Uncoupling protein 3 and physical activity: the role of uncoupling protein 3 in energy metabolism revisited
نویسندگان
چکیده
منابع مشابه
Uncoupling protein 3 biological activity.
The hypothesis that uncoupling protein 3 (UCP3) is an uncoupling protein involved in heat dissipation is not unequivocally supported. An update of in vitro, ex vivo and in vivo studies testing this hypothesis is presented. Data are provided showing that exercise induces a fatty acid-dependent increase in muscle UCP3 mRNA in humans. The proposed positive correlation between glycolytic capacity a...
متن کاملUncoupling protein 3 and fatty acid metabolism.
A role for uncoupling protein (UCP) 3 in fatty acid metabolism is reviewed within the context of our proposal, first put forward in 1998, that this homologue of UCP1 may be involved in the regulation of lipids as fuel substrate rather than in the mediation of thermogenesis. Since then, the demonstrations of muscle-type differences in UCP3 gene regulation in response to dietary manipulations (st...
متن کاملEnergy metabolism in uncoupling protein 3 gene knockout mice.
Uncoupling protein 3 (UCP3) is a member of the mitochondrial anion carrier superfamily. Based upon its high homology with UCP1 and its restricted tissue distribution to skeletal muscle and brown adipose tissue, UCP3 has been suggested to play important roles in regulating energy expenditure, body weight, and thermoregulation. Other postulated roles for UCP3 include regulation of fatty acid meta...
متن کاملRapid turnover of mitochondrial uncoupling protein 3.
UCP3 (uncoupling protein 3) and its homologues UCP2 and UCP1 are regulators of mitochondrial function. UCP2 is known to have a short half-life of approx. 1 h, owing to its rapid degradation by the cytosolic 26S proteasome, whereas UCP1 is turned over much more slowly by mitochondrial autophagy. In the present study we investigate whether UCP3 also has a short half-life, and whether the proteaso...
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ژورنال
عنوان ژورنال: Proceedings of the Nutrition Society
سال: 2003
ISSN: 0029-6651,1475-2719
DOI: 10.1079/pns2003277