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Updated: Jan 24, 2026

Molecular Analysis of Endothelial-mesenchymal Transition Induced by Transforming Growth Factor-β Signaling
Published on: August 3, 2018
The motor protein Myo1c regulates transforming growth factor-β-signaling and fibrosis in podocytes
Ehtesham Arif1, Ashish K Solanki1, Pankaj Srivastava1
1Department of Medicine, Nephrology Division, Medical University of South Carolina, Charleston, South Carolina, USA.
Abstract:
Transforming growth factor-β (TGF-β) is known to play a critical role in the pathogenesis of many progressive podocyte diseases. However, the molecular mechanisms regulating TGF-β signaling in podocytes remain unclear. Using a podocyte-specific myosin (Myo)1c knockout, we demonstrate whether Myo1c is critical for TGF-β-signaling in podocyte disease pathogenesis. Specifically, podocyte-specific Myo1c knockout mice were resistant to fibrotic injury induced by Adriamycin or nephrotoxic serum. Further, loss of Myo1c also protected from injury in the TGF-β-dependent unilateral ureteral obstruction mouse model of renal interstitial fibrosis. Mechanistic analyses showed that loss of Myo1c significantly blunted TGF-β signaling through downregulation of canonical and non-canonical TGF-β pathways. Interestingly, nuclear rather than the cytoplasmic Myo1c was found to play a central role in controlling TGF-β signaling through transcriptional regulation. Differential expression analysis of nuclear Myo1c-associated gene promoters showed that nuclear Myo1c targeted the TGF-β responsive gene growth differentiation factor (GDF)-15 and directly bound to the GDF-15 promoter. Importantly, GDF15 was found to be involved in podocyte pathogenesis, where GDF15 was upregulated in glomeruli of patients with focal segmental glomerulosclerosis. Thus, Myo1c-mediated regulation of TGF-β-responsive genes is central to the pathogenesis of podocyte injury. Hence, inhibiting this process may have clinical application in treating podocytopathies.
Insights
Myosin 1c (Myo1c) is critical for transforming growth factor-β (TGF-β) signaling in podocyte injury. Loss of Myo1c protects against kidney fibrosis by downregulating TGF-β pathways and GDF15 expression.
Area of Science:
- Nephrology
- Molecular Biology
- Cell Biology
Background:
- Transforming growth factor-β (TGF-β) is implicated in progressive podocyte diseases.
- The precise molecular mechanisms of TGF-β signaling in podocytes are not fully understood.
Purpose of the Study:
- To investigate the role of myosin 1c (Myo1c) in TGF-β signaling and podocyte disease pathogenesis.
- To determine if Myo1c is essential for TGF-β-induced podocyte injury.
Main Methods:
- Utilized podocyte-specific Myo1c knockout mice.
- Administered Adriamycin, nephrotoxic serum, and unilateral ureteral obstruction to induce kidney injury.
- Performed mechanistic analyses of TGF-β signaling pathways and gene expression.
- Investigated the role of nuclear Myo1c in transcriptional regulation.
- Analyzed GDF15 expression in patient samples.
Main Results:
- Podocyte-specific Myo1c knockout mice exhibited resistance to fibrotic injury.
- Loss of Myo1c significantly blunted both canonical and non-canonical TGF-β signaling pathways.
- Nuclear Myo1c was identified as a key regulator of TGF-β signaling via transcriptional control.
- Myo1c directly targeted the promoter of growth differentiation factor (GDF)-15, a TGF-β-responsive gene.
- Elevated GDF15 levels were observed in glomeruli of patients with focal segmental glomerulosclerosis.
Conclusions:
- Myo1c plays a central role in podocyte injury pathogenesis by regulating TGF-β-responsive genes, particularly GDF15.
- Inhibition of Myo1c-mediated TGF-β signaling presents a potential therapeutic strategy for podocytopathies.
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