首页> 外文OA文献 >Evaluation Of An Extrecellular Lipase From Pseudomonas Cepacia For Purification In Aqueous Two-phase System [avaliação Da Lipase Extracelular De Pseudomonas Cepacia Para Purificação Em Sistema Bifásico Aquoso]
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Evaluation Of An Extrecellular Lipase From Pseudomonas Cepacia For Purification In Aqueous Two-phase System [avaliação Da Lipase Extracelular De Pseudomonas Cepacia Para Purificação Em Sistema Bifásico Aquoso]

机译:两相水系统中纯化假单胞菌胞外脂肪酶的评价

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摘要

In this work, Pseudomonas cepacia was used for fermentation in bioreactor Bioflo III at 150 rpm, at 30 °C to 96 hours. Fermentation was conducted at 150 rpm for 96 hours in 30 °C. We analyzed the enzyme activity under different conditions of temperature (20 to 50 °C) and pH (3.0 to 11.0). The optimum activity values obtained were 37 °C and 8.0, respectively. To evaluate thermal stability, the enzyme was incubated in temperatures of 40, 50 and 60 °C for 120 minutes. Preliminary experiments were carried out to verify the appropriate conditions that should be used after the enzyme partition. Some tests were performed to determine some optimal conditions of lipase, including temperature and pH and tests of thermal stability using temperatures of 40, 50, and 60 °C. Next, the characterization of aqueous two-phase systems (ATPS) with PEG molar weight of 1500, 4000, and 6000 and phosphate varying pH 6 to 8 was made. Stock solutions of PEG 1500, 4000 and 6000 (50% w/w) and phosphate (20% w/w KH2PO4/K2HPO4) were prepared at the appropriate pH. This study on the characterization of the ATPS can be used for posterior partition of lipase, as well as of biological products within this pH range.
机译:在这项工作中,洋葱假单胞菌用于在生物反应器Bioflo III中以150 rpm在30°C至96小时内发酵。在30℃下以150rpm进行发酵96小时。我们分析了温度(20至50°C)和pH(3.0至11.0)在不同条件下的酶活性。获得的最佳活性值分别为37°C和8.0。为了评估热稳定性,将酶在40、50和60°C的温度下孵育120分钟。进行了初步实验以验证酶分配后应使用的适当条件。进行了一些测试以确定脂肪酶的最佳条件,包括温度和pH值,以及使用40、50和60°C的温度进行的热稳定性测试。接下来,进行了PEG分子量为1500、4000和6000以及pH值为6至8的磷酸盐变化的水两相体系(ATPS)的表征。在适当的pH值下制备PEG 1500、4000和6000(50%w / w)和磷酸盐(20%w / w KH2PO4 / K2HPO4)的储备溶液。这项关于ATPS表征的研究可用于脂肪酶以及此pH范围内生物制品的后分配。

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