The overall structure of V-ATPase complexes resembles that of F-type ATPases, but the stalk region is different and more complex. Database searches followed by sequence analysis of the five water-soluble stalk region subunits C-G revealed that (i) to date V-ATPases are found in 16 bacterial species, (ii) bacterial V-ATPases are closer to archaeal A-ATPases than to eukaryotic V-ATPases, and (iii) different groups of bacterial V-ATPases exist. Inconsistencies in the nomenclature of types and subunits are addressed. Attempts to assign subunit positions in V-ATPases based on biochemical experiments, chemical cross-linking, and electron microscopy are discussed. A structural model for prokaryotic and eukaryotic V-ATPases is proposed. The prokary...
F- and V-type ATPases are central enzymes in energy metabolism that couple synthesis or hydrolysis o...
Co-reconstitution of subunits E and G of the yeast V-ATPase and the α and β subunits of the F1-ATPas...
The structure of V- and F-ATPases/ATP synthases is remarkably conserved throughout evolution. Sequen...
The overall structure of V-ATPase complexes resembles that of F-type ATPases, but the stalk region i...
The overall structure of V-ATPase complexes resembles that of F-type ATPases, but the stalk region i...
The overall structure of V-ATPase complexes resembles that of F-type ATPases, but the stalk region i...
During the last decades impressive progress has been made in understanding of the catalytic mechanis...
The Na+-pumping V-ATPase complex of the thermophilic bacterium Caloramator fervidus was purified and...
F-type and V-type ATPases couple synthesis or hydrolysis of ATP to the translocation of H+ or Na+ ac...
The rotary ATPase family is comprised of the ATP synthase (F-ATPase), vacuolar ATPase (V-ATPase) and...
The vacuole-type ATPases (V-ATPases) exist in various intracellular compartments of eukaryotic cells...
AbstractVma5p (subunit C) of the yeast V-ATPase was produced in Escherichia coli and purified to hom...
V-ATPases are multisubunit ATP-dependent proton pumps consisting of two domains: a peripheral V1 sec...
Adenosine triphosphate (ATP) is the molecular currency of intracellular energy transfer in living or...
F- and V-type ATPases are central enzymes in energy metabolism that couple synthesis or hydrolysis o...
Co-reconstitution of subunits E and G of the yeast V-ATPase and the α and β subunits of the F1-ATPas...
The structure of V- and F-ATPases/ATP synthases is remarkably conserved throughout evolution. Sequen...
The overall structure of V-ATPase complexes resembles that of F-type ATPases, but the stalk region i...
The overall structure of V-ATPase complexes resembles that of F-type ATPases, but the stalk region i...
The overall structure of V-ATPase complexes resembles that of F-type ATPases, but the stalk region i...
During the last decades impressive progress has been made in understanding of the catalytic mechanis...
The Na+-pumping V-ATPase complex of the thermophilic bacterium Caloramator fervidus was purified and...
F-type and V-type ATPases couple synthesis or hydrolysis of ATP to the translocation of H+ or Na+ ac...
The rotary ATPase family is comprised of the ATP synthase (F-ATPase), vacuolar ATPase (V-ATPase) and...
The vacuole-type ATPases (V-ATPases) exist in various intracellular compartments of eukaryotic cells...
AbstractVma5p (subunit C) of the yeast V-ATPase was produced in Escherichia coli and purified to hom...
V-ATPases are multisubunit ATP-dependent proton pumps consisting of two domains: a peripheral V1 sec...
Adenosine triphosphate (ATP) is the molecular currency of intracellular energy transfer in living or...
F- and V-type ATPases are central enzymes in energy metabolism that couple synthesis or hydrolysis o...
Co-reconstitution of subunits E and G of the yeast V-ATPase and the α and β subunits of the F1-ATPas...
The structure of V- and F-ATPases/ATP synthases is remarkably conserved throughout evolution. Sequen...