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丙型肝炎病毒E2糖蛋白:N-连接糖基化位点的诱变及其对E2表达和加工的影响。

HCV E2 glycoprotein: mutagenesis of N-linked glycosylation sites and its effects on E2 expression and processing.

作者信息

Slater-Handshy Tiffany, Droll Deborah A, Fan Xiaofeng, Di Bisceglie Adrian M, Chambers Thomas J

机构信息

Department of Molecular Microbiology and Immunology, St. Louis University School of Medicine, St. Louis, MO 63104, USA.

出版信息

Virology. 2004 Feb 5;319(1):36-48. doi: 10.1016/j.virol.2003.10.008.

Abstract

An expression system for analysis of the synthesis and processing of the E2 glycoprotein of a hepatitis C virus (HCV) genotype 1a strain was developed in transiently transfected cells. E2 proteins representing the entire length of the protein, including the transmembrane segment (E2) as well as two truncated versions (E2(660) and E2(715)), were characterized for acquisition of N-linked glycans and transport to the media of transfected cells. To investigate the utilization of the 10 potential N-linked glycosylation sites on this E2 protein, a series of mutations consisting of single or multiple (two, three, four or eight) ablations of asparagine residues in the background of the E2(660) construct were analyzed. E2(660) proteins harboring single or multiple site mutations were produced at levels similar to that of wild-type protein, but secretion of the single mutants was mildly diminished, and elimination of two or more sites dramatically reduced delivery of the protein to the media. Similar results were obtained in Huh-7 cells with respect to intracellular synthesis and secretion of the mutant proteins. Analysis of oligosaccharide composition using endoglycosidase digestion revealed that all of the glycan residues on the intracellular forms of E2(660), E2(715), and E2 contained N-linked glycans modified into high-mannose carbohydrates, in contrast to the secreted forms, which were endo H resistant. The parental E2(660) protein could be readily detected in Huh-7 cells using anti-polyhistidine or antibody to recombinant E2. In contrast, E2(660) lacking the eight N-linked glycans was expressed but not detectable with anti-E2 antibody, and proteins lacking four glycans exhibited reduced reactivity. These experiments provide direct evidence that the presence of multiple N-linked glycans is required for the proper folding of the E2 protein in the ER and secretory pathway as well as for formation of its antigenic structure.

摘要

在瞬时转染细胞中建立了一个用于分析丙型肝炎病毒(HCV)1a基因型毒株E2糖蛋白合成与加工的表达系统。对代表该蛋白全长的E2蛋白进行了表征,包括跨膜区段(E2)以及两个截短版本(E2(660)和E2(715)),分析其获取N-连接聚糖以及转运至转染细胞培养基的情况。为了研究该E2蛋白上10个潜在N-连接糖基化位点的利用情况,分析了一系列由E2(660)构建体背景下单个或多个(两个、三个、四个或八个)天冬酰胺残基缺失组成的突变。携带单个或多个位点突变的E2(660)蛋白的产生水平与野生型蛋白相似,但单个突变体的分泌略有减少,而消除两个或更多位点则显著降低了该蛋白向培养基中的递送。在Huh-7细胞中,关于突变蛋白的细胞内合成和分泌也获得了类似结果。使用内切糖苷酶消化分析寡糖组成表明,与对内切糖苷酶H有抗性的分泌形式相比,E2(660)、E2(715)和E2细胞内形式上的所有聚糖残基都含有被修饰为高甘露糖碳水化合物的N-连接聚糖。使用抗多组氨酸抗体或重组E2抗体可在Huh-7细胞中轻松检测到亲本E2(660)蛋白。相比之下,缺少八个N-连接聚糖的E2(660)虽有表达,但用抗E2抗体无法检测到;缺少四个聚糖的蛋白表现出反应性降低。这些实验提供了直接证据,表明多个N-连接聚糖的存在对于E2蛋白在内质网和分泌途径中的正确折叠以及其抗原结构的形成是必需的。

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