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首页> 外文期刊>Biotechnology Letters >Optimization of conditions for acid protease partitioning and purification in aqueous two-phase systems using response surface methodology
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Optimization of conditions for acid protease partitioning and purification in aqueous two-phase systems using response surface methodology

机译:使用响应面法优化水性两相系统中酸性蛋白酶分配和纯化条件

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摘要

Aspergillopepsin I, an acid protease, was purified using an aqueous two-phase system that comprised various combinations of polyethylene glycol (PEG), NaHPO and NaCl. Partition of the enzyme depended upon the molecular mass of the PEG and the presence of NaCl. With PEG 1500, 4000 and 6000, the partition coefficients were increased by 1,500-, 1,800- and 560-fold compared to values without NaCl. The presence of NaCl (8.75%, w/w) increased purification by 3.8, 9.5 and 2.8 times into these respective PEGs. The optimal aqueous two-phase system for acid protease purification was developed using response surface methodology. This system contained 17.3% of PEG 4000 (w/w), 15% NaHPO (w/w) and 8.75% NaCl (w/w) and provided the best partition coefficient (Ke > 1,100) and yield over 99% in the same phase. The optimal ATPS purification factor of acid protease was over 5.
机译:使用含水两相系统(包括聚乙二醇(PEG),NaHPO和NaCl的各种组合)纯化酸性蛋白酶曲霉菌素I。酶的分配取决于PEG的分子量和NaCl的存在。与没有NaCl的值相比,使用PEG 1500、4000和6000时,分配系数增加了1,500、1,800和560倍。 NaCl(8.75%,w / w)的存在使这些各自的PEG的纯化率分别提高了3.8、9.5和2.8倍。使用响应面方法开发了用于酸性蛋白酶纯化的最佳水两相系统。该系统包含17.3%的PEG 4000(w / w),15%的NaHPO(w / w)和8.75%的NaCl(w / w),并提供了最佳的分配系数(Ke> 1,100),同时产率超过99%相。酸性蛋白酶的最佳ATPS纯化因子超过5。

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