The Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi 214122, PR China, PR China.
The Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi 214122, PR China, PR China.
Enzyme Microb Technol. 2018 Feb;109:11-19. doi: 10.1016/j.enzmictec.2017.07.013. Epub 2017 Sep 14.
Bacterial laccases are potential enzymes for biotechnological applications, such as detoxification of industrial effluents, decolorization of textile, and dimerization of phenolic acids, due to their remarkable advantages, including broad substrate spectrum, high thermostability, wide pH scope, and tolerance to alkaline environments. L386W/G417L/G57F (abbreviated as WLF), a good mutant of CotA-laccase from Bacillus pumilus W3, has been constructed and reported by our laboratory with highly improved catalytic efficiency. However, the low-functional expression level of mutant WLF in Escherichia coli was a shortcoming. Three mutants, namely, K317N/WLF, D501G/WLF, and K317N/D501G/WLF, were constructed through site-directed mutagenesis to improve the functional expression of WLF in this study. The soluble and active expression of D501G/WLF and K317N/D501G/WLF in E. coli enhanced 4.48-fold and 3.63-fold level, respectively. The K317N/WLF failed to increase the soluble expression level, but slightly improved the stability of CotA-laccase. Results showed that not only the position 501 is significant for functional expression of B. pumilus W3 CotA, but also these mutants still remained its high thermostability, resistance of alkaline with salt, and conspicuous decolorizing efficiency. This work is the first to improve the soluble expression of B. pumilus CotA-laccase in E. coli by site-directed mutagenesis. The D501G/WLF and K317N/D501G/WLF will be suitable candidates for biotechnological applications.
细菌漆酶由于其显著的优点,如广泛的底物谱、高耐热性、宽 pH 范围和耐碱性环境,是生物技术应用的潜在酶,如工业废水的解毒、纺织品的脱色和酚酸的二聚化。L386W/G417L/G57F(简称 WLF)是一种来自短小芽孢杆菌 W3 的 CotA-漆酶的良好突变体,已被我们实验室构建并报道,具有极高的催化效率。然而,突变体 WLF 在大肠杆菌中的低功能表达水平是一个缺点。本研究通过定点突变构建了 3 个突变体,即 K317N/WLF、D501G/WLF 和 K317N/D501G/WLF,以提高 WLF 在大肠杆菌中的功能表达。D501G/WLF 和 K317N/D501G/WLF 在大肠杆菌中的可溶性和活性表达分别提高了 4.48 倍和 3.63 倍。K317N/WLF 未能提高可溶性表达水平,但略微提高了 CotA-漆酶的稳定性。结果表明,不仅位置 501 对短小芽孢杆菌 W3 CotA 的功能表达很重要,而且这些突变体仍然保持其高耐热性、耐碱性和显著的脱色效率。这项工作首次通过定点突变提高了大肠杆菌中短小芽孢杆菌 CotA-漆酶的可溶性表达。D501G/WLF 和 K317N/D501G/WLF 将是生物技术应用的合适候选者。