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Updated: Aug 10, 2026

Methods for In situ Quantification of Mitochondrial Morphology in Muscle and Terminal Schwann Cells of Mice
Published on: April 10, 2026
Apoptosis in mitochondrial myopathies is linked to mitochondrial proliferation
Karine Auré1, Guillemette Fayet, Jean Paul Leroy
1Institut National de la Santé et de la Recherche Médicale, U582, HP, CHU Pitié-Salpêtrière, Institut de Myologie, Paris, France.
Abstract:
Increased susceptibility to apoptosis has been shown in many models of mitochondrial defects but its relevance to human diseases is still discussed. We addressed the presence of apoptosis in muscle from patients with mitochondrial DNA (mtDNA) disorders. Taking advantage of the mosaic pattern of muscle morphological anomalies associated with heteroplasmic mtDNA alterations, we have used an in situ approach to address the relationship between apoptosis and respiratory defect, mitochondrial proliferation and mutation load. Different patterns of mitochondrial morphological alterations were provided by the analysis of muscles with large mtDNA deletion (16 cases) or with the MELAS mutation (4 cases). The patient's age at biopsy ranged from 0.4 to 66 years and the muscle mutant mtDNA proportion from 32 to 82%. Apoptotic muscle fibres were observed in a small proportion of muscle fibres of 16 out of the 20 biopsies by three different detection methods for different steps of apoptosis: caspase 3 activation, fragmentation of nuclear DNA [terminal deoxynucleotidyl transferase-mediated dUTP nick end labelling (TUNEL) assay] or overexpression of the pro-apoptotic factor Bax. Analysis of apoptotic features in parallel to cytochrome c oxidase (COX) and succinate dehydrogenase activity of more than 34,000 individual muscle fibres showed that apoptosis occurred only in muscle fibres with mitochondrial proliferation (ragged red fibres, RRF) irrespective of their COX activity. Molecular analyses of single muscle fibres evidenced that, as expected, the presence of COX defect was associated with higher proportion of mutant mtDNA and lower amount of normal mtDNA. Within COX-defective fibres, the presence of mitochondrial proliferation was associated with increase of the mtDNA content but without change in the ratio between normal and mutant mtDNA molecules, thus showing that mitochondrial proliferation was accompanied by similar amplification of normal and mutant mtDNA molecules. Within RRF, apoptosis was associated with higher mutation proportion, suggesting that it was provoked by severe respiratory defect in the same time as increased mitochondrial mass. In conclusion, apoptosis most probably contributes to mitochondrial pathology. It is tightly linked to mitochondrial proliferation and high mutation load. When considering training therapeutics, one will have to take into account the possibility to induce apoptosis in parallel to mitochondrial proliferation.
Insights
Apoptosis contributes to mitochondrial disease by promoting cell death in muscle fibers with mitochondrial proliferation and high mutation loads. This process is linked to increased mitochondrial mass and severe respiratory defects.
Area of Science:
- Cell Biology
- Human Genetics
- Pathology
Background:
- Mitochondrial defects are linked to apoptosis, but relevance in human diseases is debated.
- Muscle biopsies from patients with mitochondrial DNA (mtDNA) disorders were analyzed.
Purpose of the Study:
- To investigate the presence and role of apoptosis in muscle fibers of patients with mitochondrial DNA disorders.
- To explore the relationship between apoptosis, respiratory defects, mitochondrial proliferation, and mutation load in muscle fibers.
Main Methods:
- In situ analysis of muscle fibers from 20 patients with mtDNA deletions or MELAS mutation.
- Detection of apoptosis using caspase 3 activation, DNA fragmentation (TUNEL assay), and Bax overexpression.
- Assessment of mitochondrial proliferation (ragged red fibers, RRF) and respiratory enzyme activity (COX, SDH).
- Molecular analysis of single muscle fibers to quantify mtDNA content and mutation load.
Main Results:
- Apoptotic muscle fibers were found in 16 out of 20 biopsies.
- Apoptosis occurred exclusively in ragged red fibers (RRF), regardless of cytochrome c oxidase (COX) activity.
- Within COX-defective fibers, mitochondrial proliferation increased mtDNA content but maintained the normal to mutant mtDNA ratio.
- Apoptosis in RRF correlated with a higher proportion of mutant mtDNA, suggesting induction by severe respiratory defects and increased mitochondrial mass.
Conclusions:
- Apoptosis plays a significant role in mitochondrial pathology, closely associated with mitochondrial proliferation and high mutation loads.
- Therapeutic strategies for mitochondrial diseases should consider the interplay between apoptosis induction and mitochondrial proliferation.
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