首页> 外文期刊>Journal of Biotechnology >Enantioselective synthesis of enantiopure beta-amino alcohols via kinetic resolution and asymmetric reductive amination by a robust transaminase from Mycobacterium vanbaalenii
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Enantioselective synthesis of enantiopure beta-amino alcohols via kinetic resolution and asymmetric reductive amination by a robust transaminase from Mycobacterium vanbaalenii

机译:通过动力学分辨率和来自Cycobacterium Vanbaalenii的鲁棒转氨酶的致映射性β-氨基醇对映选择性β-氨基醇合成

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Chiral beta-amino alcohols are very important chiral building block for preparing bioactive compounds for use in pharmaceutical and fine chemical industries. Synthesis of chiral beta-amino alcohols by transaminase is big challenging due to the strict substrate specificities and very low activity of the enzyme. In this work, a (R)-selective omega-transaminase (MVTA) from Mycobacterium vanbaalenii was employed as a biocatalyst for the first time for the synthesis of chiral beta-amino alcohol via kinetic resolution and asymmetric reductive amination. The enzyme was purified and characterized. Kinetic resolution of a set of racemic beta-amino alcohols including two cyclic beta-amino alcohols by MVTA was demonstrated, affording (R)-beta-amino alcohols, (1S, 2S)-trans-2-aminocyclopentanol and (1R, 2S)-cis-1-amino-2-indanols in & 99% ee and 50-62% conversion. Asymmetric reductive amination of three alpha-hydroxy ketones (10-300 mM) by MVTA was conducted, (S)-beta-amino alcohols were obtained with & 99% ee and 80-99% conversion. Preparation experiment for the reductive amination of 200 mM 2-hydroxyacetophenone by the resting cells of re- combinant E. coli (MVTA) was proceeded smoothly and product (S)-2-amino-2-phenylethanol was obtained with 71% isolated yield, & 99% ee and 68.6 g/L/d volumetric productivity. The current research proved that the MVTA is a robust enzyme for the preparation of chiral beta-amino alcohol with high volumetric productivity.
机译:手性β-氨基醇是一种非常重要的手性积木,用于制备用于制药和精细化学工业的生物活性化合物。通过转氨酶合成手性β-氨基醇是由于严格的底物特异性和酶的非常低的活性,对抗致敏甲酰氨基醇是大的挑战性。在这项工作中,首次使用来自vanbaalenii的(R)Quabaalenii的ω-umega-转氨酶(MVTA)作为生物催化剂,首次通过动力学分辨率和不对称的还原胺化合成手性β-氨基醇。纯化酶并表征。通过MVTA的一组外消旋β-氨基醇的动力学分辨率,包括MVTA的两个循环β-氨基醇,得到(R) - 氨基醇,(1S,2S) - 转移-2-氨基环戊醇和(1R,2S) -CIS-1-氨基-2-茚满醇内; GT; 99%EE和50-62%的转换。通过MVTA进行三种α-羟基酮(10-300mm)的不对称还原胺化,用& gt获得 - 氨基醇。 99%EE和80-99%的转换。通过再组合大肠杆菌(MVTA)的静息细胞进行200mM 2-羟基乙酮的还原胺化的制备实验,并将产物-2-氨基-2-苯基乙醇以71%分离的产率进行进行, & 99%EE和68.6克/ L / D体积生产率。目前的研究证明,MVTA是制备具有高容量生产率的手性β-氨基醇的鲁棒酶。

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