Lavie Muriel, Goffard Anne, Dubuisson Jean
Institut de Biologie de Lille (UMR8161), CNRS, Université de Lille I and II, and Institut Pasteur de Lille, Lille, France.
Curr Issues Mol Biol. 2007 Jul;9(2):71-86.
The two HCV envelope glycoproteins E1 and E2 are released from HCV polyprotein by signal peptidase cleavages. These glycoproteins are type I transmembrane proteins with a highly glycosylated N-terminal ectodomain and a C-terminal hydrophobic anchor. After their synthesis, HCV glycoproteins E1 and E2 associate as a noncovalent heterodimer. The transmembrane domains of HCV envelope glycoproteins play a major role in E1E2 heterodimer assembly and subcellular localization. The envelope glycoprotein complex E1E2 has been proposed to be essential for HCV entry. However, for a long time, HCV entry studies have remained limited because of the lack of a robust cell culture system to amplify this virus. A few years ago, a model mimicking the entry process of HCV lifecycle has been developed by pseudotyping retroviral particles with native HCV envelope glycoproteins. This model allowed the characterization of functional E1E2 envelope glycoproteins. The data obtained can now be confirmed with the help of a newly developed cell-culture system that allows efficient amplification of HCV (HCVcc). Here, we present the recent data that have been accumulated on the assembly of the functional HCV glycoprotein heterodimer.
丙型肝炎病毒(HCV)的两种包膜糖蛋白E1和E2通过信号肽酶切割从HCV多聚蛋白中释放出来。这些糖蛋白是I型跨膜蛋白,具有高度糖基化的N端胞外结构域和C端疏水锚定区。HCV糖蛋白E1和E2合成后,以非共价异二聚体的形式结合。HCV包膜糖蛋白的跨膜结构域在E1E2异二聚体组装和亚细胞定位中起主要作用。包膜糖蛋白复合物E1E2被认为对HCV进入至关重要。然而,长期以来,由于缺乏强大的细胞培养系统来扩增这种病毒,HCV进入研究一直受到限制。几年前,通过用天然HCV包膜糖蛋白对逆转录病毒颗粒进行假型化,开发了一种模拟HCV生命周期进入过程的模型。该模型使得能够对功能性E1E2包膜糖蛋白进行表征。现在,借助新开发的能够有效扩增HCV的细胞培养系统(HCVcc),所获得的数据可以得到证实。在此,我们展示了最近积累的关于功能性HCV糖蛋白异二聚体组装的数据。