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Updated: Jul 1, 2026

An Efficient Sieving Method to Isolate Intact Glomeruli from Adult Rat Kidney
Published on: November 1, 2018
Podocyte-specific deletion of dicer alters cytoskeletal dynamics and causes glomerular disease
Scott J Harvey1, George Jarad, Jeanette Cunningham
1Renal Division, Washington University School of Medicine, St. Louis, MO 63110, USA.
Abstract:
MicroRNAs (miRNAs) regulate gene expression by binding the 3' untranslated region of mRNAs. To define their role in glomerular function, miRNA biogenesis was disrupted in mouse podocytes using a conditional Dicer allele. Mutant mice developed proteinuria by 3 wk after birth and progressed rapidly to end-stage kidney disease. Podocyte pathology included effacement, vacuolization, and hypertrophy with crescent formation. Despite normal expression of WT1, podocytes underwent dedifferentiation, exemplified by cytoskeletal disruption with early transcriptional downregulation of synaptopodin. These abnormalities differed from Cd2ap(-/-) mice, indicating they were not a general consequence of glomerular disease. Glomerular labeling of ezrin, moesin, and gelsolin was altered at 3 wk, but expression of nestin and alpha-actinin was unchanged. Abnormal cell proliferation or apoptosis was not responsible for the glomerular injury. Mutant podocytes were incapable of synthesizing mature miRNA, as revealed by their loss of miR-30a. In contrast, expression of glomerular endothelial and mesangial cell miRNAs (miR-126 and miR-145, respectively) was unchanged. These findings demonstrate a critical role for miRNA in glomerular function and suggest a pathway that may participate in the pathogenesis of kidney diseases of podocyte origin. The unique architecture of podocytes may make them especially susceptible to cytoskeletal alterations initiated by aberrant miRNA dynamics.
Insights
MicroRNAs (miRNAs) are crucial for kidney health. Disrupting miRNA production in mouse podocytes caused severe kidney disease, highlighting their essential role in glomerular function and disease pathogenesis.
Area of Science:
- Nephrology
- Molecular Biology
- Genetics
Background:
- MicroRNAs (miRNAs) are key regulators of gene expression.
- Podocytes are specialized kidney cells vital for filtration.
- The specific role of miRNAs in podocyte function was unclear.
Purpose of the Study:
- To investigate the role of miRNA biogenesis in glomerular function.
- To determine the impact of disrupted miRNA production in podocytes.
Main Methods:
- Conditional Dicer allele used to disrupt miRNA biogenesis in mouse podocytes.
- Analysis of kidney pathology, podocyte morphology, and gene/miRNA expression.
- Comparison with Cd2ap(-/-) mouse model.
Main Results:
- Mutant mice rapidly developed proteinuria and end-stage kidney disease.
- Podocyte dedifferentiation, cytoskeletal disruption, and loss of synaptopodin observed.
- Specific loss of mature miR-30a in mutant podocytes, while endothelial/mesangial miRNAs remained unchanged.
Conclusions:
- miRNA is critical for maintaining glomerular function and podocyte integrity.
- Aberrant miRNA dynamics contribute to podocyte dysfunction and kidney disease.
- Podocyte susceptibility to cytoskeletal alterations may involve miRNA dysregulation.
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