Yu Xuekui, Qiao Ming, Atanasov Ivo, Hu Zongyi, Kato Takanobu, Liang T Jake, Zhou Z Hong
Department of Pathology and Laboratory Medicine, The University of Texas Medical School at Houston, Houston, TX 77030, USA.
Virology. 2007 Oct 10;367(1):126-34. doi: 10.1016/j.virol.2007.05.038. Epub 2007 Jul 5.
The structural details of hepatitis C virus (HCV) have been elusive because of the lack of a robust tissue culture system for producing an adequate amount of virions from infectious sources for in-depth three-dimensional (3D) structural analysis. Using both negative-stain and cryo-electron microscopy (cryoEM), we show that HCV virions isolated from cell culture have a rather uniform size of 500 A in diameter and that recombinantly expressed HCV-like particles (HCV-LPs) have similar morphologic, biophysical and antigenic features in spite of the varying sizes of the particles. 3D reconstructions were obtained from HCV-LPs with the same size as the HCV virions in the presence and absence of monoclonal antibodies bound to the E1 glycoprotein. The 3D reconstruction of HCV-LP reveals a multilayered architecture, with smooth outer-layer densities arranged in a 'fishbone' configuration. Reconstruction of the particles in complex with anti-E1 antibodies shows that sites of the E1 epitope are exposed and surround the 5-, 3- and 2-fold axes. The binding pattern of the anti-E1 antibody and the fitting of the structure of the dengue virus E glycoprotein into our 3D reconstructions further suggest that the HCV-LP E1 and E2 proteins form a tetramer (or dimer of heterodimers) that corresponds morphologically and functionally to the flavivirus E homodimer. This first 3D structural analysis of HCV particles offers important insights into the elusive mechanisms of HCV assembly and maturation.
由于缺乏一个强大的组织培养系统来从感染源中产生足够数量的病毒粒子以进行深入的三维(3D)结构分析,丙型肝炎病毒(HCV)的结构细节一直难以捉摸。我们使用负染色和冷冻电子显微镜(cryoEM)技术,发现从细胞培养物中分离出的HCV病毒粒子直径相当均匀,为500埃,并且重组表达的HCV样颗粒(HCV-LPs)尽管颗粒大小不同,但具有相似的形态、生物物理和抗原特征。在存在和不存在与E1糖蛋白结合的单克隆抗体的情况下,从与HCV病毒粒子大小相同的HCV-LPs获得了3D重建。HCV-LP的3D重建揭示了一种多层结构,其光滑的外层密度呈“鱼骨”状排列。与抗E1抗体形成复合物的颗粒重建表明,E1表位的位点暴露在外,并围绕5、3和2倍轴。抗E1抗体的结合模式以及登革热病毒E糖蛋白结构在我们的3D重建中的拟合进一步表明,HCV-LP的E1和E2蛋白形成了一个四聚体(或异二聚体的二聚体),在形态和功能上与黄病毒E同二聚体相对应。对HCV颗粒的首次3D结构分析为HCV组装和成熟的难以捉摸的机制提供了重要见解。