All-atomistic (AA) and coarse-grain (CG) simulations have been successfully applied to investigate a broad range of biomolecular processes. However, the accessible time and length scales of AA simulation are limited and the specific molecular details of CG simulation are simplified. Here, we propose a virtual site (VS) based hybrid scheme that can concurrently couple AA and CG resolutions in a single membrane simulation, mitigating the shortcomings of either representation. With some adjustments to make the AA and CG force fields compatible, we demonstrate that lipid bilayer properties are well kept in our hybrid approach. Our VS hybrid method was also applied to simulate a small lipid vesicle, with the inner leaflet and interior solvent re...
Many essential cell processes, such as the conformation of embedded proteins, membrane permeability,...
Atomistic simulation has become an important tool for studying the structures, dynamics, and functio...
AbstractGreat progress has been made in applying coarse-grain molecular dynamics (CGMD) simulations ...
All-atomistic (AA) and coarse-grain (CG) simulations have been successfully applied to investigate a...
Understanding the lateral organization in plasma membranes remains an open problem and is of great i...
Cellular membranes are fundamental constituents of living organisms. Apart from defining the boundar...
Coarse-grained molecular dynamics provides a means for simulating the assembly and the interactions ...
We present two new implementations of the virtual sites technique which completely suppresses the de...
The basic mechanisms of living cells have attracted an increased interest in recent years, triggered...
Hybrid all-atom (AA) and coarse-grained (CG) simulation has the possibility of overcoming the limita...
Molecular dynamics (MD) simulations have become a standard method to explore the detailed atomic pro...
In many biology, chemistry and physics applications molecular simulations can be used to study mater...
Molecular dynamics simulations provide a computational tool to probe membrane proteins and systems a...
Molecular dynamics (MD) simulations have become a highly important technique to consider lipid membr...
Many essential cell processes, such as the conformation of embedded proteins, membrane permeability,...
Many essential cell processes, such as the conformation of embedded proteins, membrane permeability,...
Atomistic simulation has become an important tool for studying the structures, dynamics, and functio...
AbstractGreat progress has been made in applying coarse-grain molecular dynamics (CGMD) simulations ...
All-atomistic (AA) and coarse-grain (CG) simulations have been successfully applied to investigate a...
Understanding the lateral organization in plasma membranes remains an open problem and is of great i...
Cellular membranes are fundamental constituents of living organisms. Apart from defining the boundar...
Coarse-grained molecular dynamics provides a means for simulating the assembly and the interactions ...
We present two new implementations of the virtual sites technique which completely suppresses the de...
The basic mechanisms of living cells have attracted an increased interest in recent years, triggered...
Hybrid all-atom (AA) and coarse-grained (CG) simulation has the possibility of overcoming the limita...
Molecular dynamics (MD) simulations have become a standard method to explore the detailed atomic pro...
In many biology, chemistry and physics applications molecular simulations can be used to study mater...
Molecular dynamics simulations provide a computational tool to probe membrane proteins and systems a...
Molecular dynamics (MD) simulations have become a highly important technique to consider lipid membr...
Many essential cell processes, such as the conformation of embedded proteins, membrane permeability,...
Many essential cell processes, such as the conformation of embedded proteins, membrane permeability,...
Atomistic simulation has become an important tool for studying the structures, dynamics, and functio...
AbstractGreat progress has been made in applying coarse-grain molecular dynamics (CGMD) simulations ...