Title of article :
Reversible proton transfer dynamics in bacteriorhodopsin
Author/Authors :
Yong-Sok Lee، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Abstract :
In a previous study of ab initio dynamics, the proton transfer in bacteriorhodopsin from protonated asp96 in the cytoplasmic region toward
the deprotonated Schiff base was investigated. A quantum mechanics/molecular mechanics model was constructed from the X-ray structure
of bacteriorhodopsin E204Q mutant. In this model, asp96, asp85, and thr89 as well as most of the retinal chromophore and the Schiff base
link of lys216 were treated quantum mechanically while the rest of the atoms were treated molecular mechanically. A channel was found in
the X-ray structure allowing a water chain to form between the asp96 and Schiff base. In the present study, a chain of four waters from asp96
to the Schiff base N coupled with one branching water supports proton transfer as a concerted event in about 3.5 ps. With both a neutral asp85
and a branched water, the dynamics is now found to be more complicated than observed in the initial study for the transition from the
photocycle late M state to the N state. Proton transfer is also observed from the Schiff base back to asp96 demonstrating that there is no
effective barrier to proton transfer larger than kT in a strong H-bonded network. The binding of the branched water to the four water chains
can dynamically hinder the proton transfer.
q 2004 Elsevier B.V. All rights reserved
Keywords :
Bacteriorhodopsin , quantum mechanics/molecular mechanics , ab initio dynamics
Journal title :
Journal of Molecular Structure
Journal title :
Journal of Molecular Structure