Claudins are integral transmembrane components of the tight junctions forming trans-epithelial barriers in many organs, such as the nervous system, lung, and epidermis. In Drosophila three claudins have been identified that are required for forming the tight junctions analogous structure, the septate junctions (SJs). The lack of claudins results in a disruption of SJ integrity leading to a breakdown of the trans-epithelial barrier and to disturbed epithelial morphogenesis. However, little is known about claudin partners for transport mechanisms and membrane organization. Here we present a comprehensive analysis of the claudin proteome in Drosophila by combining biochemical and physiological approaches. Using specific antibodies against the ...
Claudin-5 determines the sealing properties of blood-brain barrier tight junctions and its function ...
Claudins are major constituents of tight junctions, contributing both to their intercellular sealing...
BACKGROUND: Genetic analysis of the Drosophila septate junctions has greatly contributed to our unde...
Claudins are integral transmembrane components of the tight junctions forming trans-epithelial barri...
Epithelien sind Zellschichten, die die Funktion haben, Körperkompartimente abzugrenzen. Dabei müssen...
Claudine sind essentielle tight junctions Transmembranproteine in Vertebraten und sind lebensnotwend...
Mit megatrachea (mega) und wurst habe ich zwei neue Drosophila Gene identifizieren können, die beide...
AbstractClaudins (∼23 kDa) with four transmembrane domains are major cell adhesion molecules working...
Body cavities and external surfaces of metazoic organisms are covered with sheets of epithelial cel...
All metazoans possess an epithelial barrier that protects them from their environment and prevents l...
The maintenance of paracellular barriers in invertebrate epithelia depends on the integrity of speci...
Epithelial barriers are central to the development of metazoans by compartmentalizing the body in di...
AbstractClaudins (Cldn) are essential membrane proteins of tight junctions (TJs), which form the par...
The involvement of Septate Junctions (SJs) in critical cellular functions that extend beyond their r...
Claudins are the major transmembrane protein components of tight junctions in human endothelia and e...
Claudin-5 determines the sealing properties of blood-brain barrier tight junctions and its function ...
Claudins are major constituents of tight junctions, contributing both to their intercellular sealing...
BACKGROUND: Genetic analysis of the Drosophila septate junctions has greatly contributed to our unde...
Claudins are integral transmembrane components of the tight junctions forming trans-epithelial barri...
Epithelien sind Zellschichten, die die Funktion haben, Körperkompartimente abzugrenzen. Dabei müssen...
Claudine sind essentielle tight junctions Transmembranproteine in Vertebraten und sind lebensnotwend...
Mit megatrachea (mega) und wurst habe ich zwei neue Drosophila Gene identifizieren können, die beide...
AbstractClaudins (∼23 kDa) with four transmembrane domains are major cell adhesion molecules working...
Body cavities and external surfaces of metazoic organisms are covered with sheets of epithelial cel...
All metazoans possess an epithelial barrier that protects them from their environment and prevents l...
The maintenance of paracellular barriers in invertebrate epithelia depends on the integrity of speci...
Epithelial barriers are central to the development of metazoans by compartmentalizing the body in di...
AbstractClaudins (Cldn) are essential membrane proteins of tight junctions (TJs), which form the par...
The involvement of Septate Junctions (SJs) in critical cellular functions that extend beyond their r...
Claudins are the major transmembrane protein components of tight junctions in human endothelia and e...
Claudin-5 determines the sealing properties of blood-brain barrier tight junctions and its function ...
Claudins are major constituents of tight junctions, contributing both to their intercellular sealing...
BACKGROUND: Genetic analysis of the Drosophila septate junctions has greatly contributed to our unde...