Exeter Biocatalysis Centre, Biosciences, College of Life and Environmental Sciences, University of Exeter , Exeter , UK.
Front Bioeng Biotechnol. 2015 Oct 13;3:161. doi: 10.3389/fbioe.2015.00161. eCollection 2015.
This article will discuss the importance of specific extremophilic enzymes for applications in industrial biotechnology. It will specifically address those enzymes that have applications in the area of biocatalysis. Such enzymes now play an important role in catalyzing a variety of chemical conversions that were previously carried out by traditional chemistry. The biocatalytic process is carried out under mild conditions and with greater specificity. The enzyme process does not result in the toxic waste that is usually produced in a chemical process that would require careful disposal. In this sense, the biocatalytic process is referred to as carrying out "green chemistry" which is considered to be environmentally friendly. Some of the extremophilic enzymes to be discussed have already been developed for industrial processes such as an l-aminoacylase and a γ-lactamase. The industrial applications of other extremophilic enzymes, including transaminases, carbonic anhydrases, dehalogenases, specific esterases, and epoxide hydrolases, are currently being assessed. Specific examples of these industrially important enzymes that have been studied in the authors group will be presented in this review.
本文将讨论特定嗜极端微生物酶在工业生物技术应用中的重要性。它将特别针对那些在生物催化领域有应用的酶。这些酶现在在催化各种化学反应中起着重要的作用,而这些反应以前是通过传统化学方法来完成的。生物催化过程在温和的条件下进行,并且具有更高的特异性。酶过程不会产生通常在需要小心处理的化学过程中产生的有毒废物。从这个意义上说,生物催化过程被称为进行“绿色化学”,这被认为是环保的。将讨论的一些嗜极端微生物酶已经开发用于工业过程,例如 l-氨基酰化酶和 γ-内酰胺酶。其他嗜极端微生物酶的工业应用,包括转氨酶、碳酸酐酶、脱卤酶、特定酯酶和环氧化物水解酶,目前正在评估中。在作者小组研究过的这些具有重要工业意义的酶中,将介绍一些具体的例子。