Coarse-grained (CG) simulations have become an essential tool to study a large variety of biomolecular processes, exploring temporal and spatial scales inaccessible to traditional models of atomistic resolution. One of the major simplifications of CG models is the representation of the solvent, which is either implicit or modeled explicitly as a van der Waals particle. The effect of polarization, and thus a proper screening of interactions depending on the local environment, is absent. Given the important role of water as a ubiquitous solvent in biological systems, its treatment is crucial to the properties derived from simulation studies. Here, we parameterize a polarizable coarse-grained water model to be used in combination with the CG M...
Hybrid molecular dynamics simulations of atomistic (AA) solutes embedded in coarse-grained (CG) envi...
In this work, we develop coarse-grained (CG) force fields for water, where the effective CG intermol...
A new polarizable water model is developed for molecular dynamics (MD) simulations of the proton tra...
Coarse-grained (CG) simulations have become an essential tool to study a large variety of biomolecul...
An accurate description of long-ranged electrostatics in molecular simulations necessitates the solv...
Multiscale simulations methods, such as adaptive resolution scheme, are becoming increasingly popula...
PMCID: PMC3241685This is an open-access article distributed under the terms of the Creative Commons ...
Coarse-grained (CG) models allow simulation of larger systems for longer times by decreasing the num...
Hybrid molecular dynamics simulations of atomistic (AA) solutes embedded in coarse-grained (CG) envi...
We present an improved and extended version of our coarse grained lipid model. The new version, coin...
Polarizable force fields are a new and promising way of modelling water solutions using molecular dy...
We report here a new force field for water based solely on quantum mechanics (QM) calculations with ...
Molecular polarization at aqueous interfaces involves fast degrees of freedom that are often average...
Hybrid molecular dynamics simulations of atomistic (AA) solutes embedded in coarse-grained (CG) envi...
Hybrid molecular dynamics simulations of atomistic (AA) solutes embedded in coarse-grained (CG) envi...
In this work, we develop coarse-grained (CG) force fields for water, where the effective CG intermol...
A new polarizable water model is developed for molecular dynamics (MD) simulations of the proton tra...
Coarse-grained (CG) simulations have become an essential tool to study a large variety of biomolecul...
An accurate description of long-ranged electrostatics in molecular simulations necessitates the solv...
Multiscale simulations methods, such as adaptive resolution scheme, are becoming increasingly popula...
PMCID: PMC3241685This is an open-access article distributed under the terms of the Creative Commons ...
Coarse-grained (CG) models allow simulation of larger systems for longer times by decreasing the num...
Hybrid molecular dynamics simulations of atomistic (AA) solutes embedded in coarse-grained (CG) envi...
We present an improved and extended version of our coarse grained lipid model. The new version, coin...
Polarizable force fields are a new and promising way of modelling water solutions using molecular dy...
We report here a new force field for water based solely on quantum mechanics (QM) calculations with ...
Molecular polarization at aqueous interfaces involves fast degrees of freedom that are often average...
Hybrid molecular dynamics simulations of atomistic (AA) solutes embedded in coarse-grained (CG) envi...
Hybrid molecular dynamics simulations of atomistic (AA) solutes embedded in coarse-grained (CG) envi...
In this work, we develop coarse-grained (CG) force fields for water, where the effective CG intermol...
A new polarizable water model is developed for molecular dynamics (MD) simulations of the proton tra...