首页> 外文期刊>Virus Research: An International Journal of Molecular and Cellular Virology >Viral RNA silencing suppressors (RSS): novel strategy of viruses to ablate the host RNA interference (RNAi) defense system.
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Viral RNA silencing suppressors (RSS): novel strategy of viruses to ablate the host RNA interference (RNAi) defense system.

机译:病毒RNA沉默抑制剂(RSS):病毒消灭宿主RNA干扰(RNAi)防御系统的新策略。

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摘要

Pathogenic viruses have developed a molecular defense arsenal for their survival by counteracting the host anti-viral system known as RNA interference (RNAi). Cellular RNAi, in addition to regulating gene expression through microRNAs, also serves as a barrier against invasive foreign nucleic acids. RNAi is conserved across the biological species, including plants, animals and invertebrates. Viruses in turn, have evolved mechanisms that can counteract this anti-viral defense of the host. Recent studies of mammalian viruses exhibiting RNA silencing suppressor (RSS) activity have further advanced our understanding of RNAi in terms of host-virus interactions. Viral proteins and non-coding viral RNAs can inhibit the RNAi (miRNA/siRNA) pathway through different mechanisms. Mammalian viruses having dsRNA-binding regions and GW/WG motifs appear to have a high chance of conferring RSS activity. Although, RSSs of plant and invertebrate viruses have been well characterized, mammalian viral RSSs still need in-depth investigations to present the concrete evidences supporting their RNAi ablation characteristics. The information presented in this review together with any perspective research should help to predict and identify the RSS activity-endowed new viral proteins that could be the potential targets for designing novel anti-viral therapeutics.
机译:病原性病毒通过抵消称为RNA干扰(RNAi)的宿主抗病毒系统,为生存提供了分子防御武器。细胞RNAi除了通过microRNA调节基因表达外,还可以作为入侵外来核酸的屏障。 RNAi在整个生物物种(包括植物,动物和无脊椎动物)中都是保守的。反过来,病毒已经进化出可以抵消宿主抗病毒防御能力的机制。表现出RNA沉默抑制(RSS)活性的哺乳动物病毒的最新研究进一步提高了我们对宿主病毒相互作用方面RNAi的了解。病毒蛋白和非编码病毒RNA可以通过不同的机制抑制RNAi(miRNA / siRNA)途径。具有dsRNA结合区和GW / WG基序的哺乳动物病毒似乎具有较高的赋予RSS活性的机会。尽管已经很好地表征了植物和无脊椎动物病毒的RSS,但哺乳动物病毒RSS仍需要深入研究以提供支持其RNAi消融特性的具体证据。本综述中提供的信息以及任何前景研究均应有助于预测和鉴定RSS活性赋予的新病毒蛋白,这些蛋白可能是设计新型抗病毒治疗剂的潜在靶标。

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