Epithelial tight junctions contain size- and charge-selective pores that control the paracellular movement of charged and noncharged solutes. Claudins influence the charge selectivity and electrical resistance of junctions, but there is no direct evidence describing pore composition or whether pore size or density differs among cell types. To characterize paracellular pores independent of influences from charge selectivity, we profiled the ;apparent permeabilities' (P(app)) of a continuous series of noncharged polyethylene glycols (PEGs) across monolayers of five different epithelial cell lines and porcine ileum. We also characterized P(app) of high and low electrical resistance MDCK cell monolayers expressing heterologous claudins. P(app) ...
Despite significant advances in the characterization of tight junction (TJ) proteins, little is know...
The tight junction tetraspan protein claudin-4 creates a charge-selective pore in the paracellular p...
Epithelia separate apical and basal compartments, and movement of substances via the paracellular pa...
Epithelial tight junctions contain size- and charge-selective pores that control the paracellular mo...
Paracellular transport through the tight junction shows selectivity for both ionic charge and solute...
Understanding of tight junctions has evolved from their historical perception as inert solute barrie...
AbstractThe claudins have recently been identified as a large family of transmembrane proteins locat...
AbstractThe paracellular barrier of epithelia and endothelia is established by several tight junctio...
Intercellular tight junctions form selectively permeable barriers that seal the paracellular space. ...
Abstract Background Mammalian small intestinal tight junctions (TJ) link epithelial cells to one ano...
AbstractThe tight junction of epithelial cells excludes macromolecules but allows permeation of ions...
AbstractClaudins are tetraspan transmembrane proteins of tight junctions. They determine the barrier...
Our understanding of the essential role played by cancer stem cells or tumor-initiating cells in epi...
2013-07-23Claudins constitute a family of tight junction transmembrane proteins whose first extracel...
Epithelia separate apical and basal compartments, and movement of substances via the paracellular pa...
Despite significant advances in the characterization of tight junction (TJ) proteins, little is know...
The tight junction tetraspan protein claudin-4 creates a charge-selective pore in the paracellular p...
Epithelia separate apical and basal compartments, and movement of substances via the paracellular pa...
Epithelial tight junctions contain size- and charge-selective pores that control the paracellular mo...
Paracellular transport through the tight junction shows selectivity for both ionic charge and solute...
Understanding of tight junctions has evolved from their historical perception as inert solute barrie...
AbstractThe claudins have recently been identified as a large family of transmembrane proteins locat...
AbstractThe paracellular barrier of epithelia and endothelia is established by several tight junctio...
Intercellular tight junctions form selectively permeable barriers that seal the paracellular space. ...
Abstract Background Mammalian small intestinal tight junctions (TJ) link epithelial cells to one ano...
AbstractThe tight junction of epithelial cells excludes macromolecules but allows permeation of ions...
AbstractClaudins are tetraspan transmembrane proteins of tight junctions. They determine the barrier...
Our understanding of the essential role played by cancer stem cells or tumor-initiating cells in epi...
2013-07-23Claudins constitute a family of tight junction transmembrane proteins whose first extracel...
Epithelia separate apical and basal compartments, and movement of substances via the paracellular pa...
Despite significant advances in the characterization of tight junction (TJ) proteins, little is know...
The tight junction tetraspan protein claudin-4 creates a charge-selective pore in the paracellular p...
Epithelia separate apical and basal compartments, and movement of substances via the paracellular pa...