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首页> 外文期刊>Protein Expression and Purification >Optimization of purification conditions for papain in a polyethylene glycol-phosphate aqueous two-phase system using quaternary ammonium ionic liquids as adjuvants by BBD-RSM
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Optimization of purification conditions for papain in a polyethylene glycol-phosphate aqueous two-phase system using quaternary ammonium ionic liquids as adjuvants by BBD-RSM

机译:使用季铵离子液体作为BBD-RSM的佐剂在聚乙二醇 - 磷酸盐水性双相体系中的纯化条件的优化

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摘要

This work attempts to study and optimize the conditions for separating and purifying papain in aqueous two-phase systems (ATPSs). Quaternary ammonium ionic liquids (ILs, 4 wt%) were added as adjuvants to a PEG-phosphate ATPS. On the basis of single-factor experiments, a Box-Behnken design with response surface methodology (BBD-RSM) was used to optimize the purification conditions of papain in the ATPS by setting the NaH2PO4 center dot 2H(2)O concentration, PEG concentration and pH as independent variables and the overall desirability (OD) of the recovery rate of papain, the protein recovery rate and the purification factor as dependent variables. The following optimum conditions were determined: PEG4000 16.4 wt%, NaH2PO4 center dot 2H(2)O 13.7 wt%, pH 6.22, temperature 60 degrees C and enzyme concentration 12.0 mg/ml. Under the optimized conditions, the purification factor for the ATPS supplemented with commercial enzyme increased from 1.331 (no ILs) to 3.380 (containing 4 wt% [N-2222]BF4). The total evaluation OD was 0.9979, the maximum predicted OD was 0.9994, and the deviation rate was -0.15%. Therefore, the model established in this experiment could predict the experimental value well. To verify the practical effect of the model, papain obtained from fresh papaya latex (papain crude extract) was applied to the same ATPS. The results showed that the purification factor of the ATPS with papain crude extract increased from 3.517 (no ILs) to 12.04 (containing 4 wt% [N-2222]BF4). In summary, the addition of 4 wt% ILs to partially replace PEG greatly improved the purification factor for crude papain extract enriched in the phosphate phase, providing a potential method for the large-scale industrial production of papain.
机译:这项工作试图研究和优化在两相系统(ATPS)中分离和纯化木瓜蛋白酶的条件。将季铵离子液体(ILS,4wt%)作为佐剂加入到PEG磷酸盐亚型ATP。在单因素实验的基础上,使用响应面方法(BBD-RSM)的Box-Behnken设计通过设定NaH2PO4中心点2H(2)O浓度,PEG浓度来优化ATP中木瓜蛋白酶的纯化条件和pH作为独立变量以及木瓜蛋白酶回收率的总体期望(OD),蛋白质回收率和纯化因子作为依赖变量。确定以下最佳条件:PEG4000 16.4wt%,NaH2PO4中心点2H(2)O 13.7wt%,pH 6.22,温度60℃和酶浓度12.0mg / ml。在优化的条件下,补充商业酶的ATP的纯化因子从1.331(NO IL)增加到3.380(含有4wt%[N-2222] BF4)。总评价OD为0.9979,最大预测的OD为0.9994,偏差率为-0.15%。因此,在该实验中建立的模型可以很好地预测实验值。为了验证模型的实际效果,从新鲜番木瓜胶乳(瓜素粗提物)获得的木瓜蛋白酶施加到同一ATP。结果表明,用蛋白质原油提取物的ATP的纯化因子从3.517(NO IL)增加到12.04(含有4wt%[N-2222] BF4)。总之,加入4wt%ILs以部分代替PEG大大提高了富含磷酸盐相中富含粗蛋白酶提取物的纯化因子,为木瓜蛋白酶的大规模工业生产提供了潜在的方法。

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