Vacuolar H+-ATPase is a large multi-subunit protein that mediates ATP-driven vectorial H+ transport across the membranes. It is widely distributed and present in virtually all eukaryotic cells in intracellular membranes or in the plasma membrane of specialized cells. In subcellular organelles, ATPase is responsible for the acidification of the vesicular interior, which requires an intraorganellar acidic pH to maintain optimal enzyme activity. Control of vacuolar H+-ATPase depends on the potential difference across the membrane in which the proton ATPase is inserted. Since the transport performed by H+-ATPase is electrogenic, translocation of H+-ions across the membranes by the pump creates a lumen-positive voltage in the absence of a neutra...
AbstractThe vacuolar (H+)-ATPases (or V-ATPases) are ATP-dependent proton pumps that function to aci...
AbstractSeven widely documented mechanisms of chloride transport across plasma membranes are: anion-...
Vacuolar H+-ATPase (V-ATPase) is a highly evolutionarily conserved enzyme, which is distributed with...
Vacuolar H+-ATPase is a large multi-subunit protein that mediates ATP-driven vectorial H+ transport ...
Vacuolar H+-ATPase is a large multi-subunit protein that mediates ATP-driven vectorial H+ transport ...
AbstractThe vacuolar (H+)-ATPases (or V-ATPases) function to acidify intracellular compartments in e...
Background/Aims: It has been widely accepted that chloride ions moving along chloride channels act t...
Background/Aims: It has been widely accepted that chloride ions moving along chloride channels act t...
AbstractThe vacuolar (H+)-ATPases (or V-ATPases) function to acidify intracellular compartments in e...
Background/Aims: It has been widely accepted that chloride ions moving along chloride channels act t...
AbstractWe report the effects of ATP and Mg2+ on the activity of intracellular chloride channels. Mi...
AbstractThe vacuolar H+-ATPase (V-ATPase) was first identified as an electrogenic proton pump that a...
Degradative organelles contain enzymes that function optimally at the acidic pH generated by the V-A...
AbstractThe vacuolar (H+)-ATPases (V-ATPases) are ATP-dependent proton pumps responsible for both ac...
AbstractThe vacuolar-type H+-ATPases (V-ATPase) are a family of multi-subunit ATP-dependent proton p...
AbstractThe vacuolar (H+)-ATPases (or V-ATPases) are ATP-dependent proton pumps that function to aci...
AbstractSeven widely documented mechanisms of chloride transport across plasma membranes are: anion-...
Vacuolar H+-ATPase (V-ATPase) is a highly evolutionarily conserved enzyme, which is distributed with...
Vacuolar H+-ATPase is a large multi-subunit protein that mediates ATP-driven vectorial H+ transport ...
Vacuolar H+-ATPase is a large multi-subunit protein that mediates ATP-driven vectorial H+ transport ...
AbstractThe vacuolar (H+)-ATPases (or V-ATPases) function to acidify intracellular compartments in e...
Background/Aims: It has been widely accepted that chloride ions moving along chloride channels act t...
Background/Aims: It has been widely accepted that chloride ions moving along chloride channels act t...
AbstractThe vacuolar (H+)-ATPases (or V-ATPases) function to acidify intracellular compartments in e...
Background/Aims: It has been widely accepted that chloride ions moving along chloride channels act t...
AbstractWe report the effects of ATP and Mg2+ on the activity of intracellular chloride channels. Mi...
AbstractThe vacuolar H+-ATPase (V-ATPase) was first identified as an electrogenic proton pump that a...
Degradative organelles contain enzymes that function optimally at the acidic pH generated by the V-A...
AbstractThe vacuolar (H+)-ATPases (V-ATPases) are ATP-dependent proton pumps responsible for both ac...
AbstractThe vacuolar-type H+-ATPases (V-ATPase) are a family of multi-subunit ATP-dependent proton p...
AbstractThe vacuolar (H+)-ATPases (or V-ATPases) are ATP-dependent proton pumps that function to aci...
AbstractSeven widely documented mechanisms of chloride transport across plasma membranes are: anion-...
Vacuolar H+-ATPase (V-ATPase) is a highly evolutionarily conserved enzyme, which is distributed with...