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Lineage-specific variations in the trigger loop modulate RNA proofreading by bacterial RNA polymerases

机译:触发回路的谱系特定变体调制细菌RNA聚合酶的RNA校对

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RNA cleavage by bacterial RNA polymerase (RNAP) has been implicated in transcriptional proofreading and reactivation of arrested transcription elongation complexes but its molecular mechanism is less understood than the mechanism of nucleotide addition, despite both reactions taking place in the same active site. RNAP from the radioresistant bacterium Deinococcus radiodurans is characterized by highly efficient intrinsic RNA cleavage in comparison with Escherichia coli RNAP. We find that the enhanced RNA cleavage activity largely derives from amino acid substitutions in the trigger loop (TL), a mobile element of the active site involved in various RNAP activities. The differences in RNA cleavage between these RNAPs disappear when the TL is deleted, or in the presence of GreA cleavage factors, which replace the TL in the active site. We propose that the TL substitutions modulate the RNA cleavage activity by altering the TL folding and its contacts with substrate RNA and that the resulting differences in transcriptional proofreading may play a role in bacterial stress adaptation.
机译:通过细菌RNA聚合酶(RNAP)的RNA裂解已经涉及被捕的转录伸长率复合物的转录校样和再活化,但其分子机制比核苷酸添加的机制更低,尽管在同一活性位点中进行两种反应。来自辐射杀虫剂脱氏细菌的RNAP的特征在于与大肠杆菌RNAP相比,具有高效的内在RNA切割。我们发现增强的RNA裂解活性主要来自触发环(T1)中的氨基酸取代,其参与各种RNAP活动的活性部位的移动元件。当T1被删除或在Grea切割因子存在时,在替换活性位点中的TL的情况下,这些RNA切割之间的差异消失。我们提出通过改变与底物RNA的TL折叠及其接触来调节RNA裂解活性,并产生转录校对的差异可能在细菌应力适应中起作用。

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