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单纯疱疹病毒 1 糖蛋白 H 的插入突变会降低细胞表面表达,减缓细胞融合的速度,或使细胞融合和病毒进入的功能丧失。

Insertion mutations in herpes simplex virus 1 glycoprotein H reduce cell surface expression, slow the rate of cell fusion, or abrogate functions in cell fusion and viral entry.

机构信息

Department of Microbiology and Immunology, the Feinberg School of Medicine, Northwestern University, 303 East Chicago Avenue, Ward 6-231, Chicago, IL 60611, USA.

出版信息

J Virol. 2010 Feb;84(4):2038-46. doi: 10.1128/JVI.02215-09. Epub 2009 Dec 9.

Abstract

Of the four required herpes simplex virus (HSV) entry glycoproteins, the precise role of gH-gL in fusion remains the most elusive. The heterodimer gH-gL has been proposed to mediate hemifusion after the interaction of another required glycoprotein, gD, with a receptor. To identify functional domains of HSV-1 gH, we generated 22 randomized linker-insertion mutants. Analyses of 22 gH mutants revealed that gH is relatively tolerant of insertion mutations, as 15 of 22 mutants permitted normal processing and transport of gH-gL to the cell surface. gH mutants that were not expressed well at the cell surface did not function in fusion or viral entry. The screening of gH mutants for function revealed the following: (i) for wild-type gH and some gH mutants, fusion with nectin-1-expressing target cells occurred more rapidly than with herpesvirus entry mediator (HVEM)-expressing target cells; (ii) some gH mutants reduced the rate of cell fusion without abrogating fusion completely, indicating that gH may play a role in governing the kinetics of fusion and may be responsible for a rate-limiting first stage in HSV-1 fusion; and (iii) only one gH mutant, located within the short cytoplasmic tail, completely abrogated function, indicating that the gH cytoplasmic tail is crucial for cell fusion and viral infectivity.

摘要

在四种所需的单纯疱疹病毒 (HSV) 进入糖蛋白中,gH-gL 在融合中的精确作用仍然最难以捉摸。已提出异二聚体 gH-gL 在另一种必需糖蛋白 gD 与受体相互作用后介导半融合。为了鉴定 HSV-1 gH 的功能结构域,我们生成了 22 个随机化连接子插入突变体。对 22 个 gH 突变体的分析表明,gH 相对耐受插入突变,因为 22 个突变体中的 15 个允许 gH-gL 正常加工和转运到细胞表面。在细胞表面表达不佳的 gH 突变体不能在融合或病毒进入中发挥作用。对 gH 突变体进行功能筛选揭示了以下结果:(i) 对于野生型 gH 和一些 gH 突变体,与表达 nectin-1 的靶细胞融合比与表达疱疹病毒进入介导物 (HVEM) 的靶细胞融合更快;(ii) 一些 gH 突变体降低了细胞融合的速率,但没有完全阻断融合,表明 gH 可能在调节融合动力学方面发挥作用,并且可能负责 HSV-1 融合的限速第一阶段;和 (iii) 只有一个 gH 突变体,位于短细胞质尾中,完全阻断了功能,表明 gH 细胞质尾对于细胞融合和病毒感染性至关重要。

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