Slupsky J R, Seehafer J G, Tang S C, Masellis-Smith A, Shaw A R
Department of Medicine, University of Alberta, Edmonton, Canada.
J Biol Chem. 1989 Jul 25;264(21):12289-93.
Monoclonal antibodies to the CD9 antigen are powerful platelet agonists. We report here the novel finding that the anti-CD9 monoclonal antibodies 50H.19 and ALB6 promote physical association between CD9 antigen and the glycoprotein IIb-IIIa complex (GPIIb-IIIa) component of the platelet fibrinogen receptor. The monoclonal antibodies do not consistently immunoprecipitate proteins other than CD9 from 125I-labeled human platelets even if the platelets are first treated with the homobifunctional cross-linking reagent dithiobis(succinimidyl propionate), indicating that CD9 antigen is not physically associated with other membrane proteins in the resting state. However, the addition of agonistic concentrations of either monoclonal antibody before cross-linking results in the coprecipitation of proteins corresponding in mobility and peptide composition to GPIIb, and GPIIIa. The association of CD9 with the GPIIb-IIIa complex is unaffected by a combination of aspirin and ADP scavengers sufficient to abrogate anti-CD9 monoclonal antibody-induced platelet aggregation, and is therefore not dependent upon thromboxane- and ADP-mediated pathways of intracellular signalling. The specificity of the association is demonstrated by the lack of other coprecipitating major proteins, by the requirement for induction by anti-CD9 monoclonal antibodies, and by the failure to promote reciprocal association with either of the anti-GPIIb-IIIa complex monoclonal antibodies P2 or HuP1-m1a.
针对CD9抗原的单克隆抗体是强效的血小板激动剂。我们在此报告一项新发现:抗CD9单克隆抗体50H.19和ALB6可促进CD9抗原与血小板纤维蛋白原受体的糖蛋白IIb-IIIa复合物(GPIIb-IIIa)成分之间的物理缔合。即使血小板先用同双功能交联剂二硫代双(琥珀酰亚胺丙酸酯)处理,这些单克隆抗体也不能始终如一地从125I标记的人血小板中免疫沉淀除CD9之外的蛋白质,这表明CD9抗原在静息状态下与其他膜蛋白没有物理缔合。然而,在交联之前加入激动剂浓度的任何一种单克隆抗体都会导致共沉淀出迁移率和肽组成与GPIIb和GPIIIa相对应的蛋白质。CD9与GPIIb-IIIa复合物的缔合不受阿司匹林和ADP清除剂组合的影响,该组合足以消除抗CD9单克隆抗体诱导的血小板聚集,因此不依赖于血栓素和ADP介导的细胞内信号传导途径。这种缔合的特异性通过缺乏其他共沉淀的主要蛋白质、对抗CD9单克隆抗体诱导的需求以及未能促进与抗GPIIb-IIIa复合物单克隆抗体P2或HuP1-m1a中的任何一种的相互缔合来证明。