Department of Microbiology, Immunology and Molecular Genetics, University of California, Los Angeles (UCLA), Los Angeles, CA 90095-1489, USA.
The California NanoSystems Institute (CNSI), University of California, Los Angeles (UCLA), Los Angeles, CA 90095-7364, USA.
Viruses. 2024 Sep 11;16(9):1447. doi: 10.3390/v16091447.
Rabies virus (RABV) is among the first recognized viruses of public health concern and has historically contributed to the development of viral vaccines. Despite these significances, the three-dimensional structure of the RABV virion remains unknown due to the challenges in isolating structurally homogenous virion samples in sufficient quantities needed for structural investigation. Here, by combining the capabilities of cryogenic electron tomography (cryoET) and microscopy (cryoEM), we determined the three-dimensional structure of the wild-type RABV virion. Tomograms of RABV virions reveal a high level of structural heterogeneity among the bullet-shaped virion particles encompassing the glycoprotein (G) trimer-decorated envelope and the nucleocapsid composed of RNA, nucleoprotein (N), and matrix protein (M). The structure of the trunk region of the virion was determined by cryoEM helical reconstruction, revealing a one-start N-RNA helix bound by a single layer of M proteins at an N:M ratio of 1. The N-M interaction differs from that in fellow rhabdovirus vesicular stomatitis virus (VSV), which features two layers of M stabilizing the N-RNA helix at an M:N ratio of 2. These differences in both M-N stoichiometry and binding allow RABV to flex its N-RNA helix more freely and point to different mechanisms of viral assembly between these two bullet-shaped rhabdoviruses.
狂犬病病毒 (RABV) 是首批被公认为对公共卫生有重大影响的病毒之一,并且在历史上为病毒疫苗的发展做出了贡献。尽管具有这些重要意义,但由于在结构上同质的病毒粒子样品的分离方面存在挑战,因此无法获得足够数量的样品进行结构研究,导致 RABV 病毒粒子的三维结构仍然未知。在这里,通过结合低温电子断层扫描(cryoET)和显微镜(cryoEM)的能力,我们确定了野生型 RABV 病毒粒子的三维结构。RABV 病毒粒子的断层扫描图像显示,包含糖蛋白 (G) 三聚体装饰的包膜和由 RNA、核蛋白 (N) 和基质蛋白 (M) 组成的核衣壳的子弹形病毒粒子之间存在高度的结构异质性。通过 cryoEM 螺旋重建确定了病毒粒子主干区域的结构,揭示了一个单起点 N-RNA 螺旋,由单层 M 蛋白结合,N:M 比例为 1。N-M 相互作用与同为弹状病毒的水疱性口炎病毒 (VSV) 不同,后者的 M 蛋白稳定 N-RNA 螺旋,M:N 比例为 2。在 M-N 化学计量和结合方面的这些差异允许 RABV 更自由地弯曲其 N-RNA 螺旋,并指向这两种子弹形弹状病毒之间不同的病毒组装机制。