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首页> 外文期刊>Biotechnology Progress >Effects of Chemical Modifications in the Partition Behavior of Proteins in Aqueous Two-Phase Systems: A Case Study with RNase A
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Effects of Chemical Modifications in the Partition Behavior of Proteins in Aqueous Two-Phase Systems: A Case Study with RNase A

机译:化学修饰对蛋白质在水两相系统中分配行为的影响:以RNase A为例

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摘要

Chemical modification of proteins is gaining importance due to the improvement in properties and the broader range of applications that these protein conjugates have. Once modified, several purification strategies need to be applied to isolate the conjugates of interest. Aqueous two-phase systems (ATPS) are an attractive alternative for the primary recovery of proteins and their conjugates. However, to better understand which biochemical parameters affect in greater degree the partition behavior of these modified proteins in ATPS, it becomes necessary to characterize the partition behavior of different species. In this work, ribonuclease A (RNase A) was selected as a model protein to address the partition behavior of chemically modified proteins in ATPS. Native, mono-PEGylated, Uniblue A, Dabsyl Chloride, and Direct Red 83 chemically modified RNase A's were partitioned in 16 different polyethylene glycol (PEG)-potassium phosphate ATPS. Results suggest that while the effects of system design parameters govern the partition of native RNase A, the behavior of the chemically modified species is more influenced by the physicochemical characteristics of the modifying molecules, that in most cases promote partition toward the top polymer-rich phase with recovery percentages as high as 86%. It has been found that both, the hydrophobicity and molecular weight of the modifying species play a preponderant role in conjugate partition behavior since as hydrophobicity increases partition is promoted towards the PEG-rich phase balancing the effect of the molecular weight of the modifying molecules that tends to shift partition towards the salt rich phase.
机译:由于这些蛋白质缀合物的性能改进和广泛的应用范围,蛋白质的化学修饰变得越来越重要。修饰后,需要应用几种纯化策略来分离目标偶联物。两相水相系统(ATPS)是蛋白质及其结合物初步回收的有吸引力的替代方法。然而,为了更好地理解哪些生化参数在更大程度上影响ATPS中这些修饰蛋白的分配行为,有必要表征不同物种的分配行为。在这项工作中,选择核糖核酸酶A(RNase A)作为模型蛋白,以解决化学修饰蛋白在ATPS中的分配行为。将天然的单PEG化Uniblue A,Dabsyl Chloride和Direct Red 83化学修饰的RNase A分配在16种不同的聚乙二醇(PEG)-磷酸钾ATPS中。结果表明,虽然系统设计参数的作用决定了天然RNase A的分配,但化学修饰物种的行为更受修饰分子的理化特性的影响,在大多数情况下,它们会促进向顶部富聚合物相的分配回收率高达86%。已经发现,改性物质的疏水性和分子量均在共轭分配行为中起主要作用,因为随着疏水性增加,分配朝着富含PEG的相促进,从而平衡了趋向于改性分子的分子量的作用。将分配移向富盐阶段。

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