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Ultrastructural and Biophysical Characterization of Hepatitis C Virus Particles Produced in Cell Culture

机译:细胞培养中产生的丙型肝炎病毒颗粒的超微结构和生物物理特征

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摘要

We analyzed the biochemical and ultrastructural properties of hepatitis C virus (HCV) particles produced in cell culture. Negative-stain electron microscopy revealed that the particles were spherical (∼40- to 75-nm diameter) and pleomorphic and that some of them contain HCV E2 protein and apolipoprotein E on their surfaces. Electron cryomicroscopy revealed two major particle populations of ∼60 and ∼45 nm in diameter. The ∼60-nm particles were characterized by a membrane bilayer (presumably an envelope) that is spatially separated from an internal structure (presumably a capsid), and they were enriched in fractions that displayed a high infectivity-to-HCV RNA ratio. The ∼45-nm particles lacked a membrane bilayer and displayed a higher buoyant density and a lower infectivity-to-HCV RNA ratio. We also observed a minor population of very-low-density, >100-nm-diameter vesicular particles that resemble exosomes. This study provides low-resolution ultrastructural information of particle populations displaying differential biophysical properties and specific infectivity. Correlative analysis of the abundance of the different particle populations with infectivity, HCV RNA, and viral antigens suggests that infectious particles are likely to be present in the large ∼60-nm HCV particle populations displaying a visible bilayer. Our study constitutes an initial approach toward understanding the structural characteristics of infectious HCV particles.
机译:我们分析了细胞培养物中产生的丙型肝炎病毒(HCV)颗粒的生化和超微结构特征。负电子显微镜显示颗粒为球形(直径约40-75 nm),呈多晶形,其中一些表面含有HCV E2蛋白和载脂蛋白E。电子冷冻显微镜检查发现两个主要的粒子群,直径分别约为60和45 nm。约60 nm的颗粒的特征是在空间上与内部结构(可能是衣壳)隔开的双层膜(可能是包膜),并且富含表现出高感染性与HCV RNA比率的级分。 〜45 nm的颗粒缺少膜双层,显示出较高的浮力密度和较低的HCV RNA感染率。我们还观察到少数群体的极低密度,直径> 100 nm的囊泡颗粒,类似于囊泡。这项研究提供了显示不同生物物理特性和特定感染性的颗粒种群的低分辨率超微结构信息。对不同颗粒群的丰度与感染性,HCV RNA和病毒抗原的相关性分析表明,在约60 nm的大型HCV颗粒群中,可能出现感染性颗粒,并呈现出可见的双层。我们的研究构成了了解传染性HCV颗粒结构特征的初步方法。

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