LRG1 loss effectively restrains glomerular TGF-β signaling to attenuate diabetic kidney disease

Xuan Wang1, Zeguo Sun2, Jia Fu2

  • 1Department of Medicine, Division of Nephrology, Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA; Department of Nephrology, Shanghai General Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

Insights

Leucine-rich α2-glycoprotein 1 (LRG1) drives diabetic kidney disease (DKD) by enhancing transforming growth factor-β (TGF-β) signaling in kidney cells. Blocking LRG1 shows promise for treating DKD.

Area of Science:

  • Nephrology
  • Molecular Biology
  • Cell Biology

Background:

  • Transforming growth factor-β (TGF-β) signaling is a key factor in diabetic kidney disease (DKD) pathogenesis.
  • Systemic blockade of TGF-β is limited by its diverse biological actions.
  • Leucine-rich α2-glycoprotein 1 (LRG1), upregulated in glomerular endothelial cells (GECs) in DKD, modulates TGF-β signaling.

Purpose of the Study:

  • To investigate the role of LRG1 in DKD pathogenesis.
  • To determine the cell-specific effects of LRG1 loss on TGF-β signaling in diabetic kidneys.
  • To evaluate LRG1 as a potential therapeutic target for DKD.

Main Methods:

  • Single-cell transcriptomic analysis in diabetic OVE26 mice with and without LRG1.
  • Gene expression analysis to assess LRG1 expression and TGF-β pathway activity.
  • Measurement of phospho-Smad proteins to confirm pathway modulation.

Main Results:

  • LRG1 expression is predominantly in GECs and increases in diabetic kidneys.
  • Loss of LRG1 reversed angiogenic and TGF-β-induced gene expression in GECs, attenuating DKD.
  • LRG1 deficiency reduced TGF-β-mediated gene expression in podocytes and mesangial cells, decreasing phospho-Smad levels.

Conclusions:

  • GEC-derived LRG1 potentiates glomerular TGF-β signaling via autocrine and paracrine mechanisms.
  • Targeting LRG1 offers a specific approach to inhibit hyperactive glomerular TGF-β signaling.
  • LRG1 antagonism represents a potential therapeutic strategy for attenuating DKD.

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