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Updated: May 26, 2026

Generation of Patient-Derived Podocytes from Skin Biopsies
Published on: May 26, 2023
ERRγ deletion in podocytes accelerates aging related kidney disease
Xiaoxin Wang1, Komuraiah Myakala1, Natalia Shults1
1Department of Biochemistry and Molecular & Cellular Biology, Georgetown University Medical Center.
Deleting ERRγ in aging podocytes worsens kidney disease, increasing albuminuria and reducing podocyte density. This highlights ERRγ
Area of Science:
- Nephrology and Molecular Biology
- Mitochondrial Biology and Aging
Background:
- Aging kidneys exhibit increased urinary albumin, decreased podocyte density, impaired mitochondrial function, and inflammation.
- Previous studies showed a pan-ERR agonist reversed these age-related kidney changes.
- The roles of individual ERR isoforms, particularly ERRγ in aging podocytes, remain unclear.
Purpose of the Study:
- To investigate the specific role of Estrogen-Related Receptor gamma (ERRγ) in aging podocytes.
- To determine if podocyte-specific deletion of ERRγ exacerbates age-related kidney dysfunction.
Main Methods:
- Generated podocyte-specific ERRγ knockout mice by crossing ERRγ floxed mice with podocin-Cre mice.
- Assessed kidney function (albuminuria, podocyte density) and kidney tissue morphology via Electron Microscopy (EM).
- Analyzed mitochondrial function using Fluorescence Lifetime Imaging Microscopy (FLIM) to measure NADH and FAD lifetimes.
Main Results:
- Aged mice with podocyte-specific ERRγ deletion showed increased albuminuria and decreased podocyte density compared to wild-type.
- Deletion of ERRγ reduced expression of PGC-1α, CPT1a, and MCAD, impacting mitochondrial biogenesis and fatty acid oxidation.
- EM revealed glomerular basement membrane thickening, podocyte foot process effacement, and severe mitochondrial damage.
- FLIM indicated a metabolic shift towards glycolysis and reduced mitochondrial redox capacity.
Conclusions:
- Podocyte-specific deletion of ERRγ accelerates age-related kidney disease.
- ERRγ plays a crucial role in maintaining podocyte mitochondrial function and integrity.
- ERRα and ERRγ may act synergistically to regulate mitochondrial function and prevent age-related kidney disease.
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