In vitro reconstitution of SARS-CoV-2 Nsp1-induced mRNA cleavage reveals the key roles of the N-terminal domain of Nsp1 and the RRM domain of eIF3g.

IF 7.7 1区 生物学 Q1 CELL BIOLOGY Genes & development Pub Date : 2023-09-01 Epub Date: 2023-10-11 DOI:10.1101/gad.350829.123
Irina S Abaeva, Yani Arhab, Anna Miścicka, Christopher U T Hellen, Tatyana V Pestova
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Abstract

SARS CoV-2 nonstructural protein 1 (Nsp1) is the major pathogenesis factor that inhibits host translation using a dual strategy of impairing initiation and inducing endonucleolytic cleavage of cellular mRNAs. To investigate the mechanism of cleavage, we reconstituted it in vitro on β-globin, EMCV IRES, and CrPV IRES mRNAs that use unrelated initiation mechanisms. In all instances, cleavage required Nsp1 and only canonical translational components (40S subunits and initiation factors), arguing against involvement of a putative cellular RNA endonuclease. Requirements for initiation factors differed for these mRNAs, reflecting their requirements for ribosomal attachment. Cleavage of CrPV IRES mRNA was supported by a minimal set of components consisting of 40S subunits and eIF3g's RRM domain. The cleavage site was located in the coding region 18 nt downstream from the mRNA entrance, indicating that cleavage occurs on the solvent side of the 40S subunit. Mutational analysis identified a positively charged surface on Nsp1's N-terminal domain (NTD) and a surface above the mRNA-binding channel on eIF3g's RRM domain that contain residues essential for cleavage. These residues were required for cleavage on all three mRNAs, highlighting general roles of the Nsp1 NTD and eIF3g's RRM domain in cleavage per se, irrespective of the mode of ribosomal attachment.

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严重急性呼吸系统综合征冠状病毒2型Nsp1诱导的mRNA切割的体外重建揭示了Nsp1的N-末端结构域和eIF3g的RRM结构域的关键作用。
严重急性呼吸系统综合征冠状病毒2型非结构蛋白1(Nsp1)是抑制宿主翻译的主要发病机制因子,它通过损害细胞信使核糖核酸的起始和诱导细胞核内裂解的双重策略来抑制宿主翻译。为了研究切割的机制,我们在使用不相关起始机制的β-珠蛋白、EMCV IRES和CrPV IRES mRNA上进行了体外重组。在所有情况下,切割都需要Nsp1,并且只需要典型的翻译成分(40S亚基和起始因子),这与假定的细胞RNA内切酶的参与有关。这些信使核糖核酸对起始因子的要求不同,反映了它们对核糖体附着的要求。CrPV IRES mRNA的切割得到由40S亚基和eIF3g的RRM结构域组成的最小组分的支持。切割位点位于mRNA入口下游18nt的编码区,表明切割发生在40S亚基的溶剂侧。突变分析鉴定了Nsp1的N-末端结构域(NTD)上的带正电荷的表面和eIF3g的RRM结构域上的mRNA结合通道上方的表面,这些表面含有切割所必需的残基。这些残基是所有三种信使核糖核酸切割所必需的,这突出了Nsp1 NTD和eIF3g的RRM结构域在切割过程中的一般作用,而与核糖体附着模式无关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Genes & development
Genes & development 生物-发育生物学
CiteScore
17.50
自引率
1.90%
发文量
71
审稿时长
3-6 weeks
期刊介绍: Genes & Development is a research journal published in association with The Genetics Society. It publishes high-quality research papers in the areas of molecular biology, molecular genetics, and related fields. The journal features various research formats including Research papers, short Research Communications, and Resource/Methodology papers. Genes & Development has gained recognition and is considered as one of the Top Five Research Journals in the field of Molecular Biology and Genetics. It has an impressive Impact Factor of 12.89. The journal is ranked #2 among Developmental Biology research journals, #5 in Genetics and Heredity, and is among the Top 20 in Cell Biology (according to ISI Journal Citation Reports®, 2021).
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