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首页> 外文期刊>Virology >Formation of the factory matrix is an important, though not a sufficient function of nonstructural protein mu NS during reovirus infection.
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Formation of the factory matrix is an important, though not a sufficient function of nonstructural protein mu NS during reovirus infection.

机译:在呼肠孤病毒感染期间,工厂基质的形成是重要的,尽管非结构蛋白mu NS不能发挥足够的功能。

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摘要

Genome replication of mammalian orthoreovirus (MRV) occurs in cytoplasmic inclusion bodies called viral factories. Nonstructural protein microNS, encoded by genome segment M3, is a major constituent of these structures. When expressed without other viral proteins, microNS forms cytoplasmic inclusions morphologically similar to factories, suggesting a role for microNS as the factory framework or matrix. In addition, most other MRV proteins, including all five core proteins (lambda1, lambda2, lambda3, micro2, and sigma2) and nonstructural protein sigmaNS, can associate with microNS in these structures. In the current study, small interfering RNA targeting M3 was transfected in association with MRV infection and shown to cause a substantial reduction in microNS expression as well as, among other effects, a reduction in infectious yields by as much as 4 log(10) values. By also transfecting in vitro-transcribed M3 plus-strand RNA containing silent mutations that render it resistant to the small interfering RNA, we were able to complement microNS expression and to rescue infectious yields by ~100-fold. We next used microNS mutants specifically defective at forming factory-matrix structures to show that this function of microNS is important for MRV growth; point mutations in a C-proximal, putative zinc-hook motif as well as small deletions at the extreme C terminus of microNS prevented rescue of viral growth while causing microNS to be diffusely distributed in cells. We furthermore confirmed that an N-terminally truncated form of microNS, designed to represent microNSC and still able to form factory-matrix structures, is unable to rescue MRV growth, localizing one or more other important functions to an N-terminal region of microNS known to be involved in both micro2 and sigmaNS association. Thus, factory-matrix formation is an important, though not a sufficient function of microNS during MRV infection; microNS is multifunctional in the course of viral growth.
机译:哺乳动物正咽病毒(MRV)的基因组复制发生在称为病毒工厂的细胞质包涵体中。由基因组片段M3编码的非结构蛋白microNS是这些结构的主要组成部分。当在没有其他病毒蛋白的情况下表达时,microNS会形成形态类似于工厂的胞质内含物,表明microNS作为工厂框架或基质的作用。此外,大多数其他MRV蛋白,包括所有五个核心蛋白(lambda1,lambda2,lambda3,micro2和sigma2)和非结构蛋白sigmaNS,都可以在这些结构中与microNS结合。在目前的研究中,靶向M3的小干扰RNA与MRV感染一起被转染,并显示导致microNS表达的大幅降低,以及除其他影响外,感染率降低了4 log(10)值。 。通过还转染含有沉默突变的体外转录的M3加链RNA,使之对小分子干扰RNA产生抗性,我们能够补充microNS的表达并将感染率提高约100倍。接下来,我们使用在形成工厂矩阵结构方面特异缺陷的microNS突变体,来证明microNS的这种功能对于MRV的生长很重要。 C近端假定的锌钩基序中的点突变以及microNS极端C末端的小缺失阻止了病毒生长的抢救,同时导致microNS散布在细胞中。我们进一步证实,旨在代表microNSC且仍能够形成工厂矩阵结构的microNS的N末端截短形式不能挽救MRV的生长,将一个或多个其他重要功能定位于已知的microNS的N末端区域参与micro2和sigmaNS关联。因此,工厂基质的形成是重要的,尽管在MRV感染过程中microNS的功能还不够。 microNS在病毒生长过程中具有多功能性。

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