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RNA-Binding Proteins at the Host-Pathogen Interface Targeting Viral Regulatory Elements

机译:在靶向病毒调节元件的宿主病原体界面处的RNA结合蛋白

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摘要

Viral RNAs contain the information needed to synthesize their own proteins, to replicate, and to spread to susceptible cells. However, due to their reduced coding capacity RNA viruses rely on host cells to complete their multiplication cycle. This is largely achieved by the concerted action of regulatory structural elements on viral RNAs and a subset of host proteins, whose dedicated function across all stages of the infection steps is critical to complete the viral cycle. Importantly, not only the RNA sequence but also the RNA architecture imposed by the presence of specific structural domains mediates the interaction with host RNA-binding proteins (RBPs), ultimately affecting virus multiplication and spreading. In marked difference with other biological systems, the genome of positive strand RNA viruses is also the mRNA. Here we focus on distinct types of positive strand RNA viruses that differ in the regulatory elements used to promote translation of the viral RNA, as well as in the mechanisms used to evade the series of events connected to antiviral response, including translation shutoff induced in infected cells, assembly of stress granules, and trafficking stress.
机译:病毒RNA含有合成自己蛋白质的信息,以复制并扩散到易感细胞。然而,由于它们的编码能力降低,RNA病毒依赖于宿主细胞来完成其乘法循环。这主要是通过调节结构元素对病毒RNA和宿主蛋白的副本来实现的,其在感染步骤的所有阶段的专用功能对于完成病毒循环至关重要。重要的是,不仅是RNA序列,而且还通过特异性结构域存在施加的RNA结构介导与宿主RNA结合蛋白(RBP)的相互作用,最终影响病毒倍增和扩散。在与其他生物系统的显着差异中,正链RNA病毒的基因组也是mRNA。在这里,我们专注于不同类型的正链RNA病毒,其在用于促进​​病毒RNA的翻译的调节元件的阳性股线病毒,以及用于逃避与抗病毒反应相关的一系列事件的机制,包括诱导感染的翻译截止细胞,应力颗粒组装和贩运压力。

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