Heidelberg University, Medical Faculty Heidelberg, Department of Infectious Diseases, Molecular Virology, Center for Integrative Infectious Diseases Research, Heidelberg, Germany.
Department of Physics, University of Helsinki, Helsinki, Finland.
Nat Commun. 2023 Nov 13;14(1):7344. doi: 10.1038/s41467-023-42985-x.
For successful infection of host cells and virion production, enveloped viruses, including Zika virus (ZIKV), extensively rely on cellular lipids. However, how virus protein-lipid interactions contribute to the viral life cycle remains unclear. Here, we employ a chemo-proteomics approach with a bifunctional cholesterol probe and show that cholesterol is closely associated with the ZIKV structural protein prM. Bioinformatic analyses, reverse genetics alongside with photoaffinity labeling assays, and atomistic molecular dynamics simulations identified two functional cholesterol binding motifs within the prM transmembrane domain. Loss of prM-cholesterol association has a bipartite effect reducing ZIKV entry and leading to assembly defects. We propose a model in which membrane-resident M facilitates cholesterol-supported lipid exchange during endosomal entry and, together with cholesterol, creates a platform promoting virion assembly. In summary, we identify a bifunctional role of prM in the ZIKV life cycle by mediating viral entry and virus assembly in a cholesterol-dependent manner.
为了实现对宿主细胞的成功感染和病毒粒子的产生,包膜病毒,包括 Zika 病毒(ZIKV),广泛依赖于细胞脂质。然而,病毒蛋白-脂质相互作用如何促进病毒生命周期仍不清楚。在这里,我们采用一种带有双功能胆固醇探针的化学蛋白质组学方法,结果表明胆固醇与 ZIKV 结构蛋白 prM 密切相关。生物信息学分析、反向遗传学以及光亲和标记实验和原子分子动力学模拟,确定了 prM 跨膜结构域内两个功能性胆固醇结合基序。prM-胆固醇相互作用的丧失具有双重作用,降低了 ZIKV 的进入并导致组装缺陷。我们提出了一个模型,其中膜驻留的 M 有助于在进入内体时促进胆固醇支持的脂质交换,并且与胆固醇一起形成一个促进病毒粒子组装的平台。总之,我们通过介导病毒进入和病毒组装依赖胆固醇的方式,确定了 prM 在 ZIKV 生命周期中的双重作用。