4.5 Article

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

Journal

HUMAN MOLECULAR GENETICS
Volume 27, Issue 7, Pages 1186-1195

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/hmg/ddy033

Keywords

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Funding

  1. Wellcome Trust [109915/Z/15/Z, 101876/Z/13/Z]
  2. Wellcome Centre for Mitochondrial Research [203105/Z/16/Z]
  3. Medical Research Council (UK) [MR/N025431/1]
  4. European Research Council [309548]
  5. Wellcome Trust Pathfinder Scheme [201064/Z/16/Z]
  6. Newton Fund (UK/Turkey) [MR/N027302/1]
  7. European Union Seventh Framework Programme [305444 RD-Connect, 305121 Neuromics]
  8. Wellcome Trust
  9. Medical Research Council Mitochondrial Biology Unit [MC_UP_1501/2]
  10. UK NIHR
  11. EU TIRCON
  12. National Institute for Health Research (NIHR) Biomedical Research Centre based at Cambridge University Hospitals NHS Foundation Trust
  13. University of Cambridge
  14. Medical Research Council (UK) Centre for Translational Muscle Disease [G0601943]
  15. FONDECYT [1150677]
  16. MRC [MR/N025431/2, MR/N025431/1, G0601943, G1000848] Funding Source: UKRI
  17. Medical Research Council [MR/N027302/1, MR/N025431/1, G0601943, MC_UP_1501/2, G1000848, MR/N025431/2, MR/N027302/2] Funding Source: researchfish
  18. Wellcome Trust [109915/A/15/Z] Funding Source: researchfish

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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.

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