| Literature DB >> 29052516 |
Patrick Soldath1,2, Karen Lindhardt Madsen3,4, Astrid Emilie Buch3,4, Morten Duno5, Flemming Wibrand5, John Vissing3,4.
Abstract
BACKGROUND: Pure exercise intolerance associated with exclusive affection of skeletal muscle is a very rare phenotype of patients with mitochondrial myopathy. Moreover, the exercise intolerance in these rare patients is yet not well explored, as most of known cases have not been assessed by objective testing, but only by interview. We report a patient with a mitochondrial DNA (mtDNA) mutation that gives rise to an exclusive myopathy associated with exercise intolerance and ophthalmoplegia. We quantified the patient's exercise intolerance through detailed exercise testing. CASEEntities:
Keywords: Case report; Exercise intolerance; Exercise physiological study; MT-TL2 mutation; Maximal oxidative capacity; Mitochondrial DNA; Mitochondrial myopathy
Mesh:
Substances:
Year: 2017 PMID: 29052516 PMCID: PMC5649050 DOI: 10.1186/s12891-017-1781-0
Source DB: PubMed Journal: BMC Musculoskelet Disord ISSN: 1471-2474 Impact factor: 2.362
Fig. 1Muscle histology and histochemistry. a H&E stain revealing an enhanced variability in fiber size and some fibers showing internalized nuclei or increased subsarcolemmal eosinophilic accumulation. b Oil-Red-O stain revealing increased amount of lipid droplets. c COX histochemistry demonstrating a significant number of COX-deficient fibers. d SDH histochemistry showing multiple ragged-blue-fibers with subsarcolemmal accumulation of abnormal mitochondria
Activities of mitochondrial enzymes in muscle
| Patient | Controls mean ± SD [range] ( | |
|---|---|---|
| Complex I/CS | 0.06 | 0.34 ± 0.09 [0.18–0.58] |
| Complex II/CS | 0.35 | 0.39 ± 0.07 [0.32–0.62] |
| Complex III/CS | 0.51 | 1.20 ± 0.21 [0.75–1.71] |
| Complex IV/CS | 1.2 | 3.8 ± 0.7 [2.5–5.7] |
| CS | 634 | 309 ± 83 [181–468] |
Enzyme activity is expressed as milliunits per milliunits citrate synthase (CS). CS activity is expressed as milliunits per milligrams protein. Reference values are from 29 age-matched controls and expressed as mean ± SD with ranges in brackets
Fig. 2Molecular genetic investigation and functional consequence of the m.12,294G > A mutation. a Sanger sequencing electropherograms of MT-TL2 from muscle (top panel) and buccal mucosa (bottom panel) encompassing the heteroplasmic m.12,294G > A mutation. The arrow in the upper panel marks the mutation. The mutation is not identified in the bottom panel and was likewise not detected in blood and urinary sediment. b Phylogenetic conservation of the anticodon stem and in between the anticodon loop of the mt-tRNA Leucine (CUN) sequence showing the high preservation of the affected base-pair throughout species. c Schematic representation of the mt-tRNA Leucine (CUN) cloverleaf structure showing the mutation in the anticodon stem and the affected G-C base-pair