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丙型肝炎病毒E2蛋白糖基化在昆虫和哺乳动物细胞中病毒包膜蛋白功能中的作用。

The role of HCV e2 protein glycosylation in functioning of virus envelope proteins in insect and Mammalian cells.

作者信息

Orlova O V, Drutsa V L, Spirin P V, Prasolov V S, Rubtsov P M, Kochetkov S N, Beljelarskaya S N

机构信息

Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Vavilova Str., 32, 119991, Moscow, Russia.

Chemical Department of Moscow State University, Leninskie Gory, 1, Bld. 3, 119899, Moscow, Russia.

出版信息

Acta Naturae. 2015 Jan-Mar;7(1):87-97.

Abstract

The hepatitis C virus (HCV) envelope proteins E1 and E2, being virion components, are involved in the formation of infectious particles in infected cells. The detailed structure of the infectious particle of HCV remains poorly understood. Moreover, the virion assembly and release of virions by the cell are the least understood processes. It is believed that virion properties depend on glycosylation of the virus envelope proteins in a cell, while glycansat several glycosylation sites of these proteins play a pivotal role in protein functioning and the HCV life cycle. N-glycans of glycoproteins can influence viral particle formation, virus binding to cell surface, and HCV pathogenesis. We studied the effect of glycans on the folding ofthe E2 glycoprotein, formation of functional glycoprotein complexes and virus particles in insect and mammalian cells. In order to investigate these processes, point mutations of the N-glycosylation sites of HCV protein E2 (genotype 1b strain 274933RU) were generated and the mutant proteins were further analyzed in the baculovirus expression system. Elimination of the single glycosylation sites of the E2 glycoprotein, except for the N6 site, did not affect its synthesis efficiency in Sf9 insect cells, while the electrophoretic mobility of mutant proteins increased in proportion to the decrease in the number of glycosylation sites. The level of synthesis of HCV glycoprotein E2 in human HEK293T cells depended on the presence of glycans at the N1 and N8 glycosylation sites in contrast to Sf9 cells. At the same time, elimination of glycans at the N1, N2, and N10 sites led to the accumulation of unproductive E1E2 dimers as aggregates and productive assembly suppression of virus-like particles both in insect and mammalian cells. In addition, elimination of single glycosylation sites of HCV E2 had no impact on the RNA synthesis of structural proteins and formation of virus-like particles in insect and mammalian cells.

摘要

丙型肝炎病毒(HCV)包膜蛋白E1和E2作为病毒粒子的组成部分,参与感染细胞中传染性颗粒的形成。HCV传染性颗粒的详细结构仍知之甚少。此外,病毒粒子的组装以及细胞释放病毒粒子是了解最少的过程。据信,病毒粒子的特性取决于细胞中病毒包膜蛋白的糖基化,而这些蛋白多个糖基化位点上的聚糖在蛋白功能和HCV生命周期中起关键作用。糖蛋白的N-聚糖可影响病毒粒子的形成、病毒与细胞表面的结合以及HCV发病机制。我们研究了聚糖对E2糖蛋白折叠、功能性糖蛋白复合物形成以及昆虫和哺乳动物细胞中病毒粒子的影响。为了研究这些过程,我们对HCV蛋白E2(1b基因型毒株274933RU)的N-糖基化位点进行了点突变,并在杆状病毒表达系统中对突变蛋白进行了进一步分析。除N6位点外,消除E2糖蛋白的单个糖基化位点并不影响其在Sf9昆虫细胞中的合成效率,而突变蛋白的电泳迁移率与糖基化位点数量的减少成比例增加。与Sf9细胞不同,人HEK293T细胞中HCV糖蛋白E2的合成水平取决于N1和N8糖基化位点上聚糖的存在。同时,消除N1、N2和N10位点上的聚糖会导致无活性的E1E2二聚体聚集积累,并抑制昆虫和哺乳动物细胞中病毒样颗粒有效组装。此外,消除HCV E2的单个糖基化位点对昆虫和哺乳动物细胞中结构蛋白的RNA合成以及病毒样颗粒的形成没有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/944a/4410399/8a45ab02be9e/AN20758251-24-087-g001.jpg

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