EMBO Molecular Medicine · 2009 · 104 citations · 18 references
Lipid PeroxidationRedox BiologyOxidative StressHuman CellsAlternative Oxidase ComplementsHuman MetabolismCox DeficiencyRedox SignalingBiochemistryHeme SignalingReactive Oxygen SpecieMetabolomicsHeme HomeostasisPharmacologyCytochrome C OxidaseCell BiologyMitochondrial FunctionNatural SciencesHeme DegradationPhysiologyCellular BiochemistryMetabolismMedicine
Cytochrome c oxidase (COX) deficiency is associated with a wide spectrum of clinical conditions, ranging from early onset devastating encephalomyopathy and cardiomyopathy, to neurological diseases in adulthood and in the elderly. No method of compensating successfully for COX deficiency has been reported so far. In vitro, COX-deficient human cells require additional glucose, pyruvate and uridine for normal growth and are specifically sensitive to oxidative stress. Here, we have tested whether the expression of a mitochondrially targeted, cyanide-resistant, alternative oxidase (AOX) from Ciona intestinalis could alleviate the metabolic abnormalities of COX-deficient human cells either from a patient harbouring a COX15 pathological mutation or rendered deficient by silencing the COX10 gene using shRNA. We demonstrate that the expression of the AOX, well-tolerated by the cells, compensates for both the growth defect and the pronounced oxidant-sensitivity of COX-deficient human cells.
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MITOMAP: a human mitochondrial genome database
Andreas M. Kogelnik · Nucleic Acids Research · 1996 · 514 citations · Full text