AbstractThe ATP synthase is a nanometric rotary machine that uses a transmembrane electrochemical gradient to form ATP. The structures of most components of the ATP synthase are known, and their organization has been elucidated. However, the supramolecular assembly of ATP synthases in biological membranes remains unknown. Here we show with submolecular resolution the organization of ATP synthases in the yeast mitochondrial inner membranes. The atomic force microscopy images we have obtained show how these molecules form dimers with characteristic 15nm distance between the axes of their rotors through stereospecific interactions of the membrane embedded portions of their stators. A different interaction surface is responsible for the formati...
F1Fo-ATP synthase is a key enzyme of oxidative phosphorylation that is localized in the inner membra...
AbstractSpecific modules and subcomplexes like F1 and F0-parts, F1-c subcomplexes, peripheral and ce...
ATP synthases produce ATP by rotary catalysis, powered by the electrochemical proton gradient across...
International audienceThe ATP synthase is a nanometric rotary machine that uses a transmembrane elec...
AbstractThe ATP synthase is a nanometric rotary machine that uses a transmembrane electrochemical gr...
We determined the structure of a complete, dimeric F1Fo-ATP synthase from yeast Yarrowia lipolytica ...
AbstractRespiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary...
Respiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary motor e...
We used electron cryotomography of mitochondrial membranes from wild-type and mutant Saccharomyces c...
Adenosine triphosphate (ATP) synthases populate the inner membranes of mitochondria, where they prod...
Mitochondrial ATP synthases form dimers, which assemble into long ribbons at the rims of the inner m...
Mitochondrial ATP synthases form dimers, which assemble into long ribbons at the rims of the inner m...
AbstractThere is increasing evidence now that F1F0 ATP synthase is arranged in dimers in the inner m...
There is increasing evidence now that F1F0 ATP synthase is arranged in dimers in the inner mitochond...
AbstractBlue native polyacrylamide gel electrophoresis (BN-PAGE) analyses of detergent mitochondrial...
F1Fo-ATP synthase is a key enzyme of oxidative phosphorylation that is localized in the inner membra...
AbstractSpecific modules and subcomplexes like F1 and F0-parts, F1-c subcomplexes, peripheral and ce...
ATP synthases produce ATP by rotary catalysis, powered by the electrochemical proton gradient across...
International audienceThe ATP synthase is a nanometric rotary machine that uses a transmembrane elec...
AbstractThe ATP synthase is a nanometric rotary machine that uses a transmembrane electrochemical gr...
We determined the structure of a complete, dimeric F1Fo-ATP synthase from yeast Yarrowia lipolytica ...
AbstractRespiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary...
Respiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary motor e...
We used electron cryotomography of mitochondrial membranes from wild-type and mutant Saccharomyces c...
Adenosine triphosphate (ATP) synthases populate the inner membranes of mitochondria, where they prod...
Mitochondrial ATP synthases form dimers, which assemble into long ribbons at the rims of the inner m...
Mitochondrial ATP synthases form dimers, which assemble into long ribbons at the rims of the inner m...
AbstractThere is increasing evidence now that F1F0 ATP synthase is arranged in dimers in the inner m...
There is increasing evidence now that F1F0 ATP synthase is arranged in dimers in the inner mitochond...
AbstractBlue native polyacrylamide gel electrophoresis (BN-PAGE) analyses of detergent mitochondrial...
F1Fo-ATP synthase is a key enzyme of oxidative phosphorylation that is localized in the inner membra...
AbstractSpecific modules and subcomplexes like F1 and F0-parts, F1-c subcomplexes, peripheral and ce...
ATP synthases produce ATP by rotary catalysis, powered by the electrochemical proton gradient across...