Fogarty_2014_J.Phys.Chem.B_118_7715

Reference

Title : Water dynamics in protein hydration shells: the molecular origins of the dynamical perturbation - Fogarty_2014_J.Phys.Chem.B_118_7715
Author(s) : Fogarty AC , Laage D
Ref : J Phys Chem B , 118 :7715 , 2014
Abstract :

Protein hydration shell dynamics play an important role in biochemical processes including protein folding, enzyme function, and molecular recognition. We present here a comparison of the reorientation dynamics of individual water molecules within the hydration shell of a series of globular proteins: acetylcholinesterase, subtilisin Carlsberg, lysozyme, and ubiquitin. Molecular dynamics simulations and analytical models are used to access site-resolved information on hydration shell dynamics and to elucidate the molecular origins of the dynamical perturbation of hydration shell water relative to bulk water. We show that all four proteins have very similar hydration shell dynamics, despite their wide range of sizes and functions, and differing secondary structures. We demonstrate that this arises from the similar local surface topology and surface chemical composition of the four proteins, and that such local factors alone are sufficient to rationalize the hydration shell dynamics. We propose that these conclusions can be generalized to a wide range of globular proteins. We also show that protein conformational fluctuations induce a dynamical heterogeneity within the hydration layer. We finally address the effect of confinement on hydration shell dynamics via a site-resolved analysis and connect our results to experiments via the calculation of two-dimensional infrared spectra.

PubMedSearch : Fogarty_2014_J.Phys.Chem.B_118_7715
PubMedID: 24479585

Related information

Citations formats

Fogarty AC, Laage D (2014)
Water dynamics in protein hydration shells: the molecular origins of the dynamical perturbation
J Phys Chem B 118 :7715

Fogarty AC, Laage D (2014)
J Phys Chem B 118 :7715