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Glucoamylase: structure/function relationships, and protein engineering

机译:葡糖淀粉酶:结构/功能关系和蛋白质工程

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摘要

Glucoamylases are inverting exo-acting starch hydrolases releasing β-glucose from the non-reducing ends of starch and related substrates. The majority of glucoamylases are multidomain enzymes consisting of a catalytic domain connected to a starch-binding domain by an O-glycosylated linker region. Three-dimensional structures have been determined of free and inhibitor complexed glucoamylases from Aspergillus awamori var. X100, Aspergillus niger, and Saccharomycopsis fibuligera. The catalytic domain folds as a twisted (α/α)_6-barrel with a central funnel-shaped active site, while the starch-binding domain folds as an antiparallel β-barrel and has two binding sites for starch or β-cyclodextrin. Certain glucoamylases are widely applied industrially in the manufacture of glucose and fructose syrups. For more than a decade mutational investigations of glucoamylase have addressed fundamental structure/function relationships in the binding and catalytic mechanisms. In parallel, issues of relevance for application have been pursued using protein engineering to improve the industrial properties. The present review focuses on recent findings on the catalytic site, mechanism of action, substrate recognition, the linker region, the multidomain architecture, the engineering of specificity and stability, and roles of individual substrate binding subsites.
机译:葡糖淀粉酶使外在作用的淀粉水解酶转化,该酶从淀粉和相关底物的非还原末端释放β-葡萄糖。大多数葡糖淀粉酶是多结构域酶,其由通过O-糖基化的连接子区域连接至淀粉结合结构域的催化结构域组成。已经确定了泡盛曲霉的游离和抑制剂复合的葡糖淀粉酶的三维结构。 X100,黑曲霉和腓肠酵母。催化结构域折叠成具有中心漏斗形活性位点的扭曲(α/α)_6桶,而淀粉结合结构域折叠成反平行的β桶,并具有两个淀粉或β-环糊精结合位点。某些葡糖淀粉酶在工业上广泛用于制造葡萄糖和果糖糖浆。十多年来,葡糖淀粉酶的突变研究已经解决了结合和催化机制中的基本结构/功能关系。同时,使用蛋白质工程技术来寻求与应用相关的问题以改善工业性能。本综述着重于在催化位点,作用机理,底物识别,接头区域,多域结构,特异性和稳定性的工程以及单个底物结合亚位点的作用的最新发现。

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