4.8 Article

Understanding mitochondrial DNA maintenance disorders at the single muscle fibre level

期刊

NUCLEIC ACIDS RESEARCH
卷 47, 期 14, 页码 7430-7443

出版社

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkz472

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资金

  1. Wellcome Centre for Mitochondrial Research [203105/Z/16/Z]
  2. Medical Research Council Centre for Ageing and Vitality [L016354]
  3. Medical Research Council (MRC) Centre for Translational Research in Neuromuscular Disease Mitochondrial Disease Patient Cohort [G0800674]
  4. UK National Institute for Health Research Biomedical Research Centre in Age and Age Related Diseases
  5. MRC/Engineering and Physical Sciences Research Council Molecular Pathology Node
  6. UK NHS Specialist Commissioners Rare Mitochondrial Disorders of Adults and Children Service
  7. European Academy of Neurology (EAN)
  8. MRC, Centre for Ageing and Vitality [MR/L016354/1]
  9. National Institute for Health Research (NIHR) [NIHR-HCS-D12-03-04]
  10. Parkinson's UK Fellowship [F-1401]
  11. Wellcome Trust [213464/Z/18/Z]
  12. Royal Society [213464/Z/18/Z]
  13. Rosetrees and Stoneygate Trust Research Fellowship
  14. RCUK (Gold Access funding) through MRC Centre for Ageing and Vitality
  15. Lily Foundation
  16. MRC [G0800674, MR/L016354/1] Funding Source: UKRI
  17. Wellcome Trust [213464/Z/18/Z] Funding Source: Wellcome Trust

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Clonal expansion of mitochondrial DNA (mtDNA) deletions is an important pathological mechanism in adults with mtDNA maintenance disorders, leading to a mosaic mitochondrial respiratory chain deficiency in skeletal muscle. This study had two aims: (i) to determine if different Mendelian mtDNA maintenance disorders showed similar pattern of mtDNA deletions and respiratory chain deficiency and (ii) to investigate the correlation between the mitochondrial genetic defect and corresponding respiratory chain deficiency. We performed a quantitative analysis of respiratory chain deficiency, at a single cell level, in a cohort of patients with mutations in mtDNA maintenance genes. Using the same tissue section, we performed laser microdissection and single cell genetic analysis to investigate the relationship between mtDNA deletion characteristics and the respiratory chain deficiency. The pattern of respiratory chain deficiency is similar with different genetic defects. We demonstrate a clear correlation between the level of mtDNA deletion and extent of respiratory chain deficiency within a single cell. Long-range and single molecule PCR shows the presence of multiple mtDNA deletions in approximately one-third of all muscle fibres. We did not detect evidence of a replicative advantage for smaller mtDNA molecules in the majority of fibres, but further analysis is needed to provide conclusive evidence.

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