Functional consequences of mitochondrial tRNATrp and tRNAArg mutations causing combined OXPHOS defects |
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Authors: | Paulien Smits Sandy Mattijssen Eva Morava Mari?l van den Brand Frans van den Brandt Frits Wijburg Ger Pruijn Jan Smeitink Leo Nijtmans Richard Rodenburg Lambert van den Heuvel |
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Affiliation: | 1Department of Pediatrics, Nijmegen Center for Mitochondrial Disorders, Radboud University Nijmegen Medical Center, Nijmegen, The Netherlands;2Department of Biomolecular Chemistry, Nijmegen Center for Molecular Life Sciences, Institute for Molecules and Materials, Radboud University Nijmegen, Nijmegen, The Netherlands;3Department of Pediatrics (G8-205), Emma Children''s Hospital AMC, Academic Medical Center, Amsterdam, The Netherlands |
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Abstract: | ![]() Combined oxidative phosphorylation (OXPHOS) system deficiencies are a group of mitochondrial disorders that are associated with a range of clinical phenotypes and genetic defects. They occur in approximately 30% of all OXPHOS disorders and around 4% are combined complex I, III and IV deficiencies. In this study we present two mutations in the mitochondrial tRNATrp (MT-TW) and tRNAArg (MT-TR) genes, m.5556G>A and m.10450A>G, respectively, which were detected in two unrelated patients showing combined OXPHOS complex I, III and IV deficiencies and progressive multisystemic diseases. Both mitochondrial tRNA mutations were almost homoplasmic in fibroblasts and muscle tissue of the two patients and not present in controls. Patient fibroblasts showed a general mitochondrial translation defect. The mutations resulted in lowered steady-state levels and altered conformations of the tRNAs. Cybrid cell lines showed similar tRNA defects and impairment of OXPHOS complex assembly as patient fibroblasts. Our results show that these tRNATrp and tRNAArg mutations cause the combined OXPHOS deficiencies in the patients, adding to the still expanding group of pathogenic mitochondrial tRNA mutations. |
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Keywords: | combined OXPHOS defects mitochondrial DNA tRNATrp tRNAArg molecular mechanism |
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