We performed a molecular dynamics simulation of an asymmetric bilayer that contained different lipid mixtures in its outer and inner leaflets. The outer leaflet contained a mixture of sphingomyelin (SM) with cholesterol and the inner leaflet a mixture of stearoyl-oleoyl-phosphatidylserine (SOPS) with cholesterol. For comparison purposes, we also performed two simulations on symmetric bilayers: the first simulation was performed on a bilayer containing a binary mixture of SOPS with cholesterol; the second contained a mixture of SM with cholesterol. We studied the hydrogen-bonding network of the bilayers in our simulations and the difference in the network properties in the monolayers either with SM or SOPS. We observed that in the asymmetric...
AbstractStearoylsphingomyelin (SSM) bilayers containing 0, 22, and 50mol % cholesterol (Chol) and a ...
The paradigm of biological membranes has recently gone through a major update. Instead of being flui...
The paradigm of biological membranes has recently gone through a major update. Instead of being flui...
AbstractWe performed a molecular dynamics simulation of an asymmetric bilayer that contained differe...
This thesis is based on atom-scale molecular dynamics simulations on lipid bilayers. The study conce...
The cell membrane is inherently asymmetric and heterogeneous in its composition, a fea-ture that is ...
AbstractIt is known from experimental studies that lipid bilayers composed of unsaturated phospholip...
AbstractWe review the relationship between molecular interactions and the properties of lipid enviro...
AbstractDetailed molecular dynamics simulations performed to study the nature of lipid raft domains ...
The cell membrane is inherently asymmetric and heterogeneous in its composition, a feature that is c...
AbstractWe have carried out an atomic-level molecular dynamics simulation of a system of nanoscopic ...
Spatial organization within lipid bilayers is an important feature for a range of biological process...
Using the all-atom CHARMM36 force field, we have performed molecular dynamics simulations of the equ...
AbstractWe have carried out a molecular dynamics simulation of a hydrated 18:0 sphingomyelin lipid b...
Cholesterol is an essential component of all animal cell membranes and plays an important role in ma...
AbstractStearoylsphingomyelin (SSM) bilayers containing 0, 22, and 50mol % cholesterol (Chol) and a ...
The paradigm of biological membranes has recently gone through a major update. Instead of being flui...
The paradigm of biological membranes has recently gone through a major update. Instead of being flui...
AbstractWe performed a molecular dynamics simulation of an asymmetric bilayer that contained differe...
This thesis is based on atom-scale molecular dynamics simulations on lipid bilayers. The study conce...
The cell membrane is inherently asymmetric and heterogeneous in its composition, a fea-ture that is ...
AbstractIt is known from experimental studies that lipid bilayers composed of unsaturated phospholip...
AbstractWe review the relationship between molecular interactions and the properties of lipid enviro...
AbstractDetailed molecular dynamics simulations performed to study the nature of lipid raft domains ...
The cell membrane is inherently asymmetric and heterogeneous in its composition, a feature that is c...
AbstractWe have carried out an atomic-level molecular dynamics simulation of a system of nanoscopic ...
Spatial organization within lipid bilayers is an important feature for a range of biological process...
Using the all-atom CHARMM36 force field, we have performed molecular dynamics simulations of the equ...
AbstractWe have carried out a molecular dynamics simulation of a hydrated 18:0 sphingomyelin lipid b...
Cholesterol is an essential component of all animal cell membranes and plays an important role in ma...
AbstractStearoylsphingomyelin (SSM) bilayers containing 0, 22, and 50mol % cholesterol (Chol) and a ...
The paradigm of biological membranes has recently gone through a major update. Instead of being flui...
The paradigm of biological membranes has recently gone through a major update. Instead of being flui...