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病毒聚合酶-解旋酶复合物调节复制保真度以克服细胞内核苷酸耗竭。

Viral Polymerase-Helicase Complexes Regulate Replication Fidelity To Overcome Intracellular Nucleotide Depletion.

作者信息

Stapleford Kenneth A, Rozen-Gagnon Kathryn, Das Pratyush Kumar, Saul Sirle, Poirier Enzo Z, Blanc Hervé, Vidalain Pierre-Olivier, Merits Andres, Vignuzzi Marco

机构信息

Institut Pasteur, Viral Populations and Pathogenesis Unit, Centre National de la Recherche Scientifique UMR 3569, Paris, France.

Institute of Technology, University of Tartu, Tartu, Estonia.

出版信息

J Virol. 2015 Nov;89(22):11233-44. doi: 10.1128/JVI.01553-15. Epub 2015 Aug 26.

Abstract

UNLABELLED

To date, the majority of work on RNA virus replication fidelity has focused on the viral RNA polymerase, while the potential role of other viral replicase proteins in this process is poorly understood. Previous studies used resistance to broad-spectrum RNA mutagens, such as ribavirin, to identify polymerases with increased fidelity that avoid misincorporation of such base analogues. We identified a novel variant in the alphavirus viral helicase/protease, nonstructural protein 2 (nsP2) that operates in concert with the viral polymerase nsP4 to further alter replication complex fidelity, a functional linkage that was conserved among the alphavirus genus. Purified chikungunya virus nsP2 presented delayed helicase activity of the high-fidelity enzyme, and yet purified replication complexes manifested stronger RNA polymerization kinetics. Because mutagenic nucleoside analogs such as ribavirin also affect intracellular nucleotide pools, we addressed the link between nucleotide depletion and replication fidelity by using purine and pyrimidine biosynthesis inhibitors. High-fidelity viruses were more resistant to these conditions, and viral growth could be rescued by the addition of exogenous nucleosides, suggesting that mutagenesis by base analogues requires nucleotide pool depletion. This study describes a novel function for nsP2, highlighting the role of other components of the replication complex in regulating viral replication fidelity, and suggests that viruses can alter their replication complex fidelity to overcome intracellular nucleotide-depleting conditions.

IMPORTANCE

Previous studies using the RNA mutagen ribavirin to select for drug-resistant variants have highlighted the essential role of the viral RNA-dependent RNA polymerase in regulating replication fidelity. However, the role of other viral replicase components in replication fidelity has not been studied in detail. We identified here an RNA mutagen-resistant variant of the nsP2 helicase/protease that conferred increased fidelity and yet could not operate in the same manner as high-fidelity polymerases. We show that the alphavirus helicase is a key component of the fidelity-regulating machinery. Our data show that the RNA mutagenic activity of compounds such as ribavirin is coupled to and potentiated by nucleotide depletion and that RNA viruses can fine-tune their replication fidelity when faced with an intracellular environment depleted of nucleotides.

摘要

未标记

迄今为止,关于RNA病毒复制保真度的大多数研究都集中在病毒RNA聚合酶上,而其他病毒复制酶蛋白在此过程中的潜在作用却知之甚少。以往的研究利用对广谱RNA诱变剂(如利巴韦林)的抗性来鉴定保真度提高、避免此类碱基类似物错误掺入的聚合酶。我们在甲病毒属病毒解旋酶/蛋白酶非结构蛋白2(nsP2)中鉴定出一种新变体,它与病毒聚合酶nsP4协同作用,进一步改变复制复合体的保真度,这种功能联系在甲病毒属中是保守的。纯化的基孔肯雅病毒nsP2表现出高保真酶解旋酶活性延迟,但纯化的复制复合体表现出更强的RNA聚合动力学。由于诸如利巴韦林等诱变核苷类似物也会影响细胞内核苷酸库,我们通过使用嘌呤和嘧啶生物合成抑制剂来研究核苷酸耗竭与复制保真度之间的联系。高保真病毒对这些条件更具抗性,添加外源性核苷可挽救病毒生长,这表明碱基类似物诱变需要核苷酸库耗竭。本研究描述了nsP2的一种新功能,突出了复制复合体其他组分在调节病毒复制保真度中的作用,并表明病毒可改变其复制复合体保真度以克服细胞内核苷酸耗竭的状况。

重要性

以往使用RNA诱变剂利巴韦林筛选耐药变体的研究突出了病毒RNA依赖性RNA聚合酶在调节复制保真度中的重要作用。然而,其他病毒复制酶组分在复制保真度中的作用尚未得到详细研究。我们在此鉴定出nsP2解旋酶/蛋白酶的一种抗RNA诱变剂变体,其赋予更高的保真度,但不能以与高保真聚合酶相同的方式发挥作用。我们表明甲病毒解旋酶是保真度调节机制的关键组分。我们的数据表明,诸如利巴韦林等化合物的RNA诱变活性与核苷酸耗竭相关联并因之增强,并且RNA病毒在面对细胞内核苷酸耗尽的环境时可微调其复制保真度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/191b/4645662/0dac26ecd21e/zjv9990909420001.jpg

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