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Published on: May 10, 2024
LRG1 loss effectively restrains glomerular TGF-β signaling to attenuate diabetic kidney disease
Abstract:
Transforming growth factor (TGF)-β signaling is a well-established pathogenic mediator of diabetic kidney disease (DKD). However, owing to its pleiotropic actions, its systemic blockade is not therapeutically optimal. The expression of TGF-β signaling regulators can substantially influence TGF-β's effects in a cell- or context-specific manner. Among these, leucine-rich α2-glycoprotein 1 (LRG1) is significantly increased in glomerular endothelial cells (GECs) in DKD. As LRG1 is a secreted molecule that can exert autocrine and paracrine effects, we examined the effects of LRG1 loss in kidney cells in diabetic OVE26 mice by single-cell transcriptomic analysis. Gene expression analysis confirmed a predominant expression of Lrg1 in GECs, which further increased in diabetic kidneys. Loss of Lrg1 led to the reversal of angiogenic and TGF-β-induced gene expression in GECs, which were associated with DKD attenuation. Notably, Lrg1 loss also mitigated the increased TGF-β-mediated gene expression in both podocytes and mesangial cells in diabetic mice, indicating that GEC-derived LRG1 potentiates TGF-β signaling in glomerular cells in an autocrine and paracrine manner. Indeed, a significant reduction in phospho-Smad proteins was observed in the glomerular cells of OVE26 mice with LRG1 loss. These results indicate that specific antagonisms of LRG1 may be an effective approach to curb the hyperactive glomerular TGF-β signaling to attenuate DKD.
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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