Dilokpimol Adiphol, Mäkelä Miia R, Aguilar-Pontes Maria Victoria, Benoit-Gelber Isabelle, Hildén Kristiina S, de Vries Ronald P
Fungal Physiology, CBS-KNAW Fungal Biodiversity Centre & Fungal Molecular Physiology, Utrecht University, Uppsalalaan 8, 3584CT Utrecht, The Netherlands.
Division of Microbiology and Biotechnology, Department of Food and Environmental Sciences, University of Helsinki, P.O. Box 56, 00014 Helsinki, Finland.
Biotechnol Biofuels. 2016 Oct 28;9:231. doi: 10.1186/s13068-016-0651-6. eCollection 2016.
Feruloyl esterases (FAEs) represent a diverse group of carboxyl esterases that specifically catalyze the hydrolysis of ester bonds between ferulic (hydroxycinnamic) acid and plant cell wall polysaccharides. Therefore, FAEs act as accessory enzymes to assist xylanolytic and pectinolytic enzymes in gaining access to their site of action during biomass conversion. Their ability to release ferulic acid and other hydroxycinnamic acids from plant biomass makes FAEs potential biocatalysts in a wide variety of applications such as in biofuel, food and feed, pulp and paper, cosmetics, and pharmaceutical industries. This review provides an updated overview of the knowledge on fungal FAEs, in particular describing their role in plant biomass degradation, diversity of their biochemical properties and substrate specificities, their regulation and conditions needed for their induction. Furthermore, the discovery of new FAEs using genome mining and phylogenetic analysis of current publicly accessible fungal genomes will also be presented. This has led to a new subfamily classification of fungal FAEs that takes into account both phylogeny and substrate specificity.
阿魏酸酯酶(FAEs)是一类多样的羧基酯酶,它们专门催化阿魏酸(羟基肉桂酸)与植物细胞壁多糖之间酯键的水解。因此,在生物质转化过程中,FAEs作为辅助酶帮助木聚糖分解酶和果胶分解酶到达其作用位点。它们从植物生物质中释放阿魏酸和其他羟基肉桂酸的能力,使FAEs在生物燃料、食品和饲料、纸浆和造纸、化妆品以及制药等众多行业中成为潜在的生物催化剂。本综述提供了关于真菌FAEs知识的最新概述,特别描述了它们在植物生物质降解中的作用、生化特性和底物特异性的多样性、它们的调控以及诱导所需的条件。此外,还将介绍利用基因组挖掘和对当前公开可得的真菌基因组进行系统发育分析来发现新的FAEs。这导致了一种考虑系统发育和底物特异性的真菌FAEs新亚家族分类。