International audienceThe involvement of subunit 6 (a) in the interface between yeast ATP synthase monomers has been highlighted. Based on the formation of a disulfide bond and using the unique cysteine 23 as target, we show that two subunits 6 are close in the inner mitochondrial membrane and in the solubilized supramolecular forms of the yeast ATP synthase. In a null mutant devoid of supernumerary subunits e and g that are involved in the stabilization of ATP synthase dimers, ATP synthase monomers are close enough in the inner mitochondrial membrane to make a disulfide bridge between their subunits 6, and this proximity is maintained in detergent extract containing this enzyme. The cross-linking of cysteine 23 located in the N-terminal pa...
There is increasing evidence now that F1F0 ATP synthase is arranged in dimers in the inner mitochond...
The yeast mitochondrial F1F0-ATP synthase is a multisubunit complex that contains at least 17 differ...
We used electron cryotomography of mitochondrial membranes from wild-type and mutant Saccharomyces c...
AbstractYeast mitochondria having either the D54C or E55C mutations in subunit 4 (subunit b), which ...
AbstractA topological study of the yeast ATP synthase membranous domain was undertaken by means of c...
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...
We determined the structure of a complete, dimeric F1Fo-ATP synthase from yeast Yarrowia lipolytica ...
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...
AbstractSpecific modules and subcomplexes like F1 and F0-parts, F1-c subcomplexes, peripheral and ce...
AbstractDevelopment of an increasingly detailed understanding of the eucaryotic mitochondrial ATP sy...
AbstractThere is increasing evidence now that F1F0 ATP synthase is arranged in dimers in the inner m...
La F1 Fo ATP synthase est un complexe enzymatique localisé au sein de la membrane interne mitochondr...
AbstractHere we study ATP synthase from human ρ0 (rho zero) cells by clear native electrophoresis (C...
There is increasing evidence now that F1F0 ATP synthase is arranged in dimers in the inner mitochond...
The yeast mitochondrial F1F0-ATP synthase is a multisubunit complex that contains at least 17 differ...
We used electron cryotomography of mitochondrial membranes from wild-type and mutant Saccharomyces c...
AbstractYeast mitochondria having either the D54C or E55C mutations in subunit 4 (subunit b), which ...
AbstractA topological study of the yeast ATP synthase membranous domain was undertaken by means of c...
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...
We determined the structure of a complete, dimeric F1Fo-ATP synthase from yeast Yarrowia lipolytica ...
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...
AbstractSpecific modules and subcomplexes like F1 and F0-parts, F1-c subcomplexes, peripheral and ce...
AbstractDevelopment of an increasingly detailed understanding of the eucaryotic mitochondrial ATP sy...
AbstractThere is increasing evidence now that F1F0 ATP synthase is arranged in dimers in the inner m...
La F1 Fo ATP synthase est un complexe enzymatique localisé au sein de la membrane interne mitochondr...
AbstractHere we study ATP synthase from human ρ0 (rho zero) cells by clear native electrophoresis (C...
There is increasing evidence now that F1F0 ATP synthase is arranged in dimers in the inner mitochond...
The yeast mitochondrial F1F0-ATP synthase is a multisubunit complex that contains at least 17 differ...
We used electron cryotomography of mitochondrial membranes from wild-type and mutant Saccharomyces c...