The Ebola virus VP40 matrix layer undergoes endosomal disassembly essential for membrane fusion

Author:

Winter Sophie L12ORCID,Golani Gonen23ORCID,Lolicato Fabio45ORCID,Vallbracht Melina12,Thiyagarajah Keerthihan12ORCID,Ahmed Samy Sid6,Lüchtenborg Christian4,Fackler Oliver T67ORCID,Brügger Britta4,Hoenen Thomas8ORCID,Nickel Walter4ORCID,Schwarz Ulrich S23ORCID,Chlanda Petr12ORCID

Affiliation:

1. Schaller Research Groups, Department of Infectious Diseases, Virology University Hospital Heidelberg Heidelberg Germany

2. BioQuant‐Center for Quantitative Biology Heidelberg University Heidelberg Germany

3. Institute for Theoretical Physics, Heidelberg University Heidelberg Germany

4. Heidelberg University Biochemistry Center Heidelberg Germany

5. Department of Physics University of Helsinki Helsinki Finland

6. Department of Infectious Diseases, Integrative Virology University Hospital Heidelberg Heidelberg Germany

7. German Centre for Infection Research (DZIF), Partner Site Heidelberg Heidelberg Germany

8. Institute of Molecular Virology and Cell Biology, Friedrich‐Loeffler‐Insitut, Greifswald‐Insel Riems Greifswald Germany

Abstract

AbstractEbola viruses (EBOVs) assemble into filamentous virions, whose shape and stability are determined by the matrix viral protein 40 (VP40). Virus entry into host cells occurs via membrane fusion in late endosomes; however, the mechanism of how the remarkably long virions undergo uncoating, including virion disassembly and nucleocapsid release into the cytosol, remains unknown. Here, we investigate the structural architecture of EBOVs entering host cells and discover that the VP40 matrix disassembles prior to membrane fusion. We reveal that VP40 disassembly is caused by the weakening of VP40–lipid interactions driven by low endosomal pH that equilibrates passively across the viral envelope without a dedicated ion channel. We further show that viral membrane fusion depends on VP40 matrix integrity, and its disassembly reduces the energy barrier for fusion stalk formation. Thus, pH‐driven structural remodeling of the VP40 matrix acts as a molecular switch coupling viral matrix uncoating to membrane fusion during EBOV entry.

Funder

Chica and Heinz Schaller-Stiftung

Deutsche Forschungsgemeinschaft

Publisher

Springer Science and Business Media LLC

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,Molecular Biology,General Neuroscience

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