The lipid mixture of DPPC (saturated lipid)/DUPC (unsaturated lipid)/CHOL (cholesterol) is studied with respect to its ability to form liquid-ordered and liquid-disordered phases. We employ coarse-grained simulations with MARTINI force field. All three components are systematically modified in order to explore the relevant molecular properties, leading to phase separation. Specifically, we show that the DPPC/DUPC/CHOL system unmixes due to enthalpic DPPC-DPPC and DPPC-CHOL interactions. The phase separation remains unchanged, except for the formation of a gel phase at long times after decreasing the conformational degrees of freedom of the unsaturated DUPC. In contrast, the phase separation can be suppressed by softening the DPPC chains. In...
AbstractIt is postulated that the specific interactions between cholesterol and lipids in biological...
AbstractMixtures of phospholipids with cholesterol are able to form liquid-ordered phases that are c...
The potential physiological relevance of liquid-liquid phase separation in lipid membranes to the fo...
The phase behavior of the coarse-grained MARTINI model for three-component lipid bilayers composed o...
A molecular model is proposed of a bilayer consisting of fully saturated DPPC and mono unsaturated D...
Saturated phospholipids, unsaturated phospholipids, and cholesterol are essential components of cell...
Cell membranes contain a large number of different lipid species. Such a multicomponent mixture exhi...
Nonrandom mixing of lipids and proteins in the plasma membrane plays an important role in many cellu...
Whether lipid rafts are present in the membranes of living cells remains hotly disputed despite thei...
The phase separation in lipid bilayers that include negatively charged lipids is examined experiment...
Biological membranes contain a broad variety of lipid species whose individual physicochemical prope...
The capability of coarse-grained models based on the MARTINI mapping to reproduce the gel-liquid pha...
AbstractWe have undertaken a series of experiments to examine the behavior of individual components ...
Specialized lipid microdomains, or "membrane rafts", are thought to be involved in many plasma membr...
AbstractWe examined the volumetric behavior of the dipalmitoylphosphatidylcholine (DPPC)/cholesterol...
AbstractIt is postulated that the specific interactions between cholesterol and lipids in biological...
AbstractMixtures of phospholipids with cholesterol are able to form liquid-ordered phases that are c...
The potential physiological relevance of liquid-liquid phase separation in lipid membranes to the fo...
The phase behavior of the coarse-grained MARTINI model for three-component lipid bilayers composed o...
A molecular model is proposed of a bilayer consisting of fully saturated DPPC and mono unsaturated D...
Saturated phospholipids, unsaturated phospholipids, and cholesterol are essential components of cell...
Cell membranes contain a large number of different lipid species. Such a multicomponent mixture exhi...
Nonrandom mixing of lipids and proteins in the plasma membrane plays an important role in many cellu...
Whether lipid rafts are present in the membranes of living cells remains hotly disputed despite thei...
The phase separation in lipid bilayers that include negatively charged lipids is examined experiment...
Biological membranes contain a broad variety of lipid species whose individual physicochemical prope...
The capability of coarse-grained models based on the MARTINI mapping to reproduce the gel-liquid pha...
AbstractWe have undertaken a series of experiments to examine the behavior of individual components ...
Specialized lipid microdomains, or "membrane rafts", are thought to be involved in many plasma membr...
AbstractWe examined the volumetric behavior of the dipalmitoylphosphatidylcholine (DPPC)/cholesterol...
AbstractIt is postulated that the specific interactions between cholesterol and lipids in biological...
AbstractMixtures of phospholipids with cholesterol are able to form liquid-ordered phases that are c...
The potential physiological relevance of liquid-liquid phase separation in lipid membranes to the fo...