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鉴定和分析蓝舌病病毒的一种新型非结构蛋白。

Identification and characterization of a novel non-structural protein of bluetongue virus.

机构信息

MRC-University of Glasgow Centre for Virus Research, Institute of Infection, Immunity and Inflammation, College of Medical, Veterinary and Life Sciences, University of Glasgow, Glasgow, United Kingdom.

出版信息

PLoS Pathog. 2011 Dec;7(12):e1002477. doi: 10.1371/journal.ppat.1002477. Epub 2011 Dec 29.

Abstract

Bluetongue virus (BTV) is the causative agent of a major disease of livestock (bluetongue). For over two decades, it has been widely accepted that the 10 segments of the dsRNA genome of BTV encode for 7 structural and 3 non-structural proteins. The non-structural proteins (NS1, NS2, NS3/NS3a) play different key roles during the viral replication cycle. In this study we show that BTV expresses a fourth non-structural protein (that we designated NS4) encoded by an open reading frame in segment 9 overlapping the open reading frame encoding VP6. NS4 is 77-79 amino acid residues in length and highly conserved among several BTV serotypes/strains. NS4 was expressed early post-infection and localized in the nucleoli of BTV infected cells. By reverse genetics, we showed that NS4 is dispensable for BTV replication in vitro, both in mammalian and insect cells, and does not affect viral virulence in murine models of bluetongue infection. Interestingly, NS4 conferred a replication advantage to BTV-8, but not to BTV-1, in cells in an interferon (IFN)-induced antiviral state. However, the BTV-1 NS4 conferred a replication advantage both to a BTV-8 reassortant containing the entire segment 9 of BTV-1 and to a BTV-8 mutant with the NS4 identical to the homologous BTV-1 protein. Collectively, this study suggests that NS4 plays an important role in virus-host interaction and is one of the mechanisms played, at least by BTV-8, to counteract the antiviral response of the host. In addition, the distinct nucleolar localization of NS4, being expressed by a virus that replicates exclusively in the cytoplasm, offers new avenues to investigate the multiple roles played by the nucleolus in the biology of the cell.

摘要

蓝舌病毒(BTV)是一种主要家畜疾病(蓝舌病)的病原体。二十多年来,人们普遍认为 BTV 的 10 个双链 RNA 基因组片段编码 7 种结构蛋白和 3 种非结构蛋白。非结构蛋白(NS1、NS2、NS3/NS3a)在病毒复制周期中发挥不同的关键作用。在这项研究中,我们表明 BTV 表达了一种第四个非结构蛋白(我们将其命名为 NS4),由第 9 节段的开放阅读框编码,该阅读框重叠编码 VP6 的开放阅读框。NS4 长 77-79 个氨基酸残基,在几种 BTV 血清型/毒株中高度保守。NS4 在感染后早期表达,并定位于 BTV 感染细胞的核仁中。通过反向遗传学,我们表明 NS4 在体外对于 BTV 的复制是可有可无的,无论是在哺乳动物细胞还是昆虫细胞中,并且在蓝舌病感染的鼠模型中不影响病毒的毒力。有趣的是,NS4 赋予 BTV-8 在干扰素(IFN)诱导的抗病毒状态下的细胞中复制优势,但对 BTV-1 没有影响。然而,BTV-1 的 NS4 既赋予了含有 BTV-1 整个第 9 节段的 BTV-8 重组体,也赋予了与同源 BTV-1 蛋白相同的 BTV-8 突变体复制优势。总的来说,这项研究表明 NS4 在病毒-宿主相互作用中发挥重要作用,是至少由 BTV-8 发挥的对抗宿主抗病毒反应的机制之一。此外,NS4 的独特核仁定位,由仅在细胞质中复制的病毒表达,为研究核仁在细胞生物学中的多种作用提供了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95b7/3248566/b4af8a02fd48/ppat.1002477.g001.jpg

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