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首页> 外文期刊>ACS Omega >Discovery and Structural Analysis to Improve the Enantioselectivity of Hydroxynitrile Lyase from Parafontaria laminata Millipedes for (R)-2-Chloromandelonitrile Synthesis
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Discovery and Structural Analysis to Improve the Enantioselectivity of Hydroxynitrile Lyase from Parafontaria laminata Millipedes for (R)-2-Chloromandelonitrile Synthesis

机译:发现和结构分析,改善Parafontaria Laminata Milipedes(R)-2-氯丹替尔腈合成的羟基腈裂解酶的映选择性

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Hydroxynitrile lyase (HNL) catalyzes the reversible synthesis and degradation of cyanohydrins, which are important synthetic intermediates for fine chemical and pharmaceutical industries. Here, we report the discovery of HNL from Parafontaria laminata (PlamHNL) millipedes, purification of the HNL to homogeneity, expression of the gene for the enzyme in heterologous expression hosts, and increase in the reaction rate and enantioselectivity in the synthesis of 2-chloromandelonitrile by protein engineering. The recombinant PlamHNL expressed in Pichia pastoris is glycosylated and has a higher thermostability and pH stability than the nonglycosylated HNL expressed in Escherichia coli . PlamHNL showed a unique wide substrate specificity among other millipede HNLs acting on various cyanohydrins, including 2-chloromandelonitrile, a key intermediate for the antithrombotic agent clopidogrel. We solved the X-ray crystal structure of the PlamHNL and found that the catalytic residues were almost identical to those of HNL from Chamberlinius hualienensis , although the forming binding cavity was different. In order to improve the catalytic activity and stereoselectivity, a computational structure-guided directed evolution approach was performed by an enzyme–substrate docking simulation at all of the residues that were exposed on the surface of the active site. The PlamHNL-N85Y mutant showed higher conversion (91% conversion with 98.2% ee of the product) than the wild type (76% conversion with 90% ee of the product) at pH 3.5 and 25 °C for 30 min of incubation. This study shows the diversity of millipede HNLs and reveals the molecular basis for improvement of the activity and stereoselectivity of the wild-type HNL to increase the reaction rate and enantioselectivity in the synthesis of 2-chloromandelonitrile.
机译:羟基腈裂解酶(HNL)催化氰醇的可逆合成和降解,这是精细化学和制药行业的重要合成中间体。在这里,我们将HNL的发现从 parafontaria laminata(plamhnl)milipedes中,HN1纯化到均匀性,在异源表达宿主中表达酶的基因,并在合成中增加反应速率和对映选择性2-氯氰酸丁腈由蛋白质工程。在 Pichia Pastoris中表达的重组plamHN1是糖基化的并且具有比在eNcherichia coli中表达的中糖基化的HN1更高的热稳定性和pH稳定性。 Plamhnl在以各种氰醇上的其他千足HNL上表现出独特的宽衬底特异性,包括2-氯氰酸丁腈,抗血栓形成剂氯吡格雷的关键中间体。我们解决了plamhnl的X射线晶体结构,发现催化残基几乎与来自 ChalualliniusHualienensis的HNL的残留物几乎相同,尽管形成结合腔不同。为了提高催化活性和立体选择性,通过在活性位点表面暴露在暴露在活性位点的所有残留物中的酶 - 基质对接模拟进行计算结构引导的指导演化方法。 Plamhnl-N85Y突变体显示比pH 3.5和25℃在pH 3.5和25℃下的野生型(产物98.2%的98.2%ee转化为98.2%的ee)的转化率较高(91.2%的转化率)。本研究显示了千足虫HNL的多样性,并揭示了改善野生型HNL活性和立体选择性的分子基础,以提高2-氯丹腈的合成中的反应速率和对映选择性。

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