AbstractThe photocycle and the proton pumping kinetics of bacteriorhodopsin, as well as the transfer rate of protons from the membrane surface into the aqueous bulk phase were examined for purple membranes in water and in ice. In water, the optical pH indicator pyranine residing in the aqueous bulk phase monitors the H+-release later than the pH indicator fluorescein covalently linked to the extracellular surface of BR. In the frozen state, however, pyranine responds to the ejected H+ as fast as fluorescein attached to BR, demonstrating that the surface/bulk transfer is in ice no longer rate limiting. The pumped H+ appears at the extracellular surface during the transition of the photocycle intermediate L550 to the intermediate M412. The Ar...
AbstractThe kinetics and stoichiometry of light-induced proton release in purple membrane suspension...
AbstractThe dynamics of proton transfer between the surface of purple membrane and the aqueous bulk ...
ABSTRACT Protonated networks of internal water molecules appear to be involved in proton transfer in...
AbstractThe photocycle and the proton pumping kinetics of bacteriorhodopsin, as well as the transfer...
AbstractThe dynamics of proton transfer between the surface of purple membrane and the aqueous bulk ...
The dynamics of proton transfer between the surface of purple membrane and the aqueous bulk have rec...
The mechanism of proton release to the bulk during the photocycle of bacteriorhodopsin has been stud...
The cytoplasmic surface of the BR (initial) state of bacteriorhodopsin is characterized by a cluster...
The mechanism of proton release to the bulk during the photocycle of bacteriorhodopsin has been stud...
In dried oriented samples of purple membranes isolated from Halobacterium halobium the Arrhenius par...
AbstractBacteriorhodopsin is probably the best understood proton pump so far and is considered to be...
The mechanism of proton release to the bulk during the photocycle of bacteriorhodopsin has been stud...
Bacteriorhodopsin is probably the best understood proton pump so far and is considered to be a model...
AbstractBacteriorhodopsin is probably the best understood proton pump so far and is considered to be...
AbstractThe kinetics and stoichiometry of light-induced proton release in purple membrane suspension...
AbstractThe kinetics and stoichiometry of light-induced proton release in purple membrane suspension...
AbstractThe dynamics of proton transfer between the surface of purple membrane and the aqueous bulk ...
ABSTRACT Protonated networks of internal water molecules appear to be involved in proton transfer in...
AbstractThe photocycle and the proton pumping kinetics of bacteriorhodopsin, as well as the transfer...
AbstractThe dynamics of proton transfer between the surface of purple membrane and the aqueous bulk ...
The dynamics of proton transfer between the surface of purple membrane and the aqueous bulk have rec...
The mechanism of proton release to the bulk during the photocycle of bacteriorhodopsin has been stud...
The cytoplasmic surface of the BR (initial) state of bacteriorhodopsin is characterized by a cluster...
The mechanism of proton release to the bulk during the photocycle of bacteriorhodopsin has been stud...
In dried oriented samples of purple membranes isolated from Halobacterium halobium the Arrhenius par...
AbstractBacteriorhodopsin is probably the best understood proton pump so far and is considered to be...
The mechanism of proton release to the bulk during the photocycle of bacteriorhodopsin has been stud...
Bacteriorhodopsin is probably the best understood proton pump so far and is considered to be a model...
AbstractBacteriorhodopsin is probably the best understood proton pump so far and is considered to be...
AbstractThe kinetics and stoichiometry of light-induced proton release in purple membrane suspension...
AbstractThe kinetics and stoichiometry of light-induced proton release in purple membrane suspension...
AbstractThe dynamics of proton transfer between the surface of purple membrane and the aqueous bulk ...
ABSTRACT Protonated networks of internal water molecules appear to be involved in proton transfer in...