Ezrin interacts with the SARS coronavirus Spike protein and restrains infection at the entry stage.

Título

Ezrin interacts with the SARS coronavirus Spike protein and restrains infection at the entry stage.

Autor

Huiying Li, Béatrice Nal, Yu Lam Siu, Roberto Bruzzone, Joseph S. Malik Peiris, Jean Kaoru Millet, François Kien, Chung-Yan Cheung, Wing-Lim Chan, Hiu-Lan Leung, Martial Jaume, Ralf Marius Altmeyer

Descripción

BACKGROUND: Entry of Severe Acute Respiratory Syndrome coronavirus (SARS-CoV) and its envelope fusion with host cell membrane are controlled by a series of complex molecular mechanisms, largely dependent on the viral envelope glycoprotein Spike (S). There are still many unknowns on the implication of cellular factors that regulate the entry process. METHODOLOGY/PRINCIPAL FINDINGS: We performed a yeast two-hybrid screen using as bait the carboxy-terminal endodomain of S, which faces the cytosol during and after opening of the fusion pore at early stages of the virus life cycle. Here we show that the ezrin membrane-actin linker interacts with S endodomain through the F1 lobe of its FERM domain and that both the eight carboxy-terminal amino-acids and a membrane-proximal cysteine cluster of S endodomain are important for this interaction in vitro. Interestingly, we found that ezrin is present at the site of entry of S-pseudotyped lentiviral particles in Vero E6 cells. Targeting ezrin function by small interfering RNA increased S-mediated entry of pseudotyped particles in epithelial cells. Furthermore, deletion of the eight carboxy-terminal amino acids of S enhanced S-pseudotyped particles infection. Expression of the ezrin dominant negative FERM domain enhanced cell susceptibility to infection by SARS-CoV and S-pseudotyped particles and potentiated S-dependent membrane fusion. CONCLUSIONS/SIGNIFICANCE: Ezrin interacts with SARS-CoV S endodomain and limits virus entry and fusion. Our data present a novel mechanism involving a cellular factor in the regulation of S-dependent early events of infection.

Fecha

2012

Identificador

DOI: 10.1371/journal.pone.0049566

Fuente

PLoS ONE

Editor

Public Library of Science (PLoS)

Cobertura

Science, Medicine

Archivos

https://socictopen.socict.org/files/to_import/pdfs/4347191.pdf

Colección

Citación

Huiying Li, Béatrice Nal, Yu Lam Siu, Roberto Bruzzone, Joseph S. Malik Peiris, Jean Kaoru Millet, François Kien, Chung-Yan Cheung, Wing-Lim Chan, Hiu-Lan Leung, Martial Jaume, Ralf Marius Altmeyer, “Ezrin interacts with the SARS coronavirus Spike protein and restrains infection at the entry stage.,” SOCICT Open, consulta 16 de abril de 2026, https://www.socictopen.socict.org/items/show/3041.

Formatos de Salida

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