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线粒体DNA遗传的氧化磷酸化缺陷发病机制中的钙信号传导缺陷。

A calcium signaling defect in the pathogenesis of a mitochondrial DNA inherited oxidative phosphorylation deficiency.

作者信息

Brini M, Pinton P, King M P, Davidson M, Schon E A, Rizzuto R

机构信息

Department of Biochemistry, University of Padova, Italy.

出版信息

Nat Med. 1999 Aug;5(8):951-4. doi: 10.1038/11396.

Abstract

In recent years, genetic defects of the mitochondrial genome (mtDNA) were shown to be associated with a heterogeneous group of disorders, known as mitochondrial diseases, but the cellular events deriving from the molecular lesions and the mechanistic basis of the specificity of the syndromes are still incompletely understood. Mitochondrial calcium (Ca2+) homeostasis depends on close contacts with the endoplasmic reticulum and is essential in modulating organelle function. Given the strong dependence of mitochondrial Ca2+ uptake on the membrane potential and the intracellular distribution of the organelle, both of which may be altered in mitochondrial diseases, we investigated the occurrence of defects in mitochondrial Ca2+ handling in living cells with either the tRNALys mutation of MERRF (myoclonic epilepsy with ragged-red fibers) or the ATPase mutation of NARP (neurogenic muscle weakness, ataxia and retinitis pigmentosa). There was a derangement of mitochondrial Ca2+ homeostasis in MERRF, but not in NARP cells, whereas cytosolic Ca2+ responses were normal in both cell types. Treatment of MERRF cells with drugs affecting organellar Ca2+ transport mostly restored both the agonist-dependent mitochondrial Ca2+ uptake and the ensuing stimulation of ATP production. These results emphasize the differences in the cellular pathogenesis of the various mtDNA defects and indicate specific pharmacological approaches to the treatment of some mitochondrial diseases.

摘要

近年来,线粒体基因组(mtDNA)的遗传缺陷被证明与一组异质性疾病相关,即线粒体疾病,但源于分子损伤的细胞事件以及综合征特异性的机制基础仍未完全了解。线粒体钙(Ca2+)稳态依赖于与内质网的紧密接触,对调节细胞器功能至关重要。鉴于线粒体Ca2+摄取强烈依赖于膜电位和细胞器的细胞内分布,而这两者在线粒体疾病中都可能发生改变,我们研究了患有肌阵挛性癫痫伴破碎红纤维(MERRF)的tRNALys突变或神经源性肌无力、共济失调和色素性视网膜炎(NARP)的ATPase突变的活细胞中线粒体Ca2+处理缺陷的发生情况。MERRF细胞中线粒体Ca2+稳态紊乱,而NARP细胞中则无,而两种细胞类型的胞质Ca2+反应均正常。用影响细胞器Ca2+转运的药物处理MERRF细胞,大多能恢复激动剂依赖性线粒体Ca2+摄取以及随后对ATP产生的刺激。这些结果强调了各种mtDNA缺陷在细胞发病机制上的差异,并指出了治疗某些线粒体疾病的特定药理学方法。

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