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The transcription bubble of the RNA polymerase-promoter open complex exhibits conformational heterogeneity and millisecond-scale dynamics: Implications for transcription start-site selection

机译:RNA聚合酶-启动子开放复合体的转录气泡表现出构象异质性和毫秒级动力学:对转录起始位点选择的影响

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摘要

Bacterial transcription is initiated after RNA polymerase (RNAP) binds to promoter DNA, melts ~ 14 bp around the transcription start site and forms a single-stranded "transcription bubble" within a catalytically active RNAP-DNA open complex (RPo). There is significant flexibility in the transcription start site, which causes variable spacing between the promoter elements and the start site; this in turn causes differences in the length and sequence at the 5′ end of RNA transcripts and can be important for gene regulation. The start-site variability also implies the presence of some flexibility in the positioning of the DNA relative to the RNAP active site in RPo. The flexibility may occur in the positioning of the transcription bubble prior to RNA synthesis and may reflect bubble expansion ("scrunching") or bubble contraction ("unscrunching"). Here, we assess the presence of dynamic flexibility in RPo with single-molecule FRET (Förster resonance energy transfer). We obtain experimental evidence for dynamic flexibility in RPo using different FRET rulers and labeling positions. An analysis of FRET distributions of RP o using burst variance analysis reveals conformational fluctuations in RPo in the millisecond timescale. Further experiments using subsets of nucleotides and DNA mutations allowed us to reprogram the transcription start sites, in a way that can be described by repositioning of the single-stranded transcription bubble relative to the RNAP active site within RPo. Our study marks the first experimental observation of conformational dynamics in the transcription bubble of RPo and indicates that DNA dynamics within the bubble affect the search for transcription start sites. ©2013 Elsevier Ltd. All rights reserved.
机译:RNA聚合酶(RNAP)与启动子DNA结合后,细菌转录开始,在转录起始位点附近融化〜14 bp,并在具有催化活性的RNAP-DNA开放复合物(RPo)中形成单链“转录气泡”。转录起始位点具有很大的灵活性,这会导致启动子元件和起始位点之间的间距可变。反过来,这会导致RNA转录本5'端的长度和序列发生差异,这对于基因调控非常重要。起始位点的可变性还暗示在相对于RPo中的RNAP活性位点的DNA定位中存在一定的灵活性。柔性可以发生在RNA合成之前的转录气泡的定位中,并且可以反映气泡的膨胀(“收缩”)或气泡的收缩(“未收缩”)。在这里,我们评估了单分子FRET(福斯特共振能量转移)在RPo中动态柔韧性的存在。我们使用不同的FRET标尺和标签位置获得了RPo中动态灵活性的实验证据。使用猝发方差分析对RP o的FRET分布进行分析,揭示了RPo在毫秒时间内的构象波动。使用核苷酸和DNA突变子集的进一步实验使我们能够重新编程转录起始位点,其方式可以通过相对于RPo内的RNAP活性位点相对于单链转录泡重新定位来描述。我们的研究标志着RPo转录气泡中构象动力学的首次实验观察,并表明气泡中的DNA动力学影响转录起始位点的搜索。 ©2013 Elsevier Ltd.保留所有权利。

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