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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Calorimetric investigation of the protein-flexible chain polymer interactions and its relationship with protein partition in aqueous two-phase systems
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Calorimetric investigation of the protein-flexible chain polymer interactions and its relationship with protein partition in aqueous two-phase systems

机译:水两相系统中蛋白质-柔性链聚合物相互作用的量热研究及其与蛋白质分配的关系

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摘要

The binding of polyethyleneglycol of molecular mass 1000, 3300 and 6000 and polyethylene-propylene oxide (molecular mass 8400) to lysozyme and ovoalbumin was measured by isothermal calorimetric titration. A binding process was found to be associated with a saturation effect, which suggests a protein-polymer interaction. The proteins showed an affinity for the polymers in the order of 10(2) M-1 and it decreased with the increase in the polymer molecular mass. The number of polymer molecules bound per protein molecule varied from 0.01 to 0.2 for polyethyleneglycol 1000, 3300 and polyethylene-polypolypropylene oxide 8400, while for polyethyleneglycol 6000 such number got closer to the unity. The enthalpic change associated with the binding was positive in the order of 1 kcal/mol for lysozyme, while ovoalbumin showed values around 2-3 kcal/mol. Entropic changes were also positive with values around 17-20 e.u. for ovoalbumin and 1-7 e.u. for lysozyme. The heat associated with the protein transfer from a buffer to a medium containing the polymer or the salt (a process similar to protein partitioning in aqueous two-phase systems) was obtained. These results allow the direct calculation of the enthalpic change associated with a protein partition process in aqueous two-phase systems without applying the van'tHoff equation. In this way, it is possible to calculate the associated true heat when the protein is transferred from the bottom to the top phase. (c) 2006 Elsevier B.V. All rights reserved.
机译:用等温滴定法测定了分子量为1000、3300和6000的聚乙二醇和聚环氧丙烷(分子量为8400)与溶菌酶和卵清蛋白的结合。发现结合过程与饱和作用有关,这表明蛋白质-聚合物相互作用。蛋白质对聚合物的亲和力约为10(2)M-1,并且随着聚合物分子量的增加而降低。对于聚乙二醇1000、3300和聚乙烯-聚环氧丙烷8400,每个蛋白质分子结合的聚合物分子的数目从0.01至0.2变化,而对于聚乙二醇6000,该数目更接近于1。与结合有关的焓变对于溶菌酶为1kcal / mol的量级是阳性的,而卵清蛋白的值约为2-3kcal / mol。熵变也呈正值,约为17-20e.u。卵清蛋白和1-7欧元溶菌酶。获得了与蛋白质从缓冲液转移到含有聚合物或盐的介质中相关的热量(类似于在含水两相系统中进行蛋白质分配的过程)。这些结果可以直接计算与水两相系统中蛋白质分配过程相关的焓变,而无需应用van'tHoff方程。这样,当蛋白质从底部转移到顶部时,就可以计算出相关的真实热量。 (c)2006 Elsevier B.V.保留所有权利。

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