Two rate-limiting mechanisms have been proposed to explain the gramicidin channel facilitated decay of the pH difference across vesicular membrane (delta pH) in the pH region 6–8 and salt (MCI, M+ = K+, Na+) concentration range 50–300 mM. 1) At low pH conditions (approximately 6), H+ transport through the gramicidin channel predominantly limits the delta pH decay rate. 2) At higher pH conditions (approximately 7.5), transport of a deprotonated species (but not through the channel) predominantly limits the rate. The second mechanism has been suggested to be the hydroxyl ion propogation through water chains across the bilayer by hydrogen bond exchange. In both mechanisms alkali metal ion transport providing the compensating flux takes place t...
The study of proton conductance across artificial membranes has revealed a surprisingly high permeab...
The study of proton conductance across artificial membranes has revealed a surprisingly high permeab...
The study of proton conductance across artificial membranes has revealed a surprisingly high permeab...
AbstractThe transfer of protons in water wires was studied in native gramicidin A (gA), and in the S...
AbstractThe studies on the decay of the pH difference, ΔpH, across soyabean phospholipid vesicular m...
AbstractProton conductance (gH) in single SS stereoisomers of dioxolane-linked gramicidin A (gA) cha...
AbstractThe transfer of protons in water wires was studied in native gramicidin A (gA), and in the S...
AbstractThe studies on the decay of the pH difference, ΔpH, across soyabean phospholipid vesicular m...
The results of Decker and Levitt (1987) suggest that the conductance of H+ ion through the gramicidi...
AbstractThe decay of the pH difference (ΔpH) across soybean phospholipid vesicular membrane by ionop...
The addition of 2 M formic acid at pH 3.75 increased the single channel H+ ion conductance of gramic...
AbstractMaintenance of electrochemical potential gradients across lipid membranes is critical for si...
AbstractProton transport on water wires, of interest for many problems in membrane biology, is analy...
Rates of M+/H+ exchange (M+ = K+, Na+) across phospholipid membranes by ionophore mediated electrone...
The surface potential of biological membranes seems to have influence on the ion transport across th...
The study of proton conductance across artificial membranes has revealed a surprisingly high permeab...
The study of proton conductance across artificial membranes has revealed a surprisingly high permeab...
The study of proton conductance across artificial membranes has revealed a surprisingly high permeab...
AbstractThe transfer of protons in water wires was studied in native gramicidin A (gA), and in the S...
AbstractThe studies on the decay of the pH difference, ΔpH, across soyabean phospholipid vesicular m...
AbstractProton conductance (gH) in single SS stereoisomers of dioxolane-linked gramicidin A (gA) cha...
AbstractThe transfer of protons in water wires was studied in native gramicidin A (gA), and in the S...
AbstractThe studies on the decay of the pH difference, ΔpH, across soyabean phospholipid vesicular m...
The results of Decker and Levitt (1987) suggest that the conductance of H+ ion through the gramicidi...
AbstractThe decay of the pH difference (ΔpH) across soybean phospholipid vesicular membrane by ionop...
The addition of 2 M formic acid at pH 3.75 increased the single channel H+ ion conductance of gramic...
AbstractMaintenance of electrochemical potential gradients across lipid membranes is critical for si...
AbstractProton transport on water wires, of interest for many problems in membrane biology, is analy...
Rates of M+/H+ exchange (M+ = K+, Na+) across phospholipid membranes by ionophore mediated electrone...
The surface potential of biological membranes seems to have influence on the ion transport across th...
The study of proton conductance across artificial membranes has revealed a surprisingly high permeab...
The study of proton conductance across artificial membranes has revealed a surprisingly high permeab...
The study of proton conductance across artificial membranes has revealed a surprisingly high permeab...