatures of these complexes at the T7A1 promoter. Here we demonstrate that DNA melting from m12 to m4 precedes the rate-limiting step in the pathway and takes place prior to the formation of full downstream contacts. In addition, on the wild-type promoter, we can detect the accumulation of a stable off-pathway intermediate that results from the absence of sequence-specific contacts with the melted non-consensus –10 region. Finally, the comparison of the results obtained at 37°C with those at 20°C reveals significant differences in the structure of the intermediates resulting in a different pathway for the formation of a transcriptionally active complex.
机译:RNA聚合酶形成转录活性复合物的过程涉及一系列短暂的结构中间体,其中蛋白质构象变化与DNA包裹和解链偶联。我们已经使用时间分辨的KMnO4和羟基自由基X射线足迹来直接探测T7A1启动子上这些复合物的构象特征。在这里,我们证明从m12到m4的DNA熔解在该途径中的限速步骤之前,并在形成完整的下游接触之前发生。此外,在野生型启动子上,我们可以检测到稳定的非通路中间产物的积累,该中间产物的产生是由于没有与融化的非共识–10区的序列特异性接触。最后,将在37°C与20°C下获得的结果进行比较,发现中间体结构存在显着差异,从而导致形成转录活性复合物的途径不同。

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