AbstractClaudins are tetraspan transmembrane proteins of tight junctions. They determine the barrier properties of this type of cell–cell contact existing between the plasma membranes of two neighbouring cells, such as occurring in endothelia or epithelia. Claudins can completely tighten the paracellular cleft for solutes, and they can form paracellular ion pores. It is assumed that the extracellular loops specify these claudin functions. It is hypothesised that the larger first extracellular loop is critical for determining the paracellular tightness and the selective ion permeability. The shorter second extracellular loop may cause narrowing of the paracellular cleft and have a holding function between the opposing cell membranes. Sequenc...
Claudins are a large family of membrane proteins whose classic function is to regulate the permeabil...
The mechanism of tight junction (TJ) assembly and the structure of claudins (Cldn) that form the TJ ...
Paracellular transport through the tight junction shows selectivity for both ionic charge and solute...
AbstractClaudins are main cell–cell adhesion molecules of tight junctions (TJs) between cells in epi...
The tight junction tetraspan protein claudin-4 creates a charge-selective pore in the paracellular p...
Understanding of tight junctions has evolved from their historical perception as inert solute barrie...
The paracellular cleft within epithelia/endothelia is sealed by tight junction (TJ) proteins. Their ...
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...
AbstractTight junctions contribute to the paracellular barrier, the fence dividing plasma membranes,...
Tight junctions are multiprotein complexes that form the fundamental physiologic and anatomic barrie...
Tight junctions (TJs) are complex multiprotein structures found in epithelial and endothelial cells ...
2013-07-23Claudins constitute a family of tight junction transmembrane proteins whose first extracel...
Tight-junctions between epithelial cells of biological barriers are specialized molecular structures...
Tight-junctions between epithelial cells of biological barriers are specialized molecular structures...
Claudins are a large family of membrane proteins whose classic function is to regulate the permeabil...
The mechanism of tight junction (TJ) assembly and the structure of claudins (Cldn) that form the TJ ...
Paracellular transport through the tight junction shows selectivity for both ionic charge and solute...
AbstractClaudins are main cell–cell adhesion molecules of tight junctions (TJs) between cells in epi...
The tight junction tetraspan protein claudin-4 creates a charge-selective pore in the paracellular p...
Understanding of tight junctions has evolved from their historical perception as inert solute barrie...
The paracellular cleft within epithelia/endothelia is sealed by tight junction (TJ) proteins. Their ...
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...
AbstractTight junctions contribute to the paracellular barrier, the fence dividing plasma membranes,...
Tight junctions are multiprotein complexes that form the fundamental physiologic and anatomic barrie...
Tight junctions (TJs) are complex multiprotein structures found in epithelial and endothelial cells ...
2013-07-23Claudins constitute a family of tight junction transmembrane proteins whose first extracel...
Tight-junctions between epithelial cells of biological barriers are specialized molecular structures...
Tight-junctions between epithelial cells of biological barriers are specialized molecular structures...
Claudins are a large family of membrane proteins whose classic function is to regulate the permeabil...
The mechanism of tight junction (TJ) assembly and the structure of claudins (Cldn) that form the TJ ...
Paracellular transport through the tight junction shows selectivity for both ionic charge and solute...