Department of Microbiology, Immunology & Molecular Genetics, University of California, Los Angeles (UCLA), Los Angeles, CA, 90095, USA.
California NanoSystems Institute, UCLA, Los Angeles, CA, 90095, USA.
Nat Commun. 2022 Oct 10;13(1):5980. doi: 10.1038/s41467-022-33664-4.
Like other negative-strand RNA viruses (NSVs) such as influenza and rabies, vesicular stomatitis virus (VSV) has a three-layered organization: a layer of matrix protein (M) resides between the glycoprotein (G)-studded membrane envelope and the nucleocapsid, which is composed of the nucleocapsid protein (N) and the encapsidated genomic RNA. Lack of in situ atomic structures of these viral components has limited mechanistic understanding of assembling the bullet-shaped virion. Here, by cryoEM and sub-particle reconstruction, we have determined the in situ structures of M and N inside VSV at 3.47 Å resolution. In the virion, N and M sites have a stoichiometry of 1:2. The in situ structures of both N and M differ from their crystal structures in their N-terminal segments and oligomerization loops. N-RNA, N-N, and N-M-M interactions govern the formation of the capsid. A double layer of M contributes to packaging of the helical nucleocapsid: the inner M (IM) joins neighboring turns of the N helix, while the outer M (OM) contacts G and the membrane envelope. The pseudo-crystalline organization of G is further mapped by cryoET. The mechanism of VSV assembly is delineated by the network interactions of these viral components.
与流感和狂犬病等其他负链 RNA 病毒 (NSV) 一样,水疱性口炎病毒 (VSV) 具有三层结构:位于糖蛋白 (G) 镶嵌的膜包膜和核衣壳之间的一层基质蛋白 (M),由核衣壳蛋白 (N) 和包裹的基因组 RNA 组成。这些病毒成分的原位原子结构的缺乏限制了对组装子弹形病毒的机制理解。在这里,通过 cryoEM 和亚颗粒重建,我们以 3.47Å 的分辨率确定了 VSV 中 M 和 N 的原位结构。在病毒粒子中,N 和 M 的位点具有 1:2 的化学计量比。N 和 M 的原位结构在其 N 端片段和寡聚环上与其晶体结构不同。N-RNA、N-N 和 N-M-M 相互作用控制着衣壳的形成。M 的双层有助于螺旋核衣壳的包装:内层 M (IM) 连接 N 螺旋的相邻匝,而外层 M (OM) 与 G 和膜包膜接触。通过 cryoET 进一步映射了 G 的拟晶组织。这些病毒成分的网络相互作用描绘了 VSV 组装的机制。