Atarashi Kazuyuki, Hirata Takako, Matsumoto Masanori, Kanemitsu Naotoshi, Miyasaka Masayuki
Laboratory of Molecular and Cellular Recognition, Osaka University Graduate School of Medicine, Osaka, Japan.
J Immunol. 2005 Feb 1;174(3):1424-32. doi: 10.4049/jimmunol.174.3.1424.
Activated T cells migrate from the blood into nonlymphoid tissues through a multistep process that involves cell rolling, arrest, and transmigration. P-Selectin glycoprotein ligand-1 (PSGL-1) is a major ligand for P-selectin expressed on subsets of activated T cells such as Th1 cells and mediates cell rolling on vascular endothelium. Rolling cells are arrested through a firm adhesion step mediated by integrins. Although chemokines presented on the endothelium trigger integrin activation, a second mechanism has been proposed where signaling via rolling receptors directly activates integrins. In this study, we show that Ab-mediated cross-linking of the PSGL-1 on Th1 cells enhances LFA-1-dependent cell binding to ICAM-1. PSGL-1 cross-linking did not enhance soluble ICAM-1 binding but induced clustering of LFA-1 on the cell surface, suggesting that an increase in LFA-1 avidity may account for the enhanced binding to ICAM-1. Combined stimulation by PSGL-1 cross-linking and the Th1-stimulating chemokine CXCL10 or CCL5 showed a more than additive effect on LFA-1-mediated Th1 cell adhesion as well as on LFA-1 redistribution on the cell surface. Moreover, PSGL-1-mediated rolling on P-selectin enhanced the Th1 cell accumulation on ICAM-1 under flow conditions. PSGL-1 cross-linking induced activation of protein kinase C isoforms, and the increased Th1 cell adhesion observed under flow and also static conditions was strongly inhibited by calphostin C, implicating protein kinase C in the intracellular signaling in PSGL-1-mediated LFA-1 activation. These results support the idea that PSGL-1-mediated rolling interactions induce intracellular signals leading to integrin activation, facilitating Th1 cell arrest and subsequent migration into target tissues.
活化的T细胞通过一个多步骤过程从血液迁移到非淋巴组织,该过程涉及细胞滚动、停滞和迁移。P-选择素糖蛋白配体-1(PSGL-1)是活化T细胞亚群(如Th1细胞)上表达的P-选择素的主要配体,介导细胞在血管内皮上的滚动。滚动的细胞通过整合素介导的牢固黏附步骤而停滞。尽管内皮细胞上呈现的趋化因子触发整合素激活,但已提出第二种机制,即通过滚动受体的信号传导直接激活整合素。在本研究中,我们表明抗体介导的Th1细胞上PSGL-1的交联增强了LFA-1依赖性细胞与ICAM-1的结合。PSGL-1交联并未增强与可溶性ICAM-1的结合,但诱导了LFA-1在细胞表面的聚集,这表明LFA-1亲和力的增加可能是与ICAM-1结合增强的原因。PSGL-1交联与Th1刺激趋化因子CXCL10或CCL5的联合刺激对LFA-1介导的Th1细胞黏附以及LFA-1在细胞表面的重新分布显示出超过相加的效应。此外,PSGL-1介导的在P-选择素上的滚动增强了流动条件下Th1细胞在ICAM-1上的积累。PSGL-1交联诱导蛋白激酶C同工型的激活,并且在流动和静态条件下观察到的Th1细胞黏附增加被钙泊三醇C强烈抑制,这表明蛋白激酶C参与了PSGL-1介导的LFA-1激活中的细胞内信号传导。这些结果支持以下观点:PSGL-1介导的滚动相互作用诱导导致整合素激活的细胞内信号,促进Th1细胞停滞并随后迁移到靶组织中。