Effect of SARS-CoV-2 proteins on vascular permeability

Author:

Rauti Rossana1ORCID,Shahoha Meishar23ORCID,Leichtmann-Bardoogo Yael1,Nasser Rami4,Paz Eyal23,Tamir Rina1,Miller Victoria1,Babich Tal12,Shaked Kfir12,Ehrlich Avner5,Ioannidis Konstantinos5,Nahmias Yaakov5,Sharan Roded4,Ashery Uri236ORCID,Maoz Ben Meir136ORCID

Affiliation:

1. Department of Biomedical Engineering, Tel Aviv University

2. School of Neurobiology, Biochemistry and Biophysics, The George S. Wise Faculty of Life Sciences, Tel Aviv University

3. Sagol School of Neuroscience, Tel Aviv University

4. Blavatnik School of Computer Science, Tel Aviv University

5. Grass Center for Bioengineering, The Hebrew University of Jerusalem

6. The Center for Nanoscience and Nanotechnology, Tel Aviv University

Abstract

Severe acute respiratory syndrome (SARS)-CoV-2 infection leads to severe disease associated with cytokine storm, vascular dysfunction, coagulation, and progressive lung damage. It affects several vital organs, seemingly through a pathological effect on endothelial cells. The SARS-CoV-2 genome encodes 29 proteins, whose contribution to the disease manifestations, and especially endothelial complications, is unknown. We cloned and expressed 26 of these proteins in human cells and characterized the endothelial response to overexpression of each, individually. Whereas most proteins induced significant changes in endothelial permeability, nsp2, nsp5_c145a (catalytic dead mutant of nsp5), and nsp7 also reduced CD31, and increased von Willebrand factor expression and IL-6, suggesting endothelial dysfunction. Using propagation-based analysis of a protein–protein interaction (PPI) network, we predicted the endothelial proteins affected by the viral proteins that potentially mediate these effects. We further applied our PPI model to identify the role of each SARS-CoV-2 protein in other tissues affected by coronavirus disease (COVID-19). While validating the PPI network model, we found that the tight junction (TJ) proteins cadherin-5, ZO-1, and β-catenin are affected by nsp2, nsp5_c145a, and nsp7 consistent with the model prediction. Overall, this work identifies the SARS-CoV-2 proteins that might be most detrimental in terms of endothelial dysfunction, thereby shedding light on vascular aspects of COVID-19.

Funder

Israel Science Foundation

Azrieli Foundation

Horizon 2020

Aufzien Family Center for the Prevention and Treatment of Parkinson's Disease

Deutsche Forschungsgemeinschaft

Teva Pharmaceutical Industries

Zimin

Ministry of Science and Technology, Israel

TCCP

Publisher

eLife Sciences Publications, Ltd

Subject

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

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