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首页> 外文期刊>Process Biochemistry >Optimize purification of a cellulase from Bacillus velezensis A4 by aqueous two-phase system (ATPS) using response surface methodology
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Optimize purification of a cellulase from Bacillus velezensis A4 by aqueous two-phase system (ATPS) using response surface methodology

机译:使用响应面分析法优化水相两相系统(ATPS)从维氏芽孢杆菌A4纤维素酶的纯化

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摘要

This work aimed to study and optimize the parameters affecting partition of a cellulase from the strain Bacillus velezensis A4 by aqueous two-phase system (ATPS). Four factors, molecular weight of polyethylene glycol (PEG), PEG concentration, phosphate salt concentration and pH, were investigated. A L-9(3(4)) orthogonal experiment was initially carried out to screen important factors affecting partitioning of the enzyme in ATPS. The detailed study of the parameters on enzyme partitioning in ATPS was carried out using Box-Behnken (Box-B) design of response surface methodology (RSM). The statistical analysis indicated the molecular weight of PEG, PEG concentration, and pH affect the recovery rate and purification factor of cellulase partitioning significantly. The model was built and analyzed through RSM analysis and validated by our experiment. The maximum recovery rate of enzyme (67.8%) and purification factor (1.14) could be achieved under the conditions of PEG 4000 (20.75%, w/w), K2HPO4 (8.5%, w/w), pH 8.5 in ATPS. The cellulase molecular weight was 35 kDa exhibited in zymogram and has an optimum temperature and pH at 60 degrees C and 5.0.
机译:这项工作旨在研究和优化通过水两相系统(ATPS)影响纤维素酶从velacensis velezensis A4菌株中分配的参数。研究了聚乙二醇(PEG)的分子量,PEG浓度,磷酸盐浓度和pH值这四个因素。最初进行了L-9(3(4))正交实验,以筛选影响ATPS中酶分配的重要因素。使用响应面方法(RSM)的Box-Behnken(Box-B)设计对ATPS中的酶分配参数进行了详细研究。统计分析表明,PEG的分子量,PEG的浓度和pH值显着影响纤维素酶分配的回收率和纯化因子。该模型通过RSM分析进行构建和分析,并通过我们的实验进行了验证。在ATPS中的PEG 4000(20.75%,w / w),K2HPO4(8.5%,w / w),pH 8.5的条件下,可以实现酶的最大回收率(67.8%)和纯化因子(1.14)。酶图中显示的纤维素酶分子量为35 kDa,并且在60℃和5.0下具有最佳温度和pH。

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