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Orientational switching of protein conformation as a function of nanoparticle curvature and their geometrical fitting

机译:蛋白质构象的方向转换作为纳米粒子曲率及其几何拟合的函数

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摘要

Among the various surface properties, nanoparticle curvature has a direct effect on the inner root of protein nanoparticle interaction. However, the orientation of adsorbed proteins onto the nanoparticle surface and its binding mechanism still remains elusive because of the lack of in-depth knowledge at the molecular level. Here, we demonstrate detail molecular insights of the orientational switching of several serum proteins as a function of nanoparticle curvature using theoretical simulation along with some experimental results. With the variation of binding stability, four distinctly different classes of orientation were observed for human serum albumin, whereas only two unique classes of conformations were observed for ubiquitin, insulin, and haemoglobin. As a general observation, our data suggested that orientations were exclusively dependent on the specific protein structure and the geometrical fitting onto the nanoparticle surface.
机译:在各种表面特性中,纳米粒子曲率直接影响蛋白质纳米粒子相互作用的内在根。然而,由于在分子水平上缺乏深入的知识,吸附蛋白在纳米颗粒表面上的取向及其结合机制仍然难以捉摸。在这里,我们使用理论模拟和一些实验结果证明了一些血清蛋白质的定向转换作为纳米粒子曲率的函数的详细分子洞察力。随着结合稳定性的变化,对于人血清白蛋白观察到四种截然不同的取向类别,而对于遍在蛋白,胰岛素和血红蛋白仅观察到两种独特的构象类别。作为一般观察,我们的数据表明方向仅取决于特定的蛋白质结构和纳米颗粒表面的几何形状。

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