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首页> 外文期刊>Journal of Molecular Biology >The Role of Pyrophosphorolysis in the Initiation-to-Elongation Transition by E. coli RNA Polymerase
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The Role of Pyrophosphorolysis in the Initiation-to-Elongation Transition by E. coli RNA Polymerase

机译:焦磷酸溶解在大肠杆菌RNA聚合酶的开始与伸长率过渡中的作用

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RNA polymerase can cleave a phosphodiester bond at the 3' end of a nascent RNA in the presence of pyrophosphate producing NTP. Pyrophosphorolysis has been characterized during elongation steps of transcription where its rate is significantly slower than the forward rate of NMP addition. In contrast, we report here that pyrophosphorolysis can occur in a millisecond time scale during the transition of Escherichia coli RNA polymerase from initiation to elongation at the psbA2 promoter. This rapid pyrophosphorolysis occurs during productive RNA synthesis as opposed to abortive RNA synthesis. Dissociation of a 1 or RNA extension beyond nine nucleotides dramatically reduces the rate of pyrophosphorolysis. We argue that the rapid pyrophosphorolysis allows iterative cycles of cleavage and re-synthesis of the 3' phosphodiester bond by the productive complexes in the early stage of transcription. This iterative process may provide an opportunity for the sigma(70) to dissociate from the RNA exit channel of the enzyme, enabling RNA to extend through the channel. (C) 2019 Elsevier Ltd. All rights reserved.
机译:RNA聚合酶可以在焦磷酸盐的产生NTP存在下切割磷酸酯键在新生RNA的3'末端。在转录的伸长步骤期间,纤维磷溶解的特征在于其速率明显慢于NMP添加的前向速率。相反,我们在此报告,在大肠杆菌RNA聚合酶转变期间可以在毫秒速度下以毫秒的时间刻度发生焦磷酰基聚合酶从PSBA2启动子的伸长率。在生产RNA合成期间发生这种快速的焦磷酸溶解,而不是流动的RNA合成。超过九个核苷酸的1或RNA延伸的解离显着降低了焦磷酸溶解的速率。我们认为快速的焦磷酸溶解允许通过转录早期阶段的生产络合物进行迭代循环并重新合成3'磷酸二酯键。该迭代过程可以为Sigma(70)解离酶的RNA出口通道的机会,使RNA能够延伸穿过通道。 (c)2019 Elsevier Ltd.保留所有权利。

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