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孤儿转运蛋白 SLC35E1 在单纯疱疹病毒 1 核输出中的作用。

Role of the Orphan Transporter SLC35E1 in the Nuclear Egress of Herpes Simplex Virus 1.

机构信息

Division of Molecular Virology, Department of Microbiology and Immunology, The Institute of Medical Science, The University of Tokyogrid.26999.3d, Tokyo, Japan.

Department of Infectious Disease Control, International Research Center for Infectious Diseases, The Institute of Medical Science, The University of Tokyogrid.26999.3d, Tokyo, Japan.

出版信息

J Virol. 2022 May 25;96(10):e0030622. doi: 10.1128/jvi.00306-22. Epub 2022 Apr 27.

Abstract

This study developed a system consisting of two rounds of screening cellular proteins involved in the nuclear egress of herpes simplex virus 1 (HSV-1). Using this system, we first screened cellular proteins that interacted with the HSV-1 nuclear egress complex (NEC) consisting of UL34 and UL31 in HSV-1-infected cells, which are critical for the nuclear egress of HSV-1, by tandem affinity purification coupled with mass spectrometry-based proteomics technology. Next, we performed CRISPR/Cas9-based screening of live HSV-1-infected reporter cells under fluorescence microscopy using single guide RNAs targeting the cellular proteins identified in the first proteomic screening to detect the mislocalization of the lamin-associated protein emerin, which is a phenotype for defects in HSV-1 nuclear egress. This study focused on a cellular orphan transporter SLC35E1, one of the cellular proteins identified by the screening system. Knockout of SLC35E1 reduced HSV-1 replication and induced membranous invaginations containing perinuclear enveloped virions (PEVs) adjacent to the nuclear membrane (NM), aberrant accumulation of PEVs in the perinuclear space between the inner and outer NMs and the invagination structures, and mislocalization of the NEC. These effects were similar to those of previously reported mutation(s) in HSV-1 proteins and depletion of cellular proteins that are important for HSV-1 de-envelopment, one of the steps required for HSV-1 nuclear egress. Our newly established screening system enabled us to identify a novel cellular protein required for efficient HSV-1 de-envelopment. The identification of cellular protein(s) that interact with viral effector proteins and function in important viral procedures is necessary for enhancing our understanding of the mechanics of various viral processes. In this study, we established a new system consisting of interactome screening for the herpes simplex virus 1 (HSV-1) nuclear egress complex (NEC), followed by loss-of-function screening to target the identified putative NEC-interacting cellular proteins to detect a defect in HSV-1 nuclear egress. This newly established system identified SLC35E1, an orphan transporter, as a novel cellular protein required for efficient HSV-1 de-envelopment, providing an insight into the mechanisms involved in this viral procedure.

摘要

本研究开发了一个系统,该系统包括两轮筛选与单纯疱疹病毒 1(HSV-1)核出位相关的细胞蛋白。我们使用该系统,首先通过串联亲和纯化结合基于质谱的蛋白质组学技术,筛选与 HSV-1 感染细胞中的核出位复合物(NEC)相互作用的细胞蛋白,该复合物由 HSV-1 中的 UL34 和 UL31 组成,对 HSV-1 的核出位至关重要。接下来,我们使用靶向在第一轮蛋白质组学筛选中鉴定的细胞蛋白的单引导 RNA,在荧光显微镜下对活的 HSV-1 感染报告细胞进行基于 CRISPR/Cas9 的筛选,以检测核出位缺陷的表型,即核孔层粘连蛋白 emerin 的定位错误。该研究集中于一种细胞孤儿转运蛋白 SLC35E1,它是筛选系统鉴定的细胞蛋白之一。SLC35E1 的敲除降低了 HSV-1 的复制,并诱导了含有核周包膜病毒(PEV)的膜内陷,这些 PEV 位于核膜(NM)附近,在内外 NM 之间的核周空间中异常积累 PEV 和内陷结构,并使 NEC 定位错误。这些效应与先前报道的 HSV-1 蛋白突变或对 HSV-1 去包膜过程中重要的细胞蛋白的耗尽相似,这是 HSV-1 核出位所必需的步骤之一。我们新建立的筛选系统使我们能够鉴定出一种新型细胞蛋白,该蛋白对 HSV-1 的有效去包膜至关重要。鉴定与病毒效应蛋白相互作用并在重要病毒过程中发挥作用的细胞蛋白,对于增强我们对各种病毒过程机制的理解是必要的。在这项研究中,我们建立了一个新的系统,该系统由单纯疱疹病毒 1(HSV-1)核出位复合物(NEC)的互作组筛选组成,随后进行功能丧失筛选,以针对鉴定的潜在 NEC 相互作用的细胞蛋白,检测 HSV-1 核出位缺陷。这个新建立的系统鉴定出 SLC35E1,一种孤儿转运蛋白,作为一种新型的细胞蛋白,它是 HSV-1 有效去包膜所必需的,为了解这一病毒过程的机制提供了一个新视角。

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