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Bioinformatics Analysis of Potential Pathogenesis and Risk Genes of Immunoinflammation-promoted Renal Injury in Severe COVID-19

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Journal Front Immunol
Date 2022 Sep 2
PMID 36052061
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Abstract

Renal injury secondary to COVID-19 is an important factor for the poor prognosis of COVID-19 patients. The pathogenesis of renal injury caused by aberrant immune inflammatory of COVID-19 remains unclear. In this study, a total of 166 samples from 4 peripheral blood transcriptomic datasets of COVID-19 patients were integrated. By using the weighted gene co-expression network (WGCNA) algorithm, we identified key genes for mild, moderate, and severe COVID-19. Subsequently, taking these genes as input genes, we performed Short Time-series Expression Miner (STEM) analysis in a time consecutive ischemia-reperfusion injury (IRI) -kidney dataset to identify genes associated with renal injury in COVID-19. The results showed that only in severe COVID-19 there exist a small group of genes associated with the progression of renal injury. Gene enrichment analysis revealed that these genes are involved in extensive immune inflammation and cell death-related pathways. A further protein-protein interaction (PPI) network analysis screened 15 PPI-hub genes: , , , , , and . Single-cell sequencing analysis indicated that PPI-hub genes were mainly distributed in neutrophils, macrophages, and dendritic cells. Intercellular ligand-receptor analysis characterized the activated ligand-receptors between these immune cells and parenchyma cells in depth. And KEGG enrichment analysis revealed that viral protein interaction with cytokine and cytokine receptor, necroptosis, and Toll-like receptor signaling pathway may be potentially essential for immune cell infiltration leading to COVID-19 renal injury. Finally, we validated the expression pattern of PPI-hub genes in an independent data set by random forest. In addition, we found that the high expression of these genes was correlated with a low glomerular filtration rate. Including them as risk genes in lasso regression, we constructed a Nomogram model for predicting severe COVID-19. In conclusion, our study explores the pathogenesis of renal injury promoted by immunoinflammatory in severe COVID-19 and extends the clinical utility of its key genes.

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References
1.
Zhang H, Meng F, Chu C, Takai T, Lowell C . The Src family kinases Hck and Fgr negatively regulate neutrophil and dendritic cell chemokine signaling via PIR-B. Immunity. 2005; 22(2):235-46. DOI: 10.1016/j.immuni.2005.01.004. View

2.
Levy Y, Wiedemann A, Hejblum B, Durand M, Lefebvre C, Surenaud M . CD177, a specific marker of neutrophil activation, is associated with coronavirus disease 2019 severity and death. iScience. 2021; 24(7):102711. PMC: 8189740. DOI: 10.1016/j.isci.2021.102711. View

3.
Belambri S, Rolas L, Raad H, Hurtado-Nedelec M, Dang P, El-Benna J . NADPH oxidase activation in neutrophils: Role of the phosphorylation of its subunits. Eur J Clin Invest. 2018; 48 Suppl 2:e12951. DOI: 10.1111/eci.12951. View

4.
Liu S, Chen S, Li X, Wu S, Zhang Q, Jin Q . Lck/Hck/Fgr-Mediated Tyrosine Phosphorylation Negatively Regulates TBK1 to Restrain Innate Antiviral Responses. Cell Host Microbe. 2017; 21(6):754-768.e5. DOI: 10.1016/j.chom.2017.05.010. View

5.
Blanco-Melo D, Nilsson-Payant B, Liu W, Uhl S, Hoagland D, Moller R . Imbalanced Host Response to SARS-CoV-2 Drives Development of COVID-19. Cell. 2020; 181(5):1036-1045.e9. PMC: 7227586. DOI: 10.1016/j.cell.2020.04.026. View