Nakamura T, Kambayashi J, Okuma M, Tandon N N
Otsuka America Pharmaceutical Inc., Rockville, Maryland 20850, USA.
J Biol Chem. 1999 Apr 23;274(17):11897-903. doi: 10.1074/jbc.274.17.11897.
alpha2beta1 integrin, CD36, and GP VI have all been implicated in platelet-collagen adhesive interactions. We have investigated the role of these glycoproteins on activation of the GP IIb-IIIa complex induced by platelet adhesion to type I fibrillar and monomeric collagen under static conditions. In the presence of Mg2+, platelet adhesion to fibrillar collagen induced activation of the GP IIb-IIIa complex and complete spreading. Anti-alpha2beta1 integrin and anti-GP VI antibodies inhibited the activation of the GP IIb-IIIa complex by about 40 and 50%, respectively, at 60 min although minimal inhibitory effects on adhesion were seen. Platelet spreading was markedly reduced by anti-alpha2beta1 integrin antibody. The combination of anti-alpha2beta1 integrin with anti-GP VI antibody completely inhibited both platelet adhesion and activation of the GP IIb-IIIa complex. Anti-CD36 antibody had no significant effects on platelet adhesion, spreading, and the activation of the GP IIb-IIIa complex at 60 min. Aspirin and the thromboxane A2 receptor antagonist SQ29548 inhibited activation of the GP IIb-IIIa complex about 30% but had minimal inhibitory effect on adhesion. In the absence of Mg2+, there was significant activation of the GP IIb-IIIa complex but minimal spreading was observed. Anti-GP VI antibody completely inhibited adhesion whereas no effect was observed with anti-alpha2beta1 integrin antibody. Anti-CD36 antibody partially inhibited both adhesion and the activation of the GP IIb-IIIa complex. Platelet adhesion to monomeric collagen, which requires Mg2+ and is exclusively mediated by alpha2beta1 integrin, resulted in partial activation of the GPIIb-IIIa complex and spreading. No significant effects were observed by anti-CD36 and anti-GP VI antibodies. These results suggest that both alpha2beta1 integrin and GP VI are involved in inside-out signaling leading to activation of the GP IIb-IIIa complex after platelet adhesion to collagen and generation of thromboxane A2 may further enhance expression of activated GP IIb-IIIa complexes.
α2β1整合素、CD36和糖蛋白VI均与血小板 - 胶原蛋白的黏附相互作用有关。我们研究了这些糖蛋白在静态条件下血小板黏附于I型纤维状和单体胶原蛋白所诱导的糖蛋白IIb - IIIa复合物激活过程中的作用。在存在Mg2+的情况下,血小板黏附于纤维状胶原蛋白会诱导糖蛋白IIb - IIIa复合物的激活和完全铺展。抗α2β1整合素抗体和抗糖蛋白VI抗体在60分钟时分别抑制糖蛋白IIb - IIIa复合物的激活约40%和50%,尽管对黏附的抑制作用极小。抗α2β1整合素抗体显著减少了血小板铺展。抗α2β1整合素抗体与抗糖蛋白VI抗体的组合完全抑制了血小板黏附和糖蛋白IIb - IIIa复合物的激活。抗CD36抗体在60分钟时对血小板黏附、铺展以及糖蛋白IIb - IIIa复合物的激活均无显著影响。阿司匹林和血栓素A2受体拮抗剂SQ29548抑制糖蛋白IIb - IIIa复合物的激活约30%,但对黏附的抑制作用极小。在不存在Mg2+的情况下,糖蛋白IIb - IIIa复合物有显著激活,但观察到的铺展极少。抗糖蛋白VI抗体完全抑制黏附,而抗α2β1整合素抗体则无作用。抗CD36抗体部分抑制了黏附和糖蛋白IIb - IIIa复合物的激活。血小板黏附于单体胶原蛋白(这需要Mg2+且仅由α2β1整合素介导)会导致糖蛋白IIb - IIIa复合物的部分激活和铺展。抗CD36和抗糖蛋白VI抗体未观察到显著影响。这些结果表明,α2β1整合素和糖蛋白VI均参与血小板黏附于胶原蛋白后导致糖蛋白IIb - IIIa复合物激活的由内向外信号传导,并且血栓素A2的生成可能进一步增强活化的糖蛋白IIb - IIIa复合物的表达。