Pharmacological modulation of RORα controls fat browning, adaptive thermogenesis, and body weight in mice

Martine Auclair1, Natacha Roblot1, Emilie Capel1

  • 1Centre de Recherche Saint-Antoine UMR_S938, Sorbonne Université-INSERM, Paris, France.

Insights

Pharmacological modulation of the nuclear transcription factor RORα influences UCP1 expression and thermogenesis. RORα ligands offer a potential strategy for managing obesity and metabolic disorders by regulating fat mass and body weight.

Area of Science:

  • Metabolic Regulation
  • Adipose Tissue Biology
  • Obesity Research

Background:

  • Obesity and metabolic complications require effective therapeutic strategies.
  • The nuclear transcription factor RORα is linked to a lean phenotype and increased thermogenesis.
  • Understanding RORα's role in adipose tissue browning is crucial for metabolic disorder treatment.

Purpose of the Study:

  • To investigate the effect of pharmacological RORα modulation on UCP1 expression and thermogenesis.
  • To explore the therapeutic potential of RORα ligands in managing obesity and metabolic disorders.

Main Methods:

  • Utilized RORα inverse-agonist (SR3335) and agonist (SR1078) in wild-type (WT) and RORα-deficient (sg/sg) mice.
  • Assessed UCP1 expression in adipose tissue explants and cultured adipocytes (murine and human).
  • Measured gene expression, mitochondrial mass, oxygen consumption, body weight, and thermogenesis via indirect calorimetry and rectal temperature.

Main Results:

  • SR3335 upregulated UCP1 in brown and subcutaneous white adipose tissue (scWAT), while SR1078 had an opposite effect.
  • RORα ligands modulated UCP1 expression, mitochondrial mass, and oxygen consumption in adipocytes.
  • In vivo administration of SR3335 reduced body weight in WT mice by increasing adaptive thermogenesis and UCP1 in scWAT.

Conclusions:

  • Pharmacological modulation of RORα activity reciprocally affects UCP1 expression and thermogenesis.
  • RORα ligands are effective tools for modulating UCP1 expression in scWAT, impacting fat mass and body weight.
  • RORα ligands represent a promising therapeutic avenue for modulating thermogenesis and energy homeostasis in obesity.