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Improving the functional expression of a Bacillus licheniformis laccase by random and site-directed mutagenesis

机译:通过随机和定点诱变改善地衣芽孢杆菌漆酶的功能表达

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摘要

BackgroundLaccases have huge potential for biotechnological applications due to their broad substrate spectrum and wide range of reactions they are able to catalyze. These include, for example, the formation and degradation of dimers, oligomers, polymers, and ring cleavage as well as oxidation of aromatic compounds. Potential applications of laccases include detoxification of industrial effluents, decolorization of textile dyes and the synthesis of natural products by, for instance, dimerization of phenolic acids. We have recently published a report on the cloning and characterization of a CotA Bacillus licheniformis laccase, an enzyme that catalyzes dimerization of phenolic acids. However, the broad application of this laccase is limited by its low expression level of 26 mg l-1 that was achieved in Escherichia coli. To counteract this shortcoming, random and site-directed mutagenesis have been combined in order to improve functional expression and activity of CotA.
机译:背景技术漆酶由于其广泛的底物谱和它们能够催化的反应范围而具有巨大的生物技术应用潜力。这些包括例如二聚体,低聚物,聚合物的形成和降解,以及环的裂解以及芳族化合物的氧化。漆酶的潜在应用包括工业废水的脱毒,纺织品染料的脱色和通过例如酚酸的二聚作用合成天然产物。我们最近发表了一份有关CotA地衣芽孢杆菌漆酶(一种催化酚酸二聚化的酶)的克隆和表征的报告。但是,这种漆酶的广泛应用受到在大肠杆菌中达到的低表达水平(26 mg lss-1 )的限制。为了克服该缺点,已经结合了随机诱变和定点诱变,以改善CotA的功能表达和活性。

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