7-Ketocholesterol induces autophagy in vascular smooth muscle cells through Nox4 and Atg4B

Chaoyong He1, Huaiping Zhu, Wencheng Zhang

  • 1Section of Molecular Medicine, Department of Medicine, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma 73104, USA.

Insights

Oxidized lipoproteins like 7-ketocholesterol (7-KC) induce autophagy in cells. Activating autophagy protects against cell death and atherosclerosis, suggesting a therapeutic target for cardiovascular disease.

Area of Science:

  • Cardiovascular Biology
  • Cellular Stress Response
  • Autophagy Research

Background:

  • Oxidized lipoproteins contribute to atherosclerosis.
  • Autophagy's role in atherogenesis and its induction mechanisms are unclear.
  • 7-ketocholesterol (7-KC) is a key oxidized lipoprotein component.

Purpose of the Study:

  • Investigate how 7-ketocholesterol (7-KC) induces autophagy.
  • Determine the impact of autophagy induction on apoptosis in atherosclerosis.
  • Explore autophagy's protective role in cellular and animal models of atherosclerosis.

Main Methods:

  • Exposed human aortic smooth muscle cells to 7-KC.
  • Utilized reactive oxygen species (ROS) scavengers, antioxidants, Nox4 siRNA, and catalase overexpression.
  • Administered rapamycin to up-regulate autophagy in cells and apolipoprotein E knockout (ApoE(-/-)) mice.

Main Results:

  • 7-KC increased autophagic flux, Nox4 expression, and hydrogen peroxide levels, while inhibiting autophagy-related gene 4B activity.
  • ROS scavengers, antioxidants, catalase, or Nox4 knockdown attenuated 7-KC-induced autophagy.
  • Autophagy inhibition worsened 7-KC-induced endoplasmic reticulum (ER) stress and cell death.
  • Rapamycin treatment reduced ER stress, apoptosis, and atherosclerosis in ApoE(-/-) mice.

Conclusions:

  • 7-ketocholesterol (7-KC) induces autophagy via a reactive oxygen species (ROS)-dependent pathway involving Nox4.
  • Autophagy acts as a protective mechanism against 7-KC-induced cell death and ER stress.
  • Enhanced autophagy signaling may represent a therapeutic strategy for mitigating atherosclerosis.

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