Extracellular vesicle fusion visualized by cryo-electron microscopy

Author:

Morandi Mattia I1ORCID,Busko Petro1,Ozer-Partuk Efrat1,Khan Suman1,Zarfati Giulia1,Elbaz-Alon Yael1,Abou Karam Paula1,Napso Shogan Tina2,Ginini Lana2,Gil Ziv23,Regev-Rudzki Neta1,Avinoam Ori1ORCID

Affiliation:

1. Department of Biomolecular Sciences, Weizmann Institute of Science , Rehovot 7610001, Israel

2. Faculty of Health, Bar Ilan University , Ramat-Gan 5290002, Israel

3. Head and Neck Center, Holy Family Hospital , Nazareth 1641100, Israel

Abstract

Abstract Extracellular vesicles (EVs) transfer bioactive molecules between cells in a process reminiscent of enveloped viruses. EV cargo delivery is thought to occur by protein-mediated and pH-dependent membrane fusion of the EV and the cellular membrane. However, there is a lack of methods to identify the fusion proteins and resolve their mechanism. We developed and benchmarked an in vitro biophysical assay to investigate EV membrane fusion. The assay was standardized by directly comparing EV and viral fusion with liposomes. We show that EVs and retroviruses fuse with liposomes mimicking the membrane composition of the late endosome in a pH- and protein-dependent manner. Moreover, we directly visualize the stages of membrane fusion using cryo-electron tomography. We find that, unlike most retroviruses, EVs remain fusogenic after acidification and reneutralization. These results provide novel insights into the EV cargo delivery mechanism and an experimental approach to identify the EV fusion machinery.

Funder

Israel Science Foundation

European Research Council

Publisher

Oxford University Press (OUP)

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