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首页> 外文期刊>Applied and Environmental Microbiology >Focused Directed Evolution of Aryl-Alcohol Oxidase in Saccharomyces cerevisiae by Using Chimeric Signal Peptides
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Focused Directed Evolution of Aryl-Alcohol Oxidase in Saccharomyces cerevisiae by Using Chimeric Signal Peptides

机译:通过使用嵌合信号肽集中酿酒酵母中的芳醇氧化酶的定向进化。

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Aryl-alcohol oxidase (AAO) is an extracellular flavoprotein that supplies ligninolytic peroxidases with H2O2 during natural wood decay. With a broad substrate specificity and highly stereoselective reaction mechanism, AAO is an attractive candidate for studies into organic synthesis and synthetic biology, and yet the lack of suitable heterologous expression systems has precluded its engineering by directed evolution. In this study, the native signal sequence of AAO from Pleurotus eryngii was replaced by those of the mating α-factor and the K1 killer toxin, as well as different chimeras of both prepro-leaders in order to drive secretion in Saccharomyces cerevisiae. The secretion of these AAO constructs increased in the following order: preproα-AAO > preαproK-AAO > preKproα-AAO > preproK-AAO. The chimeric preαproK-AAO was subjected to focused-directed evolution with the aid of a dual screening assay based on the Fenton reaction. Random mutagenesis and DNA recombination was concentrated on two protein segments (Met[α1]-Val109 and Phe392-Gln566), and an array of improved variants was identified, among which the FX7 mutant (harboring the H91N mutation) showed a dramatic 96-fold improvement in total activity with secretion levels of 2 mg/liter. Analysis of the N-terminal sequence of the FX7 variant confirmed the correct processing of the preαproK hybrid peptide by the KEX2 protease. FX7 showed higher stability in terms of pH and temperature, whereas the pH activity profiles and the kinetic parameters were maintained. The Asn91 lies in the flavin attachment loop motif, and it is a highly conserved residue in all members of the GMC superfamily, except for P. eryngii and P. pulmonarius AAO. The in vitro involution of the enzyme by restoring the consensus ancestor Asn91 promoted AAO expression and stability.
机译:芳醇氧化酶(AAO)是一种细胞外黄素蛋白,在天然木材腐烂过程中向木质素分解过氧化物酶提供过氧化氢。具有广泛的底物特异性和高度立体选择性的反应机理,AAO是有机合成和合成生物学研究的有吸引力的候选者,但是由于缺乏合适的异源表达系统,AAO无法通过定向进化来进行工程设计。在这项研究中,来自杏鲍菇的AAO的天然信号序列被交配的α因子和K1杀伤毒素以及两个前原先导者的不同嵌合体所取代,以驱动酿酒酵母中的分泌。这些AAO构建体的分泌按以下顺序增加:preproα-AAO>preαproK-AAO>preKproα-AAO> preproK-AAO。借助基于Fenton反应的双重筛选测定法,对嵌合前αproK-AAO进行定向聚焦进化。随机诱变和DNA重组集中在两个蛋白质片段(Met [α1] -Val109和Phe392-Gln566)上,并鉴定出一系列改进的变体,其中FX7突变体(带有H91N突变)表现出惊人的96倍分泌水平为2 mg / L时,总活性有所改善。对FX7变体的N端序列的分析证实了KEX2蛋白酶对preαproK杂合肽的正确加工。 FX7在pH和温度方面显示出更高的稳定性,而pH活性曲线和动力学参数得以保持。 Asn91位于黄素附着环基序中,它是GMC超家族所有成员中的一个高度保守的残基,除了erygenii和P. pulmonarius AAO。通过恢复共有祖先Asn91的体外酶促酶促AAO表达和稳定性。

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