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血小板膜糖蛋白IIb和IIIa与纤维蛋白原D结构域的复合物形成

Complex formation of platelet membrane glycoproteins IIb and IIIa with the fibrinogen D domain.

作者信息

Nachman R L, Leung L L, Kloczewiak M, Hawiger J

出版信息

J Biol Chem. 1984 Jul 10;259(13):8584-8.

PMID:6234315
Abstract

Glycoprotein IIb (GPIIb) and glycoprotein IIIa (GPIIIa) form a macromolecular complex on the activated platelet surface which contains the fibrinogen-binding site necessary for normal platelet aggregation. To identify the specific region of the fibrinogen molecule responsible for its interaction with the GPIIb-GPIIIa complex, purified fragment D1 (Mr = 100,000) and fragment E (Mr = 50,000) were prepared from plasmin digests of purified human fibrinogen. In addition, the polypeptide chain subunits A alpha, B beta, and gamma of fibrinogen were prepared. Using an enzyme-linked immunosorbent assay we have demonstrated that isolated fragment D1 in a solid phase system forms a complex with a mixture of GPIIb and GPIIIa. The binding of the GPIIb-GPIIIa mixture to fragment D1-coated plates reached saturation at 8 nM and to fibrinogen-coated plates at 24 nM. Isolated A alpha, B beta, and gamma chains were not reactive with added glycoproteins. Fragment E coated directly on plastic plates or immobilized on antibody-coated plastic plates did not form a complex with GPIIb-GPIIIa. Only fluid phase fibrinogen and fragment D1 but not fragment E were inhibitory toward formation of a complex between solid phase fibrinogen and GPIIb-GPIIIa. Isolated A alpha, B beta, and gamma chains at concentrations equivalent to fluid phase fibrinogen were inactive. Binding of fragment D1 but not fragment E to the GPIIb-GPIIIa complex was also demonstrated by rocket immunoelectrophoresis of the membrane glycoprotein mixture through a gel containing the individual fragments and subsequent autoradiography of the complex following exposure to 125I-anti-fibrinogen. These observations with isolated platelet membrane glycoproteins provide strong evidence that each of the D domains of the fibrinogen molecule interacts directly with the GPIIb-GPIIIa complex on the activated platelet surface, thus allowing formation of a tertiary molecular "bridge" across the surface of two adjacent activated platelets.

摘要

糖蛋白IIb(GPIIb)和糖蛋白IIIa(GPIIIa)在活化的血小板表面形成一种大分子复合物,该复合物包含正常血小板聚集所必需的纤维蛋白原结合位点。为了确定纤维蛋白原分子中负责与GPIIb - GPIIIa复合物相互作用的特定区域,从纯化的人纤维蛋白原的纤溶酶消化物中制备了纯化的片段D1(分子量 = 100,000)和片段E(分子量 = 50,000)。此外,还制备了纤维蛋白原的多肽链亚基Aα、Bβ和γ。使用酶联免疫吸附测定法,我们已经证明在固相系统中分离的片段D1与GPIIb和GPIIIa的混合物形成复合物。GPIIb - GPIIIa混合物与包被片段D1的平板的结合在8 nM时达到饱和,与包被纤维蛋白原的平板的结合在24 nM时达到饱和。分离的Aα、Bβ和γ链与添加的糖蛋白无反应性。直接包被在塑料平板上或固定在抗体包被的塑料平板上的片段E不与GPIIb - GPIIIa形成复合物。只有液相纤维蛋白原和片段D1而不是片段E对固相纤维蛋白原和GPIIb - GPIIIa之间复合物的形成具有抑制作用。浓度与液相纤维蛋白原相当的分离的Aα、Bβ和γ链没有活性。通过含有各个片段的凝胶对膜糖蛋白混合物进行火箭免疫电泳,并在暴露于125I - 抗纤维蛋白原后对复合物进行放射自显影,也证明了片段D1而非片段E与GPIIb - GPIIIa复合物的结合。这些关于分离的血小板膜糖蛋白的观察结果提供了强有力的证据,即纤维蛋白原分子的每个D结构域都直接与活化的血小板表面上的GPIIb - GPIIIa复合物相互作用,从而允许在两个相邻活化血小板的表面上形成三级分子“桥”。

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