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Kinetic Resolution of Aromatic β-Amino Acids Using a Combination of Phenylalanine Ammonia Lyase and Aminomutase Biocatalysts

机译:苯丙氨酸氨裂解酶和氨基变位酶生物催化剂联合动力学拆分芳香族β-氨基酸

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摘要

An enzymatic strategy for the preparation of (R)-β-arylalanines employing phenylalanine aminomutase and ammonia lyase (PAM and PAL) enzymes has been demonstrated. Candidate PAMs with the desired (S)-selectivity from Streptomyces maritimus (EncP) and Bacillus sp. (PabH) were identified via sequence analysis using a well-studied template sequence. The newly discovered PabH could be linked to the first ever proposed biosynthesis of pyloricidin-like secondary metabolites and was shown to display better β-lyase activity in many cases. In spite of this, a method combining the higher conversion of EncP with a strict α-lyase from Anabaena variabilis (AvPAL) was found to be more amenable, allowing kinetic resolution of five racemic substrates and a preparative-scale reaction with >98% (R) enantiomeric excess. This work represents an improved and enantiocomplementary method to existing biocatalytic strategies, allowing simple product separation and modular telescopic combination with a preceding chemical step using an achiral aldehyde as starting material.
机译:已经证明了使用苯丙氨酸氨基变位酶和氨裂合酶(PAM和PAL)酶制备(R)-β-芳基丙氨酸的酶促策略。具有来自海链链霉菌(EncP)和芽孢杆菌sp。的所需(S)选择性的候选PAM。 (PabH)通过使用深入研究的模板序列进行序列分析来鉴定。新发现的PabH可能与首次提出的幽门螺杆菌样二级代谢产物的生物合成有关,并在许多情况下显示出更好的β-裂合酶活性。尽管如此,发现将EncP的较高转化率与来自变色鱼腥藻的严格α-裂合酶(AvPAL)相结合的方法更合适,可实现5种外消旋底物的动力学拆分和制备规模的反应,> 98%( R)对映体过量。这项工作代表了对现有生物催化策略的改进和对映体互补的方法,允许简单的产品分离和模块化伸缩组合,以及使用非手性醛作为起始原料的先前化学步骤。

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