Role of smooth muscle protein SM22α in glomerular epithelial cell injury

Caroline B Marshall1, Ron D Krofft, Mary J Blonski

  • 1Div. of Nephrology, Department of Medicine, Univ. of Washington, Seattle, WA 98195, USA. cmars@u.washington.edu

Insights

SM22α, a smooth muscle differentiation marker, is newly expressed in injured podocytes and worsens crescentic glomerulonephritis in mice. Its de novo expression in glomerular cells impacts disease progression and podocyte health.

Area of Science:

  • Nephrology
  • Cell Biology
  • Molecular Biology

Background:

  • Podocytes are terminally differentiated kidney cells that can undergo various responses to injury, including dedifferentiation, proliferation, cell cycle arrest, hypertrophy, apoptosis, necrosis, and transdifferentiation.
  • SM22α, an actin-binding protein and early marker of smooth muscle differentiation, is significantly upregulated in rat glomeruli with passive Heymann nephritis (PHN) but absent in normal adult rat glomeruli.

Purpose of the Study:

  • To investigate the expression pattern of SM22α during kidney development and its role in glomerular diseases characterized by podocyte injury and proteinuria.
  • To determine the functional impact of SM22α expression on the course of crescentic glomerulonephritis.

Main Methods:

  • Examined SM22α expression during rat kidney development and in various experimental and human proteinuric kidney diseases.
  • Induced crescentic glomerulonephritis in SM22α wild-type (+/+) and knockout (-/-) mice.
  • Assessed histopathological parameters, apoptosis (cleaved caspase-3), podocyte number (Wilms' tumor-1), proliferation (Ki-67), and Erk1/2 activation in diseased mice.

Main Results:

  • SM22α is expressed during glomerulogenesis and podocyte differentiation, disappearing with maturation, but re-induced in various proteinuric conditions.
  • SM22α +/+ mice with crescentic glomerulonephritis exhibited worse histopathology compared to SM22α -/- mice.
  • Diseased SM22α +/+ mice showed increased apoptosis, fewer podocytes, reduced proliferation, and decreased Erk1/2 activation compared to SM22α -/- mice.

Conclusions:

  • De novo expression of SM22α in glomerular epithelial cells occurs during kidney development and is re-induced in pathological conditions.
  • The presence of SM22α exacerbates crescentic glomerulonephritis, leading to increased podocyte injury and apoptosis.
  • SM22α expression negatively impacts the course of glomerular disease, potentially through modulation of Erk1/2 signaling.

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