Wang Qian, Liu Jinxin, Luo Yuhang, Kliemke Vicky, Matta Giuliana Leonarda, Wang Jingjing, Liu Qian
Institute of Parasitology, Faculty of Agricultural and Environmental Sciences, McGill University, Montreal, Canada.
Mark Wainberg Center for Viral Diseases, Lady Davis Institute, Montreal, Canada.
Elife. 2025 Jan 2;13:RP97017. doi: 10.7554/eLife.97017.
Paramyxovirus membrane fusion requires an attachment protein for receptor binding and a fusion protein for membrane fusion triggering. Nipah virus (NiV) attachment protein (G) binds to ephrinB2 or -B3 receptors, and fusion protein (F) mediates membrane fusion. NiV-F is a class I fusion protein and is activated by endosomal cleavage. The crystal structure of a soluble GCN4-decorated NiV-F shows a hexamer-of-trimer assembly. Here, we used single-molecule localization microscopy to quantify the NiV-F distribution and organization on cell and virus-like particle membranes at a nanometer precision. We found that NiV-F on biological membranes forms distinctive clusters that are independent of endosomal cleavage or expression levels. The sequestration of NiV-F into dense clusters favors membrane fusion triggering. The nano-distribution and organization of NiV-F are susceptible to mutations at the hexamer-of-trimer interface, and the putative oligomerization motif on the transmembrane domain. We also show that NiV-F nanoclusters are maintained by NiV-F-AP-2 interactions and the clathrin coat assembly. We propose that the organization of NiV-F into nanoclusters facilitates membrane fusion triggering by a mixed population of NiV-F molecules with varied degrees of cleavage and opportunities for interacting with the NiV-G/receptor complex. These observations provide insights into the in situ organization and activation mechanisms of the NiV fusion machinery.
副粘病毒的膜融合需要一种用于受体结合的附着蛋白和一种用于触发膜融合的融合蛋白。尼帕病毒(NiV)的附着蛋白(G)与 EphrinB2 或 -B3 受体结合,融合蛋白(F)介导膜融合。NiV-F 是 I 类融合蛋白,通过内体切割被激活。可溶性 GCN4 修饰的 NiV-F 的晶体结构显示为三聚体的六聚体组装。在此,我们使用单分子定位显微镜以纳米精度量化 NiV-F 在细胞和病毒样颗粒膜上的分布和组织。我们发现生物膜上的 NiV-F 形成独特的簇,这些簇与内体切割或表达水平无关。将 NiV-F 隔离到致密簇中有利于触发膜融合。NiV-F 的纳米分布和组织易受三聚体六聚体界面处的突变以及跨膜结构域上假定的寡聚化基序的影响。我们还表明,NiV-F 纳米簇由 NiV-F-AP-2 相互作用和网格蛋白包被组装维持。我们提出,将 NiV-F 组织成纳米簇有助于由具有不同切割程度和与 NiV-G/受体复合物相互作用机会的混合群体的 NiV-F 分子触发膜融合。这些观察结果为 NiV 融合机制的原位组织和激活机制提供了见解。