Burns A R, Bowden R A, MacDonell S D, Walker D C, Odebunmi T O, Donnachie E M, Simon S I, Entman M L, Smith C W
Cardiovascular Sciences, Department of Medicine, Baylor College of Medicine, Houston, TX, USA.
J Cell Sci. 2000 Jan;113 ( Pt 1):45-57. doi: 10.1242/jcs.113.1.45.
Intercellular junctions have long been considered the main sites through which adherent neutrophils (PMNs) penetrate the endothelium. Tight junctions (TJs; zonula occludens) are the most apical component of the intercellular cleft and they form circumferential belt-like regions of intimate contact between adjacent endothelial cells. Whether PMN transmigration involves disruption of the TJ complex is unknown. We report here that endothelial TJs appear to remain intact during PMN adhesion and transmigration. Human umbilical vein endothelial cell (HUVEC) monolayers, a commonly used model for studying leukocyte trafficking, were cultured in astrocyte-conditioned medium to enhance TJ expression. Immunofluorescence microscopy and immunoblot analysis showed that activated PMN adhesion to resting monolayers or PMN migration across interleukin-1-treated monolayers does not result in widespread proteolytic loss of TJ proteins (ZO-1, ZO-2, and occludin) from endothelial borders. Ultrastructurally, TJs appear intact during and immediately following PMN transendothelial migration. Similarly, transendothelial electrical resistance is unaffected by PMN adhesion and migration. Previously, we showed that TJs are inherently discontinuous at tricellular corners where the borders of three endothelial cells meet and PMNs migrate preferentially at tricellular corners. Collectively, these results suggest that PMN migration at tricellular corners preserves the barrier properties of the endothelium and does not involve widespread disruption of endothelial TJs.
长期以来,细胞间连接一直被认为是黏附的中性粒细胞(PMN)穿透内皮的主要部位。紧密连接(TJs;闭锁小带)是细胞间裂隙最顶端的组成部分,它们在相邻内皮细胞之间形成紧密接触的环形带状区域。PMN迁移是否涉及TJ复合体的破坏尚不清楚。我们在此报告,在内皮细胞的PMN黏附和迁移过程中,内皮紧密连接似乎保持完整。人脐静脉内皮细胞(HUVEC)单层是研究白细胞运输常用的模型,在星形胶质细胞条件培养基中培养以增强TJ表达。免疫荧光显微镜和免疫印迹分析表明,活化的PMN黏附于静息单层细胞或PMN穿过白细胞介素-1处理的单层细胞迁移,不会导致TJ蛋白(ZO-1、ZO-2和闭合蛋白)在内皮边界广泛的蛋白水解损失。在超微结构上,在PMN跨内皮迁移期间及之后,紧密连接看起来是完整的。同样,跨内皮电阻不受PMN黏附和迁移的影响。此前,我们表明紧密连接在三个内皮细胞边界交汇的三细胞角处固有地不连续,并且PMN优先在三细胞角处迁移。总的来说,这些结果表明PMN在三细胞角处的迁移保留了内皮的屏障特性,并且不涉及内皮紧密连接的广泛破坏。