Mechanism of Proton Entry into the Cytoplasmic Section of the Proton-Conducting Channel of Bacteriorhodopsin
- 1 November 1997
- journal article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 36 (45) , 13919-13928
- https://doi.org/10.1021/bi9717542
Abstract
Bacteriorhodopsin is the light-driven proton-pumping protein of Halobacterium salinarum that extracts protons from the well-buffered cytoplasmic space within the time limits set by the photocycle turnover. The specific mechanism of the proton uptake by the cytoplasmic surface of the protein was investigated in this study by the laser-induced proton pulse technique. The purple membrane preparations were labeled by fluorescein at two residues (36 or 38) of the cytoplasmic surface of the protein, sites that are close to the orifice of the proton-conducting channel. The membranes were pulsed by protons discharged from photoexcited pyranine [Nachliel, E., Gutman, M., Kiryati, S., and Dencher, N.A. (1996) Proc. Nat Acad. Sci. U.S.A. 93, 10747-10752). The reaction of the discharged protons with the pyranine anion and the fluorescein was measured with sub-microsecond resolution. The experimental signals were reconstructed through numeric integration of differential rate equations which quantitated the rates of all proton transfer reactions between all reactants present in the system. The interaction of protons with the orifice of the cytoplasmic channel is enhanced by the exposed carboxylates of the protein. A cluster of three carboxylates acts as a strong proton attractor site while one carboxylate, identified as D36, acts as a mediator that delivers the proton to the channel. The combination of these reactions render the surface of the protein with properties of a proton-collecting antenna. The size of the collecting area is less than that of the protein's surface.Keywords
This publication has 17 references indexed in Scilit:
- TIME-RESOLVED DYNAMICS OF PROTON TRANSFER IN PROTEINOUS SYSTEMSAnnual Review of Physical Chemistry, 1997
- Quantitative evaluation of the dynamics of proton transfer from photoactivated bacteriorhodopsin to the bulkFEBS Letters, 1996
- Electron-crystallographic Refinement of the Structure of BacteriorhodopsinJournal of Molecular Biology, 1996
- Long-Range Effects on the Retinal Chromophore of Bacteriorhodopsin Caused by Surface Carboxyl Group ModificationBiochemistry, 1995
- Proton migration along the membrane surface and retarded surface to bulk transferNature, 1994
- Homologous bacterio-opsin-encoding gene expression via site-specific vector integrationGene, 1993
- Bacteriorhodopsin in iceFEBS Letters, 1990
- Model for the structure of bacteriorhodopsin based on high-resolution electron cryo-microscopyJournal of Molecular Biology, 1990
- The surface potential on the purple membrane measured using a modified bacteriorhodopsin chromophore as the spectroscopic probeFEBS Letters, 1989
- Kinetic analysis of proton transfer between reactants adsorbed to the same micelle. The effect of proximity on the rate constantsEuropean Journal of Biochemistry, 1984