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Substitutions of surface amino acid residues of cutinase probed by aqueous two-phase partitioning

机译:水相两相分配法检测角质酶表面氨基酸残基的取代

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摘要

The surface properties of a protein are often crucial for recognition and interaction with other molecules. Important functional residues can be identified by mutational analysis. There is a need for rapid methods to study protein surfaces and surface changes due to mutations. Partitioning in aqueous two-phase systems has the potential to be used in this respect since protein partitioning depends on the surface properties of the protein. The influence of surface-exposed amino acid residues in protein partitioning has been studied with cutinase variants, which differed in one or several amino acid residues as a result of site-directed mutagenesis. The solvent accessibility of the mutated residues was determined with a computer program, Graphical Representation and Analysis of Surface Properties. The aqueous two-phase system was composed of dextran and a random copolymer of ethylene oxide and propylene oxide. It was shown, for the first time, to what extent surface-exposed amino acid residues influence the partition coefficient in an aqueous two-phase system. The effect on partitioning could be described only taking into account solvent accessibility and type of residue substitution. The results demonstrate that the system can be used to detect conformational changes in mutant proteins since the expected effect on partitioning due to a mutation can be calculated. The aqueous two-phase system used here does indeed provide a rapid and convenient method to study protein surfaces and slight surface changes due to mutations.
机译:蛋白质的表面特性通常对于识别和与其他分子相互作用至关重要。重要的功能残基可以通过突变分析来鉴定。需要快速的方法来研究蛋白质表面和由于突变引起的表面变化。由于蛋白质分配取决于蛋白质的表面性质,因此在水两相系统中分配具有在这方面的潜力。用角质酶变体研究了表面暴露的氨基酸残基在蛋白质分配中的影响,由于定点诱变,这些变体在一个或几个氨基酸残基上有所不同。突变残基的溶剂可及性通过计算机程序“图形表示​​和表面特性分析”确定。水性两相系统由葡聚糖和环氧乙烷与环氧丙烷的无规共聚物组成。首次表明,在水两相体系中,表面暴露的氨基酸残基在多大程度上影响分配系数。仅在考虑溶剂可及性和残基取代类型的情况下,才能描述对分配的影响。结果表明,该系统可用于检测突变蛋白中的构象变化,因为可以计算出由于突变而引起的对分区的预期效果。此处使用的水相两相系统确实提供了一种快速方便的方法来研究蛋白质表面和由于突变引起的轻微表面变化。

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