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;

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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