Epithelial cells are polarized cells and typically display distinct plasma membrane domains: basal plasma membrane domains face the underlying tissue, lateral domains contact adjacent cells and apical domains face the exterior lumen. Each membrane domain is endowed with a specific macromolecular composition that constitutes the functional identity of that domain. Defects in apical-basal plasma membrane polarity altogether or more subtle defects in the composition of either apical or basal plasma membrane domain can give rise to severe diseases. Lipids are the main component of cellular membranes and mechanisms that control their polarized distribution in epithelial cells are emerging. In particular sphingolipids and phosphatidylinositol lip...
Sphingolipids represent a minor, but highly dynamic subclass of lipids in all eukaryotic cells. They...
Apical and basolateral membrane domains of epithelial cell plasma membranes possess unique lipid com...
Epithelial cells form a barrier against the environment, but are also required for the regulated exc...
Epithelial cells are polarized cells and typically display distinct plasma membrane domains: basal p...
Compartmentalization of cell membranes, in particular of the apical membrane of columnar epithelia, ...
Plasma membranes of epithelial cells consist of two domains, an apical and a basolateral domain, the...
Epithelial cells express plasma-membrane polarity in order to meet functional requirements that are ...
AbstractSphingolipids represent a minor, but highly dynamic subclass of lipids in all eukaryotic cel...
The subapical compartment (SAC) plays an important role in the polarized transport of proteins and l...
In polarized HepG2 cells, the sphingolipids glucosylceramide and sphingomyelin (SM), transported alo...
The establishment andmaintenance of cell polarity is important to awide range of biological processe...
The differential distribution of lipids between apical and basolateral membranes is necessary for ma...
Cell migration plays vital roles in many biologically relevant processes such as tissue morphogenesi...
Sphingolipids represent a minor, but highly dynamic subclass of lipids in all eukaryotic cells. They...
Apical and basolateral membrane domains of epithelial cell plasma membranes possess unique lipid com...
Epithelial cells form a barrier against the environment, but are also required for the regulated exc...
Epithelial cells are polarized cells and typically display distinct plasma membrane domains: basal p...
Compartmentalization of cell membranes, in particular of the apical membrane of columnar epithelia, ...
Plasma membranes of epithelial cells consist of two domains, an apical and a basolateral domain, the...
Epithelial cells express plasma-membrane polarity in order to meet functional requirements that are ...
AbstractSphingolipids represent a minor, but highly dynamic subclass of lipids in all eukaryotic cel...
The subapical compartment (SAC) plays an important role in the polarized transport of proteins and l...
In polarized HepG2 cells, the sphingolipids glucosylceramide and sphingomyelin (SM), transported alo...
The establishment andmaintenance of cell polarity is important to awide range of biological processe...
The differential distribution of lipids between apical and basolateral membranes is necessary for ma...
Cell migration plays vital roles in many biologically relevant processes such as tissue morphogenesi...
Sphingolipids represent a minor, but highly dynamic subclass of lipids in all eukaryotic cells. They...
Apical and basolateral membrane domains of epithelial cell plasma membranes possess unique lipid com...
Epithelial cells form a barrier against the environment, but are also required for the regulated exc...