Alexander J S, Blaschuk O W, Haselton F R
Department of Biomedical Engineering, Vanderbilt University, Nashville, Tennessee 37235.
J Cell Physiol. 1993 Sep;156(3):610-8. doi: 10.1002/jcp.1041560321.
We investigated the role of cadherins in the solute barrier maintained by endothelial cells in vitro. Cell-column chromatographic measurement of endothelial barrier showed that reducing normal extracellular calcium from 1.2 to 0.12 mM increased endothelial permeability to 250% of baseline after 20 min. Restoring normal calcium restored the barrier within 15 min which remained stable for at least 60 min. We used sulfo-NHS-biotin and anti-cadherin antibodies to characterize endothelial proteins with possible roles in the maintenance of endothelial barrier. The non-specific probe sulfo-NHS-biotin identified at least ten endothelial cell surface proteins, with greatest labelling occurring at molecular weights of 125 and 145 kD. Six proteins, including the 125 and 145 kD proteins, associated with the cytoskeleton. Western blotting for the presence of classical cadherins containing the conserved cytoplasmic sequence CDPTAPPYDSLLVFDYEG detected two bands at 145 and 125 kD which associated with the cytoskeleton. Western blotting with an antibody, which recognizes FHLRAHAVDINGNQV, an extracellular homotypic binding region of N-cadherin, detects three bands. Of these three, one protein had a molecular weight of 125 kD and was associated with the cytoskeleton. Immunofluorescence with both N-cadherin and anti-peptide 1 antibodies found staining at endothelial cell borders. The utility of a newly developed cell-column calcium switch assay was tested by verifying the functional role of the previously described epithelial cadherin, uvomorulin, in epithelial barrier. We then applied this method to endothelial cell columns and found the N-cadherin antibody interfered with the reforming of interendothelial junctions. These results suggest that, as in epithelial cells, cadherins in bovine endothelial cells have a functional role in forming the calcium sensitive endothelial junction and may play an important role in the formation of normal barrier.
我们研究了钙黏蛋白在体外内皮细胞维持溶质屏障过程中的作用。内皮屏障的细胞柱色谱测量结果显示,将正常细胞外钙浓度从1.2 mM降至0.12 mM后,20分钟内内皮通透性增加至基线的250%。恢复正常钙浓度后,屏障在15分钟内恢复,且至少60分钟保持稳定。我们使用磺基-NHS-生物素和抗钙黏蛋白抗体来鉴定可能在内皮屏障维持中起作用的内皮蛋白。非特异性探针磺基-NHS-生物素鉴定出至少十种内皮细胞表面蛋白,最大标记出现在分子量为125和145 kD处。六种蛋白,包括125和145 kD的蛋白,与细胞骨架相关。针对含有保守细胞质序列CDPTAPPYDSLLVFDYEG的经典钙黏蛋白进行的蛋白质印迹检测到与细胞骨架相关的145和125 kD两条带。用识别N-钙黏蛋白细胞外同源结合区域FHLRAHAVDINGNQV的抗体进行蛋白质印迹检测到三条带。其中三条带中的一种蛋白分子量为125 kD,与细胞骨架相关。用N-钙黏蛋白和抗肽1抗体进行免疫荧光检测发现在内皮细胞边界处有染色。通过验证先前描述的上皮钙黏蛋白桥粒芯糖蛋白在上皮屏障中的功能作用,测试了新开发的细胞柱钙开关测定法的效用。然后我们将此方法应用于内皮细胞柱,发现N-钙黏蛋白抗体干扰了内皮细胞间连接的重新形成。这些结果表明,与上皮细胞一样,牛内皮细胞中的钙黏蛋白在形成钙敏感的内皮连接中具有功能作用,并且可能在正常屏障的形成中起重要作用。