Cervantes Marcos, Mannsverk Steinar, Hess Tobin, Filipe Diogo, Villamil Giraldo Ana, Kasson Peter M
Department of Biomedical Engineering, University of Virginia, Box 800759, Charlottesville, Virginia 22908, United States.
Science for Life Laboratory and Department of Cell and Molecular Biology, Uppsala University, Box 596, Uppsala 75124, Sweden.
JACS Au. 2024 Dec 31;5(1):399-407. doi: 10.1021/jacsau.4c00992. eCollection 2025 Jan 27.
Cell entry by enveloped viruses involves a set of multistep, multivalent interactions between viral and host proteins as well as manipulation of nanoscale membrane mechanics by these interacting partners. A mechanistic understanding of these events has been challenging due to the complex nature of the interactions and the event-to-event heterogeneity involved. Single-virus microscopy has emerged as a powerful technique to probe viral binding and fusion kinetics. Single-event distributions compiled from individual viral particle measurements have enabled estimates of protein stoichiometry at fusion interfaces, a better understanding of the rate-limiting steps for fusion, and a more robust identification of the biochemical regulatory factors for viral entry. Recent technical advances have made these experiments feasible on less specialized microscopes, increasing their accessibility to a broad range of scientists. Single-virus entry kinetics have now been measured for a wide range of enveloped viruses and on both synthetic and physiological substrates. Here, we briefly review the major progress in the area. We then describe the critical apparatus, protocols, analytical techniques, and optimizations needed for robust measurements of virus-membrane interactions.
包膜病毒进入细胞涉及病毒蛋白与宿主蛋白之间一系列多步骤、多价的相互作用,以及这些相互作用伙伴对纳米级膜力学的操控。由于这些相互作用的复杂性以及所涉及的事件间异质性,对这些事件的机制理解一直具有挑战性。单病毒显微镜技术已成为探测病毒结合和融合动力学的强大工具。从单个病毒颗粒测量中汇编的单事件分布能够估计融合界面处的蛋白质化学计量,更好地理解融合的限速步骤,并更可靠地识别病毒进入的生化调节因子。最近的技术进步使这些实验在不太专业的显微镜上也可行,从而增加了广大科学家对它们的可及性。现在已经在各种包膜病毒以及合成和生理底物上测量了单病毒进入动力学。在此,我们简要回顾该领域的主要进展。然后,我们描述了可靠测量病毒与膜相互作用所需的关键仪器、方案、分析技术和优化方法。