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Engineering Platforms for Directed Evolution of Laccase from Pycnoporus cinnabarinus

机译:朱砂比目鱼漆酶定向进化的工程平台

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摘要

While the Pycnoporus cinnabarinus laccase (PcL) is one of the most promising high-redox-potential enzymes for environmental biocatalysis, its practical use has to date remained limited due to the lack of directed evolution platforms with which to improve its features. Here, we describe the construction of a PcL fusion gene and the optimization of conditions to induce its functional expression in Saccharomyces cerevisiae, facilitating its directed evolution and semirational engineering. The native PcL signal peptide was replaced by the α-factor preproleader, and this construct was subjected to six rounds of evolution coupled to a multiscreening assay based on the oxidation of natural and synthetic redox mediators at more neutral pHs. The laccase total activity was enhanced 8,000-fold: the evolved α-factor preproleader improved secretion levels 40-fold, and several mutations in mature laccase provided a 13.7-fold increase in kcat. While the pH activity profile was shifted to more neutral values, the thermostability and the broad substrate specificity of PcL were retained. Evolved variants were highly secreted by Aspergillus niger (∼23 mg/liter), which addresses the potential use of this combined-expression system for protein engineering. The mapping of mutations onto the PcL crystal structure shed new light on the oxidation of phenolic and nonphenolic substrates. Furthermore, some mutations arising in the evolved preproleader highlighted its potential for heterologous expression of fungal laccases in yeast (S. cerevisiae).
机译:尽管Pycnoporus cinnabarinus漆酶(PcL)是用于环境生物催化的最有前途的高氧化还原电位酶之一,但由于缺乏可改进其功能的定向进化平台,迄今为止其实际应用仍然受到限制。在这里,我们描述了PcL融合基因的构建和诱导其在酿酒酵母中表达功能的条件的优化,以促进其定向进化和半理性工程。天然的PcL信号肽被α因子前导肽替代,该构建体经历了六轮进化,并与基于在更中性的pH值下天然和合成氧化还原介体的氧化进行的多重筛选测定相结合。漆酶的总活性提高了8,000倍:进化的α因子前导子将分泌水平提高了40倍,成熟漆酶中的几种突变使kcat的含量增加了13.7倍。当pH活性曲线移至更中性的值时,保留了PcL的热稳定性和广泛的底物特异性。黑曲霉(Aspergillus niger)高度分泌进化的变体(〜23 mg / L),这说明了这种联合表达系统在蛋白质工程中的潜在用途。突变映射到PcL晶体结构上为酚醛和非酚醛底物的氧化提供了新的思路。此外,在进化的前导序列中产生的一些突变突出了其在酵母(啤酒糖酵母)中真菌漆酶的异源表达的潜力。

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