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...
We present a new polarizable coarse-grained martini force field for monovalent ions, called refIon, ...
Multiscale simulations methods, such as adaptive resolution scheme, are becoming increasingly popula...
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...
Polarizable force fields are a new and promising way of modelling water solutions using molecular dy...
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...
The Martini force field is a coarse-grained force field suited for molecular dynamics simulations of...
As an integrated step toward a coherent polarizable force field for biomolecular modeling, we analyz...
Molecular simulations of water using classical, molecular mechanic potential energy functions have e...
Hybrid molecular dynamics simulations of atomistic (AA) solutes embedded in coarse-grained (CG) envi...
We present a new polarizable coarse-grained martini force field for monovalent ions, called refIon, ...
Multiscale simulations methods, such as adaptive resolution scheme, are becoming increasingly popula...
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...
Polarizable force fields are a new and promising way of modelling water solutions using molecular dy...
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...
The Martini force field is a coarse-grained force field suited for molecular dynamics simulations of...
As an integrated step toward a coherent polarizable force field for biomolecular modeling, we analyz...
Molecular simulations of water using classical, molecular mechanic potential energy functions have e...
Hybrid molecular dynamics simulations of atomistic (AA) solutes embedded in coarse-grained (CG) envi...
We present a new polarizable coarse-grained martini force field for monovalent ions, called refIon, ...
Multiscale simulations methods, such as adaptive resolution scheme, are becoming increasingly popula...
A new polarizable water model is developed for molecular dynamics (MD) simulations of the proton tra...