The spike protein of SARS-CoV-2 induces heme oxygenase-1: Pathophysiologic implications

Acute kidney injury (AKI) is both a consequence and determinant of outcomes in COVID-19. The kidney is one of the major organs infected by the causative virus, SARS-CoV-2. Viral entry into cells requires the viral spike protein, and both the virus and its spike protein appear in the urine of COVID-1...

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Veröffentlicht in:Biochimica et biophysica acta. Molecular basis of disease 2022-03, Vol.1868 (3), p.166322-166322, Article 166322
Hauptverfasser: Singh, Raman Deep, Barry, Michael A., Croatt, Anthony J., Ackerman, Allan W., Grande, Joseph P., Diaz, Rosa M., Vile, Richard G., Agarwal, Anupam, Nath, Karl A.
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Sprache:eng
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Zusammenfassung:Acute kidney injury (AKI) is both a consequence and determinant of outcomes in COVID-19. The kidney is one of the major organs infected by the causative virus, SARS-CoV-2. Viral entry into cells requires the viral spike protein, and both the virus and its spike protein appear in the urine of COVID-19 patients with AKI. We examined the effects of transfecting the viral spike protein of SARS-CoV-2 in kidney cell lines. HEK293, HEK293-ACE2+ (stably overexpressing ACE2), and Vero E6 cells having endogenous ACE2 were transfected with SARS-CoV-2 spike or control plasmid. Assessment of gene and protein expression, and syncytia formation was performed, and the effects of quercetin on syncytia formation examined. Spike transfection in HEK293-ACE2+ cells caused syncytia formation, cellular sloughing, and focal denudation of the cell monolayer; transfection in Vero E6 cells also caused syncytia formation. Spike expression upregulated potentially nephrotoxic genes (TNF-α, MCP-1, and ICAM1). Spike upregulated the cytoprotective gene HO-1 and relevant signaling pathways (p-Akt, p-STAT3, and p-p38). Quercetin, an HO-1 inducer, reduced syncytia formation and spike protein expression. The major conclusions of the study are: 1) Spike protein expression in kidney cells provides a relevant model for the study of maladaptive and adaptive responses germane to AKI in COVID-19; 2) such spike protein expression upregulates HO-1; and 3) quercetin, an HO-1 inducer, may provide a clinically relevant/feasible protective strategy in AKI occurring in the setting of COVID-19. R01-DK119167 (KAN), R01-AI100911 (JPG), P30-DK079337; R01-DK059600 (AA). •SARS-CoV-2 spike protein expression in kidney cells results in syncytia formation with cellular sloughing•Spike protein expression in these cells upregulates the cytoprotectant HO-1•Quercetin, an HO-1 inducer, reduces syncytia size and spike protein expression•Quercetin may provide a clinically relevant protective strategy for AKI in COVID-19
ISSN:0925-4439
1879-260X
DOI:10.1016/j.bbadis.2021.166322