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MFN2 基因负责线粒体 DNA 不稳定和视神经萎缩“加号”表型。

The MFN2 gene is responsible for mitochondrial DNA instability and optic atrophy 'plus' phenotype.

机构信息

Department of Medical Genetics, National Centre for Mitochondrial Diseases, Nice Teaching Hospital, 06200, France.

出版信息

Brain. 2012 Jan;135(Pt 1):23-34. doi: 10.1093/brain/awr323. Epub 2011 Dec 20.

Abstract

MFN2 and OPA1 genes encode two dynamin-like GTPase proteins involved in the fusion of the mitochondrial membrane. They have been associated with Charcot-Marie-Tooth disease type 2A and autosomal dominant optic atrophy, respectively. We report a large family with optic atrophy beginning in early childhood, associated with axonal neuropathy and mitochondrial myopathy in adult life. The clinical presentation looks like the autosomal dominant optic atrophy 'plus' phenotype linked to OPA1 mutations but is associated with a novel MFN2 missense mutation (c.629A>T, p.D210V). Multiple mitochondrial DNA deletions were found in skeletal muscle and this observation makes MFN2 a novel gene associated with 'mitochondrial DNA breakage' syndrome. Contrary to previous studies in patients with Charcot-Marie-Tooth disease type 2A, fibroblasts carrying the MFN2 mutation present with a respiratory chain deficiency, a fragmentation of the mitochondrial network and a significant reduction of MFN2 protein expression. Furthermore, we show for the first time that impaired mitochondrial fusion is responsible for a deficiency to repair stress-induced mitochondrial DNA damage. It is likely that defect in mitochondrial DNA repair is due to variability in repair protein content across the mitochondrial population and is at least partially responsible for mitochondrial DNA instability.

摘要

MFN2 和 OPA1 基因分别编码两种参与线粒体膜融合的 dynamin 样 GTP 酶蛋白,它们与 Charcot-Marie-Tooth 病 2A 型和常染色体显性视神经萎缩有关。我们报告了一个大型家族,该家族的视神经萎缩始于儿童早期,与成年期的轴索性神经病和线粒体肌病有关。临床表现类似于与 OPA1 突变相关的常染色体显性视神经萎缩“plus”表型,但与一种新的 MFN2 错义突变(c.629A>T,p.D210V)有关。在骨骼肌中发现了多种线粒体 DNA 缺失,这一观察结果使 MFN2 成为一种与“线粒体 DNA 断裂”综合征相关的新基因。与 Charcot-Marie-Tooth 病 2A 型患者的先前研究相反,携带 MFN2 突变的成纤维细胞表现出呼吸链缺陷、线粒体网络碎片化和 MFN2 蛋白表达显著减少。此外,我们首次表明,线粒体融合受损导致修复应激诱导的线粒体 DNA 损伤的能力不足。线粒体 DNA 修复缺陷可能是由于线粒体群体中修复蛋白含量的变化引起的,至少部分原因是线粒体 DNA 不稳定。

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