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首页> 外文期刊>PLoS Pathogens >Kaposia??s sarcoma-associated herpesvirus ORF57 protein protects viral transcripts from specific nuclear RNA decay pathways by preventing hMTR4 recruitment
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Kaposia??s sarcoma-associated herpesvirus ORF57 protein protects viral transcripts from specific nuclear RNA decay pathways by preventing hMTR4 recruitment

机译:Kaposia's肉瘤相关疱疹病毒ORF57蛋白通过阻止hMTR4募集来保护病毒转录本免受特定核RNA衰变途径的侵害

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摘要

Nuclear RNAs are subject to a number of RNA decay pathways that serve quality control and regulatory functions. As a result, any virus that expresses its genes in the nucleus must have evolved mechanisms that avoid these pathways, but the how viruses evade nuclear RNA decay remains largely unknown. The multifunctional Kaposi’s sarcoma-associated herpesvirus (KSHV) ORF57 (Mta) protein is required for the nuclear stability of viral transcripts. In the absence of ORF57, we show that viral transcripts are subject to degradation by two specific nuclear RNA decay pathways, PABPN1 and PAPα/γ-mediated RNA decay (PPD) in which decay factors are recruited through poly(A) tails, and an ARS2-mediated RNA decay pathway dependent on the 5ʹ RNA cap. In transcription pulse chase assays, ORF57 appears to act primarily by inhibiting the ARS2-mediated RNA decay pathway. In the context of viral infection in cultured cells, inactivation of both decay pathways by RNAi is necessary for the restoration of ORF57-dependent viral genes produced from an ORF57-null bacmid. Mechanistically, we demonstrate that ORF57 protects viral transcripts by preventing the recruitment of the exosome co-factor hMTR4. In addition, our data suggest that ORF57 recruitment of ALYREF inhibits hMTR4 association with some viral RNAs, whereas other KSHV transcripts are stabilized by ORF57 in an ALYREF-independent fashion. In conclusion, our studies show that KSHV RNAs are subject to nuclear degradation by two specific host pathways, PPD and ARS2-mediated decay, and ORF57 protects viral transcripts from decay by inhibiting hMTR4 recruitment.
机译:核RNA受许多RNA衰变途径的影响,这些途径具有质量控制和调节功能。结果,任何在细胞核中表达其基因的病毒都必须具有避免这些途径的进化机制,但是,病毒如何逃避核RNA的衰变仍然未知。多功能Kaposi肉瘤相关疱疹病毒(KSHV)ORF57(Mta)蛋白是病毒转录本核稳定性所必需的。在没有ORF57的情况下,我们显示病毒转录物受两种特定的核RNA衰变途径降解,PABPN1和PAPα/γ介导的RNA衰变(PPD),其中衰变因子通过poly(A)尾部募集,并且ARS2介导的RNA衰变途径取决于5ʹRNA上限。在转录脉冲追踪测定中,ORF57似乎主要通过抑制ARS2介导的RNA衰变途径起作用。在培养的细胞中进行病毒感染的情况下,RNAi使两条衰变途径失活对于恢复由ORF57无效杆状病毒产生的ORF57依赖性病毒基因是必需的。从机制上讲,我们证明ORF57通过阻止外来体辅助因子hMTR4的募集来保护病毒转录本。此外,我们的数据表明ALYREF的ORF57募集抑制了hMTR4与某些病毒RNA的结合,而其他KSHV转录本则由ORF57以ALYREF独立的方式稳定化。总之,我们的研究表明,KSHV RNA受到两种特定宿主途径PPD和ARS2介导的衰变的核降解作用,而ORF57通过抑制hMTR4募集来保护病毒转录本免受衰变。

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