An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametrization has been largely based on high-level ab initio calculations in order to keep the empirical input to a minimum. Parameters for the lipid chains have been developed based on knowledge about bulk alkane liquids, for which thermodynamic and dynamic data are excellently reproduced. The FFs ability to simulate lipid bilayers in the liquid crystalline phase in a tensionless ensemble was tested in simulations of three lipids: 1,2-diauroyl-sn-glycero-3-phospocholine (DLPC), 1,2-dimyristoyl-sn-glycero-3-phosphocholine (DMPC), and 1,2-dipalmitoyl-sn-glycero-3-phospcholine (DPPC). Computed areas and volumes per lipid, and three different kinds of...
AbstractMolecular dynamics simulations of dipalmitoylphosphatidylcholine (DPPC) lipid bilayers using...
Improvements in the CHARMM all-atom force field for atomic-level molecular simulations of lipids are...
We present a united-atom model (gb-fb15) for the molecular dynamics simulation of hydrated liquid-cr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
Biological membranes are versatile in composition and host intriguing molecular processes. In order ...
Biological membranes are versatile in composition and host intriguing molecular processes. In order ...
Biological membranes are versatile in composition and host intriguing molecular processes. In order...
Biological membranes are versatile in composition and host intriguing molecular processes. In order...
AbstractA recently defined charge set, to be used in conjunction with the all-atom CHARMM27r force f...
We report parametrization of dipalmitoyl-phosphatidylcholine (DPPC) in the framework of the Optimize...
We report parametrization of dipalmitoyl-phosphatidylcholine (DPPC) in the framework of the Optimize...
A new force field for the simulation of dipalmitoylphosphatidylcholine (DPPC) in the liquid-crystall...
AbstractMolecular dynamics simulations of dipalmitoylphosphatidylcholine (DPPC) lipid bilayers using...
Improvements in the CHARMM all-atom force field for atomic-level molecular simulations of lipids are...
We present a united-atom model (gb-fb15) for the molecular dynamics simulation of hydrated liquid-cr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
Biological membranes are versatile in composition and host intriguing molecular processes. In order ...
Biological membranes are versatile in composition and host intriguing molecular processes. In order ...
Biological membranes are versatile in composition and host intriguing molecular processes. In order...
Biological membranes are versatile in composition and host intriguing molecular processes. In order...
AbstractA recently defined charge set, to be used in conjunction with the all-atom CHARMM27r force f...
We report parametrization of dipalmitoyl-phosphatidylcholine (DPPC) in the framework of the Optimize...
We report parametrization of dipalmitoyl-phosphatidylcholine (DPPC) in the framework of the Optimize...
A new force field for the simulation of dipalmitoylphosphatidylcholine (DPPC) in the liquid-crystall...
AbstractMolecular dynamics simulations of dipalmitoylphosphatidylcholine (DPPC) lipid bilayers using...
Improvements in the CHARMM all-atom force field for atomic-level molecular simulations of lipids are...
We present a united-atom model (gb-fb15) for the molecular dynamics simulation of hydrated liquid-cr...