首页> 外文期刊>Organic & biomolecular chemistry >Enzymatic transformations. Immobilized A. niger epoxide hydrolase as a novel biocatalytic tool for repeated-batch hydrolytic kinetic resolution of epoxides
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Enzymatic transformations. Immobilized A. niger epoxide hydrolase as a novel biocatalytic tool for repeated-batch hydrolytic kinetic resolution of epoxides

机译:酶促转化。固定化的黑曲霉环氧化物水解酶作为一种新的生物催化工具,用于环氧化物的重复批水解动力学拆分

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摘要

Studies aimed at immobilization of the Aspergillus niger epoxide hydrolase were performed. The use of conventional approaches, i.e. of commercially available supports and classical methodologies, only led to low stabilisation and unsatisfactory enzymatic activity recovery. Therefore, a new strategy based on the use of a "second generation" type of epoxy-activated supports allowing multi-point covalent immobilization,i.e. Eupergit C, partially modified with ethylene diamine (Eupergit C/EDA), and of an adequate experimental procedure was set up. This allowed us to prepare an immobilized biocatalyst with 70% retention of the initial enzymatic activity and a stabilisation factor of about 30. Interestingly, this biocatalyst also led to a noticeable increase of the E value for the resolution of two test substrates, styrene oxide 1 and p-chlorostyrene oxide 2. This was improved from about 25 to 56 and from 40 to 100, respectively. A typical repeated batch experiment indicated that the thus immobilized enzyme could be re-used for over 12 cycles without any noticeable loss of enzymatic activity or change in enantioselectivity. This therefore opens the way for the use of an 'heterogeneous catalysis' methodology for achieving the preparation of various enantiopure epoxides via biocatalysed hydrolytic kinetic resolution.
机译:进行了旨在固定黑曲霉环氧水解酶的研究。使用常规方法,即可商购获得的载体和经典方法,仅导致低的稳定性和不令人满意的酶活性恢复。因此,基于使用“第二代”类型的环氧活化载体的新策略允许多点共价固定,即建立了用乙二胺部分改性的Eupergit C(Eupergit C / EDA),并进行了适当的实验。这使我们能够制备固定化的生物催化剂,其初始酶活性保留率保持在70%,稳定因子约为30。有趣的是,这种生物催化剂还显着提高了两种测试底物苯乙烯氧化物1的拆分E值。和对氯苯乙烯氧化物2。这分别从约25提高到56和从40提高到100。典型的重复分批实验表明,这样固定的酶可以重复使用12个周期以上,而酶活性没有任何明显的损失或对映选择性的变化。因此,这为使用“非均相催化”方法通过生物催化的水解动力学拆分实现各种对映纯环氧化物的制备开辟了道路。

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  • 来源
    《Organic & biomolecular chemistry》 |2003年第15期|p. 2739-2743|共5页
  • 作者单位

    Groupe Biocatalyse et Chimie Fine, UMR CNRS 6111, Universite de la Mediterranee, Faculte des Sciences de Luminy, Case 901, 163 avenue de Luminy, 13288 Marseille Cedex 9, France;

    Groupe Biocatalyse et Chimie Fine, UMR CNRS 6111, Universite de la Mediterranee, Faculte des Sciences de Luminy, Case 901, 163 avenue de Luminy, 13288 Marseille Cedex 9, France;

    Departamento de Biocatalisis, Instituto de Catalisis, CSIC, Campus Universidad Autonoma, Cantoblanco, 28049, Madrid, Spain;

    Departamento de Biocatalisis, Instituto de Catalisis, CSIC, Campus Universidad Autonoma, Cantoblanco, 28049, Madrid, Spain;

    Groupe Biocatalyse et Chimie Fine, UMR CNRS 6111, Universite de la Mediterranee, Faculte des Sciences de Luminy, Case 901, 163 avenue de Luminy, 13288 Marseille Cedex 9, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

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