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.

Kidney International
|November 14, 2021
PubMed

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.