Pulous Fadi E, Petrich Brian G
Department of Pediatrics, Aflac Cancer and Blood Disorders Center (FEP, BGP) and Cancer Biology Graduate Program (FEP), Emory University School of Medicine, Atlanta, GA, USA.
Tissue Barriers. 2019;7(4):1685844. doi: 10.1080/21688370.2019.1685844. Epub 2019 Nov 5.
The endothelium physically separates blood from surrounding tissue and yet allows for the regulated passage of nutrients, waste, and leukocytes into and out of the circulation. Trans-endothelium flux occurs across endothelial cells (transcellular) and between endothelial cells (paracellular). Paracellular endothelial barrier function depends on the regulation of cell-cell junctions. Interestingly, a functional relationship between cell-cell junctions and cell-matrix adhesions has long been appreciated but the molecular mechanisms underpinning this relationship are not fully understood. Here we review the evidence that supports the notion that cell-matrix interactions contribute to the regulation of cell-cell junctions, focusing primarily on the important adherens junction protein VE-cadherin. In particular, we will discuss recent insights gained into how integrin signaling impacts VE-cadherin stability in adherens junctions and endothelial barrier function.
内皮将血液与周围组织物理分隔开,但仍允许营养物质、废物和白细胞在循环系统内外进行有调节的运输。跨内皮通量发生在内皮细胞之间(跨细胞途径)以及内皮细胞间(旁细胞途径)。旁细胞内皮屏障功能取决于细胞间连接的调节。有趣的是,细胞间连接与细胞-基质黏附之间的功能关系早已为人所知,但支撑这种关系的分子机制尚未完全明确。在此,我们回顾支持细胞-基质相互作用有助于调节细胞间连接这一观点的证据,主要聚焦于重要的黏附连接蛋白血管内皮钙黏蛋白(VE-钙黏蛋白)。特别地,我们将讨论关于整合素信号如何影响黏附连接中VE-钙黏蛋白稳定性以及内皮屏障功能的最新见解。