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首页> 外文期刊>Biochemistry and Biophysics Reports >Hepatitis C virus: The role of N-glycosylation sites of viral genotype 1b proteins for formation of viral particles in insect and mammalian cells
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Hepatitis C virus: The role of N-glycosylation sites of viral genotype 1b proteins for formation of viral particles in insect and mammalian cells

机译:丙型肝炎病毒:病毒基因型1b蛋白的N-糖基化位点在昆虫和哺乳动物细胞中形成病毒颗粒的作用

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Hepatitis C virus (HCV) is characterized by considerable genetic variability and, as a consequence, it has 6 genotypes and multitude of subtypes. HCV envelope glycoproteins are involved in the virion formation; the correct folding of these proteins plays the key role in virus infectivity. Glycosylation at certain sites of different genotypes HCV glycoproteins shows substantial differences in functions of the individual glycans (Goffard et al., 2005; Helle et al., 2010) . In this study, differential glycosylation sites of HCV genotype 1b envelope proteins in insect and mammalian cells was demonstrated. We showed that part of glycosylation sites was important for folding of the proteins involved in the formation of viral particles. Point mutations were introduced in the protein N-glycosylation sites of HCV (genotype 1b) and the mutant proteins were analyzed using baculovirus expression system in mammalian and insect cells. Our data showed that, in contrast to HCV 1a and 2a, the folding of HCV 1b envelope proteins E2 (sites N1, N2, N10) and E1 (sites N1, N5) was disrupted, however that did not prevent the formation of virus-like particles (VLP) with misfolded glycoproteins having densities typical for HCV particles containing RNA fragments. Experimental data are supported by mathematical modeling of the structure of E1 mutant variants. Highlights ? Baculovirus expression system in mammalian and insect cells for. ? Glycosylation at certain sites of HCV genotype 1b. ? Part of glycosylation sites of E1, E2 HCV important for folding of the proteins involved in the formation of viral particles.
机译:丙型肝炎病毒(HCV)具有相当大的遗传变异性,因此具有6个基因型和众多亚型。 HCV包膜糖蛋白参与病毒体的形成。这些蛋白质的正确折叠在病毒感染性中起关键作用。 HCV糖蛋白在不同基因型的某些位点的糖基化显示单个聚糖的功能存在实质性差异(Goffard等,2005; Helle等,2010)。在这项研究中,证明了昆虫和哺乳动物细胞中HCV基因型1b包膜蛋白的差异糖基化位点。我们表明,糖基化位点的一部分对于折叠参与病毒颗粒形成的蛋白质非常重要。将点突变引入HCV的蛋白N-糖基化位点(基因型1b),并使用杆状病毒表达系统在哺乳动物和昆虫细胞中分析突变蛋白。我们的数据显示,与HCV 1a和2a相比,HCV 1b包膜蛋白E2(位点N1,N2,N10)和E1(位点N1,N5)的折叠受到破坏,但是这并不能阻止病毒的形成-具有错误折叠的糖蛋白的类似颗粒(VLP),其密度通常是包含RNA片段的HCV颗粒的密度。 E1突变体变体结构的数学建模为实验数据提供了支持。强调 ?杆状病毒表达系统在哺乳动物和昆虫细胞中为。 ? HCV基因型1b某些位点的糖基化。 ? E1,E2 HCV的糖基化位点的一部分对于折叠参与病毒颗粒形成的蛋白质非常重要。

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