Exercise Intolerance Due to Mutations in the CytochromebGene of Mitochondrial DNA
Open Access
- 30 September 1999
- journal article
- research article
- Published by Massachusetts Medical Society in New England Journal of Medicine
- Vol. 341 (14) , 1037-1044
- https://doi.org/10.1056/nejm199909303411404
Abstract
The mitochondrial myopathies typically affect many organ systems and are associated with mutations in mitochondrial DNA (mtDNA) that are maternally inherited. However, there is also a sporadic form of mitochondrial myopathy in which exercise intolerance is the predominant symptom. We studied the biochemical and molecular characteristics of this sporadic myopathy. We sequenced the mtDNA cytochrome b gene in blood and muscle specimens from five patients with severe exercise intolerance, lactic acidosis in the resting state (in four patients), and biochemical evidence of complex III deficiency. We compared the clinical and molecular features of these patients with those previously described in four other patients with mutations in the cytochrome b gene. We found a total of three different nonsense mutations (G15084A, G15168A, and G15723A), one missense mutation (G14846A), and a 24-bp deletion (nucleotides 15498 to 15521) in the cytochrome b gene in the five patients. Each of these mutations impairs the enzymatic function of the cytochrome b protein. In these patients and those previously described, the clinical manifestations included progressive exercise intolerance, proximal limb weakness, and in some cases, attacks of myoglobinuria. There was no maternal inheritance and there were no mutations in tissues other than muscle. The absence of these findings suggests that the disorder is due to somatic mutations in myogenic stem cells after germ-layer differentiation. All the point mutations involved the substitution of adenine for guanine, but all were in different locations. The sporadic form of mitochondrial myopathy is associated with somatic mutations in the cytochrome b gene of mtDNA. This myopathy is one cause of the common and often elusive syndrome of exercise intolerance.Keywords
This publication has 23 references indexed in Scilit:
- A nonsense mutation (G15059A) in the cytochromeb gene in a patient with exercise intolerance and myoglobinuriaAnnals of Neurology, 1999
- Missense mutation in the mtDNA cytochrome b gene in a patient with myopathyNeurology, 1998
- Complete Structure of the 11-Subunit Bovine Mitochondrial Cytochrome bc 1 ComplexScience, 1998
- A novel gly290asp mitochondrial cytochromebmutation linked to a complex III deficiency in progressive exercise intoleranceMolecular and Cellular Probes, 1996
- [43]Cytochemistry and immunocytochemistry of mitochondria in tissue sectionsPublished by Elsevier ,1996
- Mitochondrial DNA and DiseaseNew England Journal of Medicine, 1995
- Distribution of wild-type and common deletion forms of mtDNA in normal and respiration-deficient muscle fibers from patients with mitochondrial myopathyHuman Molecular Genetics, 1994
- Decreased expression o ubiquinol-cytochrome c reductase subunits in patients exhibiting mitochondrial myopathy with progressive exercise intoleranceNeuromuscular Disorders, 1993
- Cytochrome c oxidase deficiency in leigh syndromeAnnals of Neurology, 1987
- 31P NMR study of improvement in oxidative phosphorylation by vitamins K3 and C in a patient with a defect in electron transport at complex III in skeletal muscle.Proceedings of the National Academy of Sciences, 1984