Davis-Poynter N, Bell S, Minson T, Browne H
Department of Pathology, University of Cambridge, United Kingdom.
J Virol. 1994 Nov;68(11):7586-90. doi: 10.1128/JVI.68.11.7586-7590.1994.
The contributions of a set of herpes simplex virus type 1 membrane proteins towards the process of cell-cell fusion were examined with a series of deletion mutants into which a syncytial mutation had been introduced at codon 855 of the glycoprotein B (gB) gene. Analysis of the fusion phenotypes of these recombinant viruses in Vero cells revealed that while gC, gG, US5, and UL43 are dispensable for syncytium formation at both high and low multiplicities of infection, gD, gHgL, gE, gI, and gM were all required for the fusion of cellular membranes. These data confirm that the requirements for virion entry and cell-cell fusion are not identical. gD and gHgL, like gB, are essential for both processes. gG, gI, and gM, on the other hand, are dispensable for virus penetration, yet play a role in cell-to-cell spread by the direct contact route, at least on an SC16 gBANG background.
利用一系列缺失突变体研究了一组1型单纯疱疹病毒膜蛋白对细胞间融合过程的贡献,这些突变体在糖蛋白B(gB)基因的第855位密码子处引入了合胞体突变。对这些重组病毒在Vero细胞中的融合表型分析表明,虽然gC、gG、US5和UL43在高感染复数和低感染复数时对于合胞体形成都是非必需的,但gD、gHgL、gE、gI和gM对于细胞膜融合都是必需的。这些数据证实病毒进入和细胞间融合的要求并不相同。gD和gHgL与gB一样,对这两个过程都是必不可少的。另一方面,gG、gI和gM对于病毒穿透是可有可无的,但至少在SC16 gBANG背景下,它们通过直接接触途径在细胞间传播中发挥作用。