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.

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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