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Adsorption of globular proteins on locally planar surfaces: models for the effect of excluded surface area and aggregation of adsorbed protein on adsorption equilibria.

机译:球形蛋白质在局部平面表面上的吸附:排除表面积和吸附蛋白聚集对吸附平衡的影响模型。

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摘要

Equilibrium statistical-thermodynamic models are presented for the surface adsorption of proteins modeled as regular convex hard particles. The adsorbed phase is treated as a two-dimensional fluid, and the chemical potential of adsorbed protein is obtained from scaled particle theory. Adsorption isotherms are calculated for nonassociating and self-associating adsorbing proteins. Area exclusion broadens adsorption isotherms relative to the Langmuir isotherm (negative cooperativity), whereas self-association steepens them (positive cooperativity). The calculated isotherm for adsorption of hard spheres using scaled particle theory for hard discs agrees well with that calculated from the hard disc virial expansion. As the cross section of the adsorbing protein in the plane of the surface becomes less discoidal, the apparent negative cooperativity manifested in the isotherm becomes more pronounced. The model is extended to the case of simultaneous adsorption of a tracer protein at low saturation and a competitor protein with a different size and/or shape at arbitrary fractional saturation. Area exclusion by competitor for tracer (and vice versa) is shown to substantially enhance the displacement of tracer by competitor and to qualitatively invalidate the standard interpretation of ligand competition experiments, according to which the fractional displacement of tracer by competitor is equal to the fractional saturation by competitor.
机译:提出了平衡统计-热力学模型,用于建模为规则凸硬颗粒的蛋白质的表面吸附。吸附相被视为二维流体,吸附蛋白质的化学势可从标尺颗粒理论获得。计算非结合和自结合吸附蛋白的吸附等温线。相对于Langmuir等温线,区域排斥扩大了吸附等温线(负合作性),而自缔合则使吸附等温线变陡(正合作性)。使用缩放粒子理论对硬盘进行的硬球吸附等温线计算与从硬盘病毒性膨胀计算得出的等温线非常吻合。随着吸附蛋白在表面平面中的横截面变得较少盘状,在等温线中表现出的明显的负协同性变得更加明显。该模型扩展到在低饱和度同时吸附示踪蛋白和在任意分数饱和度下具有不同大小和/或形状的竞争蛋白同时吸附的情况。示踪剂被竞争者排除的面积(反之亦然)被证明可以大大增强竞争者的示踪剂位移,并且定性地使配体竞争实验的标准解释无效,据此,竞争者的示踪剂的分数位移等于饱和度的分数由竞争对手。

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  • 作者

    Chatelier, R C; Minton, A P;

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  • 年度 1996
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  • 原文格式 PDF
  • 正文语种 en
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