AbstractA Scatchard plot for the strongly bound Eu3+ to deionized bacteriorhodopsin (bR) was made using a method based on measuring the concentration of unbound Eu3+ from its fluorescence intensity. The results suggest that the first mole of Eu3+ added to a mole of bR is strongly bound by displacing 2–3 protons. In order to reconcile this result with the previous time-resolved fluorescence studies on Eu3+-regenerated bR, which showed the pressence of 3 sites of comparable binding constants, one is forced to conclude that the emission from the strongly bound Eu3+ is completely quenched, e.g. by energy transfer to the retinal. For this to take place, the Eu3+ must be within a few A from the retinal, i.e. within the retinal pocket (the active ...
AbstractRegeneration of bacteriorhodopsin (bR) from the M intermediate via a new intermediate P has ...
Bacteriorhodopsin has a polar cluster of amino acids surrounding the retinal molecule, which is resp...
The binding of Zn2+ in Zn2+-regenerated bacteriorhodopsin (bR) was studied under various conditions ...
AbstractA Scatchard plot for the strongly bound Eu3+ to deionized bacteriorhodopsin (bR) was made us...
In our continuing effort to characterize the metal cation binding in bacteriorhodopsin (bR) using Ca...
AbstractWe have studied the effect of monomerization of the purple membrane lattice, as well as remo...
AbstractThe Asp-85 residue, located in the vicinity of the retinal chromophore, plays a key role in ...
The binding constants, K1 and K2, and the number of Ca2+ ions in each of the two high affinity sites...
Divalent cations are involved in the function of bacteriorhodopsin (bR) as a light-driven proton pum...
The surface potential of purple membranes and the release of protons during the bacteriorhodopsin ph...
AbstractWe have investigated the role of the native lipids on bacteriorhodopsin (bR) proton transfer...
AbstractThe spectrum (the purple↔blue transition) and function of the light-driven proton pump bacte...
Proton translocation across membranes is vital to all kingdoms of life. Mechanistically, it relies o...
AbstractThe high-affinity cation-binding sites of bacteriorhodopsin (bR) were examined by solid-stat...
AbstractIn the photocycle of bacteriorhodopsin (bR), light-induced transfer of a proton from the Sch...
AbstractRegeneration of bacteriorhodopsin (bR) from the M intermediate via a new intermediate P has ...
Bacteriorhodopsin has a polar cluster of amino acids surrounding the retinal molecule, which is resp...
The binding of Zn2+ in Zn2+-regenerated bacteriorhodopsin (bR) was studied under various conditions ...
AbstractA Scatchard plot for the strongly bound Eu3+ to deionized bacteriorhodopsin (bR) was made us...
In our continuing effort to characterize the metal cation binding in bacteriorhodopsin (bR) using Ca...
AbstractWe have studied the effect of monomerization of the purple membrane lattice, as well as remo...
AbstractThe Asp-85 residue, located in the vicinity of the retinal chromophore, plays a key role in ...
The binding constants, K1 and K2, and the number of Ca2+ ions in each of the two high affinity sites...
Divalent cations are involved in the function of bacteriorhodopsin (bR) as a light-driven proton pum...
The surface potential of purple membranes and the release of protons during the bacteriorhodopsin ph...
AbstractWe have investigated the role of the native lipids on bacteriorhodopsin (bR) proton transfer...
AbstractThe spectrum (the purple↔blue transition) and function of the light-driven proton pump bacte...
Proton translocation across membranes is vital to all kingdoms of life. Mechanistically, it relies o...
AbstractThe high-affinity cation-binding sites of bacteriorhodopsin (bR) were examined by solid-stat...
AbstractIn the photocycle of bacteriorhodopsin (bR), light-induced transfer of a proton from the Sch...
AbstractRegeneration of bacteriorhodopsin (bR) from the M intermediate via a new intermediate P has ...
Bacteriorhodopsin has a polar cluster of amino acids surrounding the retinal molecule, which is resp...
The binding of Zn2+ in Zn2+-regenerated bacteriorhodopsin (bR) was studied under various conditions ...