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Structure of von Willebrand factor A1 on polystyrene determined from experimental and calculated sum frequency generation spectra

机译:由实验和计算得出的总和频率产生谱确定冯·威勒布兰德因子A1在聚苯乙烯上的结构

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摘要

The blood-clotting protein von Willebrand factor (vWF) can be activated by small molecules, high shear stress, and interactions with interfaces. It subsequently binds platelet receptor glycoprotein Ibα (GPIbα) at the surface of platelets, thereby playing a crucial role in blood clotting due to platelet activation, which is an important process to consider in the design of cardiovascular implants and biomaterials used in blood-contacting applications. The influence of surfaces on the activation and the molecular-level structure of surface-bound vWF is largely unknown. Recent studies have indicated that when bound to hydrophobic polystyrene (PS), the A1 domain of vWF remains accessible for GPIbα binding. However, the detailed secondary structure and exact orientation of vWF A1 at the PS surface is still unresolved. Here, the authors resolve these features by studying the system with sum-frequency generation (SFG) spectroscopy. The data are consistent with a scenario where vWF A1 maintains a native secondary structure when bound to PS. Comparison of experimental and calculated SFG spectra combined with previously reported time-of-flight secondary ion mass spectrometry data suggests that A1 assumes an orientation with the GPIbα binding domain oriented away from the solid surface and exposed to the solution phase. This structural information will benefit future experiments with surface-adsorbed A1 domain and may have relevance for the design of novel blood-contacting biomaterials and wound-healing applications.
机译:血液凝固蛋白von Willebrand因子(vWF)可以被小分子,高剪切应力以及与界面的相互作用激活。随后它会在血小板表面结合血小板受体糖蛋白Ibα(GPIbα),从而由于血小板活化而在血液凝结中起关键作用,这是设计用于血液接触应用的心血管植入物和生物材料时要考虑的重要过程。表面对表面结合的vWF的活化和分子水平结构的影响很大程度上未知。最近的研究表明,当与疏水性聚苯乙烯(PS)结合时,vWF的A1域仍可与GPIbα结合。但是,vWF A1在PS表面的详细二级结构和确切方向仍未解决。在这里,作者通过研究和频生成(SFG)光谱系统来解决这些问题。数据与vWF A1绑定到PS时保持本机二级结构的场景一致。实验和计算出的SFG光谱与先前报道的飞行时间二次离子质谱数据的比较表明,A1的取向与GPIbα结合结构域背离固体表面并暴露于溶液相。这种结构信息将有益于表面吸附的A1域的未来实验,并且可能与新型血液接触生物材料的设计和伤口愈合应用相关。

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