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UCP1 in Brite/Beige Adipose Tissue Mitochondria Is Functionally Thermogenic

Cell Reports · 2013 · Vol. 5(5) · pp. 1196–1203
Irina G. ShabalinaNataša PetrovičJasper M. A. de JongAnastasia KalinovichBarbara CannonJan Nedergaard

Abstract

The phenomenon of white fat "browning," in which certain white adipose tissue depots significantly increase gene expression for the uncoupling protein UCP1 and thus supposedly acquire thermogenic, fat-burning properties, has attracted considerable attention. Because the mRNA increases are from very low initial levels, the metabolic relevance of the change is unclear: is the UCP1 protein thermogenically competent in these brite/beige-fat mitochondria? We found that, in mitochondria isolated from the inguinal "white" adipose depot of cold-acclimated mice, UCP1 protein levels almost reached those in brown-fat mitochondria. The UCP1 was thermogenically functional, in that these mitochondria exhibited UCP1-dependent thermogenesis with lipid or carbohydrate substrates with canonical guanosine diphosphate (GDP) sensitivity and loss of thermogenesis in UCP1 knockout (KO) mice. Obesogenic mouse strains had a lower thermogenic potential than obesity-resistant strains. The thermogenic density (UCP1-dependent oxygen consumption per g tissue) of inguinal white adipose tissue was maximally one-fifth of interscapular brown adipose tissue, and the total quantitative contribution of all inguinal mitochondria was maximally one-third of all interscapular brown-fat mitochondria, indicating that the classical brown adipose tissue depots would still predominate in thermogenesis.

Adipose Tissue and MetabolismMuscle metabolism and nutritionCardiovascular Disease and AdiposityAdipose tissueMitochondrionCell biologyThermogenesisThermogeninBiologyBiochemistry

MeSH terms

Uncoupling Protein 1AnimalsAdipose Tissue, BrownGuanosine DiphosphateIon ChannelsMice, Inbred C57BLMitochondriaRNA, MessengerThermogenesisMitochondrial ProteinsCarbohydrate MetabolismLipid MetabolismMiceAdipose Tissue, White

Funding

  • European Commission
  • Knut och Alice Wallenbergs Stiftelse
  • Vetenskapsrådet
  • Stockholms Universitet
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References
UCP1: the only protein able to mediate adaptive non-shivering thermogenesis and metabolic inefficiency
Biochimica et Biophysica Acta (BBA) - Bioenergetics · 2001 · 610 citations
Recruited vs. nonrecruited molecular signatures of brown, “brite,” and white adipose tissues
American Journal of Physiology-Endocrinology and Metabolism · 2011 · 565 citations
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