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SARS-CoV-2 uses a multipronged strategy to impede host protein synthesis

机译:SARS-COV-2使用多关键的策略来阻止宿主蛋白质合成

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摘要

The coronavirus SARS-CoV-2 is the cause of the ongoing pandemic of COVID-19~(1). Coronaviruses have developed a variety of mechanisms to repress host mRNA translation to allow the translation of viral mRNA, and concomitantly block the cellular innate immune response~(2,3). Although several different proteins of SARS-CoV-2 have previously been implicated in shutting off host expression~(4-7), a comprehensive picture of the effects of SARS-CoV-2 infection on cellular gene expression is lacking. Here we combine RNA sequencing, ribosome profiling and metabolic labelling of newly synthesized RNA to comprehensively define the mechanisms that are used by SARS-CoV-2 to shut off cellular protein synthesis. We show that infection leads to a global reduction in translation, but that viral transcripts are not preferentially translated. Instead, we find that infection leads to the accelerated degradation of cytosolic cellular mRNAs, which facilitates viral takeover of the mRNA pool in infected cells. We reveal that the translation of transcripts that are induced in response to infection (including innate immune genes) is impaired. We demonstrate this impairment is probably mediated by inhibition of nuclear mRNA export, which prevents newly transcribed cellular mRNA from accessing ribosomes. Overall, our results uncover a multipronged strategy that is used by SARS-CoV-2 to take over the translation machinery and to suppress host defences.
机译:冠状病毒SARS-COV-2是Covid-19〜(1)的持续大流行的原因。冠状病毒已经开发出多种机制来压制宿主mRNA翻译以允许转化病毒mRNA,并伴随细胞先天免疫应答〜(2,3)。尽管SARS-COV-2的几种不同蛋白质先前涉及关闭宿主表达〜(4-7),但缺乏SARS-COV-2感染对细胞基因表达的综合图像的全面图像。在这里,我们将新合成的RNA的RNA测序,核糖体分析和代谢标记合并,全面地定义SARS-COV-2使用的机制,以关闭细胞蛋白质合成。我们表明感染导致翻译的全球降低,但不优先翻译病毒转录物。相反,我们发现感染导致细胞骨细胞mRNA的加速降解,这有利于感染细胞中mRNA池的病毒服用。我们揭示了响应感染(包括先天性免疫基因)诱导的转录物的翻译受到损害。我们证明这种损害可能是通过抑制核mRNA出口的介导的损害,这可以防止新转录的细胞mRNA进入核糖体。总体而言,我们的成果揭示了SARS-COV-2使用的多强制策略,接管翻译机械并抑制主持人防御。

著录项

  • 来源
    《Nature》 |2021年第7862期|240-245|共6页
  • 作者单位

    Department of Molecular Genetics Weizmann Institute of Science;

    Department of Molecular Genetics Weizmann Institute of Science;

    Department of Molecular Genetics Weizmann Institute of Science;

    Department of Molecular Genetics Weizmann Institute of Science;

    Department of Molecular Genetics Weizmann Institute of Science;

    Department of Molecular Genetics Weizmann Institute of Science;

    Department of Molecular Genetics Weizmann Institute of Science;

    Department of Biological Regulation Weizmann Institute of Science;

    Department of Biological Regulation Weizmann Institute of Science;

    Department of Biomolecular Sciences Weizmann Institute of Science;

    Department of Infectious Diseases Israel Institute for Biological Chemical and Environmental Sciences;

    Department of Infectious Diseases Israel Institute for Biological Chemical and Environmental Sciences;

    Department of Biological Regulation Weizmann Institute of Science;

    Department of Infectious Diseases Israel Institute for Biological Chemical and Environmental Sciences;

    Department of Infectious Diseases Israel Institute for Biological Chemical and Environmental Sciences;

    Department of Molecular Genetics Weizmann Institute of Science;

    Department of Molecular Genetics Weizmann Institute of Science;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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