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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Platelet adhesion involves a novel interaction between vimentin and von Willebrand factor under high shear stress
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Platelet adhesion involves a novel interaction between vimentin and von Willebrand factor under high shear stress

机译:在高剪切应力下,血小板粘附涉及波形蛋白和von Willebrand因子之间的新型相互作用

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The interaction between platelet receptor glycoprotein Ibalpha and the A1 domain of von Willebrand factor (VWF) mediates tethering/translocation of platelets to sites of vascular injury. Unexpectedly, we observed platelets translocating over A1A2A3 domains protein slower than on A1 domain at high shear stress. This observation suggests an additional interaction between A domains and an adhesive receptor. We investigated vimentin because we have data showing the interaction of vimentin with the A2 domain of VWF. Moreover, vimentin is expressed on the platelet surface. This novel interaction was analyzed by using purified VWF, recombinant proteins, anti-vimentin antibodies, parallel flow chamber adhesion assays, flow cytometry, and vimentin-deficient murine platelets. The active form of VWF bound to vimentin, and the purified A2 domain blocked that binding. The interaction of a gain-of-function A1A2A3 mutant with platelet was reduced using anti-vimentin antibody. Platelet adhesion to wild-type (WT) A1A2A3 protein, collagen, and fibrin(ogen) was inhibited (32-75%) by anti-vimentin antibody under high shear stress. Compared with WT mice, platelets from vimentin-deficient mice had a reduced flow-dependent adhesion to both collagen and purified murine VWF. Last, the vimentin knockout mice had a prolonged tail bleeding time. The results describe that platelet vimentin engages VWF during platelet adhesion under high shear stress.
机译:血小板受体糖蛋白Ibalpha与血管性血友病因子(VWF)的A1结构域之间的相互作用介导血小板的束缚/转运至血管损伤部位。出乎意料的是,我们观察到在高剪切应力下,血小板在A1A2A3域蛋白上的移位速度比在A1域上慢。该观察结果表明A结构域和粘附受体之间存在额外的相互作用。我们调查了波形蛋白,因为我们有数据显示波形蛋白与VWF的A2结构域之间的相互作用。此外,波形蛋白在血小板表面表达。通过使用纯化的VWF,重组蛋白,抗波形蛋白抗体,平行流室粘附测定,流式细胞仪和波形蛋白缺陷型鼠血小板,分析了这种新颖的相互作用。 VWF的活性形式与波形蛋白结合,而纯化的A2结构域则阻止了该结合。使用抗波形蛋白抗体可降低功能增强型A1A2A3突变体与血小板的相互作用。抗波形蛋白抗体在高剪切应力下可抑制血小板粘附至野生型(WT)A1A2A3蛋白,胶原蛋白和纤维蛋白原(32-75%)。与野生型小鼠相比,波形蛋白缺陷型小鼠的血小板对胶原蛋白和纯化的鼠VWF的血流依赖性粘附降低。最后,波形蛋白敲除小鼠的尾巴出血时间延长。结果表明,血小板波形蛋白在高剪切应力下的血小板粘附过程中与VWF结合。

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