重组人血栓反应蛋白肝素结合结构域选择性抑制血小板大聚集体形成。

C Legrand, V Morandi, S Mendelovitz, H Shaked, J R Hartman, A Panet
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引用次数: 32

摘要

血小板反应蛋白(TSP)是一种血小板α颗粒粘附蛋白,通过促进血小板大聚集体的形成,在血栓的稳定中起关键作用。我们最近发现,一种针对TSP nh2末端肝素结合域MAII的单克隆抗体(mAb)以剂量依赖的方式抑制凝血酶诱导的血小板聚集。在本研究中,我们在大肠杆菌中表达了两种重组蛋白,分别包含TSP残基1 ~ 174 (TSP18)和1 ~ 242 (TSP28)。纯化后,两种蛋白与mAb MAII反应良好,而TSP18对肝素的反应性低于TSP28或天然TSP。在微摩尔浓度下,TSP18和TSP28抑制了柠檬酸富血小板血浆中ADP诱导的第二波血小板聚集和伴随的[14C]5-羟色胺的释放,以及洗涤血小板混悬液中低浓度凝血酶诱导的血小板聚集和分泌。通过与放射性标记单抗5G11的结合检测,这些蛋白不会抑制活化血小板上内源性TSP的表面表达,表明它们不会干扰TSP与质膜的初级结合。相比之下,在固相结合实验中,蛋白质以剂量依赖性的方式抑制放射性标记的TSP与表面吸附的纤维蛋白原的结合(TSP18和TSP28分别为IC50, 0.1和0.06 μ mol/L)。此外,通过酶联免疫吸附试验证明了蛋白质与固定纤维蛋白原的特异性和可饱和结合。结果表明,TSP的肝素结合结构域与膜结合纤维蛋白原之间的相互作用可能在血小板聚集/分泌过程中起关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Selective inhibition of platelet macroaggregate formation by a recombinant heparin-binding domain of human thrombospondin.

Thrombospondin (TSP) is a platelet alpha-granule adhesive protein that plays a critical role in the stabilization of thrombus by promoting the formation of platelet macroaggregates. We have recently shown that a monoclonal antibody (mAb) to the NH2-terminal heparin-binding domain of TSP, MAII, inhibits platelet aggregation induced by thrombin in a dose-dependent manner. In this study, we have expressed in Escherichia coli two recombinant proteins comprising residues 1 to 174 (TSP18) and 1 to 242 (TSP28) of TSP. After purification, both proteins reacted equally well with mAb MAII, whereas the reactivity of TSP18 for heparin was lower than that of TSP28 or native TSP. At micromolar concentrations, TSP18 and TSP28 inhibited the second wave of platelet aggregation and the concomitant release of [14C]5-hydroxytryptamine induced by ADP in citrated platelet-rich plasma as well as aggregation and secretion induced by a low concentration of thrombin in washed platelet suspensions. The proteins did not inhibit surface expression of endogenous TSP on activated platelets, as measured by the binding of radiolabeled mAb 5G11, indicating that they did not interfere with the primary binding of TSP to the plasma membrane. In contrast, in a solid-phase binding assay, the proteins inhibited in a dose-dependent manner (IC50, 0.1 and 0.06 mumol/L for TSP18 and TSP28, respectively) the binding of radiolabeled TSP to surface-adsorbed fibrinogen. Furthermore, specific and saturable binding of the proteins to immobilized fibrinogen was demonstrated by enzyme-linked immunosorbent assay. The results suggest that interaction between the heparin-binding domain of TSP and membrane-bound fibrinogen may be critical in the platelet aggregation/secretion process.

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