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依赖 STAT2 的免疫应答确保宿主存活,尽管存在有效的病毒拮抗剂。

STAT2-Dependent Immune Responses Ensure Host Survival despite the Presence of a Potent Viral Antagonist.

机构信息

Institute for Virology, University Hospital Essen, University Duisburg-Essen, Essen, Germany

Institute for Virology, University Hospital Essen, University Duisburg-Essen, Essen, Germany.

出版信息

J Virol. 2018 Jun 29;92(14). doi: 10.1128/JVI.00296-18. Print 2018 Jul 15.

Abstract

A pathogen encounter induces interferons, which signal via Janus kinases and STAT transcription factors to establish an antiviral state. However, the host and pathogens are situated in a continuous arms race which shapes host evolution toward optimized immune responses and the pathogens toward enhanced immune-evasive properties. Mouse cytomegalovirus (MCMV) counteracts interferon responses by pM27-mediated degradation of STAT2, which directly affects the signaling of type I as well as type III interferons. Using MCMV mutants lacking and mice lacking STAT2, we studied the opposing relationship between antiviral activities and viral antagonism in a natural host-pathogen pair and In contrast to wild-type (wt) MCMV, ΔM27 mutant MCMV was efficiently cleared from all organs within a few days in BALB/c, C57BL/6, and 129 mice, highlighting the general importance of STAT2 antagonism for MCMV replication. Despite this effective and relevant STAT2 antagonism, wt and STAT2-deficient mice exhibited fundamentally different susceptibilities to MCMV infections. MCMV replication was increased in all assessed organs (e.g., liver, spleen, lungs, and salivary glands) of STAT2-deficient mice, resulting in mortality during the first week after infection. Taken together, the results of our study reveal the importance of cytomegaloviral interferon antagonism for viral replication as well as a pivotal role of the remaining STAT2 activity for host survival. This mutual influence establishes a stable evolutionary standoff situation with fatal consequences when the equilibrium is disturbed. The host limits viral replication by the use of interferons (IFNs), which signal via STAT proteins. Several viruses evolved antagonists targeting STATs to antagonize IFNs (e.g., cytomegaloviruses, Zika virus, dengue virus, and several paramyxoviruses). We analyzed infections caused by MCMV expressing or lacking the STAT2 antagonist pM27 in STAT2-deficient and control mice to evaluate its importance for the host and the virus and The inability to counteract STAT2 directly translates into exaggerated IFN susceptibility and pronounced attenuation Thus, the antiviral activity mediated by IFNs via STAT2-dependent signaling drove the development of a potent MCMV-encoded STAT2 antagonist which became indispensable for efficient virus replication and spread to organs required for dissemination. Despite this clear impact of viral STAT2 antagonism, the host critically required the remaining STAT2 activity to prevent overt disease and mortality upon MCMV infection. Our findings highlight a remarkably delicate balance between host and virus.

摘要

病原体的入侵会引发干扰素的产生,干扰素通过 Janus 激酶和 STAT 转录因子信号通路来建立抗病毒状态。然而,宿主和病原体处于持续的军备竞赛中,这种竞赛塑造了宿主向优化免疫反应的进化方向,以及病原体向增强免疫逃避特性的进化方向。小鼠巨细胞病毒(MCMV)通过 pM27 介导的 STAT2 降解来对抗干扰素反应,这直接影响 I 型和 III 型干扰素的信号传导。使用缺乏 和缺乏 STAT2 的突变体小鼠,我们在天然的宿主-病原体对 和 中研究了抗病毒活性和病毒拮抗作用之间的对立关系。与野生型(wt)MCMV 相比,ΔM27 突变体 MCMV 在 BALB/c、C57BL/6 和 129 小鼠的所有器官中在几天内被有效清除,这突出表明 STAT2 拮抗作用对 MCMV 复制的普遍重要性。尽管存在有效的、相关的 STAT2 拮抗作用,但 wt 和 STAT2 缺陷型小鼠对 MCMV 感染的敏感性却存在根本差异。MCMV 在所有评估的器官(如肝脏、脾脏、肺和唾液腺)中的复制都增加了,导致感染后第一周内死亡。总之,我们的研究结果揭示了巨细胞病毒干扰素拮抗作用对病毒复制的重要性,以及剩余 STAT2 活性对宿主存活的关键作用。这种相互影响建立了一种稳定的进化对峙局面,当平衡被打破时,会产生致命的后果。宿主通过干扰素(IFNs)的信号转导来限制病毒的复制,干扰素通过 STAT 蛋白信号转导。几种病毒进化出了针对 STAT 的拮抗剂来拮抗 IFNs(例如巨细胞病毒、寨卡病毒、登革热病毒和几种副粘病毒)。我们分析了表达或缺乏 STAT2 拮抗剂 pM27 的 MCMV 在 STAT2 缺陷型和对照小鼠中的感染情况,以评估其对宿主和病毒的重要性 和 不能直接拮抗 STAT2 直接导致 IFN 敏感性增加 和明显衰减 因此,IFN 通过 STAT2 依赖性信号转导介导的抗病毒活性促使 MCMV 编码的 STAT2 拮抗剂的发展,这种拮抗剂对于有效的病毒复制和传播到需要传播的器官是必不可少的。尽管病毒的 STAT2 拮抗作用有明显的影响,但宿主在感染 MCMV 时,仍然需要剩余的 STAT2 活性来预防明显的疾病和死亡率。我们的研究结果突出了宿主和病毒之间的微妙平衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e24/6026732/f0ba2ddf6f21/zjv0141836980001.jpg

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