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Efficient secretion of three fungal laccases from Saccharomyces cerevisiae and their potential for decolorization of textile industry effluentA comparative study

机译:从酿酒酵母中有效分泌三种真菌漆酶的分泌及其纺织工业污水脱色的潜力效果比较研究

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摘要

Laccases are enzymes with a broad range of biotechnological applications and have, for example, the ability to oxidize many xenobiotics including synthetic dyes. In order to obtain an efficient laccase for the decolorization of dyes which spoil wastewater from the textile industry, genes encoding three various laccase enzymes were expressed in Saccharomyces cerevisiae. The expression of laccases from ascomycete Myceliophthora thermophila (MtL), and two basidiomycetes Trametes versicolor (TvL) and Trametes trogii (TtL) was optimized via selection of plasmids, promoters, media composition, and cultivation conditions. For the first time, the activity of the three secreted laccases was directly compared with the use of various substrates, including different dyes and a wastewater sample. A strong constitutive ADH1 promoter, minimal growth medium, optimized combination of copper and organic nitrogen source, and low cultivation temperature were shown to significantly increase the yields and relative activities of secreted laccases. Heterologous expression of three fungal laccases was successfully achieved in S. cerevisiae being the highest for MtL and the lowest for TvL. MtL, and particularly TtL, showed the decolorization capacity. This is the first report which compared decolorization of synthetic dyes and wastewater by several recombinant laccases and suggested MtL and TtL to be applicable in the ecofriendly enzymatic treatment of colored industry effluent. (c) 2017 American Institute of Chemical Engineers Biotechnol. Prog., 34:69-80, 2018
机译:漆酶是具有广泛的生物技术应用的酶,并且具有例如氧化许多异卵管,包括合成染料的能力。为了获得从纺织业破坏废水的染料的有效漆酶,编码三种各种漆酶的基因在酿酒酵母中表达。通过选择质粒,启动子,培养基组成和培养条件,优化了asceliophothora嗜热菌(MT1)和两种碱基因菌患者的粘滞酶的表达,以及两种碱基因βversicolor(TV1)和TROGII(TTL)。首次,与使用各种底物,包括不同的染料和废水样品,将三种分泌漆酶的活性直接进行比较。表现出强大的组成型ADH1启动子,最小的生长培养基,优化的铜和有机氮源组合,以及低培养温度,显着增加分泌漆酶的产率和相对活性。在S.酿酒酵母中成功地实现了三种真菌漆酶的异源表达是MTL最高的最高的,TVL最低。 MTL,特别是TTL,显示出脱色能力。这是第一个报告,通过几种重组漆酶比较了合成染料和废水的脱色,并提出了MTL和TTL,适用于彩色工业流出物的Ecofrieng酶促治疗。 (c)2017美国化学工程师生物科技学院。 Prog。,34:69-80,2018

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