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Biochemistry|March 22, 1994
Complete identification of C = O stretching vibrational bands of protonated aspartic acid residues in the difference infrared spectra of M and N intermediates versus bacteriorhodopsinJ Sasaki, J K Lanyi, 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|March 4, 1998
Interaction of the protonated Schiff base with the peptide backbone of valine 49 and the intervening water molecule in the N photointermediate of bacteriorhodopsinY Yamazaki, H Kandori, R Needleman, et al.Biochemistry|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|February 22, 1994
Interaction of aspartate-85 with a water molecule and the protonated Schiff base in the L intermediate of bacteriorhodopsin: a Fourier-transform infrared spectroscopic studyA Maeda, J Sasaki, Y Yamazaki, et al.Gene|May 31, 1990
An efficient system for the synthesis of bacteriorhodopsin in Halobacterium halobiumB F Ni, M Chang, A Duschl, et al.Biochemistry|October 8, 1997
Ultraviolet resonance Raman spectra of Trp-182 and Trp-189 in bacteriorhodopsin: novel information on the structure of Trp-182 and its steric interaction with retinalS Hashimoto, K Obata, H Takeuchi, 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.Biochemistry|April 2, 1996
A linkage of the pKa's of asp-85 and glu-204 forms part of the reprotonation switch of bacteriorhodopsinH T Richter, 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 9