Woska J R, Morelock M M, Jeanfavre D D, Caviness G O, Bormann B J, Rothlein R
Cell Adhesion Group, Department of Immunological Diseases, Boehringer Ingelheim Pharmaceuticals, Inc., Ridgefield, Connecticut 06877, USA.
J Biol Chem. 1998 Feb 20;273(8):4725-33. doi: 10.1074/jbc.273.8.4725.
The interactions of intercellular adhesion molecules-1 and -3 (ICAM-1 and ICAM-3) with lymphocyte function-associated antigen-1 (LFA-1) have been characterized and compared on the molecular and cellular level. Enzyme-linked immunosorbent-based molecular assays have been utilized to calculate the binding affinities of soluble ICAM-1 (sICAM-1) and soluble ICAM-3 (sICAM-3) for LFA-1. Consistent with previously published data, we found that sICAM-1 binds to LFA-1 with an affinity of approximately 60 nM. In contrast, sICAM-3 binds to LFA-1 with an affinity approximately 9 times weaker ( approximately 550 nM). Both sICAM-1 and sICAM-3 require divalent cations for binding. Specifically, both Mg2+ and Mn2+ support high affinity adhesion, although interestingly, high concentrations of Ca2+ decrease the affinity of each molecule for LFA-1 substantially. Furthermore, a panel of anti-LFA-1 monoclonal antibodies were characterized for their ability to block sICAM-1 and sICAM-3/LFA-1 interactions in molecular and cellular assays to help distinguish binding sites on LFA-1 for both molecules. Finally, molecular and cellular competition experiments demonstrate that sICAM-1 and sICAM-3 compete with each other for binding to LFA-1. The above data demonstrate that sICAM-1 and sICAM-3 share a common binding site or an overlapping binding site on LFA-1 and that the apparent differences in binding sites can be attributed to different affinities of sICAM-1 and sICAM-3 for LFA-1.
细胞间黏附分子-1和-3(ICAM-1和ICAM-3)与淋巴细胞功能相关抗原-1(LFA-1)的相互作用已在分子和细胞水平上进行了表征和比较。基于酶联免疫吸附的分子分析已被用于计算可溶性ICAM-1(sICAM-1)和可溶性ICAM-3(sICAM-3)与LFA-1的结合亲和力。与先前发表的数据一致,我们发现sICAM-1以约60 nM的亲和力与LFA-1结合。相比之下,sICAM-3与LFA-1的结合亲和力约弱9倍(约550 nM)。sICAM-1和sICAM-3都需要二价阳离子进行结合。具体而言,Mg2+和Mn2+都支持高亲和力黏附,尽管有趣的是,高浓度的Ca2+会大幅降低每个分子与LFA-1的亲和力。此外,一组抗LFA-1单克隆抗体在分子和细胞分析中被表征其阻断sICAM-1和sICAM-3/LFA-1相互作用的能力,以帮助区分LFA-1上两个分子的结合位点。最后,分子和细胞竞争实验表明sICAM-1和sICAM-3相互竞争与LFA-1的结合。上述数据表明,sICAM-1和sICAM-3在LFA-1上共享一个共同的结合位点或重叠的结合位点,并且结合位点的明显差异可归因于sICAM-1和sICAM-3对LFA-1的不同亲和力。