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Chronic Alcohol Consumption Disrupts the Skeletal Muscle Circadian Clock in Female Mice
Abigail L Tice1, Joseph A Laudato1, Bradley S Gordon1,2
1Department of Nutrition & Integrative Physiology, Florida State University, Tallahassee, Florida.
Abstract:
The intrinsic skeletal muscle core clock has emerged as a key feature of metabolic control and influences several aspects of muscle physiology. Acute alcohol intoxication disrupts the core molecular clock, but whether chronic consumption, like that leading to alcoholic myopathy, is also a zeitgeber for skeletal muscle remains unknown. The purpose of this work was to determine whether chronic alcohol consumption dysregulates the skeletal muscle core molecular clock and clock-controlled genes (CCGs). C57BL/6Hsd female mice (14 weeks old) were fed a control (CON) or alcohol (EtOH) containing liquid diet for 6 weeks. Gastrocnemius muscles and serum were collected from CON and EtOH mice every 4-h for 24-h. Chronic alcohol consumption disrupted genes of the core clock including suppressing the rhythmic peak of expression of Bmal1, Per1, Per2, and Cry2. Genes involved in the regulation of Bmal1 also exhibited lower rhythmic peaks including Reverb α and Myod1. The CCGs, Dbp, Lpl, Hk2, and Hadh were also suppressed by alcohol. The nuclear expression patterns of MYOD1, DBP, and REVERBα were shifted by alcohol, while no change in BMAL1 was detected. Overall, these data indicate that alcohol disrupted the skeletal muscle core clock but whether these changes in the core clock are causative or a consequence of alcoholic myopathy requires future mechanistic confirmation.
Insights
Chronic alcohol consumption disrupts the skeletal muscle molecular clock, suppressing key genes like Bmal1 and clock-controlled genes. This dysregulation may contribute to alcoholic myopathy, requiring further investigation.
Area of Science:
- Circadian biology
- Skeletal muscle physiology
- Metabolic regulation
Background:
- The skeletal muscle core clock is crucial for metabolic control and muscle function.
- While acute alcohol intake disrupts the molecular clock, the effects of chronic consumption on skeletal muscle remain unclear.
Purpose of the Study:
- To investigate whether chronic alcohol consumption dysregulates the skeletal muscle core molecular clock and associated clock-controlled genes (CCGs).
Main Methods:
- C57BL/6Hsd female mice were fed control or alcohol-containing liquid diets for six weeks.
- Gastrocnemius muscles and serum were collected every 4 hours over 24 hours for analysis.
Main Results:
- Chronic alcohol consumption suppressed rhythmic expression peaks of core clock genes (Bmal1, Per1, Per2, Cry2).
- Genes regulating Bmal1 (Reverbα, Myod1) and CCGs (Dbp, Lpl, Hk2, Hadh) also showed suppressed rhythmic peaks.
- Nuclear expression patterns of MYOD1, DBP, and REVERBα were altered, while BMAL1 expression rhythm remained unchanged.
Conclusions:
- Chronic alcohol intake disrupts the skeletal muscle core molecular clock and CCGs.
- Further mechanistic studies are needed to confirm if these clock disruptions cause or result from alcoholic myopathy.
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