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单纯疱疹病毒糖蛋白 C 调节低 pH 值进入。

Herpes Simplex Virus Glycoprotein C Regulates Low-pH Entry.

机构信息

Department of Veterinary Microbiology and Pathology, College of Veterinary Medicine, Washington State University, Pullman, Washington, USA.

Protein Biotechnology Graduate Training Program, College of Veterinary Medicine, Washington State University, Pullman, Washington, USA.

出版信息

mSphere. 2020 Feb 5;5(1):e00826-19. doi: 10.1128/mSphere.00826-19.

Abstract

Herpes simplex viruses (HSVs) cause significant morbidity and mortality in humans worldwide. Herpesviruses mediate entry by a multicomponent virus-encoded machinery. Herpesviruses enter cells by endosomal low-pH and pH-neutral mechanisms in a cell-specific manner. HSV mediates cell entry via the envelope glycoproteins gB and gD and the heterodimer gH/gL regardless of pH or endocytosis requirements. Specifics concerning HSV envelope proteins that function selectively in a given entry pathway have been elusive. Here, we demonstrate that gC regulates cell entry and infection by a low-pH pathway. Conformational changes in the core herpesviral fusogen gB are critical for membrane fusion. The presence of gC conferred a higher pH threshold for acid-induced antigenic changes in gB. Thus, gC may selectively facilitate low-pH entry by regulating conformational changes in the fusion protein gB. We propose that gC modulates the HSV fusion machinery during entry into pathophysiologically relevant cells, such as human epidermal keratinocytes. Herpesviruses are ubiquitous pathogens that cause lifelong latent infections and that are characterized by multiple entry pathways. We propose that herpes simplex virus (HSV) gC plays a selective role in modulating HSV entry, such as entry into epithelial cells, by a low-pH pathway. gC facilitates a conformational change of the main fusogen gB, a class III fusion protein. We propose a model whereby gC functions with gB, gD, and gH/gL to allow low-pH entry. In the absence of gC, HSV entry occurs at a lower pH, coincident with trafficking to a lower pH compartment where gB changes occur at more acidic pHs. This report identifies a new function for gC and provides novel insight into the complex mechanism of HSV entry and fusion.

摘要

单纯疱疹病毒 (HSV) 在全球范围内给人类造成了重大的发病率和死亡率。疱疹病毒通过多种病毒编码的机制介导进入。疱疹病毒以细胞特异性的方式通过内体低 pH 和 pH 中性机制进入细胞。HSV 通过包膜糖蛋白 gB 和 gD 以及异二聚体 gH/gL 介导细胞进入,无论 pH 值如何或是否需要内吞作用。关于在特定进入途径中选择性发挥作用的 HSV 包膜蛋白的具体细节仍然难以捉摸。在这里,我们证明 gC 通过低 pH 途径调节细胞进入和感染。疱疹病毒融合原 gB 的构象变化对于膜融合至关重要。gC 的存在赋予了 gB 对酸性诱导的抗原性变化的更高 pH 阈值。因此,gC 可能通过调节融合蛋白 gB 的构象变化来选择性地促进低 pH 进入。我们提出,gC 在进入病理相关细胞(如人表皮角质形成细胞)时调节 HSV 融合机制。疱疹病毒是普遍存在的病原体,会导致终生潜伏感染,其特征是有多种进入途径。我们提出单纯疱疹病毒 (HSV) gC 通过低 pH 途径在调节 HSV 进入(例如进入上皮细胞)中发挥选择性作用。gC 促进主要融合原 gB 的构象变化,gB 是一种 III 类融合蛋白。我们提出了一种模型,其中 gC 与 gB、gD 和 gH/gL 一起发挥作用以允许低 pH 进入。在没有 gC 的情况下,HSV 进入发生在较低的 pH 值下,同时运输到较低 pH 值的隔室,其中 gB 在更酸性的 pH 值下发生变化。本报告确定了 gC 的新功能,并为 HSV 进入和融合的复杂机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0184/7002311/2ff48425c69e/mSphere.00826-19-f0001.jpg

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