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Biochemistry|April 2, 1996
Hydrogen bonds of water and C==O groups coordinate long-range structural changes in the L photointermediate of bacteriorhodopsinY Yamazaki, S Tuzi, H Saitô, et al.Journal of Biochemistry|May 2, 2000
Irreversible conformational change of bacterio-opsin induced by binding of retinal during its reconstitution to bacteriorhodopsin, as studied by (13)C NMRS Yamaguchi, S Tuzi, M Tanio, et al.Optics Letters|December 15, 2007
Improved sensitivity in blue-membrane bacteriorhodopsin filmsJ E Millerd, A Rohrbacher, N J Brock, et al.Journal of Molecular Biology|January 7, 1998
Transient channel-opening in bacteriorhodopsin: an EPR studyT E Thorgeirsson, W Xiao, L S Brown, et al.Biochemistry|November 7, 1995
Light-driven chloride ion transport by halorhodopsin from Natronobacterium pharaonis. 1. The photochemical cycleG Váró, L S Brown, J Sasaki, et al.Biochemistry|May 21, 1996
Effects of arginine-82 on the interactions of internal water molecules in bacteriorhodopsinM Hatanaka, J Sasaki, H Kandori, et al.Biochemistry|October 11, 1994
The retinal Schiff base-counterion complex of bacteriorhodopsin: changed geometry during the photocycle is a cause of proton transfer to aspartate 85L S Brown, Y Gat, M Sheves, et al.The Journal of Biological Chemistry|June 25, 1991
Properties of Asp212----Asn bacteriorhodopsin suggest that Asp212 and Asp85 both participate in a counterion and proton acceptor complex near the Schiff baseR Needleman, M Chang, B Ni, et al.Biophysical Journal|August 31, 1999
Conformational changes of bacteriorhodopsin along the proton-conduction chain as studied with (13)C NMR of [3-(13)C]Ala-labeled protein: arg(82) may function as an information mediatorM Tanio, S Tuzi, S Yamaguchi, et al.European Journal of Biochemistry|April 12, 2001
Cytoplasmic surface structure of bacteriorhodopsin consisting of interhelical loops and C-terminal alpha helix, modified by a variety of environmental factors as studied by (13)C-NMRS Yamaguchi, K Yonebayashi, H Konishi, et al.Pageof 9