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二硫键连接的水痘-带状疱疹病毒糖蛋白gpII(140)的组装与加工

Assembly and processing of the disulfide-linked varicella-zoster virus glycoprotein gpII(140).

作者信息

Montalvo E A, Grose C

出版信息

J Virol. 1987 Sep;61(9):2877-84. doi: 10.1128/JVI.61.9.2877-2884.1987.

Abstract

Varicella-zoster virus (VZV) specifies the synthesis of at least four families of glycoproteins, which have been designated gpI, gpII, gpIII, and gpIV. In this report we describe the assembly and processing of VZV gpII, a structural protein of an apparent Mr of 140,000, which is the homolog of gB of herpes simplex virus. For these studies, we used two anti-gpII monoclonal antibodies which exhibited both complement-independent neutralization activity and inhibition of virus-induced cell-to-cell fusion. Pulse-chase labeling experiments identified a 124,000-Mr intermediate which was chased to the mature 140,000-Mr product when analyzed in nonreducing gels; in the presence of a reducing agent, the native gp140 was cleaved into two closely migrating species (gp66 and gp68). The biosynthesis of VZV gpII was further analyzed in the presence of the following inhibitors of glycoprotein processing: tunicamycin, monensin, castanospermine, swainsonine, and deoxymannojirimycin. All intermediate and mature forms were digested with endoglycosidases H and F, neuraminidase, and O-glycanase to further define high-mannose, complex, and O-linked glycans. Finally, the addition of sulfate residues was investigated. This characterization of VZV gpII revealed the following results. (i) gp128 and gp124 were early high-mannose forms, (ii) gp126 was an intermediate form with complex N-linked oligosaccharides, (iii) gp130 was a later intermediate with both N-linked and O-linked glycans, and (iv) the mature product gp140 contained a mixture of N-linked and O-linked glycans which were both sialated and sulfated. Further investigations indicated that gpII sulfation was inhibited by tunicamycin and castanospermine but not by deoxymannojirimycin or swainsonine. We also concluded that VZV gpII displayed many biological and biochemical properties similar to those of its herpes simplex virus homolog gB.

摘要

水痘带状疱疹病毒(VZV)至少能合成四类糖蛋白,分别命名为gpI、gpII、gpIII和gpIV。在本报告中,我们描述了VZV gpII的组装和加工过程,gpII是一种表观分子量为140,000的结构蛋白,是单纯疱疹病毒gB的同源物。为了进行这些研究,我们使用了两种抗gpII单克隆抗体,它们既表现出不依赖补体的中和活性,又能抑制病毒诱导的细胞间融合。脉冲追踪标记实验确定了一个分子量为124,000的中间体,在非还原凝胶中分析时,它会被追踪到成熟的分子量为140,000的产物;在还原剂存在的情况下,天然的gp140会被切割成两个迁移距离相近的条带(gp66和gp68)。在存在以下糖蛋白加工抑制剂的情况下,对VZV gpII的生物合成进行了进一步分析:衣霉素、莫能菌素、栗精胺、苦马豆素和脱氧甘露基野尻霉素。所有中间体和成熟形式都用内切糖苷酶H和F、神经氨酸酶和O-聚糖酶进行消化,以进一步确定高甘露糖型、复合型和O-连接聚糖。最后,研究了硫酸根残基的添加情况。对VZV gpII的这种表征揭示了以下结果。(i)gp128和gp124是早期的高甘露糖型,(ii)gp126是具有复合型N-连接寡糖的中间形式,(iii)gp130是后期的中间体,同时具有N-连接和O-连接聚糖,(iv)成熟产物gp140包含N-连接和O-连接聚糖的混合物,这些聚糖都被唾液酸化和硫酸化。进一步的研究表明,衣霉素和栗精胺可抑制gpII的硫酸化,但脱氧甘露基野尻霉素或苦马豆素则不能。我们还得出结论,VZV gpII表现出许多与其单纯疱疹病毒同源物gB相似的生物学和生化特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37e3/255809/ce322e0dbc0c/jvirol00100-0233-a.jpg

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