化学
酶水解
胺化
酶
有机化学
还原胺化
糖苷水解酶
水解
纤维素
碳水化合物
生物炼制
聚合
生物化学
聚合物
原材料
催化作用
作者
Thu V. Vuong,Mohammad Aghajohari,Xuebin Feng,Amanda K. Woodstock,Deepti M. Nambiar,Zeina C. Sleiman,Breeanna R. Urbanowicz,Emma R. Master
出处
期刊:JACS Au
[American Chemical Society]
日期:2024-10-08
卷期号:4 (11): 4044-4065
标识
DOI:10.1021/jacsau.4c00469
摘要
Various enzymes can be used to modify the structure of hemicelluloses directly in vivo or following extraction from biomass sources, such as wood and agricultural residues. Generally, these enzymes can contribute to designer hemicelluloses through four main strategies: (1) enzymatic hydrolysis such as selective removal of side groups by glycoside hydrolases (GH) and carbohydrate esterases (CE), (2) enzymatic cross-linking, for instance, the selective addition of side groups by glycosyltransferases (GT) with activated sugars, (3) enzymatic polymerization by glycosynthases (GS) with activated glycosyl donors or transglycosylation, and (4) enzymatic functionalization, particularly via oxidation by carbohydrate oxidoreductases and via amination by amine transaminases. Thus, this Perspective will first highlight enzymes that play a role in regulating the degree of polymerization and side group composition of hemicelluloses, and subsequently, it will explore enzymes that enhance cross-linking capabilities and incorporate novel chemical functionalities into saccharide structures. These enzymatic routes offer a precise way to tailor the properties of hemicelluloses for specific applications in biobased materials, contributing to the development of renewable alternatives to conventional materials derived from fossil fuels.
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