International audienceDevastating human neuromuscular disorders have been associated to defects in the ATP synthase. This enzyme is found in the inner mitochondrial membrane and catalyzes the last step in oxidative phosphorylation, which provides aerobic eukaryotes with ATP. With the advent of structures of complete ATP synthases, and the availability of genetically approachable systems such as the yeast Saccharomyces cerevisiae, we can begin to understand these molecular machines and their associated defects at the molecular level. In this review, we describe what is known about the clinical syndromes induced by 58 different mutations found in the mitochondrial genes encoding membrane subunits 8 and a of ATP synthase, and evaluate their fu...
Mitochondrial F1FO-ATP synthase produces most of the cellular energy in aerobiceukaryotes under the ...
AbstractWe have created and analyzed the properties of a yeast model of the human mitochondrial DNA ...
Human diseases range from gene-associated to gene-non-associated disorders, including age-related di...
Devastating human neuromuscular disorders have been associated to defects in the ATP synthase. This ...
Devastating human neuromuscular disorders have been associated to defects in the ATP synthase. This ...
Devastating human neuromuscular disorders have been associated to defects in the ATP synthase. This ...
ATP synthase represents the key enzyme of cellular energy provision and ATP synthase disorders belon...
ATP synthase represents the key enzyme of cellular energy provision and ATP synthase disorders belon...
The mitochondrial ATP synthase is a multimeric enzyme complex with an overall molecular weight of ab...
Mutations in human mitochondrial DNA are a well recognized cause of disease. A mutation at nucleotid...
AbstractIn mammals, the majority of cellular ATP is produced by the mitochondrial F1FO-ATP synthase ...
International audienceKeywords: ATP synthase Subunit a mtDNA MT-ATP6 Oxidative phosphorylation Metab...
AbstractATP synthase is a key enzyme of mitochondrial energy conversion. In mammals, it produces mos...
Mitochondrial F1FO-ATP synthase produces most of the cellular energy in aerobiceukaryotes under the ...
AbstractSeveral human neurological disorders have been associated with various mutations affecting m...
Mitochondrial F1FO-ATP synthase produces most of the cellular energy in aerobiceukaryotes under the ...
AbstractWe have created and analyzed the properties of a yeast model of the human mitochondrial DNA ...
Human diseases range from gene-associated to gene-non-associated disorders, including age-related di...
Devastating human neuromuscular disorders have been associated to defects in the ATP synthase. This ...
Devastating human neuromuscular disorders have been associated to defects in the ATP synthase. This ...
Devastating human neuromuscular disorders have been associated to defects in the ATP synthase. This ...
ATP synthase represents the key enzyme of cellular energy provision and ATP synthase disorders belon...
ATP synthase represents the key enzyme of cellular energy provision and ATP synthase disorders belon...
The mitochondrial ATP synthase is a multimeric enzyme complex with an overall molecular weight of ab...
Mutations in human mitochondrial DNA are a well recognized cause of disease. A mutation at nucleotid...
AbstractIn mammals, the majority of cellular ATP is produced by the mitochondrial F1FO-ATP synthase ...
International audienceKeywords: ATP synthase Subunit a mtDNA MT-ATP6 Oxidative phosphorylation Metab...
AbstractATP synthase is a key enzyme of mitochondrial energy conversion. In mammals, it produces mos...
Mitochondrial F1FO-ATP synthase produces most of the cellular energy in aerobiceukaryotes under the ...
AbstractSeveral human neurological disorders have been associated with various mutations affecting m...
Mitochondrial F1FO-ATP synthase produces most of the cellular energy in aerobiceukaryotes under the ...
AbstractWe have created and analyzed the properties of a yeast model of the human mitochondrial DNA ...
Human diseases range from gene-associated to gene-non-associated disorders, including age-related di...