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首页> 外文期刊>Applied Microbiology and Biotechnology >Efficient production of (R)-o-chloromandelic acid by deracemization of o-chloromandelonitrile with a new nitrilase mined from Labrenzia aggregata
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Efficient production of (R)-o-chloromandelic acid by deracemization of o-chloromandelonitrile with a new nitrilase mined from Labrenzia aggregata

机译:用从Labrenzia aaggregata提取的新腈水解酶对邻氯扁桃腈进行脱硫处理,可高效生产(R)-邻氯扁桃酸

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摘要

(R)-o-Chloromandelic acid is the key precursor for the synthesis of Clopidogrel®, a best-selling cardiovascular drug. Although nitrilases are often used as an efficient tool in the production of α-hydroxy acids, there is no practical nitrilase specifically developed for (R)-o-chloromandelic acid. In this work, a new nitrilase from Labrenzia aggregata (LaN) was discovered for the first time by genomic data mining, which hydrolyzed o-chloromandelonitrile with high enantioselectivity, yielding (R)-o-chloromandelic acid in 96.5% ee. The LaN was overexpressed in Escherichia coli BL21 (DE3), purified, and its catalytic properties were studied. When o-chloromandelonitrile was used as the substrate, the V max and K m of LaN were 2.53 μmol min−1 mg−1 protein and 0.39 mM, respectively, indicating its high catalytic efficiency. In addition, a study of substrate spectrum showed that LaN prefers to hydrolyze arylacetonitriles. To relieve the substrate inhibition and to improve the productivity of LaN, a biphasic system of toluene–water (1:9, v/v) was adopted, in which o-chloromandelonitrile of 300 mM (apparent concentration, based on total volume) could be transformed by LaN in 8 h, giving an isolated yield of 94.5%. The development of LaN makes it possible to produce (R)-o-chloromandelic acid by deracemizing o-chloromandelonitrile with good ee value and high substrate concentration.
机译:(R)-o-氯次膦酸酯酸是最畅销的心血管药物Clopidogrel®合成的关键前体。尽管腈水解酶经常被用作生产α-羟基酸的有效工具,但是没有专门开发用于(R)-o-氯扁桃酸的实用腈水解酶。在这项工作中,通过基因组数据挖掘首次发现了来自总生物体(Larenzia aaggregata(LaN))的一种新的腈水解酶,该酶以高对映选择性水解了邻氯扁桃腈,在96.5%ee中产生了(R)-o-氯扁桃酸。 LaN在大肠杆菌BL21(DE3)中过表达,纯化,并研究了其催化性能。当使用邻氯扁桃腈作为底物时,LaN的V max 和K m 为2.53μmolmin -1 mg - 1 蛋白和0.39 mM,表明其高催化效率。此外,对底物光谱的研究表明,LaN倾向于水解芳基乙腈。为了减轻底物的抑制并提高LaN的生产率,采用了甲苯-水的双相系统(1:9,v / v),其中300 mM(表观浓度,基于总体积)的邻氯扁桃腈可以在8小时内被LaN转化,分离产率为94.5%。 LaN的发展使得可以通过对具有良好ee值和高底物浓度的邻氯扁桃腈进行脱硫来生产(R)-邻氯扁桃酸。

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