Related Experiment Video
Updated: Jul 15, 2025

Parallel Measurement of Circadian Clock Gene Expression and Hormone Secretion in Human Primary Cell Cultures
Published on: November 11, 2016
Glucose restriction induces AMPK-SIRT1-mediated circadian clock gene Per expression and delays NSCLC progression
Bohan Li1, Qianfeng Chen1, Yucong Feng1
1Department of Nutrition and Food Hygiene, Key Laboratory of Toxicology, School of Public Health, Nanjing Medical University, Nanjing, Jiangsu, China.
Abstract:
The rhythmic expression of the circadian clock is intimately linked to the health status of the body. Disturbed circadian clock rhythms might lead to a wide range of metabolic diseases and even cancers. Our previous study showed that glucose restriction was able to inhibit non-small cell lung cancer (NSCLC). In the current study, we found that glucose restriction enhanced apoptosis and cell growth delay in NSCLC cells. In addition, we used GEPIA database analysis to derive different effects of each circadian clock gene on lung cancer tissue. Among these circadian clock genes, Per (Period) is lowly expressed in cancer tissues and highly expressed in normal tissues. Moreover, the higher expression of Per in cancer patients has a better prognostic significance. Furthermore, we revealed that glucose restriction induced the expression of the circadian clock gene Per in NSCLC cells by upregulating SIRT1 (Sirtuin1) via activation of the energy response factor AMPK (AMP-activated protein kinase). Changes in Per expression following upregulation or downregulation of AMPK were consistent with AMPK expression. Additionally, a low-carbohydrate ketogenic diet significantly delayed tumor progression in a xenograft tumor model of severe combined immunodeficiency (SCID) mice. Meanwhile, the ketogenic diet increased the expression of AMPK, SIRT1 and Per in vivo. Besides, the ketogenic diet was found to restore the normal rhythmic level of Per by Zeitgeber Time (ZT) experiments. Taken these together, these results indicated a novel mechanism that glucose restriction induces AMPK-SIRT1 mediated circadian clock gene Per expression and delays NSCLC progression, which provided more evidence for glucose restriction as an adjuvant clinical therapeutic strategy in NSCLC.
Insights
Glucose restriction inhibits non-small cell lung cancer (NSCLC) by upregulating the circadian clock gene Per. This process involves activating AMPK and SIRT1, ultimately delaying tumor progression and offering a potential adjuvant therapy.
Area of Science:
- Oncology
- Metabolic Diseases
- Chronobiology
Background:
- Circadian clock disruption is linked to metabolic diseases and cancer.
- Previous research indicated glucose restriction inhibits non-small cell lung cancer (NSCLC).
Purpose of the Study:
- To investigate the mechanism by which glucose restriction affects NSCLC.
- To explore the role of circadian clock genes, specifically Per, in NSCLC progression under glucose restriction.
Main Methods:
- GEPIA database analysis to assess circadian clock gene expression in lung cancer.
- In vitro studies on NSCLC cells to examine the effects of glucose restriction on apoptosis, cell growth, and gene expression (Per, SIRT1, AMPK).
- In vivo studies using a xenograft tumor model in SCID mice fed a ketogenic diet.
Main Results:
- Glucose restriction enhanced apoptosis and cell growth delay in NSCLC cells.
- The circadian clock gene Per was downregulated in NSCLC tissues, and higher Per expression correlated with better prognosis.
- Glucose restriction upregulated Per expression via AMPK-SIRT1 activation.
- A ketogenic diet delayed tumor progression in mice and increased AMPK, SIRT1, and Per expression, restoring normal Per rhythmicity.
Conclusions:
- Glucose restriction, through the AMPK-SIRT1-Per pathway, delays NSCLC progression.
- This mechanism highlights the potential of glucose restriction as an adjuvant therapeutic strategy for NSCLC.
More Related Videos
10:33Flexible Measurement of Bioluminescent Reporters Using an Automated Longitudinal Luciferase Imaging Gas- and Temperature-optimized Recorder ALLIGATOR
Published on: December 13, 2017
11:56In Vitro Bioluminescence Assay to Characterize Circadian Rhythm in Mammary Epithelial Cells
Published on: September 28, 2017
Related Concept Videos
Circadian Rhythms and Gene Regulation
Cell Specific Gene Expression
mTOR Signaling and Cancer Progression
The mTOR pathway or the...