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心脏中的心磷脂重塑

Cardiolipin remodeling in the heart.

作者信息

Sparagna Genevieve C, Lesnefsky Edward J

机构信息

Department of Integrative Physiology, University of Colorado Cardiovascular Institute, University of Colorado at Boulder, Boulder, CO, USA.

出版信息

J Cardiovasc Pharmacol. 2009 Apr;53(4):290-301. doi: 10.1097/FJC.0b013e31819b5461.

Abstract

Cardiolipin (CL) is a mitochondrial phospholipid that fundamentally contributes to the function of many proteins in the inner mitochondrial membrane, where it is actively involved in the integrity and flux of the electron transport chain. In the heart, functional CL is linoleic acid rich, and the loss of linoleic acid content is associated with cardiac disorders including ischemia and reperfusion, heart failure, and diabetes, as well as the X-linked recessive disease, Barth syndrome. To attain its high levels of linoleic acid, newly synthesized CL must initially undergo remodeling. CL modification and depletion by pathological processes may represent a failure of this remodeling pathway or activation of an alternative "pathological remodeling" pathway that causes the substitution of higher molecular weight, polyunsaturated fatty acyl side chains such as arachidonic or docosahexaenoic acid onto CL. This remodeling may occur in response to the alteration of CL by oxidative mechanisms, but the substituted side chains can also provoke further oxidation of CL. It is increasingly thought that cardiac pathology may result, at least partially, due to changes in CL resulting from the pathological remodeling process. Dietary interventions may restore CL to its linoleic acid-rich form and improve cardiac function by redirecting the remodeling process.

摘要

心磷脂(CL)是一种线粒体磷脂,对线粒体内膜中许多蛋白质的功能起着根本性作用,它积极参与电子传递链的完整性和通量。在心脏中,具有功能的CL富含亚油酸,亚油酸含量的丧失与包括缺血再灌注、心力衰竭、糖尿病以及X连锁隐性疾病——巴特综合征在内的心脏疾病相关。为了达到其高水平的亚油酸,新合成的CL必须首先进行重塑。病理过程导致的CL修饰和消耗可能代表这种重塑途径的失败,或者是替代的“病理重塑”途径的激活,该途径会导致将更高分子量的多不饱和脂肪酰基侧链(如花生四烯酸或二十二碳六烯酸)取代到CL上。这种重塑可能是对CL通过氧化机制发生的改变做出的反应,但被取代的侧链也会引发CL的进一步氧化。人们越来越认为,心脏病理学至少部分可能是由于病理重塑过程导致的CL变化所致。饮食干预可能会通过重新引导重塑过程,使CL恢复到富含亚油酸的形式并改善心脏功能。

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