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人呼吸道合胞病毒非结构蛋白 2 拮抗干扰素的结构基础。

Structural basis for IFN antagonism by human respiratory syncytial virus nonstructural protein 2.

机构信息

John T. Milliken Department of Medicine, Division of Infectious Diseases, Washington University School of Medicine, St. Louis, MO 63110.

Department of Chemistry, Washington University in St. Louis, St. Louis, MO 63110.

出版信息

Proc Natl Acad Sci U S A. 2021 Mar 9;118(10). doi: 10.1073/pnas.2020587118.

Abstract

Human respiratory syncytial virus (RSV) nonstructural protein 2 (NS2) inhibits host interferon (IFN) responses stimulated by RSV infection by targeting early steps in the IFN-signaling pathway. But the molecular mechanisms related to how NS2 regulates these processes remain incompletely understood. To address this gap, here we solved the X-ray crystal structure of NS2. This structure revealed a unique fold that is distinct from other known viral IFN antagonists, including RSV NS1. We also show that NS2 directly interacts with an inactive conformation of the RIG-I-like receptors (RLRs) RIG-I and MDA5. NS2 binding prevents RLR ubiquitination, a process critical for prolonged activation of downstream signaling. Structural analysis, including by hydrogen-deuterium exchange coupled to mass spectrometry, revealed that the N terminus of NS2 is essential for binding to the RIG-I caspase activation and recruitment domains. N-terminal mutations significantly diminish RIG-I interactions and result in increased IFNβ messenger RNA levels. Collectively, our studies uncover a previously unappreciated regulatory mechanism by which NS2 further modulates host responses and define an approach for targeting host responses.

摘要

人呼吸道合胞病毒(RSV)非结构蛋白 2(NS2)通过靶向 IFN 信号通路的早期步骤来抑制 RSV 感染引发的宿主干扰素(IFN)反应。但是,与 NS2 如何调节这些过程相关的分子机制仍不完全清楚。为了解决这一差距,我们在这里解析了 NS2 的 X 射线晶体结构。该结构揭示了一种独特的折叠,与其他已知的病毒 IFN 拮抗剂(包括 RSV NS1)不同。我们还表明 NS2 直接与 RIG-I 样受体(RLRs)RIG-I 和 MDA5 的无活性构象相互作用。NS2 结合阻止了 RLR 的泛素化,这是下游信号持续激活的关键过程。结构分析,包括氢氘交换与质谱联用,表明 NS2 的 N 端对于与 RIG-I 半胱氨酸蛋白酶激活和募集结构域结合至关重要。N 端突变显著减少了 RIG-I 的相互作用,导致 IFNβ 信使 RNA 水平增加。总的来说,我们的研究揭示了 NS2 进一步调节宿主反应的一个以前未被认识的调控机制,并定义了一种针对宿主反应的方法。

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