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Predicting the Activity Coefficients of Free-Solvent for Concentrated Globular Protein Solutions Using Independently Determined Physical Parameters

机译:使用独立确定的物理参数预测浓缩球状蛋白溶液中游离溶剂的活度系数

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摘要

The activity coefficient is largely considered an empirical parameter that was traditionally introduced to correct the non-ideality observed in thermodynamic systems such as osmotic pressure. Here, the activity coefficient of free-solvent is related to physically realistic parameters and a mathematical expression is developed to directly predict the activity coefficients of free-solvent, for aqueous protein solutions up to near-saturation concentrations. The model is based on the free-solvent model, which has previously been shown to provide excellent prediction of the osmotic pressure of concentrated and crowded globular proteins in aqueous solutions up to near-saturation concentrations. Thus, this model uses only the independently determined, physically realizable quantities: mole fraction, solvent accessible surface area, and ion binding, in its prediction. Predictions are presented for the activity coefficients of free-solvent for near-saturated protein solutions containing either bovine serum albumin or hemoglobin. As a verification step, the predictability of the model for the activity coefficient of sucrose solutions was evaluated. The predicted activity coefficients of free-solvent are compared to the calculated activity coefficients of free-solvent based on osmotic pressure data. It is observed that the predicted activity coefficients are increasingly dependent on the solute-solvent parameters as the protein concentration increases to near-saturation concentrations.
机译:活度系数在很大程度上被认为是经验参数,传统上是为了校正在热力学系统(例如渗透压)中观察到的非理想性而引入的。在此,对于高达接近饱和浓度的蛋白质水溶液,游离溶剂的活性系数与物理现实参数相关,并且开发了数学表达式以直接预测游离溶剂的活性系数。该模型基于游离溶剂模型,该模型先前已显示出可以很好地预测浓缩和拥挤的球状蛋白在接近饱和浓度的水溶液中的渗透压。因此,该模型在预测中仅使用独立确定的,可物理实现的数量:摩尔分数,溶剂可及的表面积和离子键。提出了对于含有牛血清白蛋白或血红蛋白的近饱和蛋白质溶液的游离溶剂活性系数的预测。作为验证步骤,评估了蔗糖溶液活性系数模型的可预测性。基于渗透压数据,将预测的游离溶剂的活度系数与计算的游离溶剂的活度系数进行比较。可以观察到,随着蛋白质浓度增加到接近饱和浓度,预测的活度系数越来越依赖于溶质溶剂参数。

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