Effect of SARS-CoV-2 proteins on vascular permeability

Author:

Rauti Rossana,Shahoha Meishar,Leichtmann-Bardoogo Yael,Nasser Rami,Tamir Rina,Miller Victoria,Babich Tal,Shaked Kfir,Ehrlich Avner,Ioannidis Konstantinos,Nahmias Yaakov,Sharan Roded,Ashery Uri,Maoz Ben M.ORCID

Abstract

AbstractSARS-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 COVID-19. 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.

Publisher

Cold Spring Harbor Laboratory

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