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具有外源性融合活性的单纯疱疹病毒糖蛋白B的结构-功能分析

Structure-function analysis of herpes simplex virus glycoprotein B with fusion-from-without activity.

作者信息

Roller Devin G, Dollery Stephen J, Doyle James L, Nicola Anthony V

机构信息

Department of Microbiology and Immunology, Virginia Commonwealth University School of Medicine, Richmond, Virginia 23298-0678, USA.

出版信息

Virology. 2008 Dec 20;382(2):207-16. doi: 10.1016/j.virol.2008.09.015. Epub 2008 Oct 23.

Abstract

Fusion-from-without (FFWO) is the rapid induction of cell fusion by virions in the absence of viral protein synthesis. The combination of two amino acid mutations in envelope glycoprotein B (gB), one in the ectodomain and one in the cytoplasmic tail, can confer FFWO activity to wild type herpes simplex virus (HSV). In this report, we analyzed the entry and cell fusion phenotypes of HSV that contains FFWO gB, with emphasis on the cellular receptors for HSV, nectin-1, nectin-2 and HVEM. The ability of an HSV strain with FFWO gB to efficiently mediate FFWO via a specific gD-receptor correlated with its ability to mediate viral entry by that receptor. A FFWO form of gB was not sufficient to switch the entry of HSV from a pH-dependent, endocytic pathway to a direct fusion, pH-independent pathway. The conformation of gB with FFWO activity was not globally altered relative to wild type. However, distinct monoclonal antibodies had reduced reactivity with FFWO gB, suggesting an altered antigenic structure relative to wild type. FFWO was blocked by preincubation of virions with neutralizing antibodies to gB or gD. Together with previous studies, the results indicate that the roles of gB in FFWO and in virus-cell fusion during entry are related but not identical. This study also suggests that the FFWO function of gB is not a specific determinant for the selection of HSV entry pathway and that antigenic differences in FFWO gB may reflect its enhanced fusion activity.

摘要

外源性融合(FFWO)是指在没有病毒蛋白合成的情况下,病毒粒子快速诱导细胞融合。包膜糖蛋白B(gB)中的两个氨基酸突变组合,一个在外结构域,一个在细胞质尾部,可以赋予野生型单纯疱疹病毒(HSV)FFWO活性。在本报告中,我们分析了含有FFWO gB的HSV的进入和细胞融合表型,重点关注HSV的细胞受体,即nectin-1、nectin-2和HVEM。具有FFWO gB的HSV毒株通过特定gD受体有效介导FFWO的能力与其通过该受体介导病毒进入的能力相关。FFWO形式的gB不足以将HSV的进入途径从pH依赖性的内吞途径转变为直接融合的、不依赖pH的途径。与野生型相比,具有FFWO活性的gB的构象没有全局改变。然而,不同的单克隆抗体与FFWO gB的反应性降低,表明相对于野生型,其抗原结构发生了改变。FFWO被用针对gB或gD的中和抗体对病毒粒子进行预孵育所阻断。与先前的研究一起,结果表明gB在FFWO和进入过程中的病毒-细胞融合中的作用相关但不相同。本研究还表明,gB的FFWO功能不是HSV进入途径选择的特异性决定因素,并且FFWO gB中的抗原差异可能反映其增强的融合活性。

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