粘合连接
细胞生物学
罗亚
紧密连接
并行传输
细胞结
肌动蛋白细胞骨架
磷酸化
酪氨酸磷酸化
血管通透性
VE钙粘蛋白
生物
内皮干细胞
内皮
细胞骨架
化学
钙粘蛋白
信号转导
生物化学
细胞
磁导率
内分泌学
体外
膜
作者
Mariya Y. Radeva,Jens Waschke
摘要
Abstract The endothelial barrier consists of intercellular contacts localized in the cleft between endothelial cells, which is covered by the glycocalyx in a sievelike manner. Both types of barrier‐forming junctions, i.e. the adherens junction ( AJ ) serving mechanical anchorage and mechanotransduction and the tight junction ( TJ ) sealing the intercellular space to limit paracellular permeability, are tethered to the actin cytoskeleton. Under resting conditions, the endothelium thereby builds a selective layer controlling the exchange of fluid and solutes with the surrounding tissue. However, in the situation of an inflammatory response such as in anaphylaxis or sepsis intercellular contacts disintegrate in post‐capillary venules leading to intercellular gap formation. The resulting oedema can cause shock and multi‐organ failure. Therefore, maintenance as well as coordinated opening and closure of interendothelial junctions is tightly regulated. The two principle underlying mechanisms comprise spatiotemporal activity control of the small GTP ases Rac1 and RhoA and the balance of the phosphorylation state of AJ proteins. In the resting state, junctional Rac1 and RhoA activity is enhanced by junctional components, actin‐binding proteins, c AMP signalling and extracellular cues such as sphingosine‐1‐phosphate (S1P) and angiopoietin‐1 (Ang‐1). In addition, phosphorylation of AJ components is prevented by junction‐associated phosphatases including vascular endothelial protein tyrosine phosphatase ( VE ‐ PTP ). In contrast, inflammatory mediators inhibiting c AMP /Rac1 signalling cause strong activation of RhoA and induce AJ phosphorylation finally leading to endocytosis and cleavage of VE ‐cadherin. This results in dissolution of TJ s the outcome of which is endothelial barrier breakdown.
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