Sarantos Melissa R, Raychaudhuri Subhadip, Lum Aaron F H, Staunton Donald E, Simon Scott I
Department of Biomedical Engineering, University of California, Davis, California 95616, USA.
J Biol Chem. 2005 Aug 5;280(31):28290-8. doi: 10.1074/jbc.M501662200. Epub 2005 Jun 13.
Neutrophil rolling and transition to arrest on inflamed endothelium are dynamically regulated by the affinity of the beta(2) integrin CD11a/CD18 (leukocyte function associated antigen 1 (LFA-1)) for binding intercellular adhesion molecule (ICAM)-1. Conformational shifts are thought to regulate molecular affinity and adhesion stability. Also critical to adhesion efficiency is membrane redistribution of active LFA-1 into dense submicron clusters where multimeric interactions occur. We examined the influences of affinity and dimerization of LFA-1 on LFA-1/ICAM-1 binding by engineering a cell-free model in which two recombinant LFA-1 heterodimers are bound to respective Fab domains of an antibody attached to latex microspheres. Binding of monomeric and dimeric ICAM-1 to dimeric LFA-1 was measured in real time by fluorescence flow cytometry. ICAM-1 dissociation kinetics were measured while LFA-1 affinity was dynamically shifted by the addition of allosteric small molecules. High affinity LFA-1 dissociated 10-fold faster when bound to monomeric compared with dimeric ICAM-1, corresponding to bond lifetimes of 25 and 330 s, respectively. Downshifting LFA-1 into an intermediate affinity state with the small molecule I domain allosteric inhibitor IC487475 decreased the difference in dissociation rates between monomeric and dimeric ICAM-1 to 4-fold. When LFA-1 was shifted into the low affinity state by lovastatin, both monomeric and dimeric ICAM-1 dissociated in less than 1 s, and the dissociation rates were within 50% of each other. These data reveal the respective importance of LFA-1 affinity and proximity in tuning bond lifetime with ICAM-1 and demonstrate a nonlinear increase in the bond lifetime of the dimer versus the monomer at higher affinity.
中性粒细胞在炎症内皮上的滚动及向黏附状态的转变,由β₂整合素CD11a/CD18(白细胞功能相关抗原1,LFA-1)与细胞间黏附分子(ICAM)-1结合的亲和力动态调控。构象变化被认为可调节分子亲和力及黏附稳定性。活性LFA-1向发生多聚体相互作用的致密亚微米簇的膜重分布,对黏附效率也至关重要。我们通过构建一个无细胞模型来研究LFA-1的亲和力和二聚化对LFA-1/ICAM-1结合的影响,在该模型中,两个重组LFA-1异二聚体与附着于乳胶微球的抗体的各自Fab结构域结合。通过荧光流式细胞术实时测量单体和二聚体ICAM-1与二聚体LFA-1的结合。在通过添加变构小分子使LFA-1亲和力动态改变时,测量ICAM-1的解离动力学。与二聚体ICAM-1结合时,高亲和力LFA-1与单体ICAM-1结合时的解离速度快10倍,分别对应于25秒和330秒的键寿命。用小分子I结构域变构抑制剂IC487475将LFA-1转变为中等亲和力状态,可使单体和二聚体ICAM-1之间的解离速率差异降至4倍。当用洛伐他汀将LFA-1转变为低亲和力状态时,单体和二聚体ICAM-1均在不到1秒内解离,且解离速率彼此相差不到50%。这些数据揭示了LFA-1亲和力和接近程度在调节与ICAM-1的键寿命中的各自重要性,并证明在较高亲和力下,二聚体与单体的键寿命呈非线性增加。