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FEBS Letters|May 17, 2000
FTIR spectroscopy of complexes formed between metarhodopsin II and C-terminal peptides from the G-protein alpha- and gamma-subunitsF Bartl, E Ritter, K P HofmannEuropean Biophysics Journal : EBJ|May 8, 1999
Proton relay system in the active site of maltodextrinphosphorylase via hydrogen bonds with large proton polarizability: an FT-IR difference spectroscopy studyF Bartl, D Palm, R Schinzel, et al.Biochemical and Biophysical Research Communications|February 13, 1997
Model molecules for the active centre of alcoholdehydrogenases--an FT-IR studyB Brzezinski, H Urjasz, G Zundel, et al.American Industrial Hygiene Association Journal|December 1, 1975
Control of cobalt exposures during wet process tungsten carbide grindingM E Lichtenstein, F Bartl, R T PierceBiophysical Journal|January 1, 1995
The F0 complex of the ATP synthase of Escherichia coli contains a proton pathway with large proton polarizability caused by collective proton fluctuationF Bartl, G Deckers-Hebestreit, K Altendorf, et al.Biopolymers|May 9, 2001
7Li-NMR and FTIR studies of lithium, potassium, rubidium, and cesium complexes with ionophore lasalocid in solutionR Pankiewicz, G Schroeder, B Gierczyk, et al.The Journal of Biological Chemistry|April 24, 2001
Mechanism of rhodopsin activation as examined with ring-constrained retinal analogs and the crystal structure of the ground state proteinG F Jang, V Kuksa, S Filipek, et al.Pageof 1