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首页> 外文期刊>Bioprocess and Biosystems Engineering >Optimization of nitrilase production from Alcaligenes faecalis MTCC 10757 (IICT-A3): effect of inducers on substrate specificity
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Optimization of nitrilase production from Alcaligenes faecalis MTCC 10757 (IICT-A3): effect of inducers on substrate specificity

机译:粪便产碱菌MTCC 10757(IICT-A3)产生腈水解酶的最优化:诱导剂对底物特异性的影响

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摘要

Microbial nitrilases are biocatalysts of interest and the enzyme produced using various inducers exhibits altered substrate specificity, which is of great interest in bioprocess development. The aim of the present study is to investigate the nitrilase-producing Alcaligenes faecalis MTCC 10757 (IICT-A3) for its ability to transform various nitriles in the presence of different inducers after optimization of various parameters for maximum enzyme production and activity. The production of A. faecalis MTCC 10757 (IICT-A3) nitrilase was optimum with glucose (1.0%), acrylonitrile (0.1%) at pH 7.0. The nitrilase activity of A. faecalis MTCC 10757 (IICT-A3) was optimum at 35 °C, pH 8.0 and the enzyme was stable up to 6 h at 50 °C. The nitrilase enzyme produced using different inducers was investigated for substrate specificity. The enzyme hydrolyzed aliphatic, heterocyclic and aromatic nitriles with different substitutions. Acrylonitrile was the most preferred substrate (~ 40 U) as well as inducer. Benzonitrile was hydrolyzed with almost twofold higher relative activity than acrylonitrile when it was used as an inducer. The versatile nitrilase-producing A. faecalis MTCC 10757 (IICT-A3) exhibits efficient conversion of both aliphatic and aromatic nitriles. The aromatic nitriles, which show not much or no affinity towards nitrilase from A. faecalis, are hydrolyzed effectively with this nitrilase-producing organism. Studies are in progress to exploit this organism for synthesis of industrially important compounds.
机译:微生物硝化酶是感兴趣的生物催化剂,使用各种诱导剂产生的酶表现出改变的底物特异性,这在生物过程开发中引起了极大的兴趣。本研究的目的是研究产生腈水解酶的粪便粪便链霉菌MTCC 10757(IICT-A3)在优化各种参数以最大程度提高酶的产生和活性后,在存在不同诱导剂的情况下转化各种腈的能力。粪便曲霉MTCC 10757(IICT-A3)腈水解酶的生产最适pH为7.0的葡萄糖(1.0%),丙烯腈(0.1%)。粪肠球菌MTCC 10757(IICT-A3)的腈水解酶活性在35°C,pH 8.0时最佳,并且该酶在50°C下稳定长达6小时。研究了使用不同诱导剂产生的腈水解酶的底物特异性。该酶水解具有不同取代基的脂族,杂环和芳族腈。丙烯腈是最优选的底物(〜40 U)以及诱导剂。当将其用作诱导剂时,其水解的相对活性比丙烯腈高出将近两倍。通用的产生腈水解酶的粪肠球菌MTCC 10757(IICT-A3)可以高效转化脂肪族和芳香族腈。对粪便曲霉的腈水解酶没有太多亲和力或没有亲和力的芳族腈被这种产生腈水解酶的生物有效地水解。正在进行研究以开发这种生物来合成具有工业重要性的化合物。

著录项

  • 来源
    《Bioprocess and Biosystems Engineering》 |2011年第5期|p.515-523|共9页
  • 作者单位

    Biotransformation Laboratory, Division of Organic Chemistry, Indian Institute of Chemical Technology,Hyderabad 500 607, India;

    Biotransformation Laboratory, Division of Organic Chemistry, Indian Institute of Chemical Technology,Hyderabad 500 607, India;

    Biotransformation Laboratory, Division of Organic Chemistry, Indian Institute of Chemical Technology,Hyderabad 500 607, India;

    Biotransformation Laboratory, Division of Organic Chemistry, Indian Institute of Chemical Technology,Hyderabad 500 607, India;

    Biotransformation Laboratory, Division of Organic Chemistry, Indian Institute of Chemical Technology,Hyderabad 500 607, India;

    Biotransformation Laboratory, Division of Organic Chemistry, Indian Institute of Chemical Technology,Hyderabad 500 607, India;

    Biotransformation Laboratory, Division of Organic Chemistry, Indian Institute of Chemical Technology,Hyderabad 500 607, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    nitrilase; substrate specificity; inducers; optimization; alcaligenes faecalis mtcc 10757 (iict-a3);

    机译:腈水解酶底物特异性诱导剂;优化;粪产碱杆菌mtcc 10757(iict-a3);

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