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Updated: Nov 2, 2025

Parallel Measurement of Circadian Clock Gene Expression and Hormone Secretion in Human Primary Cell Cultures
Published on: November 11, 2016
Circadian misalignment promotes vascular smooth muscle cell apoptosis via defective autophagy
Zhenyu Guo1, Baixue Yu2, Xu Li1
1Department of Vascular Surgery, Qingpu Branch of Zhongshan Hospital, Fudan University, 1158 Park Road, Qingpu, Shanghai, 201700, China.
Abstract:
Defective autophagy in vascular smooth muscle cells (VSMCs) in response to oxidative stress can lead to cellular apoptosis and plaque instability. Previous studies have revealed that the circadian clock system is involved in autophagic regulation and plaque progression. However, the mechanism by which circadian rhythmicity influences VSMC autophagy and plaque stability remains unclear. Our study described the circadian profiles in atheromatous plaques and verified the role of circadian misalignment in VSMC autophagy and apoptosis. We found that the mRNA expression levels of circadian locomotor output cycles protein kaput (CLOCK) and Beclin 1 were significantly decreased in unstable plaques compared with stable plaques. No significant differences were observed in other circadian rhythm genes. VSMCs treated with oxidized low-density lipoprotein (ox-LDL, 80 μg/ml) exhibited abnormal circadian rhythmicity and impaired autophagy, as evidenced by consistent decreases in CLOCK and Beclin 1 expression, suggesting a correlation between CLOCK and autophagy. CLOCK protein expression was inhibited by ox-LDL, accompanied by defective autophagy and an increased apoptosis rates (P < 0.05). Administration of rapamycin (10 nM) reversed the effect of ox-LDL on VSMC autophagy and apoptosis. Finally, CLOCK silencing led to a considerable decrease in autophagy. VSMCs with stable CLOCK silencing also showed an increased apoptosis rate. In addition, gene silencing of CLOCK in VSMCs counteracted the effects of moderate rapamycin concentrations on autophagy and apoptosis. In conclusion, these findings suggested that the CLOCK-dependent rapamycin signaling pathway is a critical mediator in ox-LDL-induced VSMCs with defective autophagy that exacerbates plaque destabilization.
Insights
Defective autophagy in vascular smooth muscle cells (VSMCs) is linked to plaque instability. The study reveals the circadian locomotor output cycles protein kaput (CLOCK) pathway is crucial for regulating VSMC autophagy and preventing apoptosis, impacting plaque stability.
Area of Science:
- Cardiovascular Biology
- Cellular Autophagy
- Circadian Rhythms
Background:
- Defective autophagy in vascular smooth muscle cells (VSMCs) contributes to plaque instability.
- Circadian clock systems influence autophagic regulation and plaque progression, but mechanisms are unclear.
Purpose of the Study:
- To investigate circadian profiles in atheromatous plaques.
- To elucidate the role of circadian misalignment in VSMC autophagy and apoptosis.
Main Methods:
- Analysis of circadian gene expression in stable versus unstable plaques.
- Oxidized low-density lipoprotein (ox-LDL) treatment of VSMCs to assess autophagy and apoptosis.
- Rapamycin administration and CLOCK gene silencing experiments.
Main Results:
- CLOCK and Beclin 1 mRNA levels were decreased in unstable plaques.
- Ox-LDL impaired VSMC autophagy and increased apoptosis, correlating with reduced CLOCK expression.
- Rapamycin treatment and CLOCK silencing modulated autophagy and apoptosis.
Conclusions:
- The CLOCK-dependent rapamycin signaling pathway mediates ox-LDL-induced VSMC autophagy defects.
- This pathway is critical in plaque destabilization, highlighting therapeutic potential.
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