Protein complexes of the mitochondrial respiratory chain assemble into respiratory supercomplexes. Here we present the high-resolution electron cryo-microscopy structure of the Arabidopsis respiratory supercomplex consisting of complex I and a complex III dimer, with a total of 68 protein subunits and numerous bound cofactors. A complex I-ferredoxin, subunit B14.7 and P9, a newly defined subunit of plant complex I, mediate supercomplex formation. The component complexes stabilize one another, enabling new detailed insights into their structure. We describe (1) an interrupted aqueous passage for proton translocation in the membrane arm of complex I; (2) a new coenzyme A within the carbonic anhydrase module of plant complex I defining a secon...
The individual protein complexes of the oxidative phosphorylation system (OXPHOS complexes I to V) s...
AbstractRespiratory chain complexes are fragments of larger structural and functional units, the res...
In nature, plants are continuously exposed to varying environmental conditions. They have developed ...
Protein complexes of the mitochondrial respiratory chain assemble into respiratory supercomplexes. H...
We used electron cryo-tomography and subtomogram averaging to investigate the structure of complex I...
We used electron cryo-tomography and subtomogram averaging to investigate the structure of complex I...
The intricate, heavily folded inner membrane of mitochondria houses the respiratory chain complexes....
The last steps of cellular respiration-an essential metabolic process in plants-are carried out by m...
Mitochondrial complex I is the main site for electron transfer to the respiratory chain and generate...
Mitochondrial complex III (CIII2) and complex IV (CIV), which can associate into a higher-order supe...
Mitochondria are the powerhouses of eukaryotic cells and the site of essential metabolic reactions. ...
Mitochondria are central to the efficient provision of energy for eukaryotic cells. The oxidative-ph...
Photosystem II (PSII) is a light-driven protein, involved in the primary reactions of photosynthesis...
Cyclic electron transport (CET) around photosystem I (PSI) plays an important role in balancing the ...
The individual protein complexes of the oxidative phosphorylation system (OXPHOS complexes I to V) s...
AbstractRespiratory chain complexes are fragments of larger structural and functional units, the res...
In nature, plants are continuously exposed to varying environmental conditions. They have developed ...
Protein complexes of the mitochondrial respiratory chain assemble into respiratory supercomplexes. H...
We used electron cryo-tomography and subtomogram averaging to investigate the structure of complex I...
We used electron cryo-tomography and subtomogram averaging to investigate the structure of complex I...
The intricate, heavily folded inner membrane of mitochondria houses the respiratory chain complexes....
The last steps of cellular respiration-an essential metabolic process in plants-are carried out by m...
Mitochondrial complex I is the main site for electron transfer to the respiratory chain and generate...
Mitochondrial complex III (CIII2) and complex IV (CIV), which can associate into a higher-order supe...
Mitochondria are the powerhouses of eukaryotic cells and the site of essential metabolic reactions. ...
Mitochondria are central to the efficient provision of energy for eukaryotic cells. The oxidative-ph...
Photosystem II (PSII) is a light-driven protein, involved in the primary reactions of photosynthesis...
Cyclic electron transport (CET) around photosystem I (PSI) plays an important role in balancing the ...
The individual protein complexes of the oxidative phosphorylation system (OXPHOS complexes I to V) s...
AbstractRespiratory chain complexes are fragments of larger structural and functional units, the res...
In nature, plants are continuously exposed to varying environmental conditions. They have developed ...