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Interaction Models for Water in Relation to Protein Hydration

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TLDR
In this article, a three-point charge model (on hydrogen and oxygen positions) with a Lennard-Jones 6-12 potential on the oxygen positions only was developed, and parameters for the model were determined from 12 molecular dynamics runs covering the two-dimensional parameter space of charge and oxygen repulsion.
Abstract
For molecular dynamics simulations of hydrated proteins a simple yet reliable model for the intermolecular potential for water is required. Such a model must be an effective pair potential valid for liquid densities that takes average many-body interactions into account. We have developed a three-point charge model (on hydrogen and oxygen positions) with a Lennard-Jones 6–12 potential on the oxygen positions only. Parameters for the model were determined from 12 molecular dynamics runs covering the two-dimensional parameter space of charge and oxygen repulsion. Both potential energy and pressure were required to coincide with experimental values. The model has very satisfactory properties, is easily incorporated into protein-water potentials, and requires only 0.25 sec computertime per dynamics step (for 216 molecules) on a CRAY-1 computer.

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Citations
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Journal ArticleDOI

Adsorption of carbon dioxide, methane, and their mixtures in porous carbons: effect of surface chemistry, water content, and pore disorder.

TL;DR: Differences between the simulated and experimental samples are crucial to account for the rich phase behavior of confined water-gas systems as well as for adsorbed solution theory in the presence of water.
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Molecular dynamics study on the biophysical interactions of seven green tea catechins with lipid bilayers of cell membranes.

TL;DR: Simulation results for seven green tea catechins in lipid bilayer systems representative of HepG2 cancer cells show a strong affinity for the lipid bilayers via hydrogen bonding to the bilayer surface, with some of the smaller catechin able to penetrate underneath the surface.
Journal ArticleDOI

Measurements and Implications of the Membrane Dipole Potential

TL;DR: The dipole potential accounts for the much larger permeability of a bare phospholipid membrane to anions than cations and affects the conformation and function of membrane proteins.
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Osmotic coefficients of atomistic NaCl (aq) force fields

TL;DR: It is shown that the osmotic coefficient is a sensitive and accurate measure for the effective ion-ion interactions and the intermediate-range structure of the solution and a suitable and useful quantity for validating and parametrizing atomistic ion-water force fields.
Journal ArticleDOI

Pressure-driven water flow through carbon nanotubes: Insights from molecular dynamics simulation

TL;DR: In this article, the authors examined pressure-driven water flow through carbon nanotubes (CNTs) using molecular dynamics simulation and found that flow through CNTs with diameters as small as 1.66 nm can be fully understood using continuum fluid mechanics.
References
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Journal ArticleDOI

Numerical Integration of the Cartesian Equations of Motion of a System with Constraints: Molecular Dynamics of n-Alkanes

TL;DR: In this paper, a numerical algorithm integrating the 3N Cartesian equations of motion of a system of N points subject to holonomic constraints is formulated, and the relations of constraint remain perfectly fulfilled at each step of the trajectory despite the approximate character of numerical integration.
Book

Water:A Comprehensive Treatise

Felix Franks
Book

The Structure and Properties of Water

TL;DR: The Water Molecule 2 The Real Vapour 3. Ice 4. Properties of Liquid Water 5. Models for Liquid Water Addendum as mentioned in this paper, which is an extension of the model presented in this paper.
Journal ArticleDOI

Dynamics of folded proteins

TL;DR: The dynamics of a folded globular protein have been studied by solving the equations of motion for the atoms with an empirical potential energy function and suggest that the protein interior is fluid-like in that the local atom motions have a diffusional character.
Journal ArticleDOI

Algorithms for macromolecular dynamics and constraint dynamics

TL;DR: In this paper, the authors investigated the application of the computer simulation method of molecular dynamics to macromolecules and compared different algorithms for integrating the equations of motion, both theoretically and in practice.
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