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Updated: Mar 26, 2026

Single-channel Analysis and Calcium Imaging in the Podocytes of the Freshly Isolated Glomeruli
Published on: June 27, 2015
Dosage-dependent role of Rac1 in podocyte injury
Xiaoyang Wan1, Mi-Sun Lee1, Weibin Zhou2
1Department of Pediatrics and Communicable Diseases, University of Michigan, Ann Arbor, Michigan.
Abstract:
Activation of small GTPase Rac1 in podocytes is associated with rodent models of kidney injury and familial nephrotic syndrome. Induced Rac1 activation in podocytes in transgenic mice results in rapid transient proteinuria and foot process effacement, but not glomerular sclerosis. Thus it remains an open question whether abnormal activation of Rac1 in podocytes is sufficient to cause permanent podocyte damage. Using a number of transgenic zebrafish models, we showed that moderate elevation of Rac1 activity in podocytes did not impair the glomerular filtration barrier but aggravated metronidazole-induced podocyte injury, while inhibition of Rac1 activity ameliorated metronidazole-induced podocyte injury. Furthermore, a further increase in Rac1 activity in podocytes was sufficient to cause proteinuria and foot process effacement, which resulted in edema and lethality in juvenile zebrafish. We also found that activation of Rac1 in podocytes significantly downregulated the expression of nephrin and podocin, suggesting an adverse effect of Rac1 on slit diaphragm protein expression. Taken together, our data have demonstrated a causal link between excessive Rac1 activity and podocyte injury in a dosage-dependent manner, and transgenic zebrafish of variable Rac1 activities in podocytes may serve as useful animal models for the study of Rac1-related podocytopathy.
Insights
Excessive activation of Rac1 in kidney podocytes causes injury and proteinuria in a dosage-dependent manner. Zebrafish models reveal Rac1
Area of Science:
- Nephrology
- Molecular Biology
- Zebrafish Models
Background:
- Small GTPase Rac1 activation in podocytes is linked to kidney injury and nephrotic syndrome.
- Previous studies in mice showed transient proteinuria but not glomerular sclerosis upon Rac1 activation.
Purpose of the Study:
- To investigate if abnormal Rac1 activation in podocytes is sufficient to cause permanent podocyte damage.
- To establish zebrafish models for studying Rac1-related podocytopathies.
Main Methods:
- Utilized transgenic zebrafish with variable Rac1 activity in podocytes.
- Induced podocyte injury using metronidazole.
- Assessed glomerular filtration barrier integrity, proteinuria, foot process effacement, and expression of nephrin and podocin.
Main Results:
- Moderate Rac1 elevation aggravated metronidazole-induced podocyte injury; inhibition ameliorated it.
- Sufficiently increased Rac1 activity caused proteinuria, foot process effacement, edema, and lethality in juvenile zebrafish.
- Rac1 activation downregulated nephrin and podocin expression, indicating adverse effects on slit diaphragm proteins.
Conclusions:
- Demonstrated a causal, dosage-dependent link between excessive Rac1 activity and podocyte injury.
- Established transgenic zebrafish as valuable models for studying Rac1-related podocytopathies.
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