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呼吸道合胞病毒聚合酶以非模板化方式启动RNA复制的证据。

Evidence that the polymerase of respiratory syncytial virus initiates RNA replication in a nontemplated fashion.

作者信息

Noton Sarah L, Cowton Vanessa M, Zack Chadene R, McGivern David R, Fearns Rachel

机构信息

Division of Pathology and Neuroscience, University of Dundee Medical School, Dundee DD1 9SY, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2010 Jun 1;107(22):10226-31. doi: 10.1073/pnas.0913065107. Epub 2010 May 17.

Abstract

RNA virus polymerases must initiate replicative RNA synthesis with extremely high accuracy to maintain their genome termini and to avoid generating defective genomes. For the single-stranded negative-sense RNA viruses, it is not known how this accuracy is achieved. To investigate this question, mutations were introduced into the 3' terminal base of a respiratory syncytial virus (RSV) template, and the RNA products were examined to determine the impact of the mutation. To perform the assay, RNA replication was reconstituted using a modified minireplicon system in which replication was limited to a single step. Importantly, this system allowed analysis of RSV RNA generated intracellularly, but from a defined template that was not subject to selection by replication. Sequence analysis of RNA products generated from templates containing 1U-C and 1U-A substitutions showed that, in both cases, replication products were initiated with a nontemplated, WT A residue, rather than a templated G or U residue, indicating that the polymerase selects the terminal NTP independently of the template. Examination of a template in which the position 1 nucleotide was deleted supported these findings. This mutant directed efficient replication at approximately 60% of WT levels, and its product was found to be initiated at the WT position (-1 relative to the template) with a WT A residue. These findings show that the RSV replicase selects ATP and initiates at the correct position, independently of the first nucleotide of the template, suggesting a mechanism by which highly accurate replication initiation is achieved.

摘要

RNA病毒聚合酶必须以极高的准确性启动复制性RNA合成,以维持其基因组末端并避免产生有缺陷的基因组。对于单链负义RNA病毒,尚不清楚如何实现这种准确性。为了研究这个问题,将突变引入呼吸道合胞病毒(RSV)模板的3'末端碱基,并检查RNA产物以确定突变的影响。为了进行该测定,使用改良的微型复制子系统重建RNA复制,其中复制限于单个步骤。重要的是,该系统允许分析细胞内产生的RSV RNA,但来自未经过复制选择的确定模板。对含有1U-C和1U-A替代的模板产生的RNA产物的序列分析表明,在这两种情况下,复制产物均以非模板化的野生型A残基起始,而不是模板化的G或U残基,这表明聚合酶独立于模板选择末端NTP。对其中1位核苷酸缺失的模板的检查支持了这些发现。该突变体以约60%的野生型水平指导高效复制,并且发现其产物在野生型位置(相对于模板为-1)以野生型A残基起始。这些发现表明,RSV复制酶独立于模板的第一个核苷酸选择ATP并在正确的位置起始,这提示了一种实现高度准确复制起始的机制。

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