Palmitoylation of integral membrane proteins can affect intracellular trafficking, protein-protein interactions and protein stability. The goal of the present study was to determine whether claudins, transmembrane-barrier-forming proteins of the tight junction, are palmitoylated and whether this modification has functional implications for the tight-junction barrier. Claudin-14, like other members of the claudin family, contains membrane-proximal cysteines following both the second and the fourth transmembrane domains, which we speculated could be modified b
A fundamental function of epithelia and endothelia is to separate different compartments within the ...
The mechanism of tight junction (TJ) assembly and the structure of claudins (Cldn) that form the TJ ...
<div><p>Epithelia act as a barrier between the internal and external environments, and the movement ...
Palmitoylation of integral membrane proteins can affect intracellular trafficking, protein-protein i...
Post-translational lipid modification of integral membrane proteins is recognized as a key mechanism...
Understanding of tight junctions has evolved from their historical perception as inert solute barrie...
The tight junction tetraspan protein claudin-4 creates a charge-selective pore in the paracellular p...
Tight junction (TJ) forms tissue-specific pathways that selectively control the paracellular permeab...
AbstractThe claudins have recently been identified as a large family of transmembrane proteins locat...
Background: Claudin-7 (cld7), a tight junction (TJ) component, is also found basolaterally and in th...
Tight junctions are multiprotein complexes that form the fundamental physiologic and anatomic barrie...
In epithelial/endothelial barriers, claudins form tight junctions, seal the paracellular cleft, and ...
Claudins are a family of integral membrane proteins that enable epithelial cell/cell interactions by...
The molecular seal between epithelial cells, called the tight junction (TJ), is built by several mem...
AbstractClaudins are tetraspan transmembrane proteins of tight junctions. They determine the barrier...
A fundamental function of epithelia and endothelia is to separate different compartments within the ...
The mechanism of tight junction (TJ) assembly and the structure of claudins (Cldn) that form the TJ ...
<div><p>Epithelia act as a barrier between the internal and external environments, and the movement ...
Palmitoylation of integral membrane proteins can affect intracellular trafficking, protein-protein i...
Post-translational lipid modification of integral membrane proteins is recognized as a key mechanism...
Understanding of tight junctions has evolved from their historical perception as inert solute barrie...
The tight junction tetraspan protein claudin-4 creates a charge-selective pore in the paracellular p...
Tight junction (TJ) forms tissue-specific pathways that selectively control the paracellular permeab...
AbstractThe claudins have recently been identified as a large family of transmembrane proteins locat...
Background: Claudin-7 (cld7), a tight junction (TJ) component, is also found basolaterally and in th...
Tight junctions are multiprotein complexes that form the fundamental physiologic and anatomic barrie...
In epithelial/endothelial barriers, claudins form tight junctions, seal the paracellular cleft, and ...
Claudins are a family of integral membrane proteins that enable epithelial cell/cell interactions by...
The molecular seal between epithelial cells, called the tight junction (TJ), is built by several mem...
AbstractClaudins are tetraspan transmembrane proteins of tight junctions. They determine the barrier...
A fundamental function of epithelia and endothelia is to separate different compartments within the ...
The mechanism of tight junction (TJ) assembly and the structure of claudins (Cldn) that form the TJ ...
<div><p>Epithelia act as a barrier between the internal and external environments, and the movement ...