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辅酶 Q--生物合成与功能。

Coenzyme Q--biosynthesis and functions.

机构信息

Rolf Luft Centre for Diabetes and Endocrinology, Karolinska Institutet, 17176 Stockholm, Sweden.

出版信息

Biochem Biophys Res Commun. 2010 May 21;396(1):74-9. doi: 10.1016/j.bbrc.2010.02.147.

Abstract

In addition to its role as a component of the mitochondrial respiratory chain and our only lipid-soluble antioxidant synthesized endogenously, in recent years coenzyme Q (CoQ) has been found to have an increasing number of other important functions required for normal metabolic processes. A number of genetic mutations that reduce CoQ biosynthesis are associated with serious functional disturbances that can be eliminated by dietary administration of this lipid, making CoQ deficiencies the only mitochondrial diseases which can be successfully treated at present. In connection with certain other diseases associated with excessive oxidative stress, the level of CoQ is elevated as a protective response. Aging, certain experimental conditions and several human diseases reduce this level, resulting in serious metabolic disturbances. Since dietary uptake of this lipid is limited, up-regulation of its biosynthetic pathway is of considerable clinical interest. One approach for this purpose is administration of epoxidated all-trans polyisoprenoids, which enhance both CoQ biosynthesis and levels in experimental systems.

摘要

除了作为线粒体呼吸链的组成部分和我们唯一内源性合成的脂溶性抗氧化剂外,近年来辅酶 Q(CoQ)被发现具有越来越多的其他正常代谢过程所需的重要功能。一些减少 CoQ 生物合成的遗传突变与严重的功能障碍有关,这些功能障碍可以通过饮食补充这种脂质来消除,这使得 CoQ 缺乏症成为目前唯一可以成功治疗的线粒体疾病。与某些与过度氧化应激相关的其他疾病有关,CoQ 水平升高是一种保护反应。衰老、某些实验条件和几种人类疾病会降低这种水平,导致严重的代谢紊乱。由于这种脂质的饮食摄入有限,因此上调其生物合成途径具有相当大的临床意义。为此目的的一种方法是给予环氧化全反式多异戊二烯,这可增强 CoQ 的生物合成和实验系统中的水平。

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