The lipid raft concept proposes that biological membranes have the potential to form functional domains based on a selective interaction between sphingolipids and sterols. These domains seem to be involved in signal transduction and vesicular sorting of proteins and lipids. Although there is biochemical evidence for lipid raft-dependent protein and lipid sorting in the yeast Saccharomyces cerevisiae, direct evidence for an interaction between yeast sphingolipids and the yeast sterol ergosterol, resulting in membrane domain formation, is lacking. Here we show that model membranes formed from yeast total lipid extracts possess an inherent self-organization potential resulting in liquid-disordered-liquid-ordered phase coexistence at physiologi...
Yeast tolerates a low pH and high solvent concentrations. The permeability of the plasma membrane (P...
Cells maintain physicochemical characteristics of membranes in order to allow for proper function of...
Our views on lipid organization in biological membrane have long been impregnated by the Singer-Nico...
The lipid raft concept proposes that biological membranes have the potential to form functional doma...
The lipid raft concept proposes that biological membranes have the potential to form functional doma...
Cellular membranes contain many types and species of lipids. One of the most important functional co...
Cellular membranes contain many types and species of lipids. One of the most important functional co...
The major sorting station of biosynthetic material destined for the cell surface or secretion is the...
Upon nutrient limitation, budding yeast of Saccharomyces cerevisiae shift from fast growth (the log ...
The notion that cellular membranes contain distinct microdomains, acting as scaffolds for signal tra...
Membranes of vacuoles, the lysosomal organelles of Saccharomyces cerevisiae (budding yeast), undergo...
Membrane phase separation to form micron-scale domains of lipids and proteins occurs in artificial m...
Thesis (Ph.D.)--University of Washington, 2022Membranes of vacuoles, the lysosomal organelle in yeas...
AbstractWe report sphingolipid-related reorganization of gel-like microdomains in the plasma membran...
The trans-Golgi network (TGN) is the major sorting station in the secretory pathway of all eukaryoti...
Yeast tolerates a low pH and high solvent concentrations. The permeability of the plasma membrane (P...
Cells maintain physicochemical characteristics of membranes in order to allow for proper function of...
Our views on lipid organization in biological membrane have long been impregnated by the Singer-Nico...
The lipid raft concept proposes that biological membranes have the potential to form functional doma...
The lipid raft concept proposes that biological membranes have the potential to form functional doma...
Cellular membranes contain many types and species of lipids. One of the most important functional co...
Cellular membranes contain many types and species of lipids. One of the most important functional co...
The major sorting station of biosynthetic material destined for the cell surface or secretion is the...
Upon nutrient limitation, budding yeast of Saccharomyces cerevisiae shift from fast growth (the log ...
The notion that cellular membranes contain distinct microdomains, acting as scaffolds for signal tra...
Membranes of vacuoles, the lysosomal organelles of Saccharomyces cerevisiae (budding yeast), undergo...
Membrane phase separation to form micron-scale domains of lipids and proteins occurs in artificial m...
Thesis (Ph.D.)--University of Washington, 2022Membranes of vacuoles, the lysosomal organelle in yeas...
AbstractWe report sphingolipid-related reorganization of gel-like microdomains in the plasma membran...
The trans-Golgi network (TGN) is the major sorting station in the secretory pathway of all eukaryoti...
Yeast tolerates a low pH and high solvent concentrations. The permeability of the plasma membrane (P...
Cells maintain physicochemical characteristics of membranes in order to allow for proper function of...
Our views on lipid organization in biological membrane have long been impregnated by the Singer-Nico...