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心磷脂过氧化和钙离子在心肌线粒体功能障碍及疾病中的作用

Role of cardiolipin peroxidation and Ca2+ in mitochondrial dysfunction and disease.

作者信息

Paradies Giuseppe, Petrosillo Giuseppe, Paradies Valeria, Ruggiero Francesca M

机构信息

Department of Biochemistry and Molecular Biology and CNR Institute of Biomembranes and Bioenergetics, University of Bari, Bari, Italy.

出版信息

Cell Calcium. 2009 Jun;45(6):643-50. doi: 10.1016/j.ceca.2009.03.012. Epub 2009 Apr 15.

Abstract

Cardiolipin is a unique phospholipid which is almost exclusively located at the level of the inner mitochondrial membrane where it is biosynthesized. This phospholipid is known to be intimately involved in several mitochondrial bioenergetic processes. In addition, cardiolipin also has active roles in several of the mitochondrial-dependent steps of apoptosis and in mitochondrial membrane dynamics. Alterations in cardiolipin structure, content and acyl chains composition have been associated with mitochondrial dysfunction in multiple tissues in several physiopathological conditions, including ischemia/reperfusion, different thyroid states, diabetes, aging and heart failure. Cardiolipin is particularly susceptible to ROS attack due to its high content of unsaturated fatty acids. Oxidative damage to cardiolipin would negatively impact the biochemical function of the mitochondrial membranes altering membrane fluidity, ion permeability, structure and function of components of the mitochondrial electron transport chain, resulting in reduced mitochondrial oxidative phosphorylation efficiency and apoptosis. Diseases in which mitochondrial dysfunction has been linked to cardiolipin peroxidation are described. Ca(2+), particularly at high concentrations, appears to have several negative effects on mitochondrial function, some of these effects being linked to CL peroxidation. Cardiolipin peroxidation has been shown to participate, together with Ca(2+), in mitochondrial permeability transition. In this review, we provide an overview of the role of CL peroxidation and Ca(2+) in mitochondrial dysfunction and disease.

摘要

心磷脂是一种独特的磷脂,几乎仅存在于其进行生物合成的线粒体内膜水平。已知这种磷脂密切参与多种线粒体生物能量过程。此外,心磷脂在凋亡的几个线粒体依赖性步骤以及线粒体膜动力学中也发挥着积极作用。在包括缺血/再灌注、不同甲状腺状态、糖尿病、衰老和心力衰竭在内的多种生理病理条件下,多个组织中的线粒体功能障碍与心磷脂结构、含量和酰基链组成的改变有关。由于心磷脂含有高含量的不饱和脂肪酸,它特别容易受到活性氧(ROS)的攻击。心磷脂的氧化损伤会对线粒体膜的生化功能产生负面影响,改变膜流动性、离子通透性、线粒体电子传递链成分的结构和功能,导致线粒体氧化磷酸化效率降低和细胞凋亡。本文描述了线粒体功能障碍与心磷脂过氧化相关的疾病。钙离子(Ca(2+)),特别是高浓度时,似乎对线粒体功能有多种负面影响,其中一些影响与心磷脂过氧化有关。已证明心磷脂过氧化与钙离子一起参与线粒体通透性转换。在本综述中,我们概述了心磷脂过氧化和钙离子在线粒体功能障碍及疾病中的作用。

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