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Published on: May 26, 2023
Activation of podocyte Notch mediates early Wt1 glomerulopathy
Rowan I Asfahani1, Mona M Tahoun2, Eve V Miller-Hodges3
1Programme of Developmental Biology of Birth Defects, Great Ormond Street Institute of Child Health, University College of London, London, UK.
Abstract:
The Wilms' tumor suppressor gene, WT1, encodes a zinc finger protein that regulates podocyte development and is highly expressed in mature podocytes. Mutations in the WT1 gene are associated with the development of renal failure due to the formation of scar tissue within glomeruli, the mechanisms of which are poorly understood. Here, we used a tamoxifen-based CRE-LoxP system to induce deletion of Wt1 in adult mice to investigate the mechanisms underlying evolution of glomerulosclerosis. Podocyte apoptosis was evident as early as the fourth day post-induction and increased during disease progression, supporting a role for Wt1 in mature podocyte survival. Podocyte Notch activation was evident at disease onset with upregulation of Notch1 and its transcriptional targets, including Nrarp. There was repression of podocyte FoxC2 and upregulation of Hey2 supporting a role for a Wt1/FoxC2/Notch transcriptional network in mature podocyte injury. The expression of cleaved Notch1 and HES1 proteins in podocytes of mutant mice was confirmed in early disease. Furthermore, induction of podocyte HES1 expression was associated with upregulation of genes implicated in epithelial mesenchymal transition, thereby suggesting that HES1 mediates podocyte EMT. Lastly, early pharmacological inhibition of Notch signaling ameliorated glomerular scarring and albuminuria. Thus, loss of Wt1 in mature podocytes modulates podocyte Notch activation, which could mediate early events in WT1-related glomerulosclerosis.
Insights
Loss of Wilms' tumor suppressor gene (WT1) in adult mice causes podocyte apoptosis and Notch pathway activation, leading to glomerulosclerosis. Inhibiting Notch signaling early can prevent kidney scarring and albuminuria.
Area of Science:
- Nephrology
- Molecular Biology
- Genetics
Background:
- Wilms' tumor suppressor gene (WT1) is crucial for podocyte development and survival.
- WT1 mutations are linked to renal failure and glomerulosclerosis, but mechanisms are unclear.
- WT1 is highly expressed in mature podocytes.
Purpose of the Study:
- To investigate the role of WT1 in mature podocytes and its link to glomerulosclerosis.
- To elucidate the molecular mechanisms underlying WT1-related glomerulosclerosis.
- To explore therapeutic targets for WT1-associated kidney disease.
Main Methods:
- Used a tamoxifen-inducible CRE-LoxP system to delete Wt1 in adult mouse podocytes.
- Monitored podocyte apoptosis, Notch pathway activation, and gene expression.
- Assessed glomerular scarring and albuminuria.
- Investigated the effect of pharmacological Notch inhibition.
Main Results:
- Wt1 deletion induced podocyte apoptosis and activation of the Notch signaling pathway.
- A WT1/FoxC2/Notch transcriptional network was implicated in podocyte injury.
- HES1 upregulation correlated with genes involved in epithelial-mesenchymal transition (EMT).
- Early Notch inhibition significantly reduced glomerular scarring and albuminuria.
Conclusions:
- Loss of WT1 in mature podocytes activates Notch signaling, contributing to glomerulosclerosis.
- Podocyte EMT, mediated by HES1, is a key event in WT1-related kidney disease.
- Targeting Notch signaling offers a potential therapeutic strategy for WT1-associated glomerulosclerosis.
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