School of Life Science and Technology, ShanghaiTech University, Shanghai, China.
State Key Laboratory of Crop Stress Biology for Arid Areas, Key Laboratory of Plant Protection Resources and Pest Management of Ministry of Education, Key Laboratory of Integrated Pest Management on the Loess Plateau of Ministry of Agriculture and Rural Affairs, College of Plant Protection, Northwest A&F University, Yangling, 712100, Shaanxi, China.
Nat Commun. 2024 Sep 3;15(1):7668. doi: 10.1038/s41467-024-51799-4.
The fusion of viruses with cellular membranes is a critical step in the life cycle of enveloped viruses. This process is facilitated by viral fusion proteins, many of which are conformationally pH-sensitive. The specifics of how changes in pH initiate this fusion have remained largely elusive. This study presents the cryo-electron microscopy (cryo-EM) structures of a prototype class III fusion protein, GP64, in its prefusion and early intermediate states, revealing the structural intermediates accompanying the membrane fusion process. The structures identify the involvement of a pH-sensitive switch, comprising H23, H245, and H304, in sensing the low pH that triggers the initial step of membrane fusion. The pH sensing role of this switch is corroborated by assays of cell-cell syncytium formation and dual dye-labeling. The findings demonstrate that coordination between multiple histidine residues acts as a pH sensor and activator. The involvement of a multi-histidine switch in viral fusion is applicable to fusogens of human-infecting thogotoviruses and other viruses, which could lead to strategies for developing anti-viral therapies and vaccines.
病毒与细胞膜的融合是包膜病毒生命周期中的一个关键步骤。这个过程是由病毒融合蛋白促成的,其中许多蛋白的构象对 pH 值敏感。但是,pH 值变化如何引发这种融合的具体机制在很大程度上仍未被揭示。本研究通过冷冻电子显微镜(cryo-EM)呈现了一种典型的 III 类融合蛋白 GP64 的预融合和早期中间状态结构,揭示了伴随膜融合过程的结构中间体。这些结构确定了由 H23、H245 和 H304 组成的 pH 敏感开关在感应触发膜融合初始步骤的低 pH 值方面的参与作用。该开关的 pH 感应作用通过细胞-细胞合胞体形成和双重染料标记测定得到了证实。研究结果表明,多个组氨酸残基的协调作用充当 pH 传感器和激活剂。这种多组氨酸开关在病毒融合中的参与适用于感染人类的托戈病毒和其他病毒的融合剂,这可能为开发抗病毒疗法和疫苗提供策略。