Indispensable role of mitochondrial UCP1 for antiobesity effect of β3-adrenergic stimulation

Author:

Inokuma Ken-ichi,Okamatsu-Ogura Yuko,Omachi Asako,Matsushita Yukiko,Kimura Kazuhiro,Yamashita Hitoshi,Saito Masayuki

Abstract

Mitochondrial uncoupling protein-1 (UCP1) has been thought to be a key molecule for thermogenesis during cold exposure and spontaneous hyperphagia and thereby in the autonomic regulation of energy expenditure and adiposity. However, UCP1 knockout (KO) mice were reported to be cold intolerant but unexpectedly did not get obese even after hyperphagia, implying that UCP1 may not be involved in the regulation of adiposity. Treatment of obese animals with β3-adrenergic agonists is known to increase lipid mobilization, induce UCP1, and, finally, reduce body fat content. To obtain direct evidence for the role of UCP1 in the anti-obesity effect of β3-adrenergic stimulation, in the present study, UCP1-KO and wild-type (WT) mice were fed on cafeteria diets for 8 wk and then given a β3-adrenergic agonist, CL-316,243 (CL), or saline for 2 wk. A single injection of CL increased whole body oxygen consumption and brown fat temperature in WT mice but not in KO mice, and it elicited almost the same plasma free fatty acid response in WT and KO mice. WT and KO mice increased similarly their body and white fat pad weights on cafeteria diets compared with those on laboratory chow. Daily treatment with CL resulted in a marked reduction of white fat pad weight and the size of adipocytes in WT mice, but not in KO mice. Compared with WT mice, KO mice expressed increased levels of UCP2 in brown fat but decreased levels in white fat and comparable levels of UCP3. It was concluded that the anti-obesity effect of β3-adrenergic stimulation is largely attributable to UCP1, but less to UCP2 and UCP3, and thereby to UCP1-dependent degradation of fatty acids released from white adipose tissue.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology,Endocrinology, Diabetes and Metabolism

Reference23 articles.

1. Brown adipose tissue hyperplasia: a fundamental mechanism of adaptation to cold and hyperphagia

2. Brown Adipose Tissue: Function and Physiological Significance

3. Cousin B, Cinti S, Morroni M, Raimbault S, Ricquier D, Penicaud L, and Casteilla L.Occurrence of brown adipocytes in rat white adipose tissue: molecular and morphological characterization.J Cell Sci103: 931–942, 1992.

4. Uncoupling proteins: functional characteristics and role in the pathogenesis of obesity and Type II diabetes

5. Mice lacking mitochondrial uncoupling protein are cold-sensitive but not obese

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