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Published on: July 5, 2022
The caveolin-1 regulated protein follistatin protects against diabetic kidney disease
Dan Zhang1, Agata L Gava2, Richard Van Krieken1
1Division of Nephrology, Department of Medicine, McMaster University, Hamilton, Ontario, Canada.
Abstract:
Glomerular matrix protein accumulation, mediated largely by mesangial cells, is central to the pathogenesis of diabetic kidney disease. Our previous studies showed that the membrane microdomains caveolae and their marker protein caveolin-1 regulate matrix protein synthesis in mesangial cells in response to diabetogenic stimuli, and that caveolin-1 knockout mice are protected against diabetic kidney disease. In a screen to identify the molecular mechanism underlying this protection, we also established that secreted antifibrotic glycoprotein follistatin is significantly upregulated by caveolin-1 deletion. Follistatin potently neutralizes activins, members of the transforming growth factor-β superfamily. A role for activins in diabetic kidney disease has not yet been established. Therefore, in vitro, we confirmed the regulation of follistatin by caveolin-1 in primary mesangial cells and showed that follistatin controls both basal and glucose-induced matrix production through activin inhibition. In vivo, we found activin A upregulation by immunohistochemistry in both mouse and human diabetic kidney disease. Importantly, administration of follistatin to type 1 diabetic Akita mice attenuated early diabetic kidney disease, characterized by albuminuria, hyperfiltration, basement membrane thickening, loss of endothelial glycocalyx and podocyte nephrin, and glomerular matrix accumulation. Thus, activin A is an important mediator of high glucose-induced profibrotic responses in mesangial cells, and follistatin may be a potential novel therapy for the prevention of diabetic kidney disease.
Insights
Caveolin-1 deletion upregulates follistatin, inhibiting activin A. This protects against diabetic kidney disease by reducing glomerular matrix accumulation and offering a potential new therapy.
Area of Science:
- Nephrology
- Molecular Biology
- Diabetology
Background:
- Diabetic kidney disease involves glomerular matrix accumulation driven by mesangial cells.
- Caveolae and caveolin-1 regulate matrix synthesis in response to high glucose.
- Caveolin-1 knockout mice show protection against diabetic kidney disease.
Purpose of the Study:
- To investigate the molecular mechanisms behind caveolin-1's protective role in diabetic kidney disease.
- To explore the role of follistatin and activins in diabetic kidney disease pathogenesis.
- To evaluate follistatin as a potential therapeutic agent for diabetic kidney disease.
Main Methods:
- In vitro studies using primary mesangial cells to assess follistatin regulation by caveolin-1 and its effect on matrix production.
- In vivo studies using immunohistochemistry to detect activin A in mouse and human diabetic kidney disease.
- Administration of follistatin to type 1 diabetic Akita mice to evaluate its therapeutic effects.
Main Results:
- Caveolin-1 deletion upregulates follistatin, which inhibits basal and glucose-induced matrix production in mesangial cells.
- Activin A is upregulated in both mouse and human diabetic kidney disease kidneys.
- Follistatin treatment attenuated key features of early diabetic kidney disease in Akita mice.
Conclusions:
- Activin A mediates high glucose-induced profibrotic responses in mesangial cells.
- Follistatin acts as an antifibrotic factor by neutralizing activins.
- Follistatin represents a potential novel therapeutic strategy for preventing diabetic kidney disease.
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