Alternative oxidases (AOXs) bypass respiratory complexes III and IV by transferring electrons from coenzyme Q directly to O2. They have therefore been proposed as a potential therapeutic tool for mitochondrial diseases. We crossed the severely myopathic skeletal muscle-specific COX15 knockout (KO) mouse with an AOX-transgenic mouse. Surprisingly, the double KO-AOX mutants had decreased lifespan and a substantial worsening of the myopathy compared with KO alone. Decreased ROS production in KO-AOX versus KO mice led to impaired AMPK/PGC-1α signaling and PAX7/MYOD-dependent muscle regeneration, blunting compensatory responses. Importantly, the antioxidant N-acetylcysteine had a similar effect, decreasing the lifespan of KO mice. Our findings h...
Significance: Reactive oxygen species (ROS) are highly reactive compounds that behave like a double-...
Significance: Reactive oxygen species (ROS) are highly reactive compounds that behave like a double-...
Increased mitochondrial biogenesis by activation of PPAR- or AMPK/PGC-1 alpha-dependent homeostatic ...
Summary Alternative oxidases (AOXs) bypass respiratory complexes III and IV by transferring electron...
Energetic insufficiency, excess production of reactive oxygen species (ROS), and aberrant signaling ...
Alternative oxidase (AOX) is a non-mammalian enzyme that can bypass blockade of the complex III-IV s...
Alternative oxidase (AOX) is a non-mammalian enzyme that can bypass blockade of the complex III-IV s...
The alternative oxidase, AOX, provides a by-pass of the cytochrome segment of the mitochondrial resp...
Abstract Alternative oxidase (AOX) is a non‐mammalian enzyme that can bypass blockade of the complex...
SummaryIncreased mitochondrial biogenesis by activation of PPAR- or AMPK/PGC-1α-dependent homeostati...
Redox imbalance elevates the reactive oxygen species (ROS) level in cells and promotes age-related d...
Abstract Myopathies are common manifestations of mitochondrial diseases. To investigate whether gene...
Cellular superoxide radicals (O2-) are mostly generated during mitochondrial oxygen metabolism. O2- ...
GRACILE (Growth Retardation, Aminoaciduria, Cholestasis, Iron Overload, Lactic Acidosis, and Early d...
Age-related skeletal muscle dysfunction is a leading cause of morbidity that affects up to half the ...
Significance: Reactive oxygen species (ROS) are highly reactive compounds that behave like a double-...
Significance: Reactive oxygen species (ROS) are highly reactive compounds that behave like a double-...
Increased mitochondrial biogenesis by activation of PPAR- or AMPK/PGC-1 alpha-dependent homeostatic ...
Summary Alternative oxidases (AOXs) bypass respiratory complexes III and IV by transferring electron...
Energetic insufficiency, excess production of reactive oxygen species (ROS), and aberrant signaling ...
Alternative oxidase (AOX) is a non-mammalian enzyme that can bypass blockade of the complex III-IV s...
Alternative oxidase (AOX) is a non-mammalian enzyme that can bypass blockade of the complex III-IV s...
The alternative oxidase, AOX, provides a by-pass of the cytochrome segment of the mitochondrial resp...
Abstract Alternative oxidase (AOX) is a non‐mammalian enzyme that can bypass blockade of the complex...
SummaryIncreased mitochondrial biogenesis by activation of PPAR- or AMPK/PGC-1α-dependent homeostati...
Redox imbalance elevates the reactive oxygen species (ROS) level in cells and promotes age-related d...
Abstract Myopathies are common manifestations of mitochondrial diseases. To investigate whether gene...
Cellular superoxide radicals (O2-) are mostly generated during mitochondrial oxygen metabolism. O2- ...
GRACILE (Growth Retardation, Aminoaciduria, Cholestasis, Iron Overload, Lactic Acidosis, and Early d...
Age-related skeletal muscle dysfunction is a leading cause of morbidity that affects up to half the ...
Significance: Reactive oxygen species (ROS) are highly reactive compounds that behave like a double-...
Significance: Reactive oxygen species (ROS) are highly reactive compounds that behave like a double-...
Increased mitochondrial biogenesis by activation of PPAR- or AMPK/PGC-1 alpha-dependent homeostatic ...