Department of Physiological Sciences, School of Life Science, The Graduate University for Advanced Studies (SOKENDAI), Okazaki, Aichi, Japan.
Exploratory Research Center on Life and Living Systems (ExCELLS), National Institutes of Natural Sciences, Okazaki, Aichi, Japan.
Sci Rep. 2022 Dec 11;12(1):21428. doi: 10.1038/s41598-022-24651-2.
Marseilleviridae is a family of giant viruses, showing a characteristic internal membrane with extrusions underneath the icosahedral vertices. However, such large objects, with a maximum diameter of 250 nm are technically difficult to examine at sub-nanometre resolution by cryo-electron microscopy. Here, we tested the utility of 1 MV high-voltage cryo-EM (cryo-HVEM) for single particle structural analysis (SPA) of giant viruses using tokyovirus, a species of Marseilleviridae, and revealed the capsid structure at 7.7 Å resolution. The capsid enclosing the viral DNA consisted primarily of four layers: (1) major capsid proteins (MCPs) and penton proteins, (2) minor capsid proteins (mCPs), (3) scaffold protein components (ScPCs), and (4) internal membrane. The mCPs showed a novel capsid lattice consisting of eight protein components. ScPCs connecting the icosahedral vertices supported the formation of the membrane extrusions, and possibly act like tape measure proteins reported in other giant viruses. The density on top of the MCP trimer was suggested to include glycoproteins. This is the first attempt at cryo-HVEM SPA. We found the primary limitations to be the lack of automated data acquisition and software support for collection and processing and thus achievable resolution. However, the results pave the way for using cryo-HVEM for structural analysis of larger biological specimens.
马赛病毒科是一类巨型病毒,其特征为在二十面体顶点下有内部膜状突起。然而,像直径最大可达 250nm 的这么大的物体,在亚纳米分辨率下用冷冻电镜技术进行检查是非常困难的。在这里,我们使用 1MV 高压冷冻电镜(cryo-HVEM)对马赛病毒科的一种病毒——东京病毒,进行了单颗粒结构分析(SPA),并揭示了其 7.7Å 的衣壳结构。该衣壳由四层组成:(1)主要衣壳蛋白(MCPs)和五邻体蛋白,(2)次要衣壳蛋白(mCPs),(3)支架蛋白组件(ScPCs)和(4)内部膜。mCPs 显示出一种由八个蛋白组成的新型衣壳晶格。连接二十面体顶点的 ScPCs 支撑了膜状突起的形成,并且可能像在其他巨型病毒中报道的卷尺蛋白一样发挥作用。MCP 三聚体顶部的密度被认为包括糖蛋白。这是首次尝试使用 cryo-HVEM SPA。我们发现,主要的限制因素是缺乏自动化的数据采集和软件支持,以及收集和处理的能力,因此分辨率是可实现的。然而,这些结果为使用 cryo-HVEM 进行更大的生物标本的结构分析铺平了道路。