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Biochemistry. Biokhimiia|December 18, 2001
Infrared methods for monitoring the protonation state of carboxylic amino acids in the photocycle of bacteriorhodopsinA K DioumaevBiophysical Chemistry|October 13, 2006
Evaluation of intrinsic chemical kinetics and transient product spectra from time-resolved spectroscopic dataA K DioumaevActa Biochimica Et Biophysica Hungarica|January 1, 1988
Low temperature restriction of charge shift in the primary reaction of the bacteriorhodopsin photocycleA K Dioumaev, L KeszthelyiPhotochemistry and Photobiology|January 9, 1998
Nano- and microsecond time-resolved FTIR spectroscopy of the halorhodopsin photocycleA K Dioumaev, M S BraimanBiophysical Journal|February 1, 1996
A large photolysis-induced pKa increase of the chromophore counterion in bacteriorhodopsin: implications for ion transport mechanisms of retinal proteinsM S Braiman, A K Dioumaev, J R LewisBiochemistry|September 19, 2001
Coupling of the reisomerization of the retinal, proton uptake, and reprotonation of Asp-96 in the N photointermediate of bacteriorhodopsinA K Dioumaev, L S Brown, R Needleman, et al.Biochemistry|July 17, 1998
Partitioning of free energy gain between the photoisomerized retinal and the protein in bacteriorhodopsinA K Dioumaev, L S Brown, R Needleman, et al.Biochemistry|April 2, 1998
Local-access model for proton transfer in bacteriorhodopsinL S Brown, A K Dioumaev, R Needleman, et al.Biochemistry|August 6, 1999
Fourier transform infrared spectra of a late intermediate of the bacteriorhodopsin photocycle suggest transient protonation of Asp-212A K Dioumaev, L S Brown, R Needleman, et al.Biophysical Journal|September 3, 1998
Connectivity of the retinal Schiff base to Asp85 and Asp96 during the bacteriorhodopsin photocycle: the local-access modelL S Brown, A K Dioumaev, R Needleman, et al.Pageof 2