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脂肪酸介导的线粒体能量耗散。细胞死亡的机制及影响

Mitochondrial energy dissipation by fatty acids. Mechanisms and implications for cell death.

作者信息

Bernardi Paolo, Penzo Daniele, Wojtczak Lech

机构信息

Department of Biomedical Sciences, Venetian Institute of Molecular Medicine, University of Padova, I-35131 Padova, Italy.

出版信息

Vitam Horm. 2002;65:97-126. doi: 10.1016/s0083-6729(02)65061-7.

Abstract

For most cell types, fatty acids are excellent respiratory substrates. After being transported across the outer and inner mitochondrial membranes they undergo beta-oxidation in the matrix and feed electrons into the mitochondrial energy-conserving respiratory chain. On the other hand, fatty acids also physically interact with mitochondrial membranes, and possess the potential to alter their permeability. This occurs according to two mechanisms: an increase in proton conductance of the inner mitochondrial membrane and the opening of the permeability transition pore, an inner membrane high-conductance channel that may be involved in the release of apoptogenic proteins into the cytosol. This article addresses in some detail the mechanisms through which fatty acids exert their protonophoric action and how they modulate the permeability transition pore and discusses the cellular effects of fatty acids, with specific emphasis on their role as potential mitochondrial mediators of apoptotic signaling.

摘要

对于大多数细胞类型而言,脂肪酸是极佳的呼吸底物。在被转运穿过线粒体外膜和内膜后,它们在基质中进行β-氧化,并将电子输入线粒体能量保存呼吸链。另一方面,脂肪酸也会与线粒体膜发生物理相互作用,并具有改变其通透性的潜力。这通过两种机制发生:线粒体内膜质子电导增加以及通透性转换孔开放,通透性转换孔是一种内膜高电导通道,可能参与凋亡蛋白向细胞质的释放。本文详细探讨了脂肪酸发挥其质子载体作用的机制以及它们如何调节通透性转换孔,并讨论了脂肪酸的细胞效应,特别强调了它们作为凋亡信号潜在线粒体介质的作用。

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