Cheng Zhongyi, Xia Yuanyuan, Zhou Zhemin
Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, China.
Front Bioeng Biotechnol. 2020 Apr 24;8:352. doi: 10.3389/fbioe.2020.00352. eCollection 2020.
Nitrile hydratase (NHase, EC 4.2.1.84) is one type of metalloenzyme participating in the biotransformation of nitriles into amides. Given its catalytic specificity in amide production and eco-friendliness, NHase has overwhelmed its chemical counterpart during the past few decades. However, unclear catalytic mechanism, low thermostablity, and narrow substrate specificity limit the further application of NHase. During the past few years, numerous studies on the theoretical and industrial aspects of NHase have advanced the development of this green catalyst. This review critically focuses on NHase research from recent years, including the natural distribution, gene types, posttranslational modifications, expression, proposed catalytic mechanism, biochemical properties, and potential applications of NHase. The developments of NHase described here are not only useful for further application of NHase, but also beneficial for the development of the fields of biocatalysis and biotransformation.
腈水合酶(NHase,EC 4.2.1.84)是一种参与腈类生物转化为酰胺的金属酶。鉴于其在酰胺生产中的催化特异性和环境友好性,腈水合酶在过去几十年中已超过其化学对应物。然而,不清楚的催化机制、低热稳定性和狭窄的底物特异性限制了腈水合酶的进一步应用。在过去几年中,对腈水合酶的理论和工业方面的大量研究推动了这种绿色催化剂的发展。本综述批判性地聚焦于近年来腈水合酶的研究,包括其天然分布、基因类型、翻译后修饰、表达、提出的催化机制、生化特性以及腈水合酶的潜在应用。这里描述的腈水合酶的发展不仅有助于腈水合酶的进一步应用,而且有利于生物催化和生物转化领域的发展。