The effect of methylmalonate (MMA) on mitochondrial succinate oxidation has received great attention since it could present an important role in energy metabolism impairment in methylmalonic acidaemia. In the present work, we show that while millimolar concentrations of MMA inhibit succinate-supported oxygen consumption by isolated rat brain or muscle mitochondria, there is no effect when either a pool of NADH-linked substrates or N,N,N',N'-tetramethyl-p-phenylendiamine (TMPD)/ascorbate were used as electron donors. Interestingly, the inhibitory effect of MMA, but not of malonate, on succinate-supported brain mitochondrial oxygen consumption was minimized when nonselective permeabilization of mitochondrial membranes was induced by alamethic...
International audienceComplex I is responsible for most of the mitochondrial H 2}O 2} release, both ...
Methylmalonic acidemia is one of the most prevalent inherited metabolic disorders involving neurolog...
Mitochondria produce the majority of the cell’s energy. Any dysfunction in, or interference with mit...
The effect of methylmalonate (MMA) on mitochondrial succinate oxidation has received great attention...
The neurodegeneration that occurs in methylmalonic acidemia is proposed to be associated with impair...
Methylmalonic acidurias are biochemically characterized by an accumulation of methylmalonic acid and...
Methylmalonic acidemia (MMAemia) is an inherited metabolic disorder of branched amino acid and odd-c...
Changes in mitochondrial integrity, reactive oxygen species release and Ca2+ handling are proposed t...
Accumulation of 2-methylcitric acid (2MCA) is observed in methylmalonic and propionic acidemias, whi...
Human exposure to carbamates and organophosphates poses a serious threat to society and current phar...
Accumulation of 2-methylcitric acid (2MCA) is observed in methylmalonic and propionic acidemias, whi...
The impermeability of the inner membrane to protons is one of the four postulates of the chemiosmoti...
1-methyl-4-phenylpyridine (MPP+), a major product of the oxidation of the neurotoxic amine 1-methyl-...
Methylene blue (MB), a potential neuroprotective agent, is efficient in various neurodegenerative di...
Methylmalonic acidemia is one of the most prevalent inherited metabolic disorders involving neurolog...
International audienceComplex I is responsible for most of the mitochondrial H 2}O 2} release, both ...
Methylmalonic acidemia is one of the most prevalent inherited metabolic disorders involving neurolog...
Mitochondria produce the majority of the cell’s energy. Any dysfunction in, or interference with mit...
The effect of methylmalonate (MMA) on mitochondrial succinate oxidation has received great attention...
The neurodegeneration that occurs in methylmalonic acidemia is proposed to be associated with impair...
Methylmalonic acidurias are biochemically characterized by an accumulation of methylmalonic acid and...
Methylmalonic acidemia (MMAemia) is an inherited metabolic disorder of branched amino acid and odd-c...
Changes in mitochondrial integrity, reactive oxygen species release and Ca2+ handling are proposed t...
Accumulation of 2-methylcitric acid (2MCA) is observed in methylmalonic and propionic acidemias, whi...
Human exposure to carbamates and organophosphates poses a serious threat to society and current phar...
Accumulation of 2-methylcitric acid (2MCA) is observed in methylmalonic and propionic acidemias, whi...
The impermeability of the inner membrane to protons is one of the four postulates of the chemiosmoti...
1-methyl-4-phenylpyridine (MPP+), a major product of the oxidation of the neurotoxic amine 1-methyl-...
Methylene blue (MB), a potential neuroprotective agent, is efficient in various neurodegenerative di...
Methylmalonic acidemia is one of the most prevalent inherited metabolic disorders involving neurolog...
International audienceComplex I is responsible for most of the mitochondrial H 2}O 2} release, both ...
Methylmalonic acidemia is one of the most prevalent inherited metabolic disorders involving neurolog...
Mitochondria produce the majority of the cell’s energy. Any dysfunction in, or interference with mit...