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解偶联蛋白在病理生理状态中的作用。

The role of uncoupling proteins in pathophysiological states.

作者信息

Argilés Josep M, Busquets Sílvia, López-Soriano Francisco J

机构信息

Cancer Research Group, Departament de Bioquímica i Biologia Molecular, Facultat de Biologia, Universitat de Barcelona, Diagonal 645, 08028 Barcelona, Spain.

出版信息

Biochem Biophys Res Commun. 2002 May 17;293(4):1145-52. doi: 10.1016/S0006-291X(02)00355-8.

Abstract

Until very recently, the uncoupling protein-1 (UCP1), present only in brown adipose tissue (BAT), was considered to be the only mitochondrial carrier protein that stimulated heat production by dissipating the proton gradient generated during respiration across the inner mitochondrial membrane and therefore uncoupling respiration from ATP synthesis. Recently, new uncoupling proteins, UCP2, UCP3, and UCP4, and brain mitochondrial carrier protein-1 (BMCP-1) have been described in mammalian tissues. The present review deals with the possible role of these proteins in different pathological conditions involving alterations in energy balance such as obesity or cachexia. In conclusion, the emergence of the UCP family has altered the approaches to bioenergetics and stressed the importance of uncoupling respiration in different pathophysiological conditions. An extensive qualitative and quantitative characterization of the new members of the UCP family in mammalian tissues will allow a better understanding of the molecular and regulatory mechanisms of thermogenesis and energy metabolism. At this point, we hope that the knowledge presented in the present review will not only stimulate a debate about the role of the UCP family in disease but also lead to applications beneficial for human health.

摘要

直到最近,仅存在于棕色脂肪组织(BAT)中的解偶联蛋白-1(UCP1),仍被认为是唯一一种通过耗散呼吸过程中跨线粒体内膜产生的质子梯度来刺激产热的线粒体载体蛋白,因此它使呼吸与ATP合成解偶联。最近,在哺乳动物组织中发现了新的解偶联蛋白UCP2、UCP3和UCP4,以及脑线粒体载体蛋白-1(BMCP-1)。本综述探讨了这些蛋白在涉及能量平衡改变的不同病理状况(如肥胖或恶病质)中可能发挥的作用。总之,UCP家族的出现改变了生物能量学的研究方法,并强调了解偶联呼吸在不同病理生理状况中的重要性。对哺乳动物组织中UCP家族新成员进行广泛的定性和定量表征,将有助于更好地理解产热和能量代谢的分子及调节机制。就此而言,我们希望本综述中所呈现的知识不仅能引发关于UCP家族在疾病中作用的讨论,还能带来有益于人类健康的应用。

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