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Biotechnical production of trehalose through the trehalose synthase pathway: current status and future prospects

机译:通过海藻糖合成酶途径的海藻糖生物生产:现状和未来前景

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摘要

Trehalose (alpha-d-glucopyranosyl-(1 - 1)-alpha-d-glucopyranoside) is a non-reducing disaccharide composed of two glucose molecules linked by an alpha,alpha-1,1-glycosidic bond. It possesses physicochemical properties, which account for its biological roles in a variety of prokaryotic and eukaryotic organisms and invertebrates. Intensive studies of trehalose gradually uncovered its functions, and its applications in foods, cosmetics, and pharmaceuticals have increased every year. Currently, trehalose is industrially produced by the two-enzyme method, which was first developed in 1995 using maltooligosyltrehalose synthase (EC 5.4.99.15) and subsequently using maltooligosyltrehalose trehalohydrolase (EC 3.2.1.141), with starch as the substrate. This biotechnical method has lowered the price of trehalose and expanded its applications. However, when trehalose synthase (EC 5.4.99.16) was later discovered, this method for trehalose production using maltose as the substrate soon became a popular topic because of its simplicity and potential in industrial production. Since then, many trehalose synthases have been studied. This review summarizes the sources and characteristics of reported trehalose synthases, and the most recent advances on structural analysis of trehalose synthase, catalytic mechanism, molecular modification, and usage in industrial production processes.
机译:海藻糖(α-D-吡喃葡萄糖糖基 - (1 - & 1) - alpha-d-吡喃葡萄糖苷)是由α,α-1,1-糖苷键连接的两个葡萄糖分子组成的非还原性二糖。它具有物理化学性质,其占其各种原核和真核生物和无脊椎动物的生物学作用。海藻糖的密集研究逐步揭示其功能,其在食品,化妆品和药品中的应用每年都有增加。目前,海藻糖是通过双酶方法在工业生产的,这是在1995年首次使用马铃尔烃基氧糖苷合成酶(EC 5.4.99.15)和随后使用卤素作为基质的马铃脱石糖基甲醛海水水解(EC 3.2.1.1.141)。这种生物技术方法降低了海藻糖的价格并扩大了其应用。然而,当稍后发现海藻糖合酶(EC 5.4.99.16)时,由于其在工业生产中的简单性和潜力,这种使用麦芽糖的海藻糖生产方法很快就会成为流行的话题。从那时起,已经研究了许多海藻糖合成酶。本综述总结了报告的海藻糖合成酶的来源和特征,以及产业生产过程中海藻糖合成酶,催化机制,分子改性的结构分析的最新进展。

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