Aix-Marseille Université, CNRS, AFMB UMR 7257, Marseille, France.
National Center of Biotechnology, CSIC, Madrid, Spain.
Nature. 2021 Jan;589(7843):615-619. doi: 10.1038/s41586-020-3036-8. Epub 2020 Dec 16.
Positive-sense single-stranded RNA viruses, such as coronaviruses, flaviviruses and alphaviruses, carry out transcription and replication inside virus-induced membranous organelles within host cells. The remodelling of the host-cell membranes for the formation of these organelles is coupled to the membrane association of viral replication complexes and to RNA synthesis. These viral niches allow for the concentration of metabolites and proteins for the synthesis of viral RNA, and prevent the detection of this RNA by the cellular innate immune system. Here we present the cryo-electron microscopy structure of non-structural protein 1 (nsP1) of the alphavirus chikungunya virus, which is responsible for RNA capping and membrane binding of the viral replication machinery. The structure shows the enzyme in its active form, assembled in a monotopic membrane-associated dodecameric ring. The structure reveals the structural basis of the coupling between membrane binding, oligomerization and allosteric activation of the capping enzyme. The stoichiometry-with 12 active sites in a single complex-redefines viral replication complexes as RNA synthesis reactors. The ring shape of the complex implies it has a role in controlling access to the viral organelle and ensuring the exit of properly capped viral RNA. Our results provide high-resolution information about the membrane association of the replication machinery of positive-sense single-stranded RNA viruses, and open up avenues for the further characterization of viral replication on cell membranes and the generation of antiviral agents.
正链单链 RNA 病毒,如冠状病毒、黄病毒和甲病毒,在宿主细胞内的病毒诱导膜细胞器中进行转录和复制。为了形成这些细胞器,宿主细胞膜的重塑与病毒复制复合物的膜结合以及 RNA 合成偶联。这些病毒龛允许代谢物和蛋白质集中合成病毒 RNA,并防止细胞固有免疫系统检测到这种 RNA。在这里,我们展示了负责病毒复制机制 RNA 加帽和膜结合的甲病毒基孔肯雅病毒非结构蛋白 1(nsP1)的冷冻电子显微镜结构。该结构显示了酶处于其活性形式,组装成一个单拓扑膜相关的十二聚体环中。该结构揭示了膜结合、寡聚化和加帽酶变构激活之间偶联的结构基础。这种酶的化学计量学——在单个复合物中有 12 个活性位点——重新定义了病毒复制复合物作为 RNA 合成反应器。该复合物的环形形状暗示它在控制进入病毒细胞器以及确保适当加帽的病毒 RNA 释放方面具有作用。我们的结果提供了关于正链单链 RNA 病毒复制机制与膜结合的高分辨率信息,并为进一步研究细胞膜上的病毒复制以及生成抗病毒药物开辟了途径。