F- and V-type ATPases are central enzymes in energy metabolism that couple synthesis or hydrolysis of ATP to the translocation of H+ or Na+ across biological membranes. They consist of a soluble headpiece that contains the catalytic sites and an integral membrane-bound part that conducts the ion flow. Energy coupling is thought to occur through the physical rotation of a stalk that connects the two parts of the enzyme complex. This mechanism implies that a stator-like structure prevents the rotation of the headpiece relative to the membrane-bound part. Such a structure has not been observed to date. Here, we report the projected structure of the V-type Na+-ATPase of Clostridium fervidus as determined by electron microscopy. Besides the cent...
SummaryVacuolar H+-ATPases are multisubunit complexes that operate with rotary mechanics and are ess...
AbstractATPases are unique rotary motors that are essential to all living organisms because of their...
The V-ATPase is a membrane-bound protein complex which pumps protons across the membrane to generate...
F- and V-type ATPases are central enzymes in energy metabolism that couple synthesis or hydrolysis o...
F- and V-type ATPases are central enzymes in energy metabolism that couple synthesis or hydrolysis o...
F-type and V-type ATPases couple synthesis or hydrolysis of ATP to the translocation of H+ or Na+ ac...
The Na+-pumping V-ATPase complex of the thermophilic bacterium Caloramator fervidus was purified and...
The V-type Na+-ATPase of the thermophilic, anaerobic bacterium Caloramator fervidus was purified to ...
Rotary ATPases are a family of enzymes that are thought of as molecular nanomotors and are classifie...
Vacuolar ATPases (V-ATPases) are molecular machines responsible for creating electrochemical gradien...
Adenosine triphosphate (ATP) is the molecular currency of intracellular energy transfer in living or...
During the last decades impressive progress has been made in understanding of the catalytic mechanis...
The rotary ATPase family is comprised of the ATP synthase (F-ATPase), vacuolar ATPase (V-ATPase) and...
Vacuolar H+-ATPases are multisubunit complexes that operate with rotary mechanics and are essential ...
SummaryVacuolar H+-ATPases are multisubunit complexes that operate with rotary mechanics and are ess...
AbstractATPases are unique rotary motors that are essential to all living organisms because of their...
The V-ATPase is a membrane-bound protein complex which pumps protons across the membrane to generate...
F- and V-type ATPases are central enzymes in energy metabolism that couple synthesis or hydrolysis o...
F- and V-type ATPases are central enzymes in energy metabolism that couple synthesis or hydrolysis o...
F-type and V-type ATPases couple synthesis or hydrolysis of ATP to the translocation of H+ or Na+ ac...
The Na+-pumping V-ATPase complex of the thermophilic bacterium Caloramator fervidus was purified and...
The V-type Na+-ATPase of the thermophilic, anaerobic bacterium Caloramator fervidus was purified to ...
Rotary ATPases are a family of enzymes that are thought of as molecular nanomotors and are classifie...
Vacuolar ATPases (V-ATPases) are molecular machines responsible for creating electrochemical gradien...
Adenosine triphosphate (ATP) is the molecular currency of intracellular energy transfer in living or...
During the last decades impressive progress has been made in understanding of the catalytic mechanis...
The rotary ATPase family is comprised of the ATP synthase (F-ATPase), vacuolar ATPase (V-ATPase) and...
Vacuolar H+-ATPases are multisubunit complexes that operate with rotary mechanics and are essential ...
SummaryVacuolar H+-ATPases are multisubunit complexes that operate with rotary mechanics and are ess...
AbstractATPases are unique rotary motors that are essential to all living organisms because of their...
The V-ATPase is a membrane-bound protein complex which pumps protons across the membrane to generate...