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线粒体氧代二羧酸载体(ODC1)的过表达在巴特综合征酵母模型中维持氧化磷酸化。

Overexpression of mitochondrial oxodicarboxylate carrier (ODC1) preserves oxidative phosphorylation in a yeast model of Barth syndrome.

作者信息

de Taffin de Tilques Maxence, Tribouillard-Tanvier Déborah, Tétaud Emmanuel, Testet Eric, di Rago Jean-Paul, Lasserre Jean-Paul

机构信息

Université de Bordeaux, Institut de Biochimie et Génétique Cellulaires, CNRS UMR 5095, 1 rue Camille Saint-Saëns, Bordeaux cedex 33077, France.

Université de Bordeaux, Institut de Biochimie et Génétique Cellulaires, CNRS UMR 5095, 1 rue Camille Saint-Saëns, Bordeaux cedex 33077, France

出版信息

Dis Model Mech. 2017 Apr 1;10(4):439-450. doi: 10.1242/dmm.027540. Epub 2017 Feb 10.

Abstract

Cardiolipin (CL) is a diglycerol phospholipid mostly found in mitochondria where it optimizes numerous processes, including oxidative phosphorylation (OXPHOS). To function properly, CL needs to be unsaturated, which requires the acyltransferase tafazzin. Loss-of-function mutations in this protein are responsible for Barth syndrome (BTHS), presumably because of a diminished OXPHOS capacity. Here, we show that overexpressing Odc1p, a conserved oxodicarboxylic acid carrier located in the mitochondrial inner membrane, fully restores oxidative phosphorylation in a yeast model () of BTHS. The rescuing activity involves the recovery of normal expression of key components that sustain oxidative phosphorylation, including cytochrome and electron transport chain complexes IV and III, which are strongly downregulated in yeast. Interestingly, overexpression of Odc1p was also shown previously to rescue yeast models of mitochondrial diseases caused by defects in the assembly of ATP synthase and by mutations in the MPV17 protein that result in hepatocerebral mitochondrial DNA depletion syndrome. These findings define the transport of oxodicarboxylic acids across the inner membrane as a potential therapeutic target for a large spectrum of mitochondrial diseases, including BTHS.

摘要

心磷脂(CL)是一种二甘油磷脂,主要存在于线粒体中,它能优化包括氧化磷酸化(OXPHOS)在内的众多过程。为了正常发挥功能,CL需要不饱和状态,这需要酰基转移酶塔法辛。该蛋白的功能丧失突变是导致巴思综合征(BTHS)的原因,可能是由于氧化磷酸化能力下降。在这里,我们表明,过表达位于线粒体内膜的保守的氧代二羧酸载体Odc1p,可在BTHS酵母模型中完全恢复氧化磷酸化。这种拯救活性涉及维持氧化磷酸化的关键成分正常表达的恢复,包括细胞色素以及电子传递链复合物IV和III,它们在BTHS酵母中强烈下调。有趣的是,先前也已表明Odc1p的过表达可拯救由ATP合酶组装缺陷以及导致肝脑线粒体DNA耗竭综合征的MPV17蛋白突变引起的线粒体疾病酵母模型。这些发现将氧代二羧酸跨内膜的转运定义为包括BTHS在内的多种线粒体疾病的潜在治疗靶点。

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