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Updated: Jul 12, 2026

Measuring Single-Cell Mitochondrial DNA Copy Number and Heteroplasmy Using Digital Droplet Polymerase Chain Reaction
Published on: July 12, 2022
Homoplasmy, heteroplasmy, and mitochondrial dystonia
R McFarland1, P F Chinnery, E L Blakely
1Mitochondrial Research Group, School of Neurology, Neurobiology and Psychiatry, University of Newcastle upon Tyne, Newcastle upon Tyne, UK. robert.mcfarland@ncl.ac.uk
Background:
In clinical practice, mitochondrial disease is seldom considered until a variable combination of seizures, alteration in tone, muscle weakness, and developmental problems is evident. However, it is not uncommon for one symptom to occur in isolation and dominate the clinical phenotype. We report six patients from two families where dystonia was the principal clinical manifestation. A mitochondrial etiology was considered in each case because of the association of dystonia with other less prominent clinical features such as epilepsy.
Methods:
Histochemical and biochemical analyses were undertaken in skeletal muscle biopsies from individuals in both families. Sequencing of skeletal muscle mtDNA was also performed and suspected mutations were quantified by hot last cycle PCR-RFLP or primer extension assay. Functional consequences of one of the mutations were investigated by measurement of steady state levels of mitochondrial tRNA.
Results:
Two distinct mitochondrial pathologies were identified: a novel, homoplasmic mitochondrial tRNA(Cys) (MTTC) mutation and the primary, m.11778G>A Leber hereditary optic neuropathy (LHON) mutation. The mild nature of both mutations has permitted very high levels of mutated mtDNA to accumulate. Patients with the mutation in the MTTC gene have no wild type mtDNA detectable and although the LHON mutation is heteroplasmic in the patients we report, it is commonly observed to be homoplasmic.
Conclusions:
The mitochondrial etiology identified in these patients emphasizes the pathologic potential of homoplasmic mutations and has important implications for the investigation and genetic counseling of families where dystonia is the principal clinical feature. We advocate that mitochondrial disease should be given serious consideration in patients with familial, progressive dystonia, particularly when additional neurologic features such as epilepsy are present.
Insights
Mitochondrial disease can present as dystonia, even without other typical symptoms. Identifying specific mitochondrial DNA mutations is crucial for diagnosis and genetic counseling in affected families.
Area of Science:
- Genetics
- Neurology
- Mitochondrial Biology
Background:
- Mitochondrial disease is often diagnosed late, after multiple symptoms appear.
- Dystonia can be the sole or primary symptom, masking a mitochondrial origin.
- Familial progressive dystonia warrants consideration for mitochondrial etiologies, especially with accompanying neurological signs like epilepsy.
Observation:
- Six patients from two families presented with dystonia as their main clinical feature.
- Associated symptoms included epilepsy and other less prominent neurological signs.
- Skeletal muscle biopsies and mtDNA sequencing were performed.
Findings:
- Two distinct mitochondrial pathologies were identified: a novel MTTC mutation and the m.11778G>A LHON mutation.
- Both mutations were homoplasmic in affected individuals, allowing high accumulation of mutated mtDNA.
- The novel MTTC mutation resulted in no detectable wild-type mtDNA.
Implications:
- Homoplasmic mitochondrial mutations have significant pathologic potential.
- Mitochondrial disease should be strongly considered in familial progressive dystonia cases.
- These findings impact the investigation and genetic counseling for families with unexplained dystonia.
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