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首页> 外文期刊>Biotechnology Progress >Protein Purification via Aqueous Two-Phase Extraction (ATPE) and Immobilized Metal Affinity Chromatography. Effectiveness of Salt Addition To Enhance Selectivity and Yield of GFPuv
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Protein Purification via Aqueous Two-Phase Extraction (ATPE) and Immobilized Metal Affinity Chromatography. Effectiveness of Salt Addition To Enhance Selectivity and Yield of GFPuv

机译:通过水相两相萃取(ATPE)和固定化金属亲和色谱纯化蛋白质。加盐对增强GFPuv的选择性和产量的有效性

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摘要

This study illustrates the compatibility and complementary nature of aqueous two-phase extraction (ATPE) and immobilized metal affinity chromatography (IMAC) in a general recovery scheme. The purification of green fluorescent protein (GFPuv) from extracts of Eschericia coli was investigated using a combination of these two techniques. High molarity of sodium chloride was found effective in increasing selectivity, with the promotion of hydrophobic interaction the probable mechanism that drove the target protein to a particular phase in ATPE, as well as that which enhanced GFPuv adsorption in IMAC. Moreover, the similar salt condition allows the direct application of the GFPuv-containing phase to the IMAC column wihtout additional adjustment step. A simple screen of conditions was therefore performed to generate a favorable two-step purification scheme for GFP leading to an overall high purity.
机译:这项研究说明了在一般回收方案中水相两相萃取(ATPE)和固定金属亲和色谱(IMAC)的相容性和互补性。使用这两种技术的组合研究了从大肠杆菌提取物中纯化绿色荧光蛋白(GFPuv)。发现高摩尔浓度的氯化钠可有效提高选择性,促进疏水相互作用,这可能是将靶蛋白驱动到ATPE中特定相的可能机理,以及增强了IMAC中GFPuv吸附的机理。而且,相似的盐条件允许将含有GFPuvuv的相直接应用于IMAC色谱柱,而无需进行其他调整步骤。因此,对条件进行了简单的筛选,以生成有利的GFP两步纯化方案,从而实现了总体高纯度。

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