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首页> 外文期刊>Biotechnology Progress >Efficient and Easily Scalable Protein Folding Strong Anion Exchange Chromatography for Renaturation and Simultaneous Purification of Recombinant Human Asparaginase from E-coli
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Efficient and Easily Scalable Protein Folding Strong Anion Exchange Chromatography for Renaturation and Simultaneous Purification of Recombinant Human Asparaginase from E-coli

机译:高效且易于可伸缩的蛋白质折叠强阴离子交换色谱,用于复制和同时纯化E-Coli的重组人山酰胺酶

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摘要

Recombinant proteins are revolutionizing present day therapeutics. They are generally expressed as insoluble inclusion bodies in the E. coli and mis-folding, loss of protein, and high cost of down streaming are the hurdles in their recovery. For the first time, we are reporting the refolding with simultaneous purification of rhASP in E. coli using a single step utilizing protein folding-strong anion exchange chromatography (PF-SAX). The purification method is also standardized for optimal concentration of solution additives, pH, and mobile phase composition. The results showed purification of rhASP with anion exchange chromatography was effective. Phosphate buffer and slightly alkaline pH produced significant recovery yields and purity profiles. The effect of solution additives such as arginine, glycerol, TMAO, sorbitol, dextran, glutamate, and fructose on rhASP renaturation is also investigated. Significant results were achieved using arginine-TMAO combination in terms of purity, recovery yield and specific activity of 99%, 78%, and 210 IU/mg, respectively. The work concludes that PF-SAX refolding method is superior to other conventional methods and it can be applied to large scale purification of rhASP produced in E. coli. (C) 2018 American Institute of Chemical Engineers
机译:重组蛋白质正在彻底改变现今治疗剂。它们通常表示为在大肠杆菌中的不溶性包合物体,折叠损失,蛋白质丧失,并且倒下的高成本是恢复中的障碍。我们首次报告使用蛋白质折叠强阴离子交换色谱(PF-SAX)的单一步骤同时在大肠杆菌中同时纯化rhasp。纯化方法还标准化,用于最佳浓度的溶液添加剂,pH和流动相组合物。结果表明,阴离子交换色谱法纯化rhash是有效的。磷酸盐缓冲液和略微碱性pH产生显着的回收率和纯度谱。还研究了溶液添加剂如精氨酸,甘油,TMAO,山梨糖醇,葡聚糖,谷氨酸和果糖对rhasp复放的影响。在纯度,回收率和99%,78%和210 IU / mg的纯度,回收率和特异性活性方面,使用精氨酸-TMAO组合实现了显着的结果。该工作得出结论,PF-SAX重折叠方法优于其他常规方法,它可以应用于大肠杆菌生产的rhasp的大规模纯化。 (c)2018美国化学工程研究所

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