School of Chemistry and Molecular Bioscience, University of Queensland, Brisbane, Queensland 4072, Australia.
Curr Protein Pept Sci. 2009 Dec;10(6):551-8. doi: 10.2174/138920309789630570.
The platelet glycoprotein receptor regulates the adhesion of blood platelets to damaged blood vessel walls and the subsequent platelet aggregation. One of the subunits, platelet glycoprotein Ibalpha (GpIbalpha), binds thrombin, a serine protease with both procoagulant and anticoagulant activities. Two groups reported the crystal structures of the complex between thrombin and the N-terminal extracellular domain (leucine-rich repeat [LRR] domain) of GpIbalpha. In both these structures, GpIbalpha was reported to bind two thrombin molecules, but both the primary and secondary thrombin binding sites differed between them. We performed a detailed comparison of the two structures to look for insights that may explain the differences. Our results show that the 1:1 GpIbalpha-thrombin complex detected in solution between the crystallized proteins is likely the only strong interaction. The anionic sequence (residues 268-284) of GpIbalpha is likely responsible for the initial interaction with thrombin and the interaction with the rest of LRR domain of GpIbalpha occurs subsequently and may alternate between two or more different binding modes. Our modelling suggests the interaction between GpIbalpha and thrombin is highly pH-dependent and a small change in pH is likely to contribute to the formation of alternate binding modes. The differences in the crystal structures reported for the GpIbalpha-thrombin complex suggest a fascinating plasticity in this protein-protein interaction that may be biologically significant.
血小板糖蛋白受体调节血小板与受损血管壁的黏附以及随后的血小板聚集。其中一个亚基,血小板糖蛋白 Ibα(GpIbα),结合凝血酶,一种具有促凝和抗凝活性的丝氨酸蛋白酶。有两个小组报道了凝血酶与 GpIbα的 N 端细胞外结构域(富含亮氨酸重复[LRR]结构域)复合物的晶体结构。在这两种结构中,均报道 GpIbα结合了两个凝血酶分子,但它们的主要和次要凝血酶结合位点不同。我们对这两种结构进行了详细比较,以寻找可能解释差异的见解。我们的结果表明,在结晶蛋白之间的溶液中检测到的 1:1 GpIbα-凝血酶复合物可能是唯一的强相互作用。GpIbα的阴离子序列(残基 268-284)可能负责与凝血酶的初始相互作用,而与 GpIbα的 LRR 结构域的其余部分的相互作用随后发生,并且可能在两种或更多不同的结合模式之间交替。我们的建模表明 GpIbα与凝血酶的相互作用高度依赖 pH,pH 的微小变化可能导致形成交替结合模式。报道的 GpIbα-凝血酶复合物的晶体结构之间的差异表明这种蛋白质-蛋白质相互作用具有令人着迷的可塑性,这可能具有生物学意义。