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Protein partitioning in aqueous two-phase systems composed of a pH-responsive copolymer and poly(ethylene glycol)

机译:由pH响应共聚物和聚乙二醇组成的水两相系统中的蛋白质分配

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摘要

The effect of pH and salt concentration on the partitioning behavior of bovine serum albumin (BSA) and cytochrome c in an aqueous two-phase polymer system containing a novel pH-responsive copolymer that mimics the structure of proteins and poly(ethylene glycol) (PEG) was investigated. The two-phase system has low viscosity. Depending on pH and salt concentration, the cytochrome c was found to preferentially partition into the pH-responsive copolymer-rich (bottom) phase under all conditions of pH and salt concentrations considered in the study. This was caused by the attraction between the positively charged protein and negatively charged copolymer. BSA partitioning showed a more complex behavior and partitioned either to the PEG phase or copolymer phase depending on the pH and ionic strength. Extremely high partitioning levels (partition coefficient of 0.004) and very high separation ratios of the two proteins (up to 48) were recorded in the new systems. This was attributed to strong electrostatic interactions between the proteins and the charged copolymer.
机译:pH和盐浓度对水相两相聚合物体系中牛血清白蛋白(BSA)和细胞色素c分配行为的影响,该体系包含新型模仿蛋白质和聚乙二醇(PEG)结构的新型pH响应共聚物)进行了调查。两相系统的粘度低。根据pH和盐浓度,发现在研究中考虑的所有pH和盐浓度条件下,细胞色素c都优先分配到pH响应丰富的共聚物(底部)相中。这是由于带正电的蛋白质和带负电的共聚物之间的吸引力引起的。 BSA分配显示出更复杂的行为,并根据pH和离子强度分配到PEG相或共聚物相。在新系统中记录到极高的分配水平(0.004的分配系数)和两种蛋白质的非常高的分离比(高达48)。这归因于蛋白质和带电共聚物之间的强静电相互作用。

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