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核纤层破坏机制及pUS3在单纯疱疹病毒1型核出芽中的作用

Mechanism of Nuclear Lamina Disruption and the Role of pUS3 in HSV-1 Nuclear Egress.

作者信息

Bahnamiri Masoudeh Masoud, Roller Richard J

机构信息

Department of Microbiology and Immunology, Carver College of Medicine, University of Iowa, Iowa City, Iowa, USA.

Department of Microbiology and Immunology, Carver College of Medicine, University of Iowa, Iowa City, Iowa, USA

出版信息

J Virol. 2021 Apr 26;95(10). doi: 10.1128/JVI.02432-20. Epub 2021 Mar 3.

Abstract

Herpes simplex virus capsid envelopment at the nuclear membrane is coordinated by nuclear egress complex (NEC) proteins, pUL34 and pUL31, and is accompanied by alteration in the nuclear architecture and local disruption of nuclear lamina. Here, we examined the role of capsid envelopment in the changes of the nuclear architecture by characterizing HSV-1 recombinants that do not form capsids. Typical changes in nuclear architecture and disruption of the lamina were observed in the absence of capsids, suggesting that disruption of the nuclear lamina occurs prior to capsid envelopment. Surprisingly, in the absence of capsid envelopment, lamin A/C becomes concentrated at the nuclear envelope in a pUL34-independent and cell type-specific manner, suggesting that ongoing nuclear egress may be required for the dispersal of lamins observed in wild-type infection. Mutation of virus-encoded protein kinase, pUS3, on a wild-type virus background has been shown to cause accumulation of perinuclear enveloped capsids, formation of NEC aggregates, and exacerbated lamina disruption. We observed that mutation of US3 in the absence of capsids results in identical NEC aggregation and lamina disruption phenotypes, suggesting that they do not result from accumulation of perinuclear virions. TEM analysis revealed that, in the absence of capsids, NEC aggregates correspond to multi-folded nuclear membrane structures, suggesting that pUS3 may control NEC self-association and membrane deformation. To determine the significance of the pUS3 nuclear egress function for virus growth, the replication of single and double UL34 and US3 mutants was measured, showing that the significance of pUS3 nuclear egress function is cell-type specific.The nuclear lamina is an important player in infection by viruses that replicate in the nucleus. Herpesviruses alter the structure of the nuclear lamina to facilitate transport of capsids from the nucleus to the cytoplasm and use both viral and cellular effectors to disrupt the protein-protein interactions that maintain the lamina. Here we explore the role of capsid envelopment and the virus-encoded protein kinase, pUS3, in the disruption of lamina structure. We show that capsid envelopment is not necessary for the lamina disruption, or for US3 mutant phenotypes, including exaggerated lamina disruption, that accompany nuclear egress. These results clarify the mechanisms behind alteration of nuclear lamina structure and support a function for pUS3 in regulating the aggregation state of the nuclear egress machinery.

摘要

单纯疱疹病毒衣壳在核膜处的包裹过程由核输出复合体(NEC)蛋白pUL34和pUL31协同完成,同时伴随着核结构的改变以及核纤层的局部破坏。在此,我们通过对不能形成衣壳的HSV-1重组体进行特性分析,研究了衣壳包裹在核结构变化中的作用。在没有衣壳的情况下,观察到了核结构的典型变化以及核纤层的破坏,这表明核纤层的破坏发生在衣壳包裹之前。令人惊讶的是,在没有衣壳包裹的情况下,核纤层蛋白A/C以一种不依赖pUL34且细胞类型特异的方式聚集在核膜处,这表明在野生型感染中观察到的核纤层蛋白的分散可能需要持续的核输出。在野生型病毒背景下,病毒编码的蛋白激酶pUS3发生突变已被证明会导致核周包膜衣壳的积累、NEC聚集体的形成以及加剧的核纤层破坏。我们观察到在没有衣壳的情况下,US3发生突变会导致相同的NEC聚集和核纤层破坏表型,这表明它们不是由核周病毒粒子的积累导致的。透射电镜分析显示,在没有衣壳的情况下,NEC聚集体对应于多层核膜结构,这表明pUS3可能控制NEC的自我缔合和膜变形。为了确定pUS3核输出功能对病毒生长的重要性,我们检测了单、双UL34和US3突变体的复制情况,结果表明pUS3核输出功能的重要性具有细胞类型特异性。核纤层是在细胞核中复制的病毒感染过程中的一个重要参与者。疱疹病毒会改变核纤层的结构,以促进衣壳从细胞核运输到细胞质,并利用病毒和细胞效应物破坏维持核纤层的蛋白质-蛋白质相互作用。在此我们探讨了衣壳包裹和病毒编码的蛋白激酶pUS3在核纤层结构破坏中的作用。我们表明,衣壳包裹对于核纤层破坏以及对于伴随核输出的US3突变体表型(包括过度的核纤层破坏)并非必要。这些结果阐明了核纤层结构改变背后的机制,并支持pUS3在调节核输出机制聚集状态方面的功能。

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