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三磷酸腺苷(ATP)对血小板糖蛋白IIb-IIIa上纤维蛋白原受体配体识别的影响。

Effects of ATP on ligand recognition of platelet fibrinogen receptor on GPIIb-IIIa.

作者信息

Gawaz M P, Mayinger P, Neumann F J

机构信息

I Medical Department, Technical University Hospital, Rechts der Isar, Munich, Germany.

出版信息

Am J Physiol. 1994 Sep;267(3 Pt 2):H1098-106. doi: 10.1152/ajpheart.1994.267.3.H1098.

Abstract

The recent discovery of 8-azido-ATP binding sites on the platelet fibrinogen receptor glycoprotein complex GPIIb-IIIa suggests that extracellular ATP may directly modulate function of GPIIb-IIIa. In this study we investigated the effect of ATP on ligand binding to GPIIb-IIIa. Fibrinogen-mediated aggregation of washed platelets was inhibited by ATP and 8-azido-ATP in a dose-dependent manner, independent of the agonist (thrombin, collagen, epinephrine, phorbol 12-myristate 13-acetate) used to induce platelet activation. In addition, 8-azido-ATP and ATP inhibited binding of 125I-labeled fibrinogen to thrombin- and phorbol ester-activated platelets. Interaction of nonstimulated platelets with solid-phase fibrinogen was also reduced by 8-azido-ATP and ATP. Moreover, fibrinogen mimetic peptide-induced conformational change of GPIIb-IIIa on resting platelets was reduced in the presence of both nucleotides. Finally, photoincorporation of 8-azido-[gamma-32P]ATP into GPIIb-IIIa was suppressed by GRGDSP but not by the biologically inactive GRGESP peptide. Thus interaction of ATP with 8-azido-ATP binding sites present on GPIIb-IIIa modulate receptor function, which may play a role in regulation of in vivo platelet aggregation.

摘要

血小板纤维蛋白原受体糖蛋白复合物GPIIb-IIIa上8-叠氮基-ATP结合位点的最新发现表明,细胞外ATP可能直接调节GPIIb-IIIa的功能。在本研究中,我们调查了ATP对配体与GPIIb-IIIa结合的影响。ATP和8-叠氮基-ATP以剂量依赖的方式抑制洗涤过的血小板的纤维蛋白原介导的聚集,这与用于诱导血小板活化的激动剂(凝血酶、胶原、肾上腺素、佛波醇12-肉豆蔻酸酯13-乙酸酯)无关。此外,8-叠氮基-ATP和ATP抑制125I标记的纤维蛋白原与凝血酶和佛波醇酯激活的血小板的结合。8-叠氮基-ATP和ATP也减少了未刺激的血小板与固相纤维蛋白原的相互作用。此外,在两种核苷酸存在的情况下,纤维蛋白原模拟肽诱导的静息血小板上GPIIb-IIIa的构象变化减少。最后,GRGDSP抑制了8-叠氮基-[γ-32P]ATP向GPIIb-IIIa的光掺入,但生物学上无活性的GRGESP肽则没有。因此,ATP与GPIIb-IIIa上存在的8-叠氮基-ATP结合位点的相互作用调节受体功能,这可能在体内血小板聚集的调节中起作用。

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