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Biophysical Journal|April 1, 1979
Dynamics of pH-induced spectral changes in bacteriorhodopsinS Druckmann, A Samuni, M OttolenghiBiophysical Journal|February 1, 1981
Electric dichroism in the purple membrane of Halobacterium halobiumS Druckmann, M OttolenghiBiophysical Journal|January 1, 1985
Time-resolved absorbance changes induced by fast acidification of bacteriorhodopsin in vesicle systemsS Druckmann, M Ottolenghi, R KorensteinBiophysical Journal|July 1, 1977
Electric field effects in bacteriorhodopsinR Shinar, S Druckmann, M Ottolenghi, et al.Biochemistry|September 19, 1995
Time-resolved titrations of the Schiff base and of the Asp85 residue in artificial bacteriorhodopsinsS Druckmann, M Ottolenghi, I Rousso, et al.Biochemistry|September 28, 1982
Acid-base equilibrium of the Schiff base in bacteriorhodopsinS Druckmann, M Ottolenghi, A Pande, et al.Biophysical Journal|September 1, 1993
Thermal equilibration between the M and N intermediates in the photocycle of bacteriorhodopsinS Druckmann, M P Heyn, J K Lanyi, 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|March 1, 1994
A covalent link between the chromophore and the protein backbone of bacteriorhodopsin is not required for forming a photochemically active pigment analogous to the wild typeN Friedman, S Druckmann, J Lanyi, et al.Biochemistry|September 23, 1997
Time-resolved titrations of ASP-85 in bacteriorhodopsin: the multicomponent kinetic mechanismN Friedman, I Rousso, M Sheves, et al.Pageof 12