AbstractUsing the molecular dynamics simulation technique, we studied the changes occurring in a dipalmitoylphosphatidylcholine (DPPC):cholesterol (CH) membrane at 50 mol% sterol when cholesterol is replaced with cholesterol sulfate (CS). Our simulations were performed at constant pressure and temperature on a nanosecond time scale. We found that 1) the area per DPPC:CS heterodimer is greater than the area of the DPPC:CH heterodimer; 2) CS increases ordering of DPPC acyl chains, but to a lesser extent than CH; 3) the number of hydrogen bonds between DPPC and water is decreased in a CS-containing membrane, but CS forms more water hydrogen bonds than CH; and 4) the membrane dipole potential reverses its sign for a DPPC-CS membrane compared to...
We performed molecular dynamics simulations on dipalmitoylphosphatidylcholine (DPPC)/dimethylsulfoxi...
AbstractA 15-ns molecular dynamics simulation of the fully hydrated liquid–crystalline dimyristoylph...
Cholesterol plays a very important part in regulating the properties of mixed phospholipid bilayers....
Using the molecular dynamics simulation technique, we studied the changes occurring in a dipalmitoyl...
Using the molecular dynamics simulation technique, we studied the changes occurring in a dipalmitoyl...
AbstractUsing the molecular dynamics simulation technique, we studied the changes occurring in a dip...
By using molecular dynamics simulation technique we studied the changes occurring in membranes const...
AbstractWe report a 1.4-ns constant-pressure molecular dynamics simulation of cholesterol at 12.5 mo...
AbstractWe report a 1.4-ns constant-pressure molecular dynamics simulation of cholesterol at 12.5 mo...
AbstractTo investigate the microscopic interactions between cholesterol and lipids in biological mem...
AbstractA molecular dynamics (MD) simulation of a fully hydrated, liquid-crystalline dimyristoylphos...
ABSTRACT A molecular dynamics (MD) simulation of a fully hydrated, liquid-crystalline dimyristoylpho...
Molecular dynamics simulations of a model membrane with inserted cholesterol molecules have been per...
We performed molecular dynamics simulations on dipalmitoylphosphatidylcholine (DPPC)/dimethylsulfoxi...
We performed molecular dynamics simulations on dipalmitoylphosphatidylcholine (DPPC)/dimethylsulfoxi...
We performed molecular dynamics simulations on dipalmitoylphosphatidylcholine (DPPC)/dimethylsulfoxi...
AbstractA 15-ns molecular dynamics simulation of the fully hydrated liquid–crystalline dimyristoylph...
Cholesterol plays a very important part in regulating the properties of mixed phospholipid bilayers....
Using the molecular dynamics simulation technique, we studied the changes occurring in a dipalmitoyl...
Using the molecular dynamics simulation technique, we studied the changes occurring in a dipalmitoyl...
AbstractUsing the molecular dynamics simulation technique, we studied the changes occurring in a dip...
By using molecular dynamics simulation technique we studied the changes occurring in membranes const...
AbstractWe report a 1.4-ns constant-pressure molecular dynamics simulation of cholesterol at 12.5 mo...
AbstractWe report a 1.4-ns constant-pressure molecular dynamics simulation of cholesterol at 12.5 mo...
AbstractTo investigate the microscopic interactions between cholesterol and lipids in biological mem...
AbstractA molecular dynamics (MD) simulation of a fully hydrated, liquid-crystalline dimyristoylphos...
ABSTRACT A molecular dynamics (MD) simulation of a fully hydrated, liquid-crystalline dimyristoylpho...
Molecular dynamics simulations of a model membrane with inserted cholesterol molecules have been per...
We performed molecular dynamics simulations on dipalmitoylphosphatidylcholine (DPPC)/dimethylsulfoxi...
We performed molecular dynamics simulations on dipalmitoylphosphatidylcholine (DPPC)/dimethylsulfoxi...
We performed molecular dynamics simulations on dipalmitoylphosphatidylcholine (DPPC)/dimethylsulfoxi...
AbstractA 15-ns molecular dynamics simulation of the fully hydrated liquid–crystalline dimyristoylph...
Cholesterol plays a very important part in regulating the properties of mixed phospholipid bilayers....