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MAVS 介导的宿主细胞防御被博纳病病毒抑制。

MAVS-mediated host cell defense is inhibited by Borna disease virus.

机构信息

The Heilongjiang Key Laboratory of Immunity and Infection, Key Laboratory of Pathogenic Biology Heilongjiang Higher Education Institutions, Department of Microbiology, Harbin Medical University, Harbin, Heilongjiang, China.

出版信息

Int J Biochem Cell Biol. 2013 Aug;45(8):1546-55. doi: 10.1016/j.biocel.2013.05.012. Epub 2013 May 20.

Abstract

Viruses often have strategies for preventing host cell apoptosis, which antagonizes viral replication. Borna disease virus (BDV) is a neurotropic RNA virus that establishes a non-cytolytic persistent infection. Although BDV suppresses type I Interferon (IFN) through (TANK)-binding kinase 1 (TBK-1) associated BDV P protein, it is still unclear how BDV can survive in the host cell and establish a persistent infection. Recently, it has been recognized that mitochondria-mediated apoptosis through the mitochondrial antiviral signaling protein (MAVS) and the RIG-I-like receptor (RLR) signaling pathway is a crucial component of the innate immune response. In this work we show that BDV X protein colocalizes and interacts with MAVS in the mitochondria to block programmed cell death. BDV X protein-mediated inhibition of apoptosis was independent of type I IFN production and NF-κB activity. The reduction of BDV X expression with RNA interference (RNAi) or the mutation of BDV X enhanced MAVS-induced cell death. Collectively, our data provide novel insights into how BDV X protein inhibits antiviral-associated programmed cell death, through its action of MAVS function.

摘要

病毒通常有防止宿主细胞凋亡的策略,而宿主细胞凋亡会拮抗病毒复制。博尔纳病病毒(BDV)是一种嗜神经 RNA 病毒,可建立非细胞溶解的持续性感染。虽然 BDV 通过(TANK)结合激酶 1(TBK-1)相关的 BDV P 蛋白抑制 I 型干扰素(IFN),但仍不清楚 BDV 如何在宿主细胞中存活并建立持续性感染。最近,人们认识到通过线粒体抗病毒信号蛋白(MAVS)和 RIG-I 样受体(RLR)信号通路介导的线粒体凋亡是先天免疫反应的重要组成部分。在这项工作中,我们表明 BDV X 蛋白在线粒体中与 MAVS 共定位并相互作用,以阻止程序性细胞死亡。BDV X 蛋白介导的凋亡抑制不依赖于 I 型 IFN 的产生和 NF-κB 活性。用 RNA 干扰(RNAi)降低 BDV X 的表达或突变 BDV X 增强了 MAVS 诱导的细胞死亡。总之,我们的数据提供了新的见解,即 BDV X 蛋白如何通过其对 MAVS 功能的作用抑制抗病毒相关的程序性细胞死亡。

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