Effects of fasting on muscle mitochondrial energetics and fatty acid metabolism in Ucp3(2/2) and wild-type mice
نویسندگان
چکیده
Bézaire, Véronic, Wolfgang Hofmann, John K. G. Kramer, Leslie P. Kozak, and Mary-Ellen Harper. Effects of fasting on muscle mitochondrial energetics and fatty acid metabolism in Ucp3(2/2) and wild-type mice. Am J Physiol Endocrinol Metab 281: E975–E982, 2001.—Uncoupling protein-3 (UCP3) is a mitochondrial carrier protein of as yet undefined physiological function. To elucidate characteristics of its function, we studied the effects of fasting on resting metabolic rate, respiratory quotient, muscle Ucp3 expression, and mitochondrial proton leak in wild-type and Ucp3(2/2) mice. Also analyzed were the fatty acid compositions of skeletal muscle mitochondria in fed and fasted Ucp3(2/2) and wild-type mice. In wild-type mice, fasting caused significant increases in Ucp3 (4-fold) and Ucp2 (2fold) mRNA but did not significantly affect mitochondrial proton leak. State 4 oxygen consumption was not affected by fasting in either of the two groups. However, protonmotive force was consistently higher in mitochondria of Ucp3(2/2) animals (P 5 0.03), and fasting further augmented protonmotive force in Ucp3(2/2) mice; there was no effect in wild-type mitochondria. Resting metabolic rates decreased with fasting in both groups. Ucp3(2/2) mice had higher respiratory quotients than wild-type mice in fed resting states, indicating impaired fatty acid oxidation. Altogether, results show that the fasting-induced increases in Ucp2 and Ucp3 do not correlate with increased mitochondrial proton leak but support a role for UCP3 in fatty acid metabolism.
منابع مشابه
Effects of fasting on muscle mitochondrial energetics and fatty acid metabolism in Ucp3(-/-) and wild-type mice.
Uncoupling protein-3 (UCP3) is a mitochondrial carrier protein of as yet undefined physiological function. To elucidate characteristics of its function, we studied the effects of fasting on resting metabolic rate, respiratory quotient, muscle Ucp3 expression, and mitochondrial proton leak in wild-type and Ucp3(-/-) mice. Also analyzed were the fatty acid compositions of skeletal muscle mitochon...
متن کاملHexokinase II acts through UCP3 to suppress mitochondrial reactive oxygen species production and maintain aerobic respiration.
UCP3 (uncoupling protein-3) mitigates mitochondrial ROS (reactive oxygen species) production, but the mechanisms are poorly understood. Previous studies have also examined UCP3 effects, including decreased ROS production, during metabolic states when fatty acid oxidation is high (e.g. a fasting state). However, the role of UCP3 when carbohydrate oxidation is high (e.g. fed state) has remained l...
متن کاملUCP3 and its putative function: consistencies and controversies.
The physiological function of uncoupling protein 3 (UCP3) is as yet unknown. Based on its 57% homology to UCP1 whose physiologic function is uncoupling and thermogenesis, UCP3 was attributed with the function of mitochondrial uncoupling through proton-leak reactions. UCP3 is expressed selectively in muscle, a tissue in which it has been estimated that proton leak accounts for approx. 50% of res...
متن کاملEffects of the presence, absence, and overexpression of uncoupling protein-3 on adiposity and fuel metabolism in congenic mice.
Uncoupling protein-3 (UCP3) is a poorly understood mitochondrial inner membrane protein expressed predominantly in skeletal muscle. The aim of this study was to examine the effects of the absence or constitutive physiological overexpression of UCP3 on whole body energy metabolism, glucose tolerance, and muscle triglyceride content. Congenic male UCP3 knockout mice (Ucp3-/-), wild-type, and tran...
متن کاملEnergy metabolism in the heart of the diabetic patient
Because of the combined effects of insulin resistance and high concentrations of circulating fatty acids in the uncontrolled diabetic state, cardiac myocytes use fatty acids almost exclusively to support ATP synthesis. Reliance on fatty acid oxidation for ATP production results in greater mitochondrial oxygen consumption costs compared with glucose oxidation. Fatty acids can induce uncoupling o...
متن کامل