Lorant D E, McEver R P, McIntyre T M, Moore K L, Prescott S M, Zimmerman G A
Nora Eccles Harrison Cardiovascular Research and Training Institute, University of Utah School of Medicine, Salt Lake City 84112, USA.
J Clin Invest. 1995 Jul;96(1):171-82. doi: 10.1172/JCI118018.
In acute inflammatory responses, selectins mediate initial rolling of neutrophils (PMNs) along the endothelial surface. This is followed by tight adhesion that requires activation-dependent up-regulation of CD11/CD18 integrins on PMNs. For emigration to occur, the initial bonds that are established at the endothelial surface must be disengaged. We show that activation of PMNs results in their detachment from P-selectin, a glycoprotein expressed at the surface of inflamed endothelium that mediates initial tethering of PMNs. Loosening of the bond occurs when PMNs are activated by platelet-activating factor, which is coexpressed with P-selectin, or by other signaling molecules. The time course of reduced adhesion to P-selectin, when compared to up-regulation of CD11/CD18 integrins, suggests that "bond trading" may occur as activated PMNs transmigrate in vivo. Activation of PMNs did not alter binding of fluid-phase P-selectin, indicating that the ligand(s) for P-selectin is not shed or internalized. Using microspheres coated with P-selectin, we found that ligands for P-selectin were randomly distributed over the surfaces of rounded, unactivated PMNs. An antibody against P-selectin glycoprotein ligand-1 (PSGL-1) completely inhibited binding of P-selectin-coated beads suggesting that P-selectin glycoprotein ligand-1 is the critical binding site in this assay. In contrast to the dispersed pattern on unactivated PMNs, the ligands for P-selectin were localized on the uropods of activated, polarized cells. Pretreating PMNs with cytochalasin D before activation prevented the change in cell shape, the redistribution of binding sites for P-selectin-coated beads, and the decrease in cellular adhesiveness for P-selectin. These experiments indicate that the distribution of ligands for P-selectin is influenced by cellular activation and by cytoskeletal interactions, and that redistribution of these ligands may influence adhesive interactions. Activation of PMNs may cause loosening or disengagement of bonds between P-selectin and its ligands, facilitating transendothelial migration.
在急性炎症反应中,选择素介导中性粒细胞(PMN)沿内皮表面的初始滚动。随后是紧密黏附,这需要PMN上CD11/CD18整合素的激活依赖性上调。为了发生移出,在内皮表面建立的初始键必须解离。我们发现,PMN的激活导致它们与P选择素分离,P选择素是一种在炎症内皮表面表达的糖蛋白,介导PMN的初始拴系。当PMN被与P选择素共表达的血小板活化因子或其他信号分子激活时,键会松开。与CD11/CD18整合素的上调相比,对P选择素黏附减少的时间进程表明,在体内活化的PMN迁移时可能会发生“键交换”。PMN的激活并未改变液相P选择素的结合,表明P选择素的配体未被脱落或内化。使用包被有P选择素的微球,我们发现P选择素的配体随机分布在圆形、未活化的PMN表面。一种针对P选择素糖蛋白配体-1(PSGL-1)的抗体完全抑制了包被有P选择素的珠子的结合,表明P选择素糖蛋白配体-1是该检测中的关键结合位点。与未活化的PMN上的分散模式相反,P选择素的配体位于活化的极化细胞的尾足上。在激活前用细胞松弛素D预处理PMN可防止细胞形状的改变、包被有P选择素的珠子结合位点的重新分布以及细胞对P选择素黏附性的降低。这些实验表明,P选择素配体的分布受细胞激活和细胞骨架相互作用的影响,这些配体的重新分布可能影响黏附相互作用。PMN的激活可能导致P选择素与其配体之间的键松开或解离,促进跨内皮迁移。