Calvete J J, Mann K, Schäfer W, Fernandez-Lafuente R, Guisán J M
Instituto de Química-Física Rocasolano C.S.I.C., Madrid, Spain.
Biochem J. 1994 Feb 15;298 ( Pt 1)(Pt 1):1-7. doi: 10.1042/bj2980001.
The human integrin glycoprotein (GP)IIb/IIIa plays a central role in haemostasis as an inducible receptor for fibrinogen and other RGD-containing adhesive proteins at the platelet plasma membrane. Expression of the fibrinogen receptor on platelet activation involves conformational changes in the quaternary structure of GPIIb/IIIa. Little is known, however, about the nature of this conformational transition. Given that isolated GPIIb/IIIa contains a mixture of RGD-binding and non-RGD-binding heterodimers, we used limited proteolysis as a tool for investigating the structural differences between the two conformers. Comparison of their fragmentation patterns shows that, whereas in the non-RGD-binding form of GPIIb/IIIa the N-terminal half of the heavy chain of GPIIb (GPIIbH) and the central region of GPIIIa are cleaved by endoproteinase Arg-C, these domains associate tightly with one another in the RGD-binding GPIIb/IIIa and are thus protected from proteolysis. In addition, the C-terminal half of GPIIb becomes more susceptible to degradation in the non-RGD-binding GPIIb/IIIa conformer. Our interpretation, in the context of available structural and functional data, is that a major relative reorientation of the GPIIbH and GPIIIa extracellular domains takes place along the subunit interface during the conformational transition of the platelet integrin.
人类整合素糖蛋白(GP)IIb/IIIa作为血小板质膜上纤维蛋白原和其他含RGD黏附蛋白的诱导性受体,在止血过程中发挥核心作用。血小板活化时纤维蛋白原受体的表达涉及GPIIb/IIIa四级结构的构象变化。然而,对于这种构象转变的本质知之甚少。鉴于分离的GPIIb/IIIa包含RGD结合和非RGD结合异二聚体的混合物,我们使用有限蛋白酶解作为研究这两种构象体结构差异的工具。它们片段化模式的比较表明,在GPIIb/IIIa的非RGD结合形式中,GPIIb重链(GPIIbH)的N端一半和GPIIIa的中央区域被内肽酶Arg-C切割,而在RGD结合的GPIIb/IIIa中,这些结构域彼此紧密结合,因此受到蛋白酶解的保护。此外,在非RGD结合的GPIIb/IIIa构象体中,GPIIb的C端一半更容易被降解。根据现有的结构和功能数据,我们的解释是,在血小板整合素的构象转变过程中,GPIIbH和GPIIIa细胞外结构域沿着亚基界面发生了主要的相对重新定向。