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Updated: May 10, 2026

Cell-Based Drug Screening for Inhibitors of Autophagy Related 4B Cysteine Peptidase
Published on: June 30, 2023
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.
Abstract:
Oxidized lipoproteins stimulate autophagy in advanced atherosclerotic plaques. However, the mechanisms underlying autophagy induction and the role of autophagy in atherogenesis remain to be determined. This study was designed to investigate the mechanisms by which 7-ketocholesterol (7-KC), a major component of oxidized lipoproteins, induces autophagy. This study was also designed to determine the effect of autophagy induction on apoptosis, a central event in the development of atherosclerosis. Exposure of human aortic smooth muscle cells to 7-KC increased autophagic flux. Autophagy induction was suppressed by treating the cells with either a reactive oxygen species scavenger or an antioxidant. Administration of 7-KC concomitantly up-regulated Nox4 expression, increased intracellular hydrogen peroxide levels, and inhibited autophagy-related gene 4B activity. Catalase overexpression to remove hydrogen peroxide or Nox4 knockdown with siRNA reduced intracellular hydrogen peroxide levels, restored autophagy-related gene 4B activity, and consequently attenuated 7-KC-induced autophagy. Moreover, inhibition of autophagy aggravated both endoplasmic reticulum (ER) stress and cell death in response to 7-KC. In contrast, up-regulation of autophagic activity by rapamycin had opposite effects. Finally, activation of autophagy by chronic rapamycin treatment attenuated ER stress, apoptosis, and atherosclerosis in apolipoprotein E knockout (ApoE(-/-)) mouse aortas. In conclusion, we demonstrate that up-regulation of autophagy is a cellular protective response that attenuates 7-KC-induced cell death in human aortic smooth muscle cells.
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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