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Annual Review of Biophysics and Biomolecular Structure|July 20, 1999
Closing in on bacteriorhodopsin: progress in understanding the moleculeU Haupts, J Tittor, D OesterheltBiochemistry|January 7, 1997
General concept for ion translocation by halobacterial retinal proteins: the isomerization/switch/transfer (IST) modelU Haupts, J Tittor, E Bamberg, et al.Journal of Molecular Biology|August 22, 1997
Chloride and proton transport in bacteriorhodopsin mutant D85T: different modes of ion translocation in a retinal proteinJ Tittor, U Haupts, C Haupts, et al.The EMBO Journal|April 15, 1996
Different modes of proton translocation by sensory rhodopsin IU Haupts, E Bamberg, D OesterheltTrends in Biochemical Sciences|February 1, 1989
Two pumps, one principle: light-driven ion transport in halobacteriaD Oesterhelt, J TittorProceedings of the National Academy of Sciences of the United States of America|April 25, 1995
The photoreceptor sensory rhodopsin I as a two-photon-driven proton pumpU Haupts, C Haupts, D OesterheltFEBS Letters|December 12, 1994
Sensory rhodopsin I photocycle intermediate SRI380 contains 13-cis retinal bound via an unprotonated Schiff baseU Haupts, W Eisfeld, M Stockburger, et al.The EMBO Journal|April 18, 1995
Chemical reconstitution of a chloride pump inactivated by a single point mutationM Rüdiger, U Haupts, K Gerwert, et al.Journal of Bioenergetics and Biomembranes|April 1, 1992
A unifying concept for ion translocation by retinal proteinsD Oesterhelt, J Tittor, E BambergThe EMBO Journal|September 1, 1985
The photocycle of the chloride pump halorhodopsin. II: Quantum yields and a kinetic modelD Oesterhelt, P Hegemann, J TittorPageof 23