International Journal of Molecular Sciences (Jul 2023)

Thyroid Hormone Regulates the Lipid Content of Muscle Fibers, Thus Affecting Physical Exercise Performance

  • Caterina Miro,
  • Annarita Nappi,
  • Serena Sagliocchi,
  • Emery Di Cicco,
  • Melania Murolo,
  • Sepehr Torabinejad,
  • Lucia Acampora,
  • Arianna Pastore,
  • Paolo Luciano,
  • Evelina La Civita,
  • Daniela Terracciano,
  • Mariano Stornaiuolo,
  • Monica Dentice,
  • Annunziata Gaetana Cicatiello

DOI
https://doi.org/10.3390/ijms241512074
Journal volume & issue
Vol. 24, no. 15
p. 12074

Abstract

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Skeletal muscle (SkM) lipid composition plays an essential role in physiological muscle maintenance and exercise performance. Thyroid hormones (THs) regulate muscle formation and fuel energy utilization by modulating carbohydrates and lipid and protein metabolism. The best-known effects of THs in SkM include the promotion of mitochondrial biogenesis, the fiber-type switch from oxidative to glycolytic fibers, and enhanced angiogenesis. To assess the role of THs on the lipidic composition of SkM fibers, we performed lipidomic analyses of SkM cells and tissues, glucose tolerance experiments, and exercise performance tests. Our data demonstrated that TH treatment induces remodeling of the lipid profile and changes the proportion of fatty acids in SkM. In brief, THs significantly reduced the ratio of stearic/oleic acid in the muscle similar to what is induced by physical activity. The increased proportion of unsaturated fatty acids was linked to an improvement in insulin sensitivity and endurance exercise. These findings point to THs as critical endocrine factors affecting exercise performance and indicate that homeostatic maintenance of TH signals, by improving cell permeability and receptor stability at the cell membrane, is crucial for muscle physiology.

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