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首页> 外文期刊>Environmental Science: Nano >Protein corona formed on silver nanoparticles in blood plasma is highly selective and resistant to physicochemical changes of the solution
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Protein corona formed on silver nanoparticles in blood plasma is highly selective and resistant to physicochemical changes of the solution

机译:在血浆中的银纳米颗粒上形成的蛋白质电晕是高度选择性和抗溶液的物理化学变化

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摘要

Nanoparticles (NPs) in contact with protein-containing media such as biological fluids rapidly acquire a surface layer of proteins, known as the protein corona. The protein composition and structural properties of the protein corona are crucial for NP interactions with living cells. Although much has been learned about the protein corona phenomenon, further elucidation could benefit from extensive quantitative proteomics analysis. Herein we report a comprehensive quantitative characterization (>350 proteins) of the corona that formed on 60 nm silver NPs via interaction with human blood plasma, as a function of pH and temperature. By varying the pH and temperature one can access different conformational spaces and charge localizations of the plasma proteins, which in turn provide knowledge pertinent to how the proteome corresponds to binding affinity. Thirty-eight percent of the quantified proteins bind at all temperatures, 47% at all pH values, and of these most persistent proteins, approximately 60% do not significantly change in abundance within the protein corona. Evaluation of 544 protein properties (present in the Kyoto databank) suggests that binding of these proteins to NPs is determined by the extent of hydrophobicity, -sheet propensity, -helical structure (and turns), and amino acid composition. Protein binding is promoted by a larger amount of -sheets, higher hydrophobicity, and a smaller amount of -helices. Our work enhances researchers' knowledge of a long-standing, vexing aspect of the nano-bio interface.
机译:与含蛋白质的介质(例如生物流体)接触的纳米颗粒(NPS)迅速获得蛋白质的表面层,称为蛋白质电晕。蛋白质Corona的蛋白质组成和结构性质对于与活细胞的NP相互作用至关重要。虽然已经了解了蛋白质电晕现象的很多,但进一步阐明可以从广泛的定量蛋白质组学分析中受益。在此,我们报告了通过与人血浆的相互作用,在60nm银NPS上形成的态度的综合定量表征(> 350蛋白),其是pH和温度的函数。通过改变pH和温度,可以进入不同的构象空间和血浆蛋白的充电局部,这反过来提供了与蛋白质组如何对应于结合亲和力的知识。在所有温度下,38%的量化蛋白质在所有温度下结合,在所有pH值下47%,以及这些最持久的蛋白质,约60%在蛋白质电晕内没有显着变化。评估544个蛋白质特性(京都数据库中存在)表明这些蛋白质与NPS的结合是通过疏水性, - 曲线倾偏, - elical结构(以及转弯)和氨基酸组合物的程度决定。蛋白质结合通过较大量的 - 晶片,较高的疏水性和较少量的-Helices促进。我们的工作提高了研究人员对纳米生物界面的长期烦恼方面的了解。

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