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Biochemistry|July 2, 1996
Allosteric intermediates in hemoglobin. 1. Nanosecond time-resolved circular dichroism spectroscopyS C Björling, R A Goldbeck, S J Paquette, et al.
Biochemistry|February 13, 1990
Nanosecond photolysis of rhodopsin: evidence for a new, blue-shifted intermediateS J Hug, J W Lewis, C M Einterz, et al.
Biophysical Journal|October 1, 1993
Time-resolved absorption and magnetic circular dichroism spectroscopy of cytochrome c3 from DesulfovibrioD B O'Connor, R A Goldbeck, J H Hazzard, et al.
Biochemistry|February 19, 1991
Effects of detergent environments on the photocycle of purified monomeric bacteriorhodopsinS J Milder, T E Thorgeirsson, L J Miercke, et al.
Investigative Ophthalmology & Visual Science|June 1, 1991
Spectrophotometric quantitation of rhodopsin in the human retinaF J van Kuijk, J W Lewis, P Buck, et al.
Biochemical and Biophysical Research Communications|July 31, 1987
Retinal rod GTPase turnover rate increases with concentration: a key to the control of visual excitation?E A Dratz, J W Lewis, L E Schaechter, et al.
Proceedings of the National Academy of Sciences of the United States of America|August 5, 1997
Chromophore structural changes in rhodopsin from nanoseconds to microseconds following pigment photolysisS Jäger, J W Lewis, T A Zvyaga, et al.
The Journal of Biological Chemistry|November 3, 1995
Carbon monoxide religation kinetics to hemoglobin S polymers following ligand photolysisD B Shapiro, R M Esquerra, R A Goldbeck, et al.
Biophysical Journal|January 1, 1995
Nanosecond optical rotatory dispersion spectroscopy: application to photolyzed hemoglobin-CO kineticsD B Shapiro, R A Goldbeck, D Che, et al.
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