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一种在亚基因组mRNA合成方面存在缺陷的马动脉炎病毒复制酶突变体的特性分析。

Characterization of an equine arteritis virus replicase mutant defective in subgenomic mRNA synthesis.

作者信息

van Marle G, van Dinten L C, Spaan W J, Luytjes W, Snijder E J

机构信息

Department of Virology, Leiden University Medical Center, Leiden, The Netherlands.

出版信息

J Virol. 1999 Jul;73(7):5274-81. doi: 10.1128/JVI.73.7.5274-5281.1999.

Abstract

Equine arteritis virus (EAV) is a positive-stranded RNA virus that synthesizes a 5'- and 3'-coterminal nested set of six subgenomic mRNAs. These mRNAs all contain a common leader sequence which is derived from the 5' end of the genome. Subgenomic mRNA transcription and genome replication are directed by the viral replicase, which is expressed in the form of two polyproteins and subsequently processed into smaller nonstructural proteins (nsps). During the recent construction of an EAV infectious cDNA clone (pEAV030 [L. C. van Dinten, J. A. den Boon, A. L. M. Wassenaar, W. J. M. Spaan, and E. J. Snijder, Proc. Natl. Acad. Sci. USA 94:991-996, 1997]), a mutant cDNA clone (pEAV030F) which carries a single replicase point mutation was obtained. This substitution (Ser-2429-->Pro) is located in the nsp10 subunit and renders the EAV030F virus deficient in subgenomic mRNA synthesis. To obtain more insight into the role of nsp10 in transcription and the nature of the transcriptional defect, we have now analyzed the EAV030F mutant in considerable detail. The Ser-2429-->Pro mutation does not affect the proteolytic processing of the replicase but apparently affects the function of nsp10 in transcription. Furthermore, our study showed that EAV030F still produces subgenomic positive and negative strands, albeit at a very low level. Both subgenomic positive-strand synthesis and negative-strand synthesis are equally affected by the Ser-2429-->Pro mutation, suggesting that nsp10 plays an important role in an early step of EAV mRNA transcription.

摘要

马动脉炎病毒(EAV)是一种正链RNA病毒,它能合成一组5′和3′末端共有的六个亚基因组mRNA。这些mRNA都含有一个共同的前导序列,该序列源自基因组的5′端。亚基因组mRNA转录和基因组复制由病毒复制酶指导,该复制酶以两种多聚蛋白的形式表达,随后加工成较小的非结构蛋白(nsps)。在最近构建EAV感染性cDNA克隆(pEAV030 [L. C. van Dinten, J. A. den Boon, A. L. M. Wassenaar, W. J. M. Spaan, and E. J. Snijder, Proc. Natl. Acad. Sci. USA 94:991-996, 1997])时,获得了一个携带单个复制酶点突变的突变cDNA克隆(pEAV030F)。这种取代(Ser-2429→Pro)位于nsp10亚基中,使EAV030F病毒亚基因组mRNA合成存在缺陷。为了更深入了解nsp10在转录中的作用以及转录缺陷的本质,我们现在对EAV030F突变体进行了相当详细的分析。Ser-2429→Pro突变不影响复制酶的蛋白水解加工,但显然影响nsp10在转录中的功能。此外,我们的研究表明,EAV030F仍能产生亚基因组正链和负链,尽管水平非常低。亚基因组正链合成和负链合成均受到Ser-2429→Pro突变的同等影响,这表明nsp10在EAV mRNA转录的早期步骤中起重要作用。

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