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Biochemistry|August 3, 1993
Photoreaction of the N intermediate of bacteriorhodopsin, and its relationship to the decay kinetics of the M intermediateL S Brown, L Zimányi, R Needleman, et al.Biochemistry|December 3, 1996
Relationship of retinal configuration and internal proton transfer at the end of the bacteriorhodopsin photocycleH T Richter, R Needleman, H Kandori, et al.Journal of Molecular Biology|December 22, 2000
Light-induced rotation of a transmembrane alpha-helix in bacteriorhodopsinW Xiao, L S Brown, R Needleman, et al.Biophysical Journal|May 1, 1995
Photocycle of halorhodopsin from Halobacterium salinariumG Váró, L Zimányi, X Fan, et al.Biochemistry|September 15, 1992
Pathways of proton release in the bacteriorhodopsin photocycleL Zimányi, G Váró, M Chang, et al.Biophysical Journal|January 23, 1999
Conformational change of helix G in the bacteriorhodopsin photocycle: investigation with heavy atom labeling and x-ray diffractionT Oka, H Kamikubo, F Tokunaga, et al.Photochemistry and Photobiology|January 9, 1998
X-ray diffraction studies of bacteriorhodopsin. Determination of the positions of mercury label at several engineered cysteine residuesT Oka, H Kamikubo, F Tokunaga, et al.Photochemistry and Photobiology|December 1, 1992
The two consecutive M substates in the photocycle of bacteriorhodopsin are affected specifically by the D85N and D96N residue replacementsL Zimányi, Y Cao, M Chang, et al.Photochemistry and Photobiology|January 1, 1992
The back photoreaction of the M intermediate in the photocycle of bacteriorhodopsin: mechanism and evidence for two M speciesS Druckmann, N Friedman, J K Lanyi, et al.Biochemistry|June 11, 1996
Conformation and dynamics of [3-13C]Ala- labeled bacteriorhodopsin and bacterioopsin, induced by interaction with retinal and its analogs, as studied by 13C nuclear magnetic resonanceS Tuzi, S Yamaguchi, A Naito, et al.Pageof 9