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人类呼吸链复合体III功能障碍以及利用酵母作为模式生物研究线粒体肌病及相关疾病

Respiratory complex III dysfunction in humans and the use of yeast as a model organism to study mitochondrial myopathy and associated diseases.

作者信息

Meunier B, Fisher N, Ransac S, Mazat J-P, Brasseur G

机构信息

CNRS, Centre de Génétique Moléculaire, UPR 3404, Gif-sur-Yvette, F-91198, France.

出版信息

Biochim Biophys Acta. 2013 Nov-Dec;1827(11-12):1346-61. doi: 10.1016/j.bbabio.2012.11.015. Epub 2012 Dec 5.

DOI:10.1016/j.bbabio.2012.11.015
PMID:23220121
Abstract

The bc1 complex or complex III is a central component of the aerobic respiratory chain in prokaryotic and eukaryotic organisms. It catalyzes the oxidation of quinols and the reduction of cytochrome c, establishing a proton motive force used to synthesize adenosine triphosphate (ATP) by the F1Fo ATP synthase. In eukaryotes, the complex III is located in the inner mitochondrial membrane. The genes coding for the complex III have a dual origin. While cytochrome b is encoded by the mitochondrial genome, all the other subunits are encoded by the nuclear genome. In this review, we compile an exhaustive list of the known human mutations and associated pathologies found in the mitochondrially-encoded cytochrome b gene as well as the fewer mutations in the nuclear genes coding for the complex III structural subunits and accessory proteins such as BCS1L involved in the assembly of the complex III. Due to the inherent difficulties of studying human biopsy material associated with complex III dysfunction, we also review the work that has been conducted to study the pathologies with the easy to handle eukaryotic microorganism, the yeast Saccharomyces cerevisiae. Phenotypes, biochemical data and possible effects due to the mutations are also discussed in the context of the known three-dimensional structure of the eukaryotic complex III. This article is part of a Special Issue entitled: Respiratory complex III and related bc complexes.

摘要

bc1复合物或复合物III是原核生物和真核生物有氧呼吸链的核心组成部分。它催化醌醇的氧化和细胞色素c的还原,建立质子动力势,用于由F1Fo ATP合酶合成三磷酸腺苷(ATP)。在真核生物中,复合物III位于线粒体内膜。编码复合物III的基因有双重起源。细胞色素b由线粒体基因组编码,而所有其他亚基由核基因组编码。在本综述中,我们汇编了一份详尽的清单,列出了在线粒体编码的细胞色素b基因中发现的已知人类突变及相关病理,以及编码复合物III结构亚基和辅助蛋白(如参与复合物III组装的BCS1L)的核基因中的较少突变。由于研究与复合物III功能障碍相关的人类活检材料存在固有困难,我们还综述了利用易于处理的真核微生物酿酒酵母进行病理研究的工作。在真核复合物III已知三维结构的背景下,还讨论了突变的表型、生化数据及可能的影响。本文是名为:呼吸复合物III及相关bc复合物的特刊的一部分。

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