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一种导致人类和酵母严重呼吸链酶缺乏的线粒体细胞色素b突变。

A mitochondrial cytochrome b mutation causing severe respiratory chain enzyme deficiency in humans and yeast.

作者信息

Blakely Emma L, Mitchell Anna L, Fisher Nicholas, Meunier Brigitte, Nijtmans Leo G, Schaefer Andrew M, Jackson Margaret J, Turnbull Douglass M, Taylor Robert W

机构信息

Mitochondrial Research Group, School of Neurology, Neurobiology and Psychiatry, The Medical School, University of Newcastle upon Tyne, UK.

出版信息

FEBS J. 2005 Jul;272(14):3583-92. doi: 10.1111/j.1742-4658.2005.04779.x.

Abstract

Whereas the majority of disease-related mitochondrial DNA mutations exhibit significant biochemical and clinical heterogeneity, mutations within the mitochondrially encoded human cytochrome b gene (MTCYB) are almost exclusively associated with isolated complex III deficiency in muscle and a clinical presentation involving exercise intolerance. Recent studies have shown that a small number of MTCYB mutations are associated with a combined enzyme complex defect involving both complexes I and III, on account of the fact that an absence of assembled complex III results in a dramatic loss of complex I, confirming a structural dependence between these two complexes. We present the biochemical and molecular genetic studies of a patient with both muscle and brain involvement and a severe reduction in the activities of both complexes I and III in skeletal muscle due to a novel mutation in the MTCYB gene that predicts the substitution (Arg318Pro) of a highly conserved amino acid. Consistent with the dramatic biochemical defect, Western blotting and BN-PAGE experiments demonstrated loss of assembled complex I and III subunits. Biochemical studies of the equivalent amino-acid substitution (Lys319Pro) in the yeast enzyme showed a loss of enzyme activity and decrease in the steady-state level of bc1 complex in the mutant confirming pathogenicity.

摘要

虽然大多数与疾病相关的线粒体DNA突变表现出显著的生化和临床异质性,但线粒体编码的人类细胞色素b基因(MTCYB)内的突变几乎仅与肌肉中孤立的复合物III缺乏以及涉及运动不耐受的临床表现相关。最近的研究表明,少数MTCYB突变与涉及复合物I和III的联合酶复合物缺陷有关,因为缺乏组装的复合物III会导致复合物I的显著损失,证实了这两种复合物之间的结构依赖性。我们报告了一名肌肉和大脑均受累的患者的生化和分子遗传学研究,该患者由于MTCYB基因中的一个新突变导致骨骼肌中复合物I和III的活性严重降低,该突变预测一个高度保守氨基酸的替代(Arg318Pro)。与显著的生化缺陷一致,蛋白质印迹和蓝色天然聚丙烯酰胺凝胶电泳实验证明组装的复合物I和III亚基丢失。对酵母酶中等效氨基酸替代(Lys319Pro)的生化研究表明,突变体中酶活性丧失,bc1复合物的稳态水平降低,证实了其致病性。

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