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Updated: May 27, 2026

Monitoring Cell-autonomous Circadian Clock Rhythms of Gene Expression Using Luciferase Bioluminescence Reporters
Published on: September 27, 2012
Molecular Clocks in Translational Roadmap for Circadian-Based Therapeutics in Lung Diseases
Kingshuk Panda1, Renu Khasa1, Srinivasan Chinnapaiyan1
1Department of Cellular and Molecular Medicine, Herbert Wertheim College of Medicine, Florida International University, Miami, Florida, USA.
Abstract:
The lung contains a robust peripheral circadian clock that regulates airway tone, epithelial barrier integrity, immune cell trafficking, and metabolic homeostasis through transcriptional-translational feedback loops involving BMAL1, CLOCK, PER, CRY, REV-ERBα, and RORα. Disruption of this molecular clock is increasingly recognized as a central pathogenic mechanism across pulmonary diseases. Inflammatory signaling, cigarette smoke, hyperoxia, infection, and developmental stress suppress core clock components, dampen clock-controlled gene rhythms, and drive persistent inflammation, impaired mucociliary clearance, oxidative injury, epithelial-mesenchymal transition, fibrosis, and tumor progression. Altered rhythmicity of BMAL1, REV-ERBα, PER2, and RORα has been reported in asthma, COPD, idiopathic pulmonary fibrosis, bronchopulmonary dysplasia, pneumonia, and lung cancer, correlating with characteristic diurnal fluctuations in symptoms and lung function. This narrative review integrates current evidence linking chronodisruption to pulmonary pathobiology and highlights emerging therapeutic strategies aimed at restoring circadian homeostasis. Small-molecule modulators of REV-ERBα, RORα, CRY, PER, CLOCK, and metabolic pathways (NAD+-SIRT1 axis), in conjunction with chronotherapy-based timing of standard treatments, show potential to reestablish rhythmic gene expression and attenuate inflammation and tissue remodeling. The lung circadian clock is a central regulator of respiratory physiology and a promising therapeutic target in chronic lung disease. Strategies that restore rhythmicity, including clock-directed small molecules and time-optimized therapies, offer emerging opportunities to reduce inflammation, prevent maladaptive remodeling, and improve clinical outcomes.
Insights
The lung
Area of Science:
- Pulmonary Medicine
- Chronobiology
- Molecular Biology
Background:
- The lung possesses a peripheral circadian clock regulating key physiological processes.
- Disruption of this molecular clock is implicated in the pathogenesis of various lung diseases.
- Core clock components and their rhythms are altered in conditions like asthma, COPD, and lung cancer.
Purpose of the Study:
- To review the evidence linking circadian rhythm disruption to lung pathobiology.
- To explore therapeutic strategies for restoring circadian homeostasis in lung diseases.
Main Methods:
- This is a narrative review integrating current scientific evidence.
- Analysis of studies on circadian clock components (BMAL1, CLOCK, PER, CRY, REV-ERBα, RORα) in lung physiology and disease.
Main Results:
- Chronodisruption suppresses clock genes, dampens rhythmic gene expression, and drives lung pathology.
- Altered rhythms of specific clock genes correlate with disease severity and diurnal symptom fluctuations.
- Emerging therapies targeting clock components and chronotherapy show promise.
Conclusions:
- The lung circadian clock is a critical regulator of respiratory health and a potential therapeutic target.
- Restoring circadian rhythmicity through small molecules and timed treatments may improve outcomes in chronic lung disease.
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