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首页> 外文期刊>The Journal of Chemical Physics >Effective interactions in lysozyme aqueous solutions: A small-angle neutron scattering and computer simulation study
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Effective interactions in lysozyme aqueous solutions: A small-angle neutron scattering and computer simulation study

机译:溶菌酶水溶液中的有效相互作用:小角度中子散射和计算机模拟研究

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摘要

We report protein-protein structure factors of aqueous lysozyme solutions at different pH and ionic strengths, as determined by small-angle neutron scattering experiments. The observed upturn of the structure factor at small wavevectors, as the pH increases, marks a crossover between two different regimes, one dominated by repulsive forces, and another one where attractive interactions become prominent, with the ensuing development of enhanced density fluctuations. In order to rationalize such experimental outcome from a microscopic viewpoint, we have carried out extensive simulations of different coarse-grained models. We have first studied a model in which macromolecules are described as soft spheres interacting through an attractive r ~(-6) potential, plus embedded pH-dependent discrete charges; we show that the uprise undergone by the structure factor is qualitatively predicted. We have then studied a Derjaguin-Landau-Verwey-Overbeek (DLVO) model, in which only central interactions are advocated; we demonstrate that this model leads to a protein-rich/protein-poor coexistence curve that agrees quite well with the experimental counterpart; experimental correlations are instead reproduced only at low pH and ionic strengths. We have finally investigated a third, mixed model in which the central attractive term of the DLVO potential is imported within the distributed-charge approach; it turns out that the different balance of interactions, with a much shorter-range attractive contribution, leads in this latter case to an improved agreement with the experimental crossover. We discuss the relationship between experimental correlations, phase coexistence, and features of effective interactions, as well as possible paths toward a quantitative prediction of structural properties of real lysozyme solutions.
机译:我们报告了通过小角度中子散射实验确定的不同pH和离子强度下溶菌酶水溶液的蛋白质-蛋白质结构因子。随着pH值的增加,在小波矢处观察到的结构因子的上升标志着两种不同状态之间的交叉,一种是斥力主导,另一种是有吸引力的相互作用变得显着,随之而来的是密度波动增强。为了从微观角度合理化此类实验结果,我们对不同的粗粒度模型进行了广泛的模拟。我们首先研究了一个模型,其中大分子被描述为通过有吸引力的r〜(-6)势加嵌入的pH依赖性离散电荷相互作用的软球。我们表明,定性地预测了结构因子所经历的上升。然后,我们研究了Derjaguin-Landau-Verwey-Overbeek(DLVO)模型,该模型仅倡导中心交互作用。我们证明该模型可导致富含蛋白质/缺乏蛋白质的共存曲线,与实验对应物非常吻合;相反,只有在低pH和离子强度下才能复制实验相关性。我们最终研究了第三个混合模型,其中DLVO电位的中心吸引项是通过分布式收费方法引入的。结果表明,相互作用的不同平衡具有更短范围的吸引力,在后一种情况下导致与实验交叉的一致性得到改善。我们讨论了实验相​​关性,相共存和有效相互作用的特征之间的关系,以及对定量预测真实溶菌酶溶液结构特性的可能途径。

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