Biological membranes are not structurally passive solvents of amphipathic proteins and lipids. Rather, it appears their constituents have evolved intrinsic characteristics that make homogeneous distribution of components unlikely. As a case in point, the concept of lipid rafts has received considerable attention from biologists and biophysicists since the formalization of the hypothesis more than 10 years ago. Today, it is clear that sphingolipid and cholesterol can self-associate into micron-scaled phases in model membranes and that these lipids are involved in the formation of highly dynamic nanoscale heterogeneity in the plasma membrane of living cells. However, it remains unclear whether these entities are manifestations of the same pri...
Lipid rafts, defined as domains rich in cholesterol and sphingolipids, are involved in many importan...
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...
Biological membranes are not structurally passive solvents of amphipathic proteins and lipids. Rathe...
Lipid rafts are nanoscale entities in the membranes of eukaryotic cells which provide a mechanism fo...
Lipid rafts are nanoscale entities in the membranes of eukaryotic cells which provide a mechanism fo...
Cell membranes display a tremendous complexity of lipids and proteins designed to perform the functi...
Cell membranes display a tremendous complexity of lipids and proteins designed to perform the functi...
Cell membranes display a tremendous complexity of lipids and proteins designed to perform the functi...
Cell membranes are composed of a lipid bilayer, containing proteins that span the bilayer and/or int...
Cell membranes are composed of a lipid bilayer, containing proteins that span the bilayer and/or int...
Cellular plasma membranes are laterally heterogeneous, featuring a variety of distinct subcompartmen...
Cellular plasma membranes are laterally heterogeneous, featuring a variety of distinct subcompartmen...
Rafts have been conceptualized as lateral heterogeneities in the organization of cholesterol and sph...
The concept of transient nanometric domains known as lipid rafts has brought interest to reassess th...
Lipid rafts, defined as domains rich in cholesterol and sphingolipids, are involved in many importan...
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...
Biological membranes are not structurally passive solvents of amphipathic proteins and lipids. Rathe...
Lipid rafts are nanoscale entities in the membranes of eukaryotic cells which provide a mechanism fo...
Lipid rafts are nanoscale entities in the membranes of eukaryotic cells which provide a mechanism fo...
Cell membranes display a tremendous complexity of lipids and proteins designed to perform the functi...
Cell membranes display a tremendous complexity of lipids and proteins designed to perform the functi...
Cell membranes display a tremendous complexity of lipids and proteins designed to perform the functi...
Cell membranes are composed of a lipid bilayer, containing proteins that span the bilayer and/or int...
Cell membranes are composed of a lipid bilayer, containing proteins that span the bilayer and/or int...
Cellular plasma membranes are laterally heterogeneous, featuring a variety of distinct subcompartmen...
Cellular plasma membranes are laterally heterogeneous, featuring a variety of distinct subcompartmen...
Rafts have been conceptualized as lateral heterogeneities in the organization of cholesterol and sph...
The concept of transient nanometric domains known as lipid rafts has brought interest to reassess th...
Lipid rafts, defined as domains rich in cholesterol and sphingolipids, are involved in many importan...
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...