Several simplified membrane models featuring coexisting liquid disordered (Ld) and ordered (Lo) lipid phases have been developed to mimic the heterogeneous organization of cellular membranes, and thus, aid our understanding of the nature and functional role of ordered lipid–protein nanodomains, termed “rafts”. In spite of their greatly reduced complexity, quantitative characterization of local lipid environments using model membranes is not trivial, and the parallels that can be drawn to cellular membranes are not always evident. Similarly, various fluorescently labeled lipid analogs have been used to study membrane organization and function in vitro, although the biological activity of these probes in relation to their native counterparts ...
AbstractThe structural basis for organizational heterogeneity of lipids and proteins underlies funda...
Nonrandom mixing of lipids and proteins in the plasma membrane plays an important role in many cellu...
AbstractThe liquid-ordered/disordered-phase domain co-existence in large unilamellar vesicle membran...
Several simplified membrane models featuring coexisting liquid disordered (Ld) and ordered (Lo) lipi...
Several simplified membrane models featuring coexisting liquid disordered (Ld) and ordered (Lo) lipi...
Several simplified membrane models featuring coexisting liquid disordered (Ld) and ordered (Lo) lipi...
Several simplified membrane models featuring coexisting liquid disordered (Ld) and ordered (Lo) lipi...
AbstractSeveral simplified membrane models featuring coexisting liquid disordered (Ld) and ordered (...
Lipid rafts are nanoscopic assemblies of sphingolipids, cholesterol, and specific membrane proteins ...
Lipid rafts are nanoscopic assemblies of sphingolipids, cholesterol, and specific membrane proteins ...
AbstractThe structural basis for organizational heterogeneity of lipids and proteins underlies funda...
The composition and morphology of cellular membranes are highly dynamic. Potential parameters modula...
The composition and morphology of cellular membranes are highly dynamic. Potential parameters modula...
Confocal fluorescence microscopy and fluorescence correlation spectroscopy (FCS) have been employed ...
The composition and morphology of cellular membranes are highly dynamic. Potential parameters modula...
AbstractThe structural basis for organizational heterogeneity of lipids and proteins underlies funda...
Nonrandom mixing of lipids and proteins in the plasma membrane plays an important role in many cellu...
AbstractThe liquid-ordered/disordered-phase domain co-existence in large unilamellar vesicle membran...
Several simplified membrane models featuring coexisting liquid disordered (Ld) and ordered (Lo) lipi...
Several simplified membrane models featuring coexisting liquid disordered (Ld) and ordered (Lo) lipi...
Several simplified membrane models featuring coexisting liquid disordered (Ld) and ordered (Lo) lipi...
Several simplified membrane models featuring coexisting liquid disordered (Ld) and ordered (Lo) lipi...
AbstractSeveral simplified membrane models featuring coexisting liquid disordered (Ld) and ordered (...
Lipid rafts are nanoscopic assemblies of sphingolipids, cholesterol, and specific membrane proteins ...
Lipid rafts are nanoscopic assemblies of sphingolipids, cholesterol, and specific membrane proteins ...
AbstractThe structural basis for organizational heterogeneity of lipids and proteins underlies funda...
The composition and morphology of cellular membranes are highly dynamic. Potential parameters modula...
The composition and morphology of cellular membranes are highly dynamic. Potential parameters modula...
Confocal fluorescence microscopy and fluorescence correlation spectroscopy (FCS) have been employed ...
The composition and morphology of cellular membranes are highly dynamic. Potential parameters modula...
AbstractThe structural basis for organizational heterogeneity of lipids and proteins underlies funda...
Nonrandom mixing of lipids and proteins in the plasma membrane plays an important role in many cellu...
AbstractThe liquid-ordered/disordered-phase domain co-existence in large unilamellar vesicle membran...