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线粒体解偶联蛋白3及其在心肌和骨骼肌代谢中的作用。

Mitochondrial uncoupling protein 3 and its role in cardiac- and skeletal muscle metabolism.

作者信息

Nabben Miranda, Hoeks Joris

机构信息

Department of Human Biology, Nutrition and Toxicology Research Institute Maastricht (NUTRIM), Maastricht University, P.O. Box 616, 6200 MD, Maastricht, The Netherlands.

出版信息

Physiol Behav. 2008 May 23;94(2):259-69. doi: 10.1016/j.physbeh.2007.11.039. Epub 2007 Nov 28.

Abstract

Uncoupling protein 3 (UCP3), is primarily expressed in skeletal muscle mitochondria and has been suggested to be involved in mediating energy expenditure via uncoupling, hereby dissipating the mitochondrial proton gradient necessary for adenosine triphosphate (ATP) synthesis. Although some studies support a role for UCP3 in energy metabolism, other studies pointed towards a function in fatty acid metabolism. Thus, the protein is up regulated or high when fatty acid supply to the mitochondria exceeds the capacity to oxidize fatty acids and down regulated or low when oxidative capacity is high or improved. Irrespective of the exact operating mechanism, UCP3 seems to protect mitochondria against lipid-induced oxidative stress, which makes this protein a potential player in the development of type 2 diabetes mellitus. Next to skeletal muscle, UCP3 is also expressed in cardiac muscle where its role is relatively unexplored. Interestingly, energy deficiency in cardiac muscle is associated to heart failure and UCP3 might contribute to this energy deficiency. It has been suggested that UCP3 decreases energy status via uncoupling of mitochondrial respiration, but the available data does not provide a unified answer. In fact, the results obtained regarding cardiac UCP3 are very similar as in skeletal muscle, implying that its physiological function can be extrapolated. Therefore, cardiac UCP3 can just as well serve to protect the heart against lipid-induced oxidative stress, similar to the function described for skeletal muscle UCP3. The present review will deal with the available literature on both skeletal muscle- and cardiac UCP3 to elucidate its physiological function in these tissues.

摘要

解偶联蛋白3(UCP3)主要在骨骼肌线粒体中表达,有人认为它通过解偶联作用参与介导能量消耗,从而消耗三磷酸腺苷(ATP)合成所需的线粒体质子梯度。尽管一些研究支持UCP3在能量代谢中的作用,但其他研究则指向其在脂肪酸代谢中的功能。因此,当线粒体的脂肪酸供应超过脂肪酸氧化能力时,该蛋白上调或处于高水平;而当氧化能力高或得到改善时,该蛋白下调或处于低水平。无论确切的作用机制如何,UCP3似乎都能保护线粒体免受脂质诱导的氧化应激,这使得该蛋白在2型糖尿病的发生发展中可能发挥作用。除骨骼肌外,UCP3在心肌中也有表达,但其在心肌中的作用相对尚未明确。有趣的是,心肌能量缺乏与心力衰竭有关,UCP3可能导致这种能量缺乏。有人提出UCP3通过线粒体呼吸解偶联降低能量状态,但现有数据并未提供统一的答案。事实上,关于心肌UCP3的研究结果与骨骼肌中的非常相似,这意味着其生理功能可以外推。因此,心肌UCP3也可以像骨骼肌UCP3一样,起到保护心脏免受脂质诱导的氧化应激的作用。本综述将探讨关于骨骼肌和心肌UCP3的现有文献,以阐明其在这些组织中的生理功能。

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