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恶臭假单胞菌中的苯甲酰甲酸脱羧酶作为合成手性2-羟基酮的稳定催化剂。

Benzoylformate decarboxylase from Pseudomonas putida as stable catalyst for the synthesis of chiral 2-hydroxy ketones.

作者信息

Iding H, Dünnwald T, Greiner L, Liese A, Müller M, Siegert P, Grötzinger J, Demir A S, Pohl M

机构信息

Institut für Enzymtechnologie, Heinrich-Heine Universität Düsseldorf im Forschungszentrum Jülich, Jülich, Germany.

出版信息

Chemistry. 2000 Apr 14;6(8):1483-95. doi: 10.1002/(sici)1521-3765(20000417)6:8<1483::aid-chem1483>3.0.co;2-s.

Abstract

The thiamin diphosphate- and Mg2+-dependent enzyme benzoylformate decarboxylase (BFD) from Pseudomonas putida was characterized with respect to its suitability to catalyze the formation of chiral 2-hydroxy ketones in a benzoin-condensation type reaction. Carboligation constitutes a side reaction of BFD, whereas the predominant physiological task of the enzyme is the non-oxidative decarboxylation of benzoylformate. For this purpose the enzyme was obtained in sufficient purity from Pseudomonas putida cells in a one-step purification using anion-exchange chromatography. To facilitate the access to pure BFD for kinetical studies, stability investigations, and synthetical applications, the coding gene was cloned into a vector allowing the expression of a hexahistidine fusion protein. The recombinant enzyme shows distinct activity maxima for the decarboxylation and the carboligation beside a pronounced stability in a broad pH and temperature range. The enzyme accepts a wide range of donor aldehyde substrates which are ligated to acetaldehyde as an acceptor in mostly high optical purities. The enantioselectivity of the carboligation was found to be a function of the reaction temperature, the substitution pattern of the donor aldehyde and, most significantly, of the concentration of the donor aldehyde substrate. Our data are consistent with a mechanistical model based on the X-ray crystallographic data of BFD. Furthermore we present a simple way to increase the enantiomeric excess of (S)-2-hydroxy-1-phenyl-propanone from 90% to 95% by skillful choice of the reaction parameters. Enzymatic synthesis with BFD are performed best in a continuously operated enzyme membrane reactor. Thus, we have established a new enzyme tool comprising a vast applicability for stereoselective synthesis.

摘要

对来自恶臭假单胞菌的硫胺素二磷酸和Mg2+依赖性酶苯甲酰甲酸脱羧酶(BFD)进行了表征,考察其在安息香缩合型反应中催化手性2-羟基酮形成的适用性。羧基连接反应是BFD的一个副反应,而该酶的主要生理功能是苯甲酰甲酸的非氧化脱羧反应。为此,通过阴离子交换色谱一步纯化法从恶臭假单胞菌细胞中获得了足够纯度的该酶。为便于获得用于动力学研究、稳定性研究和合成应用的纯BFD,将编码基因克隆到一个载体中,使其能够表达六组氨酸融合蛋白重组酶。该重组酶在脱羧反应和羧基连接反应中表现出明显的活性最大值,并且在较宽的pH和温度范围内具有显著的稳定性。该酶能接受多种供体醛底物,这些底物与乙醛作为受体进行连接,大多具有高光学纯度。发现羧基连接反应的对映选择性是反应温度、供体醛的取代模式以及最重要的供体醛底物浓度的函数。我们的数据与基于BFD的X射线晶体学数据的机理模型一致。此外,我们还提出了一种简单的方法,通过巧妙选择反应参数,将(S)-2-羟基-1-苯基丙酮的对映体过量从90%提高到95%。使用BFD的酶促合成在连续操作的酶膜反应器中效果最佳。因此,我们建立了一种新的酶工具,在立体选择性合成中具有广泛的适用性。

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