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Enzymatic Degradation of Trichloroethylene Using Enzyme Extracts Isolated From a Bacterial Consortium

机译:从细菌财团分离的酶提取物酶法降解三氯乙烯

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Degradation of trichloroethylene (TCE) using crude enzyme extracts from a bacterial consortium was examined for wastewater treatment.The effects of pH,chemical induction,and cofactor were investigated.Enzyme extracts showed an optimal activity (3.03+-0.03 mg of TCE/[mg of protein-d]) at neutral pH (6.5-7.5).In an attempt to increase the production of effective enzymes for TCE degradation,chemical induction using both toluene and TCE in the growth of the bacterium consortium was conducted.Although the induction increased the overall production of protein by about fourfold,the activity of the extracts was only slightly improved (up to 3.40 mg of TCE/ [mg of protein-d]),indicating that the induction did not specifically enhance the production of TCE-degrading enzymes.Interestingly,the addition of a cofactor (up to 0.02 mg/mL),NADH,led to an initial reaction rate of 5.30 ± 0.05 mg of TCE/(mg of protein-d).This observation demonstrated that the availability of the cofactor played an important role in determining the overall degradation reaction rates.The observations with NADH were in agreement with the assumption that toluene monooxygenases (which are NADH dependent) are the key enzymes for the degradation reactions.
机译:研究了使用细菌财团的粗酶提取物降解三氯乙烯(TCE)的废水处理。研究了pH值,化学诱导和辅因子的影响。酶提取物显示出最佳活性(3.03 + -0.03 mg TCE / [mg为了在中性pH(6.5-7.5)下增加蛋白质的d])的表达。为增加有效的TCE降解酶的产量,在细菌菌群的生长过程中使用甲苯和TCE进行了化学诱导。蛋白质的总产量增加了约四倍,提取物的活性仅稍有提高(高达3.40 mg TCE / [mg -d蛋白质]),这表明诱导并没有特异性地提高TCE降解酶的产量有趣的是,添加辅因子(最高0.02 mg / mL)NADH导致初始反应速率为5.30±0.05 mg TCE /(mg蛋白d)。该观察结果表明,辅因子的可用性扮演了重要角色在确定总降解反应速率中起重要作用。NADH的观察结果与甲苯单加氧酶(NADH依赖性)是降解反应的关键酶的假设相吻合。

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