疱疹病毒科糖蛋白B同源物的功能。

Infectious agents and disease Pub Date : 1994-02-01
L Pereira
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引用次数: 0

摘要

人类和动物的疱疹病毒是具有复杂遗传组织的大型包膜病毒粒子,可引起溶解性或潜伏性感染。在这些病毒编码并整合到病毒粒子包膜中的许多糖蛋白中,糖蛋白B (gB)是最高度保守的。所有疱疹病毒的基因组都对gB同源物进行编码。gB是传染性所必需的,并通过促进病毒粒子和质膜的融合而穿透细胞。合胞体的形成是病毒感染细胞中融合活性的一种表现,是由gB或编码糖蛋白和整体膜蛋白的某些其他基因的突变引起的。gB和其他蛋白质的突变导致合胞体形成的悖论可以通过以下假设来解释:gB通常参与一个多亚基蛋白质复合物,该复合物在与细胞表面受体的一系列相互作用后控制融合。合胞体的形成由该复合体的组成部分的改变形式将是不太好的调节事件的结果。最近对其他病毒系统中融合的控制以及正常细胞分泌途径中囊泡融合的研究结果,支持了gB与其他病毒蛋白一起作用形成疏水融合孔的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Function of glycoprotein B homologues of the family herpesviridae.

The herpesviruses of humans and animals are large, enveloped virions with complex genetic organization that cause either lytic or latent infections. Of the many glycoproteins encoded by these viruses and incorporated into the virion envelope, glycoprotein B (gB) is the most highly conserved. Homologues of gB are encoded by the genomes of all the herpesviruses. gB is required for infectivity and functions in penetration of cells by promoting fusion of the virion and plasma membranes. Syncytium formation, a manifestation of fusion activity in virus-infected cells, results from mutations in gB or in certain other genes encoding glycoproteins and integral membrane proteins. The paradox that mutations in gB and other proteins cause the formation of syncytia can be explained by the hypothesis that gB normally participates in a multisubunit protein complex that controls fusion following a cascade of interactions with cell-surface receptors. Syncytium formation by altered forms of the components of this complex would be the result of less well-regulated events. Recent findings on the control of fusion in other virus systems, and on vesicle fusion in the normal cellular secretory pathway, support a model in which gB functions together with other viral proteins to form a hydrophobic fusion pore.

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