Cadmium toxicity toward autophagy through ROS-activated GSK-3beta in mesangial cells

Sheng-Hao Wang1, Yung-Luen Shih, Tai-Chin Kuo

  • 1Graduate Institute of Medical Sciences, Taipei Medical University, Taipei 110, Taiwan, ROC.

Insights

Cadmium exposure triggers autophagy in kidney cells via reactive oxygen species (ROS) and glycogen synthase kinase-3beta (GSK-3beta) activation. Inhibiting GSK-3beta reduces this cadmium-induced autophagy.

Area of Science:

  • Cell Biology
  • Toxicology
  • Molecular Biology

Background:

  • Cadmium (Cd) induces autophagic cell death.
  • Previous studies linked Cd-induced autophagy to a calcium-extracellular signal-regulated kinase pathway.

Purpose of the Study:

  • Investigate the role of glycogen synthase kinase-3beta (GSK-3beta) in cadmium-induced autophagy.
  • Elucidate the signaling pathway mediating Cd-induced autophagy in MES-13 mesangial cells.

Main Methods:

  • MES-13 cells treated with Cd, assessed for autophagy markers (acidic vesicular organelles, autophagosomes, LC3 processing).
  • Utilized flow cytometry, electron microscopy, and immunoblotting.
  • Employed GSK-3beta inhibitor (SB 216763), siRNA, and gene overexpression.
  • Measured reactive oxygen species (ROS) levels and effects of scavengers (NAC, vitamin E).

Main Results:

  • Cd treatment induced autophagy in MES-13 cells.
  • Inhibiting or knocking down GSK-3beta decreased Cd-induced autophagy.
  • Overexpressing GSK-3beta potentiated Cd toxicity.
  • Cd activated GSK-3beta (decreased phosphorylation at Ser9), an effect reversed by NAC.
  • Cd exposure elevated intracellular hydrogen peroxide (H2O2) levels.
  • NAC and vitamin E reduced both Cd-induced ROS and autophagy.

Conclusions:

  • GSK-3beta plays a crucial role in regulating Cd-induced autophagy.
  • Cd-induced autophagy in MES-13 cells is mediated by the ROS-GSK-3beta signaling pathway.
  • ROS are involved in activating GSK-3beta during Cd exposure.

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