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一种致病性细胞色素b突变揭示了线粒体bc1复合体亚基之间的新相互作用。

A pathogenic cytochrome b mutation reveals new interactions between subunits of the mitochondrial bc1 complex.

作者信息

Saint-Georges Yann, Bonnefoy Nathalie, di Rago Jean Paul, Chiron Stephane, Dujardin Geneviève

机构信息

Centre de Génétique Moléculaire du CNRS, Avenue de la Terrasse, 91198-Gif sur Yvette, France.

出版信息

J Biol Chem. 2002 Dec 20;277(51):49397-402. doi: 10.1074/jbc.M207219200. Epub 2002 Oct 15.

Abstract

Energy transduction in mitochondria involves five oligomeric complexes embedded within the inner membrane. They are composed of catalytic and noncatalytic subunits, the role of these latter proteins often being difficult to assign. One of these complexes, the bc1 complex, is composed of three catalytic subunits including cytochrome b and seven or eight noncatalytic subunits. Recently, several mutations in the human cytochrome b gene have been linked to various diseases. We have studied in detail the effects of a cardiomyopathy generating mutation G252D in yeast. This mutation disturbs the biogenesis of the bc1 complex at 36 degrees C and decreases the steady-state level of the noncatalytic subunit Qcr9p. In addition, the G252D mutation and the deletion of QCR9 show synergetic defects that can be partially bypassed by suppressor mutations at position 252 and by a new cytochrome b mutation, P174T. Altogether, our results suggest that the supernumerary subunit Qcr9p enhances or stabilizes the interactions between the catalytic subunits, this role being essential at high temperature.

摘要

线粒体中的能量转导涉及嵌入内膜的五个寡聚复合体。它们由催化亚基和非催化亚基组成,后者这些蛋白质的作用往往难以确定。其中一个复合体,即bc1复合体,由包括细胞色素b在内的三个催化亚基和七个或八个非催化亚基组成。最近,人类细胞色素b基因中的几个突变与各种疾病有关。我们已经详细研究了酵母中一个导致心肌病的突变G252D的影响。该突变在36摄氏度时扰乱bc1复合体的生物合成,并降低非催化亚基Qcr9p的稳态水平。此外,G252D突变和QCR9的缺失表现出协同缺陷,这些缺陷可以通过252位的抑制突变和一个新的细胞色素b突变P174T部分绕过。总之,我们的结果表明,多余的亚基Qcr9p增强或稳定了催化亚基之间的相互作用,这一作用在高温下至关重要。

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