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A novel mechanism causing imbalance of mitochondrial fusion and fission in human myopathies

机译:一种新机制,导致人体肌病线粒体融合和裂变的失衡

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摘要

Mitochondrial dynamics play an important role in cellular homeostasis and a variety of human diseases are linked to its dysregulated function. Here, we describe a 15-year-old boy with a novel disease caused by altered mitochondrial dynamics. The patient was the second child of consanguineous Jewish parents. He developed progressive muscle weakness and exercise intolerance at 6 years of age. His muscle biopsy revealed mitochondrial myopathy with numerous ragged red and cytochrome c oxidase (COX) negative fibers and combined respiratory chain complex I and IV deficiency. MtDNA copy number was elevated and no deletions of the mtDNA were detected in muscle DNA. Whole exome sequencing identified a homozygous nonsense mutation (p.Q92*) in the MIEF2 gene encoding the mitochondrial dynamics protein of 49 kDa (MID49). Immunoblotting revealed increased levels of proteins promoting mitochondrial fusion (MFN2, OPA1) and decreased levels of the fission protein DRP1. Fibroblasts of the patient showed elongated mitochondria, and significantly higher frequency of fusion events, mtDNA abundance and aberrant mitochondrial cristae ultrastructure, compared with controls. Thus, our data suggest that mutations in MIEF2 result in imbalanced mitochondrial dynamics and a combined respiratory chain enzyme defect in skeletal muscle, leading to mitochondrial myopathy.
机译:线粒体动力学在细胞稳态中发挥着重要作用,各种人类疾病与其失调的功能有关。在这里,我们描述了一个15岁的男孩,具有改变的线粒体动力学引起的新型疾病。患者是近亲犹太父母的第二个孩子。他在6岁时开发了渐进式肌肉弱点和运动不耐受。他的肌肉活组织检查揭示了线粒体肌病,具有许多粗糙的红色和细胞色素C氧化酶(COX)阴性纤维和组合呼吸链复合物I和IV缺乏。 MTDNA拷贝数升高,并且在肌肉DNA中检测到MTDNA的缺失。整体exame测序鉴定了编码49kDa(Mid49)的线粒体动力学蛋白的Mief2基因中的纯合无意义突变(P.Q92 *)。免疫印迹显示出促进线粒体融合(MFN2,OPA1)和降低裂变蛋白DRP1的蛋白质水平增加。与对照相比,患者的成纤维细胞显示细长的线粒体,融合事件,MTDNA丰度和异常线粒体嵴超越频率显着较高。因此,我们的数据表明,MieF2中的突变导致骨骼肌中不平衡的线粒体动力学和组合的呼吸链酶缺陷,导致线粒体肌病。

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  • 来源
    《Human Molecular Genetics 》 |2018年第7期| 共10页
  • 作者单位

    Newcastle Univ Inst Genet Med Wellcome Ctr Mitochondrial Res Newcastle Upon Tyne NE1 3BZ Tyne &

    Newcastle Univ Inst Genet Med Wellcome Ctr Mitochondrial Res Newcastle Upon Tyne NE1 3BZ Tyne &

    Pontificia Univ Catolica Chile Sch Biol Sci Dept Cellular &

    Mol Biol Santiago 8330025 Chile;

    Pontificia Univ Catolica Chile Sch Biol Sci Dept Cellular &

    Mol Biol Santiago 8330025 Chile;

    Pontificia Univ Catolica Chile Sch Biol Sci Dept Cellular &

    Mol Biol Santiago 8330025 Chile;

    Newcastle Univ Inst Genet Med Wellcome Ctr Mitochondrial Res Newcastle Upon Tyne NE1 3BZ Tyne &

    Newcastle Univ Inst Genet Med Wellcome Ctr Mitochondrial Res Newcastle Upon Tyne NE1 3BZ Tyne &

    Newcastle Univ Inst Genet Med Wellcome Ctr Mitochondrial Res Newcastle Upon Tyne NE1 3BZ Tyne &

    Newcastle Univ Inst Genet Med Wellcome Ctr Mitochondrial Res Newcastle Upon Tyne NE1 3BZ Tyne &

    Med Genet Ctr Munich Germany;

    Univ Cambridge MRC Mitochondrial Biol Unit Cambridge Biomed Campus Cambridge CB2 0QQ England;

    Univ Freiburg Fac Med Med Ctr Dept Gen Pediat Adolescent Med &

    Neonatol Freiburg Germany;

    Univ Freiburg Fac Med Med Ctr Dept Neuropediat &

    Muscle Disorders Freiburg Germany;

    Pontificia Univ Catolica Chile Sch Biol Sci Dept Cellular &

    Mol Biol Santiago 8330025 Chile;

    Newcastle Univ Inst Genet Med Wellcome Ctr Mitochondrial Res Newcastle Upon Tyne NE1 3BZ Tyne &

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学 ;
  • 关键词

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