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Podocyte-Specific Deletion of Yes-Associated Protein Causes FSGS and Progressive Renal Failure
Monica Schwartzman1, Antoine Reginensi2, Jenny S Wong1
1Division of Nephrology, Icahn School of Medicine at Mount Sinai, New York, New York;
Abstract:
FSGS is the most common primary glomerular disease underlying ESRD in the United States and is increasing in incidence globally. FSGS results from podocyte injury, yet the mechanistic details of disease pathogenesis remain unclear. This has resulted in an unmet clinical need for cell-specific therapy in the treatment of FSGS and other proteinuric kidney diseases. We previously identified Yes-associated protein (YAP) as a prosurvival signaling molecule, the in vitro silencing of which increases podocyte susceptibility to apoptotic stimulus. YAP is a potent oncogene that is a prominent target for chemotherapeutic drug development. In this study, we tested the hypothesis that podocyte-specific deletion of Yap leads to proteinuric kidney disease through increased podocyte apoptosis. Yap was selectively silenced in podocytes using Cre-mediated recombination controlled by the podocin promoter. Yap silencing in podocytes resulted in podocyte apoptosis, podocyte depletion, proteinuria, and an increase in serum creatinine. Histologically, features characteristic of FSGS, including mesangial sclerosis, podocyte foot process effacement, tubular atrophy, interstitial fibrosis, and casts, were observed. In human primary FSGS, we noted reduced glomerular expression of YAP. Taken together, these results suggest a role for YAP as a physiologic antagonist of podocyte apoptosis, the signaling of which is essential for maintaining the integrity of the glomerular filtration barrier. These data suggest potential nephrotoxicity with strategies directed toward inhibition of YAP function. Further studies should evaluate the role of YAP in proteinuric glomerular disease pathogenesis and its potential utility as a therapeutic target.
Insights
Yes-associated protein (YAP) protects kidney podocytes from cell death. Silencing YAP in podocytes caused kidney disease, suggesting YAP is crucial for maintaining the glomerular filtration barrier and may be a target for treating proteinuric kidney diseases.
Area of Science:
- Nephrology
- Molecular Biology
- Cell Biology
Background:
- Focal segmental glomerulosclerosis (FSGS) is a leading cause of end-stage renal disease (ESRD) in the US, driven by podocyte injury.
- The precise mechanisms of FSGS pathogenesis remain unclear, highlighting a need for targeted therapies.
- Yes-associated protein (YAP) was previously identified as a prosurvival molecule in vitro, with its silencing increasing podocyte apoptosis.
Purpose of the Study:
- To investigate the role of podocyte-specific YAP deletion in the development of proteinuric kidney disease.
- To test the hypothesis that Yap deletion in podocytes leads to kidney disease via increased podocyte apoptosis.
Main Methods:
- Podocyte-specific deletion of Yap was achieved using Cre-mediated recombination under the control of the podocin promoter.
- Kidney function was assessed by measuring proteinuria and serum creatinine levels.
- Histological analysis was performed to identify FSGS-characteristic features.
Main Results:
- Podocyte-specific Yap silencing led to increased podocyte apoptosis and depletion.
- Mice with Yap-silenced podocytes developed proteinuria and elevated serum creatinine.
- Histological examination revealed FSGS hallmarks, including mesangial sclerosis and podocyte foot process effacement.
- Reduced glomerular YAP expression was observed in human FSGS samples.
Conclusions:
- YAP acts as a physiological antagonist of podocyte apoptosis, essential for glomerular filtration barrier integrity.
- Inhibition of YAP signaling may lead to nephrotoxicity.
- YAP warrants further investigation for its role in proteinuric kidney diseases and potential as a therapeutic target.
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