Thermostable alpha-glucan phosphorylases: characteristics and industrial applications

被引:0
作者
Zorica Ubiparip
Koen Beerens
Jorick Franceus
Ronny Vercauteren
Tom Desmet
机构
[1] Ghent University,Centre for Synthetic Biology (CSB), Department of Biotechnology
[2] Cargill R&D Centre Europe BVBA,undefined
来源
Applied Microbiology and Biotechnology | 2018年 / 102卷
关键词
α-Glucan phosphorylase; Thermostability; Thermozymes; α-; -glucose 1-phosphate; Biocatalysis;
D O I
暂无
中图分类号
学科分类号
摘要
α-Glucan phosphorylases (α-GPs) catalyze the reversible phosphorolysis of α-1,4-linked polysaccharides such as glycogen, starch, and maltodextrins, therefore playing a central role in the usage of storage polysaccharides. The discovery of these enzymes and their role in the course of catalytic conversion of glycogen was rewarded with the Nobel Prize in Physiology or Medicine in 1947. Nowadays, however, thermostable representatives attract special attention due to their vast potential in the enzymatic production of diverse carbohydrates and derivatives such as (functional) oligo- and (non-natural) polysaccharides, artificial starch, glycosides, and nucleotide sugars. One of the most recently explored utilizations of α-GPs is their role in the multi-enzymatic process of energy production stored in carbohydrate biobatteries. Regardless of their use, thermostable α-GPs offer significant advantages and facilitated bioprocess design due to their high operational temperatures. Here, we present an overview and comparison of up-to-date characterized thermostable α-GPs with a special focus on their reported biotechnological applications.
引用
收藏
页码:8187 / 8202
页数:15
相关论文
共 409 条
[1]  
Alonso-Casajús N(2006)Glycogen phosphorylase, the product of the glgP gene, catalyzes glycogen breakdown by removing glucose units from the nonreducing ends in J Bacteriol 188 5266-5272
[2]  
Dauvillée D(1973)Physicochemical and catalytic properties of crystallized human muscle glycogen phosphorylase Ann N Y Acad Sci 210 139-152
[3]  
Viale AM(2016)Synthesis of α(1→4)-linked non-natural mannoglucans by α-glucan phosphorylase-catalyzed enzymatic copolymerization Carbohydr Polym 151 1034-1039
[4]  
Muñoz FJ(2005)Facile synthesis of glucose-1-phosphate from starch by Process Biochem 40 3707-3713
[5]  
Baroja-Fernández E(1983) GK24 α-glucan phosphorylase Arch Biochem Biophys 225 667-678
[6]  
Morán-Zorzano MT(2000)Purification and properties of phosphorylase from baker’s yeast Nucleic Acids Res 28 235-242
[7]  
Eydallin G(2003)The protein data bank J Mol Catal B Enzym 22 173-180
[8]  
Ball S(2006)Characterization of a hyperthermostable glycogen phosphorylase from Proc Natl Acad Sci 103 5869-5874
[9]  
Pozueta-Romero J(1996) expressed in Eur J Biochem 155 150-155
[10]  
Assaf SA(2015)Protein stability promotes evolvability Carbohydr Res 412 71-79