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IFI16和早幼粒细胞白血病核体成分对单纯疱疹病毒1感染的动态反应

Dynamic Response of IFI16 and Promyelocytic Leukemia Nuclear Body Components to Herpes Simplex Virus 1 Infection.

作者信息

Everett Roger D

机构信息

MRC-University of Glasgow Centre for Virus Research, University of Glasgow, Glasgow, Scotland, United Kingdom

出版信息

J Virol. 2015 Oct 14;90(1):167-79. doi: 10.1128/JVI.02249-15. Print 2016 Jan 1.

Abstract

UNLABELLED

Intrinsic immunity is an aspect of antiviral defense that operates through diverse mechanisms at the intracellular level through a wide range of constitutively expressed cellular proteins. In the case of herpesviruses, intrinsic resistance involves the repression of viral gene expression during the very early stages of infection, a process that is normally overcome by viral tegument and/or immediate-early proteins. Thus, the balance between cellular repressors and virus-counteracting proteins determines whether or not a cell becomes productively infected. One aspect of intrinsic resistance to herpes simplex virus 1 (HSV-1) is conferred by components of promyelocytic leukemia nuclear bodies (PML NBs), which respond to infection by accumulating at sites that are closely associated with the incoming parental HSV-1 genomes. Other cellular proteins, including IFI16, which has been implicated in sensing pathogen DNA and initiating signaling pathways that lead to an interferon response, also respond to viral genomes in this manner. Here, studies of the dynamics of the response of PML NB components and IFI16 to invading HSV-1 genomes demonstrated that this response is extremely rapid, occurring within the first hour after addition of the virus, and that human Daxx (hDaxx) and IFI16 respond more rapidly than PML. In the absence of HSV-1 regulatory protein ICP0, which counteracts the recruitment process, the newly formed, viral-genome-induced PML NB-like foci can fuse with existing PML NBs. These data are consistent with a model involving viral genome sequestration into such structures, thereby contributing to the low probability of initiation of lytic infection in the absence of ICP0.

IMPORTANCE

Herpesviruses have intimate interactions with their hosts, with infection leading either to the productive lytic cycle or to a quiescent infection in which viral gene expression is suppressed while the viral genome is maintained in the host cell nucleus. Whether a cell becomes lytically or quiescently infected can be determined through the competing activities of cellular repressors and viral activators, some of which counteract cell-mediated repression. Therefore, the events that occur within the earliest stages of infection can be of crucial importance. This paper describes the extremely rapid response to herpes simplex virus 1 infection of cellular protein IFI16, a sensor of pathogen DNA, and also of the PML nuclear body proteins PML and hDaxx, as revealed by live-cell microscopy. The data imply that these proteins can accumulate on or close to the viral genomes in a sequential manner which may lead to their sequestration and repression.

摘要

未标记

固有免疫是抗病毒防御的一个方面,它通过多种组成性表达的细胞蛋白在细胞内水平上通过多种机制发挥作用。就疱疹病毒而言,固有抗性涉及在感染的极早期阶段抑制病毒基因表达,这一过程通常会被病毒被膜和/或立即早期蛋白克服。因此,细胞抑制因子和病毒对抗蛋白之间的平衡决定了细胞是否会被有效感染。对单纯疱疹病毒1(HSV-1)的固有抗性的一个方面是由早幼粒细胞白血病核体(PML NBs)的成分赋予的,它们通过在与传入的亲本HSV-1基因组密切相关的位点积累来响应感染。其他细胞蛋白,包括IFI16,已被证明与感知病原体DNA和启动导致干扰素反应的信号通路有关,也以这种方式对病毒基因组做出反应。在这里,对PML NB成分和IFI16对入侵HSV-1基因组的反应动力学的研究表明,这种反应极其迅速,在加入病毒后的第一小时内就会发生,并且人类Daxx(hDaxx)和IFI16的反应比PML更快。在没有抵消招募过程的HSV-1调节蛋白ICP0的情况下,新形成的、病毒基因组诱导的PML NB样病灶可以与现有的PML NBs融合。这些数据与一个模型一致,该模型涉及将病毒基因组隔离到这样的结构中,从而导致在没有ICP0的情况下发生裂解感染的可能性较低。

重要性

疱疹病毒与其宿主有着密切的相互作用,感染要么导致 productive 裂解周期,要么导致静止感染,在静止感染中病毒基因表达受到抑制,而病毒基因组则保留在宿主细胞核中。一个细胞是发生裂解性感染还是静止性感染,可以通过细胞抑制因子和病毒激活因子的竞争活动来确定,其中一些激活因子会抵消细胞介导的抑制作用。因此,感染最早阶段发生的事件可能至关重要。本文通过活细胞显微镜观察揭示了细胞蛋白IFI16(一种病原体DNA传感器)以及PML核体蛋白PML和hDaxx对单纯疱疹病毒1感染的极其迅速的反应。数据表明,这些蛋白质可以依次在病毒基因组上或其附近积累,这可能导致它们被隔离和抑制。

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