In this review we describe the state-of-the-art of computer simulation studies of lipid membranes. We focus on collective lipid-lipid and lipid-protein interactions that trigger deformations of the natural lamellar membrane state, showing that many important biological processes including self-aggregation of membrane components into domains, the formation of non-lamellar phases, and membrane poration and curving, are now amenable to detailed simulation studies. (C) 2008 Elsevier B.V. All rights reserved.</p
AbstractComputer simulations are rapidly becoming a standard tool to study the structure and dynamic...
Lipids are small amphiphatic molecules that can adopt a wide variety of aggregation states including...
Biological membranes are vital for many biochemical functions in the body, and therefore obtaining a...
In this review we describe the state-of-the-art of computer simulation studies of lipid membranes. W...
In this review we describe the state-of-the-art of computer simulation studies of lipid membranes. W...
AbstractIn this review we describe the state-of-the-art of computer simulation studies of lipid memb...
AbstractThere is great diversity in the composition and structure of biological lipid membranes. We ...
When phospholipids dissolve in water they self-assemble into a variety of structures of which bilaye...
The plasma membrane defines a eukaryotic cell, separating the cell's interior from its surroundings....
Computer simulations of lipid bilayers and biological membranes using molecular mechanics calculatio...
AbstractDetailed molecular dynamics simulations performed to study the nature of lipid raft domains ...
Abstract Phospholipids are the main components of cell membranes, lipoproteins and other membrane s...
Based on indirect observations, there currently exists a consensus that the plasma membrane of mamma...
Cell membranes are complex multicomponent systems, which are highly heterogeneous in the lipid distr...
This chapter summarizes several approaches combining theory, simulation, and experiment that aim for...
AbstractComputer simulations are rapidly becoming a standard tool to study the structure and dynamic...
Lipids are small amphiphatic molecules that can adopt a wide variety of aggregation states including...
Biological membranes are vital for many biochemical functions in the body, and therefore obtaining a...
In this review we describe the state-of-the-art of computer simulation studies of lipid membranes. W...
In this review we describe the state-of-the-art of computer simulation studies of lipid membranes. W...
AbstractIn this review we describe the state-of-the-art of computer simulation studies of lipid memb...
AbstractThere is great diversity in the composition and structure of biological lipid membranes. We ...
When phospholipids dissolve in water they self-assemble into a variety of structures of which bilaye...
The plasma membrane defines a eukaryotic cell, separating the cell's interior from its surroundings....
Computer simulations of lipid bilayers and biological membranes using molecular mechanics calculatio...
AbstractDetailed molecular dynamics simulations performed to study the nature of lipid raft domains ...
Abstract Phospholipids are the main components of cell membranes, lipoproteins and other membrane s...
Based on indirect observations, there currently exists a consensus that the plasma membrane of mamma...
Cell membranes are complex multicomponent systems, which are highly heterogeneous in the lipid distr...
This chapter summarizes several approaches combining theory, simulation, and experiment that aim for...
AbstractComputer simulations are rapidly becoming a standard tool to study the structure and dynamic...
Lipids are small amphiphatic molecules that can adopt a wide variety of aggregation states including...
Biological membranes are vital for many biochemical functions in the body, and therefore obtaining a...