AbstractPlasma membranes isolated from the marine unicellular alga Tetraselmis (Platymonas) viridis were phosphorylated by [γ-32P]ATP, and membrane proteins were then analyzed by PAGE in SDS, under acidic conditions. Three radioactive components with apparent molecular masses of 100 kDa, 76 kDa, and 26 kDa were detected. The phosphorylation of one of them, the 100 kDa polypeptide, was specifically stimulated by Na+. Vanadate almost completely inhibited the Na+-mediated phosphorylation of the peptide. The phosphate bound to this peptide underwent rapid turnover and was discharged by hydroxylamine. The 100 kDa phosphopeptide was sensitive to ADP. The conclusion is drawn that the 100 kDa phosphopeptide is a phosphorylated intermediate of the N...
Discovery of the light-driven sodium-motive pump Na+-rhodopsin (NaR) has initiated studies of the mo...
Membrane-bound pyrophosphatase (mPPase) found in microbes and plants is a membrane H+ pump that tran...
AbstractThe ENA1 gene of Saccharomyces cerevisiae encodes a putative ATPase necessary for Na+ efflux...
AbstractPlasma membranes isolated from the marine unicellular alga Tetraselmis (Platymonas) viridis ...
AbstractSodium accumulation by the Na+-ATPase in the plasma membrane (PM) vesicles isolated from the...
Popova L, Balnokin Y, Dietz K-J, Gimmler H. Na+-ATPase from the plasma membrane of the marine alga T...
AbstractThe ATP-supported 22NA+ uptake by plasma membrane vesicles from the marine microalga, Platym...
AbstractProton transport by the vanadate-sensitive ATPase in plasma membrane (PM) vesicles from the ...
AbstractThe hypothesis that the primary Na+-pump, Na+-ATPase, functions in the plasma membrane (PM) ...
AbstractSubcellular vesicles of Vibrio alginolyticus hydrolyse ATP and accumulate Na+ in an ATP-depe...
Energy transduction in the anaerobic, thermophilic bacterium Clostridium fervidus relies exclusively...
Highly purified plasma membranes were isolated from Heterosigma akashiwo cells, a marine raphidophyc...
AbstractAn F0F1-ATPase was isolated from the membranes of the marine bacterium Vibrio alginolyticus....
AbstractAddition of ATP leads to the accumulation of the permeant anion PCB− by sub-bacterial vesicl...
AbstractV-ATPases make up a family of proton pumps distributed widely from bacteria to higher organi...
Discovery of the light-driven sodium-motive pump Na+-rhodopsin (NaR) has initiated studies of the mo...
Membrane-bound pyrophosphatase (mPPase) found in microbes and plants is a membrane H+ pump that tran...
AbstractThe ENA1 gene of Saccharomyces cerevisiae encodes a putative ATPase necessary for Na+ efflux...
AbstractPlasma membranes isolated from the marine unicellular alga Tetraselmis (Platymonas) viridis ...
AbstractSodium accumulation by the Na+-ATPase in the plasma membrane (PM) vesicles isolated from the...
Popova L, Balnokin Y, Dietz K-J, Gimmler H. Na+-ATPase from the plasma membrane of the marine alga T...
AbstractThe ATP-supported 22NA+ uptake by plasma membrane vesicles from the marine microalga, Platym...
AbstractProton transport by the vanadate-sensitive ATPase in plasma membrane (PM) vesicles from the ...
AbstractThe hypothesis that the primary Na+-pump, Na+-ATPase, functions in the plasma membrane (PM) ...
AbstractSubcellular vesicles of Vibrio alginolyticus hydrolyse ATP and accumulate Na+ in an ATP-depe...
Energy transduction in the anaerobic, thermophilic bacterium Clostridium fervidus relies exclusively...
Highly purified plasma membranes were isolated from Heterosigma akashiwo cells, a marine raphidophyc...
AbstractAn F0F1-ATPase was isolated from the membranes of the marine bacterium Vibrio alginolyticus....
AbstractAddition of ATP leads to the accumulation of the permeant anion PCB− by sub-bacterial vesicl...
AbstractV-ATPases make up a family of proton pumps distributed widely from bacteria to higher organi...
Discovery of the light-driven sodium-motive pump Na+-rhodopsin (NaR) has initiated studies of the mo...
Membrane-bound pyrophosphatase (mPPase) found in microbes and plants is a membrane H+ pump that tran...
AbstractThe ENA1 gene of Saccharomyces cerevisiae encodes a putative ATPase necessary for Na+ efflux...