The respiratory chain in the inner mitochondrial membrane contains three large multi-enzyme complexes that together establish the proton gradient for ATP synthesis, and assemble into a supercomplex. A 19-Å 3D map of the 1.7-MDa amphipol-solubilized supercomplex I1III2IV1 from bovine heart obtained by single-particle electron cryo-microscopy reveals an amphipol belt replacing the membrane lipid bilayer. A precise fit of the X-ray structures of complex I, the complex III dimer, and monomeric complex IV indicates distances of 13 nm between the ubiquinol-binding sites of complexes I and III, and of 10–11 nm between the cytochrome c binding sites of complexes III and IV. The arrangement of respiratory chain complexes suggests two possible pathwa...
The oxidative phosphorylation electron transport chain (OXPHOS-ETC) of the inner mitochondrial membr...
Mitochondrial electron transport chain complexes are organized into supercomplexes responsible for c...
This is the final version of the article. Available from National Academy of Sciences via the DOI in...
The respiratory chain in the inner mitochondrial membrane contains three large multi-enzyme complexe...
The metabolic capacity of the eukaryotic cell to convert free energy contained in nutrients into ATP...
The transmembrane protein complexes of the respiratory chain generate an electrochemical gradient ov...
AbstractThe liquid state model that envisions respiratory chain complexes diffusing freely in the me...
Respirasomes are macromolecular assemblies of the respiratory chain complexes I, III and IV in the i...
The respiratory chain complexes can arrange into multienzyme assemblies, so-called supercomplexes. W...
We used electron cryo-tomography and subtomogram averaging to investigate the structure of complex I...
Mitochondrial respiratory chain complexes are arranged in supercomplexes within the inner membrane. ...
The model of the respiratory chain in which the enzyme complexes are independently embedded in the l...
AbstractRecent investigations by native gel electrophoresis showed the existence of supramolecular a...
The main objective of this work is to determine the atomic structure of mammalian respiratory comple...
Mitochondrial respiratory chain complexes are arranged in supercomplexes within the inner membrane. ...
The oxidative phosphorylation electron transport chain (OXPHOS-ETC) of the inner mitochondrial membr...
Mitochondrial electron transport chain complexes are organized into supercomplexes responsible for c...
This is the final version of the article. Available from National Academy of Sciences via the DOI in...
The respiratory chain in the inner mitochondrial membrane contains three large multi-enzyme complexe...
The metabolic capacity of the eukaryotic cell to convert free energy contained in nutrients into ATP...
The transmembrane protein complexes of the respiratory chain generate an electrochemical gradient ov...
AbstractThe liquid state model that envisions respiratory chain complexes diffusing freely in the me...
Respirasomes are macromolecular assemblies of the respiratory chain complexes I, III and IV in the i...
The respiratory chain complexes can arrange into multienzyme assemblies, so-called supercomplexes. W...
We used electron cryo-tomography and subtomogram averaging to investigate the structure of complex I...
Mitochondrial respiratory chain complexes are arranged in supercomplexes within the inner membrane. ...
The model of the respiratory chain in which the enzyme complexes are independently embedded in the l...
AbstractRecent investigations by native gel electrophoresis showed the existence of supramolecular a...
The main objective of this work is to determine the atomic structure of mammalian respiratory comple...
Mitochondrial respiratory chain complexes are arranged in supercomplexes within the inner membrane. ...
The oxidative phosphorylation electron transport chain (OXPHOS-ETC) of the inner mitochondrial membr...
Mitochondrial electron transport chain complexes are organized into supercomplexes responsible for c...
This is the final version of the article. Available from National Academy of Sciences via the DOI in...