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SMOC2 promotes partial epithelial-mesenchymal transition and maladaptive repair in renal tubular epithelial cells
Schrodinger Cenatus, Peng Gao, Nathalie Henley, Caroline Lamarche, Xue-Song Liu, Frédérick A. Mallette, Jonatan Barrera-Chimal, Casimiro Gerarduzzi
Schrodinger Cenatus, Peng Gao, Nathalie Henley, Caroline Lamarche, Xue-Song Liu, Frédérick A. Mallette, Jonatan Barrera-Chimal, Casimiro Gerarduzzi
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Research Article Cell biology Nephrology

SMOC2 promotes partial epithelial-mesenchymal transition and maladaptive repair in renal tubular epithelial cells

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Abstract

Chronic kidney disease is a global health concern characterized by maladaptive repair processes that lead to kidney fibrosis. Following injury, early alterations in the extracellular matrix precede the development of kidney fibrosis and represent potential therapeutic targets to improve kidney repair. In this context, studies from our laboratory and others have shown that the matricellular protein SMOC2 can be targeted to decrease inflammation and tubulointerstitial fibrosis after kidney injury. Tubular epithelial cells (TECs), which are abundant and particularly susceptible to injury, play a central role in maladaptive repair; however, whether SMOC2 affects their function after kidney injury has not been explored. In this study, we showed that SMOC2 localized to the basement membrane of injured TECs across 3 murine models of kidney injury. Our in vitro studies demonstrate that SMOC2 induced a partial epithelial-to-mesenchymal (EMT) transition in TECs. We further demonstrated that its extracellular calcium-binding domain mediated binding to the decellularized extracellular matrix and accounted for most of its effects on TECs. Mechanistically, SMOC2 promoted partial EMT through an integrin-dependent pathway. Together, these findings provide mechanistic insight into how SMOC2 drives maladaptive repair by modulating TEC behavior and identify its calcium-binding domain as a key functional mediator.

Authors

Schrodinger Cenatus, Peng Gao, Nathalie Henley, Caroline Lamarche, Xue-Song Liu, Frédérick A. Mallette, Jonatan Barrera-Chimal, Casimiro Gerarduzzi

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Figure 15

Integrins β1 and β3 are important ECM receptors mediating the effects of SMOC2 in tubular epithelial cells.

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Integrins β1 and β3 are important ECM receptors mediating the effects of...
(A) Western blots showing the expression of several integrins in HK-2 cells under normal conditions. (B) Single-cell RNA-seq data showing the gene expression of integrins β1 (Itgb1) and β3 (Itgb3) in proximal tubular cells (PTC) after ischemia-reperfusion injury. These images were generated by the Software from the Kidney Interactive Transcriptomics. (C) Immunoprecipitation indicating the binding of SMOC2 to integrins β1 and β3 in HK-2 cells. (D and F) Western blots showing the expression of mesenchymal markers in HK-2 cells transfected with a scrambled siRNA (ssiRNA), or a siRNA targeting integrin β3 (ITGB3 siRNA) (D) or integrin β1 (ITGB1 siRNA) (F). The transfected cells were stimulated with rhSMOC2 or left nonstimulated for 48 hours. (E and G) Quantification of the Western blots in (D and F), respectively. (H) Schematic representation of the mechanism for SMOC2-regulated mesenchymal proteins in tubular epithelial cells. One-way ANOVA; *P < 0.05, **P < 0.01; n = 3 for each experiment.

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