Structures and spectral signatures of protonated water networks in bacteriorhodopsin
- 24 April 2007
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 104 (17) , 6980-6985
- https://doi.org/10.1073/pnas.0609229104
Abstract
Networks of internal water molecules are thought to provide proton transfer pathways in many enzymatic and photosynthetic reactions. Extremely broad absorption continua observed in recent IR spectroscopic measurements on the photodriven proton pump bacteriorhodopsin (BR) suggest such networks may also serve as proton storage and release sites for these reactions. By combining electronic structure calculations with molecular mechanical force fields, we examine the dynamics and the resulting IR spectra of two protonated water networks, H+.(H2O)3 and H+.(H2O)4, in the release pocket of the initial state of BR, which possibly serve as proton donors to the extracellular surface. For both network sizes, topologically similar structures are found, which are anchored at residues E194 and E204 and stabilized by additional hydrogen bonds from neighboring protein side chains. These protonated water networks assume neither the classic Zundel nor Eigen motives but prefer wire-like topologies. Upon gauging calculated IR spectra of finite clusters with experimental gas-phase data, it is possible to link spectral features computed for these chain-like structures in the initial state of the BR photocycle to the measured absorption continua, in particular for the larger H+.(H2O)4 network. Furthermore, the free energy of proton dislocation along these chains is found to be within the range that is easily accessible at room temperature because of fluctuations.Keywords
This publication has 50 references indexed in Scilit:
- Understanding the Infrared Spectrum of Bare CH 5 +Science, 2005
- Assigning Protonation Patterns in Water Networks in Bacteriorhodopsin Based on Computed IR SpectraAngewandte Chemie International Edition in English, 2004
- Dynamics of Proton Transfer in BacteriorhodopsinJournal of the American Chemical Society, 2004
- Infrared Spectrum of p-Benzoquinone in Water Obtained from a QM/MM Hybrid Molecular Dynamics SimulationThe Journal of Physical Chemistry A, 2003
- pKa calculations suggest storage of an excess proton in a hydrogen-bonded water network in bacteriorhodopsinJournal of Molecular Biology, 2001
- Molecular Dynamics Study of Bacteriorhodopsin and the Purple MembraneThe Journal of Physical Chemistry B, 2001
- CLOSING IN ON BACTERIORHODOPSIN: Progress in Understanding the MoleculeAnnual Review of Biophysics, 1999
- A hybrid method for solutes in complex solvents: Density functional theory combined with empirical force fieldsThe Journal of Chemical Physics, 1999
- Quantum dynamics via adiabatic ab initio centroid molecular dynamicsComputer Physics Communications, 1999
- Structure and function of proteins in G-protein-coupled signal transferBiochimica et Biophysica Acta (BBA) - Reviews on Biomembranes, 1996