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N-连接聚糖对丙型肝炎病毒E1嵌合糖蛋白细胞内运输的影响及其在假型病毒感染性中的作用。

Influence of N-linked glycans on intracellular transport of hepatitis C virus E1 chimeric glycoprotein and its role in pseudotype virus infectivity.

作者信息

Beyene Aster, Basu Arnab, Meyer Keith, Ray Ranjit

机构信息

Department of Internal Medicine, Saint Louis University, 3635 Vista Avenue, St. Louis, MO 63110, USA.

出版信息

Virology. 2004 Jul 1;324(2):273-85. doi: 10.1016/j.virol.2004.03.039.

Abstract

We have previously reported a functional role associated with hepatitis C virus (HCV) E1 glycoprotein using vesicular stomatitis virus (VSV)/HCV pseudotype. In this study, we have investigated the role of glycosylation upon intracellular transport of chimeric E1-G, and in infectivity of the pseudotyped virus. Interestingly, surface expressed E1-G exhibited sensitivity to Endoglycosidase H (Endo H) treatment, which was similar to full-length E1, suggesting that additional complex oligosaccharides were not added while E1-G was in transit from the endoplasmic reticulum (ER) to the mammalian cell surface. As a next step, each of the four potential N-linked glycosylation sites located at amino acid position 196, 209, 234, or 305 of the E1 ectodomain were mutated separately (asparagine --> glutamine), or in some combination. FACS analysis suggested that mutation(s) of the glycosylation sites affect the translocation of E1-G to the cell surface to different extents, with no single site being particularly essential. VSV pseudotype virus generated from glycosylation mutants exhibited a decrease in titer with an increasing number of mutations at the glycosylation sites on chimeric E1-G. In a separate experiment, N-glycosidase F treatment of pseudotype generated from the already synthesized E1-G or its mutants decreased virus titer by approximately 35%, and the neutralization activity of patient sera was not significantly altered with N-glycosidase F-treated pseudotype virus. Taken together, our results suggested that E1-G does not add complex sugar moieties during transport to the cell surface and retain the glycosylation profile of its parental E1 sequence. Additionally, the removal of glycans from the E1-G reduced, but does not completely impair, virus infectivity.

摘要

我们之前曾报道过使用水泡性口炎病毒(VSV)/丙型肝炎病毒(HCV)假型来研究与HCV E1糖蛋白相关的功能作用。在本研究中,我们调查了糖基化对嵌合E1-G细胞内运输以及假型病毒感染性的作用。有趣的是,表面表达的E1-G对内切糖苷酶H(Endo H)处理表现出敏感性,这与全长E1相似,表明在E1-G从内质网(ER)转运至哺乳动物细胞表面的过程中没有添加额外的复杂寡糖。接下来,位于E1胞外域氨基酸位置196、209、234或305的四个潜在N-连接糖基化位点分别被突变(天冬酰胺→谷氨酰胺),或进行了某些组合突变。流式细胞术分析表明,糖基化位点的突变在不同程度上影响E1-G向细胞表面的转运,没有单个位点是特别必需的。由糖基化突变体产生的VSV假型病毒,随着嵌合E1-G上糖基化位点突变数量的增加,其滴度降低。在另一项实验中,对已经合成的E1-G或其突变体产生的假型进行N-糖苷酶F处理,使病毒滴度降低了约35%,并且N-糖苷酶F处理的假型病毒对患者血清的中和活性没有显著改变。综上所述,我们的结果表明,E1-G在转运至细胞表面的过程中不会添加复杂糖基部分,并保留了其亲本E1序列的糖基化特征。此外,从E1-G上去除聚糖会降低但不会完全损害病毒感染性。

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