首页> 美国卫生研究院文献>Journal of Virology >Overproduction of Double-Stranded RNA in Vesicular Stomatitis Virus-Infected Cells Activates a Constitutive Cell-Type-Specific Antiviral Response
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Overproduction of Double-Stranded RNA in Vesicular Stomatitis Virus-Infected Cells Activates a Constitutive Cell-Type-Specific Antiviral Response

机译:水泡性口腔炎病毒感染的细胞中双链RNA的过量生产激活了组成型细胞类型特异性抗病毒反应。

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摘要

In a companion paper (D. Ostertag, T. M. Hoblitzell-Ostertag, and J. Perrault, J. Virol. 81:492-502, 2007), we provided indirect evidence that cell-type-specific growth restriction of the vesicular stomatitis virus (VSV) polR mutants may be due to enhanced production of double-stranded RNA (dsRNA). We show here that polR growth in mouse L-929 cells was rescued by vaccinia virus coinfection and that sole expression of the vaccinia virus dsRNA-binding E3L protein, via coinfection with an engineered VSV minigenome, also restored polR growth. Expression of dsRNA-binding protein NS1A or NS1B from influenza virus, but not C protein from Sendai virus, which does not bind dsRNA, likewise effected polR rescue. The N-terminal dsRNA-binding domain of NS1A, only 73 amino acids in length, but not a full-size mutant NS1A lacking dsRNA-binding activity, restored polR growth. Both key aspects of polR growth restriction, namely inhibition of genome replication and release of low-infectivity virus particles, were countered by expression of the dsRNA-binding proteins. We tested the effects of overproducing dsRNA in wild-type VSV infections by coinfecting cells with a VSV recombinant expressing the sense strand of the enhanced green fluorescent protein gene (VSV-GFP) and one expressing the antisense strand (VSV-PFG). These coinfections mimicked all aspects of polR restriction, including host range, lack of effect on transcription, reduced virus particle infectivity, and insensitivity to inhibition of host gene transcription or dsRNA-activated protein kinase activity. We conclude that, for some cell types, overproduction of dsRNA during VSV infection triggers an immediate and constitutive host cell antiviral effector response independent of interferon induction or signaling.
机译:在随附的论文中(D. Ostertag,TM Hoblitzell-Ostertag和J. Perrault,J。Virol。81:492-502,2007),我们间接提供了水泡性口炎病毒的细胞类型特异性生长限制( VSV)polR突变可能归因于双链RNA(dsRNA)产量的增加。我们在这里显示通过痘苗病毒共感染挽救了小鼠L-929细胞中的polR生长,并且通过与工程VSV微型基因组共感染的痘苗病毒dsRNA结合E3L蛋白的唯一表达也恢复了polR生长。来自流感病毒的dsRNA结合蛋白NS1A或NS1B的表达,但不结合dsRNA的仙台病毒的C蛋白的表达,同样也影响了polR的拯救。 NS1A的N端dsRNA结合域长度仅为73个氨基酸,但缺少dsRNA结合活性的全尺寸突变NS1A却恢复了polR的生长。 dsRNA结合蛋白的表达可以抵消polR生长限制的两个关键方面,即抑制基因组复制和释放低感染性病毒颗粒。我们通过用表达增强型绿色荧光蛋白基因的有义链(VSV-GFP)和表达反义链(VSV-PFG)的VSV重组体共感染细胞,测试了野生型VSV感染中过量产生dsRNA的影响。这些共同感染模仿了polR限制的所有方面,包括宿主范围,对转录的影响不足,病毒颗粒感染性降低以及对抑制宿主基因转录或dsRNA激活的蛋白激酶活性不敏感。我们得出的结论是,对于某些细胞类型,VSV感染期间dsRNA的过度产生会触发立即且组成性的宿主细胞抗病毒效应反应,而与干扰素的诱导或信号传导无关。

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