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SARS-CoV-2 的非结构蛋白 1 是一种强大的致病性因子,它将宿主蛋白合成机制引导到病毒 RNA 上。

Nonstructural Protein 1 of SARS-CoV-2 Is a Potent Pathogenicity Factor Redirecting Host Protein Synthesis Machinery toward Viral RNA.

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06511, USA.

Department of Genetics, Yale University School of Medicine, New Haven, CT 06520, USA; Systems Biology Institute, Yale University, West Haven, CT 06516, USA.

出版信息

Mol Cell. 2020 Dec 17;80(6):1055-1066.e6. doi: 10.1016/j.molcel.2020.10.034. Epub 2020 Oct 29.

Abstract

The causative virus of the COVID-19 pandemic, SARS-CoV-2, uses its nonstructural protein 1 (Nsp1) to suppress cellular, but not viral, protein synthesis through yet unknown mechanisms. We show here that among all viral proteins, Nsp1 has the largest impact on host viability in the cells of human lung origin. Differential expression analysis of mRNA-seq data revealed that Nsp1 broadly alters the cellular transcriptome. Our cryo-EM structure of the Nsp1-40S ribosome complex shows that Nsp1 inhibits translation by plugging the mRNA entry channel of the 40S. We also determined the structure of the 48S preinitiation complex formed by Nsp1, 40S, and the cricket paralysis virus internal ribosome entry site (IRES) RNA, which shows that it is nonfunctional because of the incorrect position of the mRNA 3' region. Our results elucidate the mechanism of host translation inhibition by SARS-CoV-2 and advance understanding of the impacts from a major pathogenicity factor of SARS-CoV-2.

摘要

导致 COVID-19 大流行的病原体 SARS-CoV-2 利用其非结构蛋白 1(Nsp1)通过未知机制抑制细胞而非病毒蛋白的合成。我们在这里表明,在所有病毒蛋白中,Nsp1 对人肺源细胞的宿主存活率有最大的影响。mRNA-seq 数据的差异表达分析显示,Nsp1 广泛改变了细胞转录组。我们的 Nsp1-40S 核糖体复合物的冷冻电镜结构表明,Nsp1 通过堵塞 40S 的 mRNA 入口通道来抑制翻译。我们还确定了由 Nsp1、40S 和蟋蟀麻痹病毒内部核糖体进入位点(IRES)RNA 形成的 48S 起始复合物的结构,这表明由于 mRNA 3' 区域的不正确位置,它是无功能的。我们的研究结果阐明了 SARS-CoV-2 宿主翻译抑制的机制,并加深了对 SARS-CoV-2 主要致病因素影响的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de23/7833686/26f35ad8f30a/fx1_lrg.jpg

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