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Structural Determinants for Protein adsorptionon-adsorption to Silica Surface

机译:蛋白质吸附/不吸附至硅胶表面的结构决定因素

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摘要

The understanding of the mechanisms involved in the interaction of proteins with inorganic surfaces is of major interest in both fundamental research and applications such as nanotechnology. However, despite intense research, the mechanisms and the structural determinants of protein/surface interactions are still unclear. We developed a strategy consisting in identifying, in a mixture of hundreds of soluble proteins, those proteins that are adsorbed on the surface and those that are not. If the two protein subsets are large enough, their statistical comparative analysis must reveal the physicochemical determinants relevant for adsorption versus non-adsorption. This methodology was tested with silica nanoparticles. We found that the adsorbed proteins contain a higher number of charged amino acids, particularly arginine, which is consistent with involvement of this basic amino acid in electrostatic interactions with silica. The analysis also identified a marked bias toward low aromatic amino acid content (phenylalanine, tryptophan, tyrosine and histidine) in adsorbed proteins. Structural analyses and molecular dynamics simulations of proteins from the two groups indicate that non-adsorbed proteins have twice as many π-π interactions and higher structural rigidity. The data are consistent with the notion that adsorption is correlated with the flexibility of the protein and with its ability to spread on the surface. Our findings led us to propose a refined model of protein adsorption.
机译:在基础研究和应用(例如纳米技术)中,对蛋白质与无机表面相互作用涉及的机制的理解都具有重大意义。然而,尽管进行了深入研究,但蛋白质/表面相互作用的机制和结构决定因素仍不清楚。我们开发了一种策略,该方法包括在数百种可溶性蛋白质的混合物中识别吸附在表面的蛋白质和未吸附在表面的蛋白质。如果两个蛋白质子集足够大,则它们的统计比较分析必须揭示与吸附和非吸附有关的理化决定因素。用二氧化硅纳米颗粒测试了该方法。我们发现,吸附的蛋白质包含更多的带电荷氨基酸,尤其是精氨酸,这与该碱性氨基酸参与与二氧化硅的静电相互作用相一致。分析还确定了吸附蛋白中低芳族氨基酸含量(苯丙氨酸,色氨酸,酪氨酸和组氨酸)的明显偏向。两组蛋白质的结构分析和分子动力学模拟表明,未吸附的蛋白质具有两倍的π-π相互作用和更高的结构刚性。数据与吸附与蛋白质的柔韧性以及其在表面上扩散的能力相关的观点一致。我们的发现使我们提出了蛋白质吸附的改进模型。

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