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Skeletal muscle expression of p43, a truncated thyroid hormone receptor α, affects lipid composition and metabolism

Casas François, Fouret Gilles, Lecomte Jérôme, Cortade Fabienne, Pessemesse Laurence, Blanchet Emilie, Wrutniak-Cabello Chantal, Coudray Charles, Feillet-Coudray Christine. 2018. Skeletal muscle expression of p43, a truncated thyroid hormone receptor α, affects lipid composition and metabolism. Journal of Bioenergetics and Biomembranes, 50 (1) : 71-79.

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Quartile : Q2, Sujet : BIOPHYSICS / Quartile : Q3, Sujet : CELL BIOLOGY

Résumé : Thyroid hormone is a major regulator of metabolism and mitochondrial function. Thyroid hormone also affects reactions in almost all pathways of lipids metabolism and as such is considered as the main hormonal regulator of lipid biogenesis. The aim of this study was to explore the possible involvement of p43, a 43 Kda truncated form of the nuclear thyroid hormone receptor TRα1 which stimulates mitochondrial activity. Therefore, using mouse models overexpressing p43 in skeletal muscle (p43-Tg) or lacking p43 (p43−/−), we have investigated the lipid composition in quadriceps muscle and in mitochondria. Here, we reported in the quadriceps muscle of p43−/− mice, a fall in triglycerides, an inhibition of monounsaturated fatty acids (MUFA) synthesis, an increase in elongase index and an decrease in desaturase index. However, in mitochondria from p43−/− mice, fatty acid profile was barely modified. In the quadriceps muscle of p43-Tg mice, MUFA content was decreased whereas the unsaturation index was increased. In addition, in quadriceps mitochondria of p43-Tg mice, we found an increase of linoleic acid level and unsaturation index. Last, we showed that cardiolipin content, a key phospholipid for mitochondrial function, remained unchanged both in quadriceps muscle and in its mitochondria whatever the mice genotype. In conclusion, this study shows that muscle lipid content and fatty acid profile are strongly affected in skeletal muscle by p43 levels. We also demonstrate that regulation of cardiolipin biosynthesis by the thyroid hormone does not imply p43.

Mots-clés Agrovoc : mitochondrie, acide gras, muscle, hormone, hormone thyroïdienne, lipide, métabolisme des lipides, récepteur d'hormone, métabolisme

Classification Agris : L50 - Physiologie et biochimie animales

Champ stratégique Cirad : Hors axes (2014-2018)

Auteurs et affiliations

  • Casas François, INRA (FRA) - auteur correspondant
  • Fouret Gilles, INRA (FRA)
  • Lecomte Jérôme, CIRAD-PERSYST-UMR IATE (FRA)
  • Cortade Fabienne, INRA (FRA)
  • Pessemesse Laurence, INRA (FRA)
  • Blanchet Emilie, INRA (FRA)
  • Wrutniak-Cabello Chantal, INRA (FRA)
  • Coudray Charles, INRA (FRA)
  • Feillet-Coudray Christine, INRA (FRA)

Source : Cirad-Agritrop (https://agritrop.cirad.fr/587067/)

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