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.

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.