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Adhesive properties of the isolated amino-terminal domain of platelet glycoprotein Ibα in a flow field

机译:血小板糖蛋白Ibα分离的氨基末端结构域在流场中的黏附特性

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摘要

We have examined the interaction between the amino-terminal domain of platelet glycoprotein (GP) Ibα and immobilized von Willebrand Factor (vWF) under flow conditions in the absence of other components of the GP Ib–IX–V complex. Latex beads were coated with a recombinant fragment containing GP Ibα residues 1–302, either with normal sequence or with the single G233V substitution that causes enhanced affinity for plasma vWF in platelet-type pseudo-von-Willebrand disease. Beads coated with native fragment adhered to vWF in a manner comparable to platelets, showing surface translocation that reflected the transient nature of the bonds formed. Thus, the GP Ibα extracellular domain is necessary and sufficient for interacting with vWF under high shear stress. Beads coated with the mutated fragment became tethered to vWF in greater number and had lower velocity of translocation than beads coated with the normal counterpart, suggesting that the G233V mutation lowers the rate of bond dissociation. Our findings define an approach for studying the biomechanical properties of the GP Ibα–vWF bond and suggest that this interaction is tightly regulated to allow rapid binding at sites of vascular injury, while permitting the concurrent presence of receptor and ligand in the circulation.
机译:我们检查了在没有GP Ib–IX–V复合物其他成分的情况下,流动条件下血小板糖蛋白(GP)Ibα的氨基末端结构域与固定的von Willebrand因子(vWF)之间的相互作用。乳胶珠用含有GPIbα残基1–302的重组片段包被,该片段具有正常序列或单个G233V取代,导致血小板型假性von-Willebrand病与血浆vWF的亲和力增强。涂有天然片段的珠以与血小板相当的方式粘附于vWF,显示出表面易位,反映了所形成键的瞬时性质。因此,GPIbα胞外域对于在高剪切应力下与vWF相互作用是必要和充分的。涂有突变片段的珠子比用正常涂膜的珠子更多地被束缚在vWF上,并且易位速度较低,这表明G233V突变降低了键解离的速率。我们的发现为研究GPIbα-vWF键的生物力学特性定义了一种方法,并建议这种相互作用受到严格调节,以允许在血管损伤部位快速结合,同时允许循环中同时存在受体和配体。

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