Leonid Brown
www.uoguelph.ca
0000-0002-5614-8317
University of Guelph
92 papers found
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Conversion of Bacteriorhodopsin Into a Chloride-Ion Pump
The Retinal Schiff Base-Counterion Complex of Bacteriorhodopsin: Changed Geometry during the Photocycle Is a Cause of Proton Transfer to Aspartate 85
The Proton Transfers in the Cytoplasmic Domain of Bacteriorhodopsin are Facilitated by a Cluster of Interacting Residues
Proton-Transfer in the Cytoplasmic Region of Bacteriorhodopsin Is Facilitated by a Cluster of Interacting Residues
Relationship of proton uptake on the cytoplasmic surface and reisomerization of the retinal in the bacteriorhodopsin photocycle: An attempt to understand the complex kinetics of the pH changes and the N and O intermediates
Photoreaction of the N intermediate of bacteriorhodopsin, and its relationship to the decay kinetics of the M intermediate
Estimated acid dissociation constants of the Schiff base, Asp-85, and Arg-82 during the bacteriorhodopsin photocycle.
Light adaptation blockage in dehydrated purple membrane does not result from retinal isomerization inhibition
Spectral Properties of Bacteriorhodopsin Analog Obtained by Reconstitution of Bacterioopsin With 4-Keto-Retinal Invivo
Model Devices Based on Bacteriorhodopsin - Prototypes of Position-Sensitive Photodetectors
Light Adaptation of Bacteriorhodopsin Analog With 4-Keto-Retinal
Investigation of the Photochemical Cycle of a Bacteriorhodopsin Analog Containing the 4-Keto-Retinal Residue
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