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The Use of Mouse Splenocytes to Assess Pathogen-associated Molecular Pattern Influence on Clock Gene Expression
Published on: July 24, 2018
A circadian clock gene, Rev-erbα, modulates the inflammatory function of macrophages through the negative regulation
Shogo Sato1, Takuya Sakurai, Junetsu Ogasawara
1Department of Molecular Predictive Medicine and Sport Science, School of Medicine, Kyorin University, Mitaka, Tokyo 181-8611, Japan;
Abstract:
Disruption of the circadian rhythm is a contributory factor to clinical and pathophysiological conditions, including cancer, the metabolic syndrome, and inflammation. Chronic and systemic inflammation are a potential trigger of type 2 diabetes and cardiovascular disease and are caused by the infiltration of large numbers of inflammatory macrophages into tissue. Although recent studies identified the circadian clock gene Rev-erbα, a member of the orphan nuclear receptors, as a key mediator between clockwork and inflammation, the molecular mechanism remains unknown. In this study, we demonstrate that Rev-erbα modulates the inflammatory function of macrophages through the direct regulation of Ccl2 expression. Clinical conditions associated with chronic and systemic inflammation, such as aging or obesity, dampened Rev-erbα gene expression in peritoneal macrophages from C57BL/6J mice. Rev-erbα agonists or overexpression of Rev-erbα in the murine macrophage cell line RAW264 suppressed the induction of Ccl2 following an LPS endotoxin challenge. We discovered that Rev-erbα represses Ccl2 expression directly through a Rev-erbα-binding motif in the Ccl2 promoter region. Rev-erbα also suppressed CCL2-activated signals, ERK and p38, which was recovered by the addition of exogenous CCL2. Further, Rev-erbα impaired cell adhesion and migration, which are inflammatory responses activated through the ERK- and p38-signaling pathways, respectively. Peritoneal macrophages from mice lacking Rev-erbα display increases in Ccl2 expression. These data suggest that Rev-erbα regulates the inflammatory infiltration of macrophages through the suppression of Ccl2 expression. Therefore, Rev-erbα may be a key link between aging- or obesity-associated impairment of clockwork and inflammation.
Insights
The circadian clock gene Rev-erbα regulates macrophage inflammation by suppressing Ccl2 expression. This finding links disrupted circadian rhythms in aging and obesity to inflammatory diseases.
Area of Science:
- Molecular Biology
- Immunology
- Chronobiology
Background:
- Circadian rhythm disruption contributes to diseases like cancer, metabolic syndrome, and inflammation.
- Chronic inflammation, driven by macrophage infiltration, is linked to type 2 diabetes and cardiovascular disease.
- The circadian clock gene Rev-erbα is implicated in mediating clockwork and inflammation, but its mechanism is unclear.
Purpose of the Study:
- To elucidate the molecular mechanism by which Rev-erbα modulates macrophage inflammatory function.
- To investigate the role of Rev-erbα in regulating Ccl2 expression and associated signaling pathways.
Main Methods:
- Assessed Rev-erbα gene expression in mouse macrophages under aging/obesity conditions.
- Utilized Rev-erbα agonists and overexpression in RAW264 cells to study Ccl2 induction after LPS challenge.
- Performed promoter analysis to identify Rev-erbα binding sites.
- Investigated the impact of Rev-erbα on CCL2-activated ERK and p38 signaling.
- Examined macrophage adhesion and migration assays.
- Analyzed Ccl2 expression in Rev-erbα knockout mice.
Main Results:
- Aging and obesity reduced Rev-erbα expression in mouse macrophages.
- Rev-erbα agonists/overexpression suppressed LPS-induced Ccl2 expression.
- Rev-erbα directly binds to the Ccl2 promoter, repressing its transcription.
- Rev-erbα inhibited CCL2-mediated ERK and p38 signaling, impairing macrophage adhesion and migration.
- Macrophage-specific Ccl2 expression was elevated in Rev-erbα knockout mice.
Conclusions:
- Rev-erbα directly suppresses Ccl2 expression, thereby regulating macrophage inflammatory infiltration.
- Rev-erbα acts as a crucial link between impaired circadian function in aging/obesity and heightened inflammation.
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