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Published on: November 10, 2021
Modulation of transforming growth factor-β-induced kidney fibrosis by leucine-rich ⍺-2 glycoprotein-1
Quan Hong1, Hong Cai2, Lu Zhang3
1Department of Medicine, Nephrology Division, Icahn School of Medicine at Mount Sinai, New York, New York, USA; Department of Nephrology, Chinese PLA General Hospital, Chinese PLA Institute of Nephrology, State Key Laboratory of Kidney Diseases, National Clinical Research Center of Kidney Diseases, Beijing, China.
Abstract:
Kidney fibrosis is considered the final convergent pathway for progressive chronic kidney diseases, but there is still a paucity of success in clinical application for effective therapy. We recently demonstrated that the expression of secreted leucine-rich α-2 glycoprotein-1 (LRG1) is associated with worsened kidney outcomes in patients with type 2 diabetes and that LRG1 enhances endothelial transforming growth factor-β signaling to promote diabetic kidney disease progression. While the increased expression of LRG1 was most prominent in the glomerular endothelial cells in diabetic kidneys, its increase was also observed in the tubulointerstitial compartment. Here, we explored the potential role of LRG1 in kidney epithelial cells and TGF-β-mediated tubulointerstitial fibrosis independent of diabetes. LRG1 expression was induced by tumor necrosis factor-α in cultured kidney epithelial cells and potentiated TGF-β/Smad3 signal transduction. Global Lrg1 loss in mice led to marked attenuation of tubulointerstitial fibrosis in models of unilateral ureteral obstruction and aristolochic acid fibrosis associated with concomitant decreases in Smad3 phosphorylation in tubule epithelial cells. In mice with kidney epithelial cell-specific LRG1 overexpression, while no significant phenotypes were observed at baseline, marked exacerbation of tubulointerstitial fibrosis was observed in the obstructed kidneys. This was associated with enhanced Smad3 phosphorylation in both kidney epithelial cells and α-smooth muscle actin-positive interstitial cells. Co-culture of kidney epithelial cells with primary kidney fibroblasts confirmed the potentiation of TGF-β-mediated Smad3 activation in kidney fibroblasts through epithelial-derived LRG1. Thus, our results indicate that enhanced LRG1 expression-induced epithelial injury is an amplifier of TGF-β signaling in autocrine and paracrine manners promoting tubulointerstitial fibrosis. Hence, therapeutic targeting of LRG1 may be an effective means to curtail kidney fibrosis progression in chronic kidney disease.
Insights
Secreted leucine-rich α-2 glycoprotein-1 (LRG1) amplifies kidney fibrosis by enhancing TGF-β signaling in epithelial cells. Targeting LRG1 may offer a new therapy for chronic kidney disease progression.
Area of Science:
- Nephrology
- Cell Biology
- Molecular Biology
Background:
- Kidney fibrosis is a common endpoint for chronic kidney diseases with limited therapeutic options.
- Secreted leucine-rich α-2 glycoprotein-1 (LRG1) is linked to poor kidney outcomes and promotes diabetic kidney disease.
- LRG1's role in non-diabetic tubulointerstitial fibrosis via kidney epithelial cells requires investigation.
Purpose of the Study:
- To investigate the role of LRG1 in kidney epithelial cells and its contribution to tubulointerstitial fibrosis.
- To elucidate the mechanisms by which LRG1 influences transforming growth factor-β (TGF-β) signaling in kidney fibrosis.
- To assess the therapeutic potential of targeting LRG1 for kidney fibrosis.
Main Methods:
- Utilized cultured kidney epithelial cells stimulated with tumor necrosis factor-α.
- Employed mouse models of kidney fibrosis: unilateral ureteral obstruction and aristolochic acid.
- Generated global Lrg1 knockout mice and kidney epithelial cell-specific LRG1 overexpressing mice.
- Performed co-culture experiments with kidney epithelial cells and fibroblasts.
Main Results:
- LRG1 expression was induced by tumor necrosis factor-α in kidney epithelial cells, potentiating TGF-β/Smad3 signaling.
- Global Lrg1 deficiency attenuated tubulointerstitial fibrosis and Smad3 phosphorylation in mice.
- Kidney epithelial cell-specific LRG1 overexpression exacerbated fibrosis and Smad3 phosphorylation in obstructed kidneys.
- Epithelial-derived LRG1 enhanced TGF-β-mediated Smad3 activation in kidney fibroblasts.
Conclusions:
- Enhanced LRG1 expression in kidney epithelial cells promotes tubulointerstitial fibrosis through autocrine and paracrine TGF-β signaling.
- LRG1 acts as an amplifier of TGF-β signaling in kidney fibrosis.
- Targeting LRG1 presents a potential therapeutic strategy to mitigate kidney fibrosis progression in chronic kidney disease.
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