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Protein Interactions in Undersaturated and Supersaturated Solutions: A Study Using Light and X-Ray Scattering

机译:欠饱和和过饱和溶液中的蛋白质相互作用:使用光和X射线散射的研究

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摘要

Protein interactions in undersaturated and supersaturated solutions were investigated using static and dynamic light scattering and small angle x-ray scattering. A morphodrom of lysozyme crystals determined at 35°C and pH = 4.6 was used as a guideline in selecting the protein and precipitant concentrations. The osmotic second virial coefficient, B22, was determined by static and dynamic light scattering. At low ionic strengths for which no crystals were formed, B22 was positive indicating repulsive interactions between the protein molecules. Negative B22 at higher ionic strengths corresponds to attractive interactions where crystallization becomes possible. At two extreme salt concentrations, small angle x-ray scattering data were collected and fitted with a statistical mechanical model based on Derjaguin–Landau–Verwey–Overbeek potential using Random Phase Approximation. This model accounted well for the small angle x-ray scattering data at undersaturated condition with constant potential parameters. At very high salt concentration corresponding to supersaturated solution this model seems to fail, possibly due to the presence of non-Derjaguin–Landau–Verwey–Overbeek hydration repulsion between the molecules.
机译:使用静态和动态光散射和小角度X射线散射研究了不饱和溶液和过饱和溶液中的蛋白质相互作用。在35°C和pH = 4.6时测定的溶菌酶晶体的吗啉用作选择蛋白质和沉淀剂浓度的指南。渗透第二维里系数B22由静态和动态光散射确定。在没有形成晶体的低离子强度下,B22为正,表明蛋白质分子之间存在排斥相互作用。负离子强度较高的负B22对应于可能发生结晶的有吸引力的相互作用。在两个极端盐浓度下,收集了小角度X射线散射数据,并使用随机相位逼近将其拟合为基于Derjaguin–Landau–Verwey–Overbeek势的统计力学模型。该模型很好地解释了在饱和条件下具有恒定电势参数的小角度X射线散射数据。在非常高的盐浓度(对应于过饱和溶液)下,该模型似乎失败了,这可能是由于分子之间存在非德雅金-兰道-韦威-贝克过度水合排斥。

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