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The RNA genome of hepatitis E virus robustly triggers an antiviral interferon response

机译:乙型肝炎病毒的RNA基因组鲁棒地触发了抗病毒干扰素反应

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摘要

The outcomes of hepatitis E virus (HEV) infection are diverse, ranging from asymptomatic carrier, self-limiting acute infection, and fulminant hepatitis to persistent infection. This is closely associated with the immunological status of the host. This study aimed to understand the innate cellular immunity as the first-line defense mechanism in response to HEV infection. Phosphorylation of signal transducer and activator of transcription 1, a hallmark of the activation of antiviral interferon (IFN) response, was observed in the liver tissues of the majority of HEV-infected patients but not in the liver of uninfected individuals. In cultured cell lines and primary liver organoids, we found that HEV RNA genome potently induced IFN production and antiviral response. This mechanism is conserved among different HEV strains, including genotypes 1, 3, and 7 as tested. Interestingly, single-stranded HEV RNA is sufficient to trigger the antiviral response, without the requirement of viral RNA synthesis and the generation of an RNA replicative form or replicative intermediate. Surprisingly, the m(7)G cap and poly A tail are not required, although both are key features of the HEV genome. Mechanistically, this antiviral response occurs in a retinoic acid-inducible gene-I-independent, melanoma differentiation-associated protein 5-independent, mitochondrial antiviral signaling protein-independent, and -catenin-independent but IRF3-dependent and IRF7-dependent manner. Furthermore, the integrity of the Janus kinase-signal transducer and activator of transcription pathway is essentially required. Conclusion: HEV infection elicits an active IFN-related antiviral response in vitro and in patients, triggered by the viral RNA and mediated by IFN regulatory factors 3 and 7 and the Janus kinase-signal transducer and activator of transcription cascade; these findings have revealed new insights into HEV-host interactions and provided the basis for understanding the pathogenesis and outcome of HEV infection. (Hepatology 2018;67:2096-2112).
机译:丙型肝炎病毒(HEV)感染的结果是多种多样的,从无症状载体,自限急性感染和漏风性肝炎到持续感染。这与主体的免疫状况密切相关。该研究旨在了解响应HEV感染的第一线路防御机制的先天细胞免疫。信号传感器和转录活化剂的磷酸化1,在大多数HEV感染患者的肝组织中观察到抗病毒干扰素(IFN)反应的标志,但不在未感染的个体的肝脏中观察到。在培养的细胞系和原发性肝脏细胞体中,我们发现HEV RNA基因组效果诱导IFN产生和抗病毒反应。这种机制在不同的HEV菌株中保守,包括基因型1,3和7作为测试。有趣的是,单链HEV RNA足以触发抗病毒反应,而不需要病毒RNA合成和RNA复制形式或复制中间体的产生。令人惊讶的是,不需要M(7)G帽和聚尾,但两者都是HEV基因组的关键特征。机械地,这种抗病毒反应发生在视黄酸 - 诱导基因-I型无关,黑素瘤分化相关蛋白5无关,线粒体抗病毒信号蛋白无关,以及-Catenin独立但IRF3依赖性和IRF7依赖性的方式。此外,基本上需要Janus激酶 - 信号换能器和转录途径活化剂的完整性。结论:HEV感染在体外和患者中引发了活性IFN相关的抗病毒反应,由病毒RNA引发,由IFN调节因子3和7和Janus激酶 - 信号传感器和转录级联的活化剂介导;这些发现揭示了HEV-宿主相互作用的新见解,并为理解HEV感染的发病机制和结果提供了基础。 (2018年肝脏学; 67:2096-2112)。

著录项

  • 来源
    《Fortschritte der Physik》 |2018年第6期|共17页
  • 作者单位

    Erasmus MC Univ Med Ctr Dept Gastroenterol &

    Hepatol Rotterdam Netherlands;

    Beijing 302 Hosp Dept Pathol &

    Hepatol Beijing Peoples R China;

    Erasmus MC Univ Med Ctr Dept Gastroenterol &

    Hepatol Rotterdam Netherlands;

    Beijing 302 Hosp Dept Pathol &

    Hepatol Beijing Peoples R China;

    Erasmus MC Univ Med Ctr Dept Gastroenterol &

    Hepatol Rotterdam Netherlands;

    Erasmus MC Univ Med Ctr Dept Gastroenterol &

    Hepatol Rotterdam Netherlands;

    Erasmus MC Univ Med Ctr Dept Gastroenterol &

    Hepatol Rotterdam Netherlands;

    Erasmus MC Univ Med Ctr Dept Gastroenterol &

    Hepatol Rotterdam Netherlands;

    Erasmus MC Univ Med Ctr Dept Gastroenterol &

    Hepatol Rotterdam Netherlands;

    Erasmus MC Univ Med Ctr Dept Gastroenterol &

    Hepatol Rotterdam Netherlands;

    Natl Inst Infect Dis Dept Virol 2 Gakuen 4-7-1 Tokyo Japan;

    Erasmus MC Univ Med Ctr Dept Gastroenterol &

    Hepatol Rotterdam Netherlands;

    Beijing 302 Hosp Dept Pathol &

    Hepatol Beijing Peoples R China;

    Erasmus MC Univ Med Ctr Dept Gastroenterol &

    Hepatol Rotterdam Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

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