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Biophysical Journal|August 1, 1989
Surface pH controls purple-to-blue transition of bacteriorhodopsin. A theoretical model of purple membrane surfaceI Szundi, W StoeckeniusProceedings of the National Academy of Sciences of the United States of America|June 1, 1987
Effect of lipid surface charges on the purple-to-blue transition of bacteriorhodopsinI Szundi, W StoeckeniusBiophysical Journal|August 1, 1988
Purple-to-blue transition of bacteriorhodopsin in a neutral lipid environmentI Szundi, W StoeckeniusBiochemistry|January 28, 1999
Intermediates in the reaction of fully reduced cytochrome c oxidase with dioxygenA Sucheta, I Szundi, O EinarsdóttirBiochemistry|May 1, 2001
Near-infrared time-resolved optical absorption studies of the reaction of fully reduced cytochrome c oxidase with dioxygenI Szundi, G L Liao, O EinarsdóttirBiochemistry|November 23, 2000
A new approach for studying fast biological reactions involving dioxygen: the reaction of fully reduced cytochrome c oxidase with O2N Van Eps, I Szundi, O EinarsdóttirBiochemistry|March 13, 1999
Proton and electron transfer during the reduction of molecular oxygen by fully reduced cytochrome c oxidase: a flow-flash investigation using optical multichannel detectionS Paula, A Sucheta, I Szundi, et al.Biophysical Journal|February 13, 2001
Multicolored protein conformation states in the photocycle of transducer-free sensory rhodopsin-II Szundi, T E Swartz, R A BogomolniBiochemistry|July 13, 2000
Structural constraints imposed by a non-native disulfide cause reversible changes in rhodopsin photointermediate kineticsJ W Lewis, I Szundi, D S KligerBiophysical Journal|August 1, 1997
Deriving reaction mechanisms from kinetic spectroscopy. Application to late rhodopsin intermediatesI Szundi, J W Lewis, D S KligerPageof 3