Pollegioni Loredano, Molla Gianluca, Sacchi Silvia, Rosini Elena, Verga Roberto, Pilone Mirella S
Department of Biotechnology and Molecular Sciences, University of Insubria, via J.H. Dunant 3, 21100, Varese, Italy.
Appl Microbiol Biotechnol. 2008 Feb;78(1):1-16. doi: 10.1007/s00253-007-1282-4. Epub 2007 Dec 15.
-Amino acid oxidase (DAAO) is a biotechnologically relevant enzyme that is used in a variety of applications. DAAO is a flavine adenine dinucleotide-containing flavoenzyme that catalyzes the oxidative deamination of D-isomer of uncharged aliphatic, aromatic, and polar amino acids yielding the corresponding imino acid (which hydrolyzes spontaneously to the alpha-keto acid and ammonia) and hydrogen peroxide. This enzymatic activity is produced by few bacteria and by most eukaryotic organisms. In the past few years, DAAO from mammals has been the subject of a large number of investigations, becoming a model for the dehydrogenase-oxidase class of flavoproteins. However, DAAO from microorganisms show properties that render them more suitable for the biotechnological applications, such as a high level of protein expression (as native and recombinant protein), a high turnover number, and a tight binding of the coenzyme. Some important DAAO-producing microorganisms include Trigonopsis variabilis, Rhodotorula gracilis, and Fusarium solani. The aim of this paper is to provide an overview of the main biotechnological applications of DAAO (ranging from biocatalysis to convert cephalosporin C into 7-amino cephalosporanic acid to gene therapy for tumor treatment) and to illustrate the advantages of using the microbial DAAOs, employing both the native and the improved DAAO variants obtained by enzyme engineering.
D-氨基酸氧化酶(DAAO)是一种具有生物技术相关性的酶,可用于多种应用。DAAO是一种含黄素腺嘌呤二核苷酸的黄素酶,催化不带电荷的脂肪族、芳香族和极性氨基酸的D-异构体的氧化脱氨反应,生成相应的亚氨基酸(其会自发水解为α-酮酸和氨)和过氧化氢。这种酶活性由少数细菌和大多数真核生物产生。在过去几年中,哺乳动物的DAAO一直是大量研究的对象,成为黄素蛋白脱氢酶-氧化酶类别的一个模型。然而,微生物来源的DAAO表现出使其更适合生物技术应用的特性,例如高水平的蛋白质表达(作为天然和重组蛋白)、高周转率以及辅酶的紧密结合。一些重要的产生DAAO的微生物包括可变三角酵母、纤细红酵母和茄病镰刀菌。本文的目的是概述DAAO的主要生物技术应用(从生物催化将头孢菌素C转化为7-氨基头孢烷酸到用于肿瘤治疗的基因治疗),并说明使用微生物DAAO的优势,同时采用通过酶工程获得的天然和改良DAAO变体。