The last steps of cellular respiration-an essential metabolic process in plants-are carried out by mitochondrial oxidative phosphorylation. This process involves a chain of multi-subunit membrane protein complexes (complexes I-V) that form higher-order assemblies called supercomplexes. Although supercomplexes are the most physiologically relevant form of the oxidative phosphorylation complexes, their functions and structures remain mostly unknown. Here we present the cryogenic electron microscopy structure of the supercomplex I + III2 from Vigna radiata (mung bean). The structure contains the full subunit complement of complex I, including a newly assigned, plant-specific subunit. It also shows differences in the mitochondrial processing pe...
Mitochondrial electron transport chain complexes are organized into supercomplexes responsible for c...
AbstractRespiratory chain complexes are fragments of larger structural and functional units, the res...
The mitochondrial NADH dehydrogenase complex (complex I) has a molecular mass of about 1000 kDa and ...
Mitochondrial complex III (CIII2) and complex IV (CIV), which can associate into a higher-order supe...
Protein complexes of the mitochondrial respiratory chain assemble into respiratory supercomplexes. H...
Respiration, an essential metabolic process, provides cells with chemical energy. In eukaryotes, res...
We used electron cryo-tomography and subtomogram averaging to investigate the structure of complex I...
Protein complexes of the mitochondrial respiratory chain assemble into respiratory supercomplexes. H...
The intricate, heavily folded inner membrane of mitochondria houses the respiratory chain complexes....
Mitochondria are central to the efficient provision of energy for eukaryotic cells. The oxidative-ph...
The individual protein complexes of the oxidative phosphorylation system (OXPHOS complexes 1 to V) s...
Mitochondria are the powerhouses of eukaryotic cells and the site of essential metabolic reactions. ...
Atomic structures of mitochondrial enzyme complexes in plants are shedding light on their multiple f...
Mitochondrial complex I is the main site for electron transfer to the respiratory chain and generate...
AbstractThe individual protein complexes of the oxidative phosphorylation system (OXPHOS complexes I...
Mitochondrial electron transport chain complexes are organized into supercomplexes responsible for c...
AbstractRespiratory chain complexes are fragments of larger structural and functional units, the res...
The mitochondrial NADH dehydrogenase complex (complex I) has a molecular mass of about 1000 kDa and ...
Mitochondrial complex III (CIII2) and complex IV (CIV), which can associate into a higher-order supe...
Protein complexes of the mitochondrial respiratory chain assemble into respiratory supercomplexes. H...
Respiration, an essential metabolic process, provides cells with chemical energy. In eukaryotes, res...
We used electron cryo-tomography and subtomogram averaging to investigate the structure of complex I...
Protein complexes of the mitochondrial respiratory chain assemble into respiratory supercomplexes. H...
The intricate, heavily folded inner membrane of mitochondria houses the respiratory chain complexes....
Mitochondria are central to the efficient provision of energy for eukaryotic cells. The oxidative-ph...
The individual protein complexes of the oxidative phosphorylation system (OXPHOS complexes 1 to V) s...
Mitochondria are the powerhouses of eukaryotic cells and the site of essential metabolic reactions. ...
Atomic structures of mitochondrial enzyme complexes in plants are shedding light on their multiple f...
Mitochondrial complex I is the main site for electron transfer to the respiratory chain and generate...
AbstractThe individual protein complexes of the oxidative phosphorylation system (OXPHOS complexes I...
Mitochondrial electron transport chain complexes are organized into supercomplexes responsible for c...
AbstractRespiratory chain complexes are fragments of larger structural and functional units, the res...
The mitochondrial NADH dehydrogenase complex (complex I) has a molecular mass of about 1000 kDa and ...