We have employed atomistic molecular dynamics simulations to investigate the effect of double-bond parametrization on lipidmembrane properties. As models, we use one-component membranes composed of glycerol-based phosphatidylcholines (PCs) with monounsaturated acyl chains, and we complement these studies by additional PC/cholesterol simulations. We compare differences between double-bond parametrizations by varying the position of the double bond systematically along the lipid hydrocarbon chains. The results give rise for concern: They indicate that the double-bond description may change not only the quantitative but also the qualitative nature of membrane behavior. In particular, we find that the double-bond description which accounts for ...
AbstractUsing the molecular dynamics simulation technique, we studied the changes occurring in a dip...
Lipid molecules form the backbone of biological membranes. Due to their amphiphilic structure, they ...
Though glycolipids are involved in a multitude of cellular functions, the understanding of their ato...
We have employed atomistic molecular dynamics simulations to investigate the effect of double-bond p...
We have employed atomistic molecular dynamics simulations to investigate the effect of double-bond p...
Phosphatidylcholines (PCs) are among the most common phospholipids in plasma membranes. Their struct...
The structural and dynamical properties of lipid membranes rich in phospholipids and cholesterol are...
AbstractThe structural and dynamical properties of lipid membranes rich in phospholipids and cholest...
Unsaturated fatty acid chains are known to be an essential structural part of biomembranes, but only...
The extent to which current force fields faithfully reproduce conformational properties of lipids in...
Abstract Phospholipids are the main components of cell membranes, lipoproteins and other membrane s...
AbstractThe trans isomers of fatty acids are found in human adipose tissue. These isomers have been ...
Phosphatidic acids (PAs) have many biological functions in biomembranes, e.g., they are involved in ...
Often, membrane / protein systems are studied and / or utilized on solid supports. The underlying su...
Biological bilayer membranes typically contain varying amounts of lamellar and nonlamellar lipids. L...
AbstractUsing the molecular dynamics simulation technique, we studied the changes occurring in a dip...
Lipid molecules form the backbone of biological membranes. Due to their amphiphilic structure, they ...
Though glycolipids are involved in a multitude of cellular functions, the understanding of their ato...
We have employed atomistic molecular dynamics simulations to investigate the effect of double-bond p...
We have employed atomistic molecular dynamics simulations to investigate the effect of double-bond p...
Phosphatidylcholines (PCs) are among the most common phospholipids in plasma membranes. Their struct...
The structural and dynamical properties of lipid membranes rich in phospholipids and cholesterol are...
AbstractThe structural and dynamical properties of lipid membranes rich in phospholipids and cholest...
Unsaturated fatty acid chains are known to be an essential structural part of biomembranes, but only...
The extent to which current force fields faithfully reproduce conformational properties of lipids in...
Abstract Phospholipids are the main components of cell membranes, lipoproteins and other membrane s...
AbstractThe trans isomers of fatty acids are found in human adipose tissue. These isomers have been ...
Phosphatidic acids (PAs) have many biological functions in biomembranes, e.g., they are involved in ...
Often, membrane / protein systems are studied and / or utilized on solid supports. The underlying su...
Biological bilayer membranes typically contain varying amounts of lamellar and nonlamellar lipids. L...
AbstractUsing the molecular dynamics simulation technique, we studied the changes occurring in a dip...
Lipid molecules form the backbone of biological membranes. Due to their amphiphilic structure, they ...
Though glycolipids are involved in a multitude of cellular functions, the understanding of their ato...