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Kinetic Resolution of α‐Bromoamides: Experimental and Theoretical Investigation of Highly Enantioselective Reactions Catalyzed by Haloalkane Dehalogenases

化学 动力学分辨率 对映选择合成 基质(水族馆) 催化作用 生物催化 对映体 立体化学 酶催化 酶动力学 对接(动物) 组合化学 活动站点 有机化学 反应机理 地质学 护理部 海洋学 医学
作者
Alja Westerbeek,Wiktor Szymański,Hein J. Wijma,‪Siewert J. Marrink,Ben L. Feringa,Dick B. Janssen
出处
期刊:Advanced Synthesis & Catalysis [Wiley]
卷期号:353 (6): 931-944 被引量:38
标识
DOI:10.1002/adsc.201000726
摘要

Abstract Haloalkane dehalogenases from five sources were heterologously expressed in Escherichia coli , isolated, and tested for their ability to achieve kinetic resolution of racemic α‐bromoamides, which are important intermediates used in the preparation of bioactive compounds. To explore the substrate scope, fourteen α‐bromoamides, with different C α‐ and N ‐substituents, were synthesized. Catalytic activity towards eight substrates was found, and for five of these compounds the conversion proceeded with a high enantioselectivity (E value >200). In all cases, the ( R )‐α‐bromoamide is the preferred substrate. Conversions on a preparative scale with a catalytic amount of enzyme (enzyme:substrate ratio less 1:50 w/w) were all completed within 17–46 h and optically pure α‐bromoamides and α‐hydroxyamides were isolated with good yields (31–50%). Substrate docking followed by molecular dynamics simulations indicated that the high enantioselectivity results from differences in the percentage of the time in which the substrate enantiomers are bound favourably for catalysis. For the preferred ( R )‐substrates, the angle between the attacking aspartate oxygen atom of the enzyme, the attacked carbon atom of the substrate, and the displaced halogen atom, is more often in the optimal range (>157°) for reactivity. This can explain the observed enantioselectivity of LinB dehalogenase in a kinetic resolution experiment.
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