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含三磷酸双链 RNA 的沙粒病毒核蛋白结构揭示了一种独特的免疫抑制机制。

Structures of arenaviral nucleoproteins with triphosphate dsRNA reveal a unique mechanism of immune suppression.

机构信息

Norwich Medical School, University of East Anglia, Norwich Research Park, Norwich NR4 7TJ, United Kingdom.

Department of Veterinary and Biomedical Sciences, University of Minnesota, Twin Cities, St. Paul, Minnesota 55108.

出版信息

J Biol Chem. 2013 Jun 7;288(23):16949-16959. doi: 10.1074/jbc.M112.420521. Epub 2013 Apr 24.

Abstract

A hallmark of severe Lassa fever is the generalized immune suppression, the mechanism of which is poorly understood. Lassa virus (LASV) nucleoprotein (NP) is the only known 3'-5' exoribonuclease that can suppress type I interferon (IFN) production possibly by degrading immune-stimulatory RNAs. How this unique enzymatic activity of LASV NP recognizes and processes RNA substrates is unknown. We provide an atomic view of a catalytically active exoribonuclease domain of LASV NP (LASV NP-C) in the process of degrading a 5' triphosphate double-stranded (ds) RNA substrate, a typical pathogen-associated molecular pattern molecule, to induce type I IFN production. Additionally, we provide for the first time a high-resolution crystal structure of an active exoribonuclease domain of Tacaribe arenavirus (TCRV) NP. Coupled with the in vitro enzymatic and cell-based interferon suppression assays, these structural analyses strongly support a unified model of an exoribonuclease-dependent IFN suppression mechanism shared by all known arenaviruses. New knowledge learned from these studies should aid the development of therapeutics against pathogenic arenaviruses that can infect hundreds of thousands of individuals and kill thousands annually.

摘要

严重拉沙热的一个标志是全身性免疫抑制,其机制尚不清楚。拉沙病毒(LASV)核蛋白(NP)是唯一已知的 3'-5'外切核糖核酸酶,它可以通过降解免疫刺激 RNA 来抑制 I 型干扰素(IFN)的产生。LASV NP 的这种独特的酶活性如何识别和处理 RNA 底物尚不清楚。我们提供了 LASV NP(LASV NP-C)催化活性外切核糖核酸酶结构域在降解 5'三磷酸双链(ds)RNA 底物过程中的原子视图,该底物是一种典型的病原体相关分子模式分子,可诱导 I 型 IFN 产生。此外,我们首次提供了塔卡里伯埃博拉病毒(TCRV)NP 的活性外切核糖核酸酶结构域的高分辨率晶体结构。与体外酶和基于细胞的干扰素抑制测定相结合,这些结构分析强烈支持了所有已知沙粒病毒共有的外切核糖核酸酶依赖型 IFN 抑制机制的统一模型。从这些研究中获得的新知识应该有助于开发针对致病性沙粒病毒的治疗方法,这些病毒每年可感染数十万人并导致数千人死亡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6fe/3675627/25d809b4aa1e/zbc0281351880001.jpg

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