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Biochemistry|July 2, 1996
Allosteric intermediates in hemoglobin. 2. Kinetic modeling of HbCO photolysisR A Goldbeck, S J Paquette, S C Björling, et al.
Biophysical Journal|May 1, 1988
Time-resolved circular dichroism and absorption studies of the photolysis reaction of (carbonmonoxy)myoglobinS J Milder, S C Bjorling, I D Kuntz, et al.
Vision Research|September 21, 2000
Effect of NADPH on formation and decay of human metarhodopsin III at physiological temperaturesI Szundi, J W Lewis, F J van Kuijk, et al.
Biophysical Journal|October 1, 1986
Effect of sonication on nucleotide-dependent light scattering changes in retinal rod outer segment suspensionsJ W Lewis, L E Schaechter, E A Dratz, et al.
Photochemistry and Photobiology|December 1, 1992
Photolysis of rhodopsin results in deprotonation of its retinal Schiff's base prior to formation of metarhodopsin IIT E Thorgeirsson, J W Lewis, S E Wallace-Williams, et al.
Photochemistry and Photobiology|August 1, 1995
Low-temperature trapping of early photointermediates of alpha-isorhodopsinT L Mah, J W Lewis, M Sheves, et al.
Biochemistry|December 23, 1998
Spectroscopic evidence for nanosecond protein relaxation after photodissociation of myoglobin-COR M Esquerra, R A Goldbeck, D B Kim-Shapiro, et al.
Biochemistry|December 3, 1991
Photolysis intermediates of human rhodopsinJ W Lewis, F J van Kuijk, T E Thorgeirsson, et al.
Journal of the American Chemical Society|October 11, 2001
Steric barrier to bathorhodopsin decay in 5-demethyl and mesityl analogues of rhodopsinJ W Lewis, G B Fan, M Sheves, et al.
Vision Research|January 1, 1997
Metarhodopsin III formation and decay kinetics: comparison of bovine and human rhodopsinJ W Lewis, F J van Kuijk, J A Carruthers, et al.
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