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Mass and molecular composition of vesicular stomatitis virus: a scanning transmission electron microscopy analysis.

机译:水疱性口炎病毒的质量和分子组成:扫描透射电镜分析。

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摘要

Dark-field scanning transmission electron microscopy was used to perform mass analyses of purified vesicular stomatitis virions, pronase-treated virions, and nucleocapsids, leading to a complete self-consistent account of the molecular composition of vesicular stomatitis virus. The masses obtained were 265.6 +/- 13.3 megadaltons (MDa) for the native virion, 197.5 +/- 8.4 MDa for the pronase-treated virion, and 69.4 +/- 4.9 MDa for the nucleocapsid. The reduction in mass effected by pronase treatment, which corresponds to excision of the external domains (spikes) of G protein, leads to an average of 1,205 molecules of G protein per virion. The nucleocapsid mass, after compensation for the RNA (3.7 MDa) and residual amounts of other proteins, yielded a complement of 1,258 copies of N protein. Calibration of the amounts of M, NS, and L proteins relative to N protein by biochemical quantitation yielded values of 1,826, 466, and 50 molecules, respectively, per virion. Assuming that the remaining virion mass is contributed by lipids in the viral envelope, we obtained a value of 56.1 MDa for its lipid content. In addition, four different electron microscopy procedures were applied to determine the nucleocapsid length, which we conclude to be 3.5 to 3.7 micron. The nucleocapsid comprises a strand of repeating units which have a center-to-center spacing of 3.3 nm as measured along the middle of the strand. We show that these repeating units represent monomers of N protein, each of which is associated with 9 +/- 1 bases of single-stranded RNA. From scanning transmission electron microscopy images of negatively stained nucleocapsids, we inferred that N protein has a wedge-shaped, bilobed structure with dimensions of approximately 9.0 nm (length), approximately 5.0 nm (depth), and approximately 3.3 nm (width, at the midpoint of its long axis). In the coiled configuration of the in situ nucleocapsid, the long axis of N protein is directed radially, and its depth corresponds to the pitch of the nucleocapsid helix.
机译:暗场扫描透射电子显微镜用于对纯化的水泡性口炎病毒粒子,链霉蛋白酶处理的病毒体和核衣壳进行质量分析,从而得出水疱性口炎病毒分子组成的完整自洽说明。对于天然病毒体,获得的质量为265.6 +/- 13.3兆道尔顿(MDa),对于经链酶处理的病毒体,获得的质量为197.5 +/- 8.4 MDa,对于核衣壳为69.4 +/- 4.9 MDa。链霉蛋白酶处理引起的质量降低(相当于切除G蛋白的外部结构域)使每个病毒粒子平均产生1,205个分子的G蛋白。在补偿了RNA(3.7 MDa)和其他蛋白质的残留量之后,核衣壳质量产生了1,258份N蛋白的互补序列。通过生化定量对M,NS和L蛋白质相对于N蛋白质的量进行校准,每个病毒体的值分别为1,826、466和50个分子。假设剩余的病毒粒子质量是由病毒包膜中的脂质贡献的,我们获得的脂质含量值为56.1 MDa。此外,应用了四种不同的电子显微镜程序来确定核衣壳长度,我们得出的结论是3.5到3.7微米。核衣壳包含一串重复单元,当沿着链的中间测量时,它们的中心距为3.3 nm。我们表明,这些重复单元代表N蛋白的单体,每个单体与9 +/- 1个单链RNA碱基相关。从负染色的核衣壳的扫描透射电子显微镜图像,我们推断N蛋白具有一个楔形双叶结构,其大小约为9.0 nm(长度),约5.0 nm(深度)和约3.3 nm(宽度)。长轴的中点)。在原位核衣壳的盘绕构型中,N蛋白的长轴呈放射状,其深度对应于核衣壳螺旋的螺距。

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