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双水相体系中生物分子分配的基础研究。

Fundamental studies of biomolecule partitioning in aqueous two-phase systems.

作者信息

Diamond A D, Hsu J T

机构信息

Department of Chemical Engineering, Bioprocessing Institute, Lehigh University, Bethlehem, Pennsylvania 18015, USA.

出版信息

Biotechnol Bioeng. 1989 Oct 5;34(7):1000-14. doi: 10.1002/bit.260340714.

Abstract

Phase diagram data at 4 degrees C was determined for the aqueous two-phase systems composed of polyethylene glycol, dextran, and water. The Flory-Huggins theory of polymer thermodynamics was used to correlate partitioning of biomolecules in these aqueous two-phase systems resulting in a simple linear relationship between the natural logarithm of the partition coefficient and the concentration of polymers in the two phases. This relationship was verified by partitioning a series of dipeptides which differ from one another by the addition of a CH(2) group on the c-terminal amino acid residue and by utilizing a set of low-molecular-weight proteins. The slope of the line could be expressed in terms of the interactions of the biomolecule with the phase forming polymers and water. The main result for the dipeptides was that knowledge of the partition coefficient in any of the PEG/dextran/water systems, regardless of polymer molecular weight, enabled prediction of the coefficient in all of the systems. The dipeptides were also used for determination of the Gibbs free energy of transfer of a CH(2) group between the phases. This quantity was correlated with polymer concentration, thus establishing a hydrophobicity profile for the PEG/ dextran/water systems. The methodology for predicting dipeptide partition coefficients was extended to proteins, where it was found that low-molecular-weight proteins gave a linear relationship with the tie line compositions of a phase diagram.

摘要

测定了由聚乙二醇、葡聚糖和水组成的双水相系统在4℃时的相图数据。利用聚合物热力学的弗洛里-哈金斯理论来关联生物分子在这些双水相系统中的分配情况,结果表明分配系数的自然对数与两相中聚合物的浓度之间存在简单的线性关系。通过对一系列二肽进行分配验证了这种关系,这些二肽在C端氨基酸残基上通过添加一个-CH₂-基团而彼此不同,并且利用了一组低分子量蛋白质。直线的斜率可以根据生物分子与形成相的聚合物和水之间的相互作用来表示。对于二肽的主要结果是,在任何PEG/葡聚糖/水系统中,无论聚合物分子量如何,只要知道分配系数,就能够预测所有系统中的系数。二肽还用于测定-CH₂-基团在两相之间转移的吉布斯自由能。这个量与聚合物浓度相关,从而建立了PEG/葡聚糖/水系统的疏水性分布图。预测二肽分配系数的方法扩展到了蛋白质,结果发现低分子量蛋白质与相图的系线组成呈线性关系。

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