首页> 美国卫生研究院文献>The Journal of General Virology >Comprehensive linker-scanning mutagenesis of the hepatitis C virus E1 and E2 envelope glycoproteins reveals new structure–function relationships
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Comprehensive linker-scanning mutagenesis of the hepatitis C virus E1 and E2 envelope glycoproteins reveals new structure–function relationships

机译:丙型肝炎病毒E1和E2包膜糖蛋白的全面接头扫描诱变揭示了新的结构与功能关系

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摘要

Despite extensive research, many details about the structure and functions of hepatitis C virus (HCV) glycoproteins E1 and E2 are not fully understood, and their crystal structure remains to be determined. We applied linker-scanning mutagenesis to generate a panel of 34 mutants, each containing an insertion of 5 aa at a random position within the E1E2 sequence. The mutated glycoproteins were analysed by using a range of assays to identify regions critical for maintaining protein conformation, E1E2 complex assembly, CD81 receptor binding, membrane fusion and infectivity. The results, while supporting previously published data, provide several interesting new findings. Firstly, insertion at amino acid 587 or 596 reduced E1E2 heterodimerization without affecting reactivity with some conformation-sensitive mAbs or with CD81, thus implicating these residues in glycoprotein assembly. Secondly, insertions within a conserved region of E2, between amino acid residues 611 and 631, severely disrupted protein conformation and abrogated binding of all conformation-sensitive antibodies, suggesting that the structural integrity of this region is critical for the correct folding of E2. Thirdly, an insertion at Leu-682 specifically affected membrane fusion, providing direct evidence that the membrane-proximal ‘stem’ of E2 is involved in the fusion mechanism. Overall, our results show that the HCV glycoproteins generally do not tolerate insertions and that there are a very limited number of sites that can be changed without dramatic loss of function. Nevertheless, we identified two E2 insertion mutants, at amino acid residues 408 and 577, that were infectious in the murine leukemia virus-based HCV pseudoparticle system.
机译:尽管进行了广泛的研究,但关于丙型肝炎病毒(HCV)糖蛋白E1和E2的结构和功能的许多细节尚未完全了解,其晶体结构尚待确定。我们应用了接头扫描诱变来生成一组34个突变体,每个突变体在E1E2序列内的随机位置均包含5个氨基酸的插入。通过使用一系列测定法分析突变的糖蛋白,以鉴定对维持蛋白质构象,E1E2复合物装配,CD81受体结合,膜融合和感染性至关重要的区域。这些结果在支持先前发布的数据的同时,提供了一些有趣的新发现。首先,在氨基酸587或596处插入可减少E1E2异二聚作用,而不影响与某些构象敏感性mAb或CD81的反应性,从而将这些残基牵涉到糖蛋白装配中。其次,在E2保守区域内氨基酸残基611和631之间的插入会严重破坏蛋白质构象并废除所有构象敏感抗体的结合,这表明该区域的结构完整性对于E2的正确折叠至关重要。第三,Leu-682的插入特别影响了膜融合,提供了直接证据表明E2的膜近端“茎”参与了融合机制。总体而言,我们的结果表明,HCV糖蛋白通常不耐受插入,并且可以改变的位点数量非常有限,而不会造成功能的显着丧失。尽管如此,我们在基于鼠白血病病毒的HCV伪粒子系统中发现了两个E2插入突变体,位于氨基酸残基408和577。

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