Kotovuori A, Pessa-Morikawa T, Kotovuori P, Nortamo P, Gahmberg C G
Department of Biosciences, Division of Biochemistry, University of Helsinki, Finland.
J Immunol. 1999 Jun 1;162(11):6613-20.
Cell adhesion mediated by the CD11/CD18 integrins and their ligands, the ICAMs, is required for many leukocyte functions. In resting cells the integrins are nonadhesive, but when activated they become adhesive for their ligands. Previous findings have shown that a peptide derived from the first Ig domain of ICAM-2 (P1) binds to LFA-1 (CD11a/CD18) and Mac-1 (CD11b/CD18) and activates leukocyte aggregation. Because its mechanism of action has remained poorly understood, we have now studied the peptide-induced ligand binding in detail. Here we show that P1 was able to induce CD11/CD18-dependent adhesion of human T lymphocytes to immobilized, purified ICAM-1, -2, and -3. The optimal peptide concentration was 150 micrograms/ml, whereas concentrations higher than 400 micrograms/ml did not have any stimulatory effect. The increase in adhesion was detectable within 10 min of treatment with the peptide; it was dependent on energy, divalent cations, temperature, and an intact cytoskeleton but was unaffected by protein kinase C and protein tyrosine kinase inhibitors. Peptide treatment resulted in strong stimulation of the binding of soluble, recombinant ICAMs to T lymphocytes, showing that the integrin affinity toward its ligands was increased. Importantly, soluble ICAM-2Fc was also able to induce T lymphocyte adhesion to purified ICAM-1, -2, and -3, and it was a more potent stimulatory molecule than ICAM-1Fc or ICAM-3Fc.
许多白细胞功能都需要由CD11/CD18整合素及其配体ICAMs介导的细胞黏附。在静息细胞中,整合素不具有黏附性,但激活后它们会对其配体产生黏附性。先前的研究结果表明,源自ICAM-2第一个Ig结构域的肽(P1)可与LFA-1(CD11a/CD18)和Mac-1(CD11b/CD18)结合,并激活白细胞聚集。由于其作用机制仍不清楚,我们现在详细研究了该肽诱导的配体结合。在此我们表明,P1能够诱导人T淋巴细胞依赖CD11/CD18黏附于固定化的纯化ICAM-1、-2和-3。最佳肽浓度为150微克/毫升,而高于400微克/毫升的浓度没有任何刺激作用。用该肽处理10分钟内即可检测到黏附增加;它依赖于能量、二价阳离子、温度和完整的细胞骨架,但不受蛋白激酶C和蛋白酪氨酸激酶抑制剂的影响。肽处理导致可溶性重组ICAMs与T淋巴细胞的结合受到强烈刺激,表明整合素对其配体的亲和力增加。重要的是,可溶性ICAM-2Fc也能够诱导T淋巴细胞黏附于纯化的ICAM-1、-2和-3,并且它是比ICAM-1Fc或ICAM-3Fc更有效的刺激分子。