Quantitative imaging of vesicle-protein interactions reveals close cooperation among proteins

囊泡-蛋白质相互作用的定量成像揭示了蛋白质之间的密切合作

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作者:Minkwon Cha, Sang Hyeok Jeong, Jaehun Jung, Yoonjin Baeg, Sung-Soo Park, Seoyoon Bae, Chan Seok Lim, Jun Hyuk Park, Jie-Oh Lee, Yong Song Gho, Seung Wook Oh, Min Ju Shon

Abstract

Membrane-bound vesicles such as extracellular vesicles (EVs) can function as biochemical effectors on target cells. Docking of the vesicles onto recipient plasma membranes depends on their interaction with cell-surface proteins, but a generalizable technique that can quantitatively observe these vesicle-protein interactions (VPIs) is lacking. Here, we describe a fluorescence microscopy that measures VPIs between single vesicles and cell-surface proteins, either in a surface-tethered or in a membrane-embedded state. By employing cell-derived vesicles (CDVs) and intercellular adhesion molecule-1 (ICAM-1) as a model system, we found that integrin-driven VPIs exhibit distinct modes of affinity depending on vesicle origin. Controlling the surface density of proteins also revealed a strong support from a tetraspanin protein CD9, with a critical dependence on molecular proximity. An adsorption model accounting for multiple protein molecules was developed and captured the features of density-dependent cooperativity. We expect that VPI imaging will be a useful tool to dissect the molecular mechanisms of vesicle adhesion and uptake, and to guide the development of therapeutic vesicles.

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