Sandrin Virginie, Boulanger Pierre, Penin Francois, Granier Christelle, Cosset François-Loïc, Bartosch Birke
IFR128 BioSciences Lyon-Gerland, Lyon, F-69007 France.
Ecole Normale Supérieure de Lyon, Lyon, F-69007 France.
J Gen Virol. 2005 Dec;86(Pt 12):3189-3199. doi: 10.1099/vir.0.81428-0.
Hepatitis C virus (HCV) E1 and E2 envelope glycoproteins (GPs) displayed on retroviral cores (HCVpp) are a powerful and highly versatile model system to investigate wild-type HCV entry. To further characterize this model system, the cellular site of HCVpp assembly and the respective roles of the HCV GPs in this process were investigated. By using a combination of biochemical methods with confocal and electron microscopic techniques, it was shown that, in cells producing HCVpp, both E1 and E2 colocalized with retroviral core proteins intracellularly, presumably in multivesicular bodies, but not at the cell surface. When E1 and E2 were expressed individually with retroviral core proteins, only E2 colocalized with and was incorporated on retroviral cores. Conversely, the colocalization of E1 with retroviral core proteins and its efficient incorporation occurred only upon co-expression of E2. Moreover, HCVpp infectivity correlated strictly with the presence of both E1 and E2 on retroviral cores. Altogether, these results confirm that the E1E2 heterodimer constitutes the prebudding form of functional HCV GPs and, more specifically, show that dimerization with E2 is a prerequisite for efficient E1 incorporation onto particles.
展示在逆转录病毒核心上的丙型肝炎病毒(HCV)E1和E2包膜糖蛋白(GPs)(HCVpp)是研究野生型HCV进入的一个强大且高度通用的模型系统。为了进一步表征该模型系统,研究了HCVpp组装的细胞位点以及HCV GPs在此过程中的各自作用。通过将生化方法与共聚焦和电子显微镜技术相结合,结果表明,在产生HCVpp的细胞中,E1和E2在细胞内与逆转录病毒核心蛋白共定位,推测是在多囊泡体中,而不是在细胞表面。当E1和E2与逆转录病毒核心蛋白单独表达时,只有E2与逆转录病毒核心共定位并整合到逆转录病毒核心上。相反,只有在E2共表达时,E1才与逆转录病毒核心蛋白共定位并有效整合。此外,HCVpp感染性与逆转录病毒核心上同时存在E1和E2严格相关。总之,这些结果证实E1E2异二聚体构成了功能性HCV GPs的出芽前形式,更具体地说,表明与E2二聚化是E1有效整合到颗粒上的先决条件。