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由辛德毕斯病毒nsP1中温度敏感突变引起的分子缺陷

Molecular defects caused by temperature-sensitive mutations in Semliki Forest virus nsP1.

作者信息

Lulla Valeria, Sawicki Dorothea L, Sawicki Stanley G, Lulla Aleksei, Merits Andres, Ahola Tero

机构信息

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

出版信息

J Virol. 2008 Sep;82(18):9236-44. doi: 10.1128/JVI.00711-08. Epub 2008 Jul 2.

Abstract

Alphavirus replicase protein nsP1 has multiple functions during viral RNA synthesis. It catalyzes methyltransferase and guanylyltransferase activities needed in viral mRNA capping, attaches the viral replication complex to cytoplasmic membranes, and is required for minus-strand RNA synthesis. Two temperature-sensitive (ts) mutations in Semliki Forest virus (SFV) were previously identified within nsP1: ts10 (E529D) and ts14 (D119N). Recombinant viruses containing these individual mutations reproduced the features of the original ts strains. We now find that the capping-associated enzymatic activities of recombinant nsP1, containing ts10 or ts14 lesions, were not ts. The mutant proteins and polyproteins also were membrane bound, mutant nsP1 interacted normally with the other nonstructural proteins, and there was no major defect in nonstructural polyprotein processing in the mutants, although ts14 surprisingly displayed slightly retarded processing. The two mutant viruses were specifically defective in minus-strand RNA synthesis at the restrictive temperature. Integrating data from SFV and Sindbis virus, we discuss the domain structure of nsP1 and the relative positioning of and interactions between the replicase proteins. nsP1 is suggested to contain a specific subdomain involved in minus-strand synthesis and interaction with the polymerase nsP4 and the protease nsP2.

摘要

甲病毒复制酶蛋白nsP1在病毒RNA合成过程中具有多种功能。它催化病毒mRNA加帽所需的甲基转移酶和鸟苷酸转移酶活性,将病毒复制复合体附着于细胞质膜,并且是负链RNA合成所必需的。先前在Semliki森林病毒(SFV)的nsP1内鉴定出两个温度敏感(ts)突变:ts10(E529D)和ts14(D119N)。含有这些单个突变的重组病毒重现了原始ts株的特征。我们现在发现,含有ts10或ts14损伤的重组nsP1的加帽相关酶活性不是温度敏感的。突变蛋白和多蛋白也与膜结合,突变的nsP1与其他非结构蛋白正常相互作用,并且突变体中非结构多蛋白加工没有重大缺陷,尽管ts14出人意料地显示出加工稍有延迟。这两种突变病毒在限制温度下负链RNA合成存在特异性缺陷。整合来自SFV和辛德毕斯病毒的数据,我们讨论了nsP1的结构域结构以及复制酶蛋白之间的相对定位和相互作用。有人提出nsP1包含一个特定的亚结构域,参与负链合成以及与聚合酶nsP4和蛋白酶nsP2的相互作用。

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