AbstractLipid phase separation may be a mechanism by which lipids participate in sorting membrane proteins and facilitate membrane-mediated biochemical signaling in cells. To provide new tools for membrane lipid phase manipulation that avoid direct effects on protein activity and lipid composition, we studied phase separation in binary and ternary lipid mixtures under the influence of three nonlipid amphiphiles, vitamin E (VE), Triton-X (TX)-100, and benzyl alcohol (BA). Mechanisms of additive-induced phase separation were elucidated using coarse-grained molecular dynamics simulations of these additives in a liquid bilayer made from 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC) and 1,2-diundecanoyl-sn-glycero-phosphocholine (DUPC). Fro...
AbstractUnderstanding the phase behavior of biological membranes is helped by the study of more simp...
Cellular membranes are a heterogeneous mix of lipids, proteins and small molecules. Special grouping...
AbstractThe liquid-ordered/disordered-phase domain co-existence in large unilamellar vesicle membran...
Nonrandom mixing of lipids and proteins in the plasma membrane plays an important role in many cellu...
AbstractIt is known from experimental studies that lipid bilayers composed of unsaturated phospholip...
<div><p>Cell membranes have a complex lateral organization featuring domains with distinct compositi...
Cell membranes have a complex lateral organization featuring domains with distinct composition, also...
Biological membranes contain a broad variety of lipid species whose individual physicochemical prope...
AbstractLine-active molecules (“linactants”) that bind to the boundary interface between different f...
AbstractCell membranes have complex lipid compositions, including an asymmetric distribution of phos...
AbstractThis work summarizes results obtained on membranes composed of the ternary mixture dioleoylp...
AbstractWe studied compositionally heterogeneous multi-component model membranes comprised of satura...
Cell membranes contain a large number of different lipid species. Such a multicomponent mixture exhi...
AbstractThis study was conducted to explore how the nature of the acyl chains of sphingomyelin (SM) ...
Although significant evidence exists confirming the central role of membrane lipids in the regulatio...
AbstractUnderstanding the phase behavior of biological membranes is helped by the study of more simp...
Cellular membranes are a heterogeneous mix of lipids, proteins and small molecules. Special grouping...
AbstractThe liquid-ordered/disordered-phase domain co-existence in large unilamellar vesicle membran...
Nonrandom mixing of lipids and proteins in the plasma membrane plays an important role in many cellu...
AbstractIt is known from experimental studies that lipid bilayers composed of unsaturated phospholip...
<div><p>Cell membranes have a complex lateral organization featuring domains with distinct compositi...
Cell membranes have a complex lateral organization featuring domains with distinct composition, also...
Biological membranes contain a broad variety of lipid species whose individual physicochemical prope...
AbstractLine-active molecules (“linactants”) that bind to the boundary interface between different f...
AbstractCell membranes have complex lipid compositions, including an asymmetric distribution of phos...
AbstractThis work summarizes results obtained on membranes composed of the ternary mixture dioleoylp...
AbstractWe studied compositionally heterogeneous multi-component model membranes comprised of satura...
Cell membranes contain a large number of different lipid species. Such a multicomponent mixture exhi...
AbstractThis study was conducted to explore how the nature of the acyl chains of sphingomyelin (SM) ...
Although significant evidence exists confirming the central role of membrane lipids in the regulatio...
AbstractUnderstanding the phase behavior of biological membranes is helped by the study of more simp...
Cellular membranes are a heterogeneous mix of lipids, proteins and small molecules. Special grouping...
AbstractThe liquid-ordered/disordered-phase domain co-existence in large unilamellar vesicle membran...