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首页> 外文期刊>Journal of Biotechnology >Protein precipitation by polyethylene glycol: A generalized model based on hydrodynamic radius
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Protein precipitation by polyethylene glycol: A generalized model based on hydrodynamic radius

机译:聚乙二醇沉淀蛋白质:基于流体动力学半径的通用模型

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摘要

PEGs for protein precipitation are usually classified by molecular weight. The higher molecular weight precipitants are more efficient but result in higher viscosity. Following empirical evidence that the precipitation efficiency is more comprehensively characterized by PEG hydrodynamic radius (r(h,pEG)) than molecular weight, this paper proposes a model to explicate the significance of r(h,pEG). A general expression was formulated to characterize the PEG effect exclusively by r(h.pEG). The coefficients of a linearized form were then fitted using empirical solubility data. The result is a simple numerical relation that models the efficiency of general-shaped PEG precipitants as a function of r(h,pEG) and protein hydrodynamic radius (r(h,prot)). This equation also explains the effects of environmental conditions and PEG branching. While predictions by the proposed correlation agree reasonably well with independent solubility data, its simplicity gives rise to potential quantitative deviations when involving small proteins, large proteins and protein mixtures. Nonetheless, the model offers a new insight into the precipitation mechanism by clarifying the significance of r(h,PEG). This in turn helps to refine the selection criterion for PEG precipitants. (C) 2011 Elsevier B.V. All rights reserved.
机译:用于蛋白质沉淀的PEG通常按分子量分类。较高分子量的沉淀剂更有效,但导致较高的粘度。根据经验证据,降水效率是由PEG流体动力学半径(r(h,pEG))而非分子量更全面地表征的,本文提出了一个模型来阐明r(h,pEG)的意义。通过r(h.pEG)配制了通用表达来表征PEG效应。然后使用经验溶解度数据拟合线性化系数。结果是一个简单的数值关系,该模型将通用形状的PEG沉淀剂的效率建模为r(h,pEG)和蛋白质流体动力学半径(r(h,prot))的函数。该方程式还解释了环境条件和PEG分支的影响。虽然所提出的相关性的预测与独立的溶解度数据相当吻合,但当涉及小蛋白,大蛋白和蛋白混合物时,其简单性会引起潜在的定量偏差。尽管如此,该模型通过阐明r(h,PEG)的重要性,为沉淀机理提供了新的见解。反过来,这有助于完善PEG沉淀剂的选择标准。 (C)2011 Elsevier B.V.保留所有权利。

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