Pathogenic mitochondrial mt-tRNAAla variants are uniquely associated with isolated myopathy

Pathogenic mitochondrial DNA (mtDNA) point mutations are associated with a wide range of clinical phenotypes, often involving multiple organ systems. We report two patients with isolated myopathy owing to novel mt-tRNAAla variants. Muscle biopsy revealed extensive histopathological findings includin...

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Veröffentlicht in:European journal of human genetics : EJHG 2015-04, Vol.23 (12), p.1735-1738
Hauptverfasser: Lehmann, Diana, Schubert, Kathrin, Joshi, Pushpa R, Hardy, Steven A, Tuppen, Helen A L, Baty, Karen, Blakely, Emma L, Bamberg, Christian, Zierz, Stephan, Deschauer, Marcus, Taylor, Robert W
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Sprache:eng
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Zusammenfassung:Pathogenic mitochondrial DNA (mtDNA) point mutations are associated with a wide range of clinical phenotypes, often involving multiple organ systems. We report two patients with isolated myopathy owing to novel mt-tRNAAla variants. Muscle biopsy revealed extensive histopathological findings including cytochrome c oxidase (COX)-deficient fibres. Pyrosequencing confirmed mtDNA heteroplasmy for both mutations (m.5631G>A and m.5610G>A) whilst single-muscle fibre segregation studies (revealing statistically significant higher mutation loads in COX-deficient fibres than in COX-positive fibres), hierarchical mutation segregation within patient tissues and decreased steady-state mt-tRNAAla levels all provide compelling evidence of pathogenicity. Interestingly, both patients showed very high-mutation levels in all tissues, inferring that the threshold for impairment of oxidative phosphorylation, as evidenced by COX deficiency, appears to be extremely high for these mt-tRNAAla variants. Previously described mt-tRNAAla mutations are also associated with a pure myopathic phenotype and demonstrate very high mtDNA heteroplasmy thresholds, inferring at least some genotype:phenotype correlation for mutations within this particular mt-tRNA gene.
ISSN:1018-4813
1476-5438
DOI:10.1038/ejhg.2015.73