微生物α- 1 -聚焦酶的结构与功能综述。

IF 5.6 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Haiyang Wu, C David Owen, Nathalie Juge
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引用次数: 2

摘要

焦糖是一种单糖,常见于哺乳动物、昆虫、微生物和植物聚糖中。α- 1 -聚焦酶催化低聚糖和糖缀合物末端α- 1 -聚焦基残基的去除。迄今为止,在碳水化合物活性酶(CAZy)数据库的GH29、GH95、GH139、GH141和GH151家族中已经报道了对α- 1 -集中的底物具有外聚焦酶活性的糖苷水解酶(GHs) (EC 3.2.1.51, EC 3.2.1 -)。微生物通常在其基因组中编码几种聚焦酶,通常来自一个以上的生长激素家族,这反映了它们遇到的自然发生的聚焦结构的高度多样性。功能特征的微生物α-1 -聚焦酶已被证明作用于一系列底物,根据生长激素家族和微生物的不同,具有α-1,2, α-1,3, α-1,4或α-1,6聚焦键。聚焦酶表现为模块化结构,GH29和GH151的催化结构域表现为(β/α)8桶折叠,GH95和GH141分别表现为(α/α)6桶和平行β-螺旋折叠。许多晶体结构在配体配合物中得到求解,为它们的底物特异性提供了结构基础。聚焦酶还可用于转糖基化反应以合成低聚糖。本文综述了微生物α- 1 -聚焦酶的酶学特性和结构特性,并对其生物学功能和生物技术应用进行了综述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Structure and function of microbial α-l-fucosidases: a mini review.

Structure and function of microbial α-l-fucosidases: a mini review.

Structure and function of microbial α-l-fucosidases: a mini review.

Structure and function of microbial α-l-fucosidases: a mini review.

Fucose is a monosaccharide commonly found in mammalian, insect, microbial and plant glycans. The removal of terminal α-l-fucosyl residues from oligosaccharides and glycoconjugates is catalysed by α-l-fucosidases. To date, glycoside hydrolases (GHs) with exo-fucosidase activity on α-l-fucosylated substrates (EC 3.2.1.51, EC 3.2.1.-) have been reported in the GH29, GH95, GH139, GH141 and GH151 families of the Carbohydrate Active Enzymes (CAZy) database. Microbes generally encode several fucosidases in their genomes, often from more than one GH family, reflecting the high diversity of naturally occuring fucosylated structures they encounter. Functionally characterised microbial α-l-fucosidases have been shown to act on a range of substrates with α-1,2, α-1,3, α-1,4 or α-1,6 fucosylated linkages depending on the GH family and microorganism. Fucosidases show a modular organisation with catalytic domains of GH29 and GH151 displaying a (β/α)8-barrel fold while GH95 and GH141 show a (α/α)6 barrel and parallel β-helix fold, respectively. A number of crystal structures have been solved in complex with ligands, providing structural basis for their substrate specificity. Fucosidases can also be used in transglycosylation reactions to synthesise oligosaccharides. This mini review provides an overview of the enzymatic and structural properties of microbial α-l-fucosidases and some insights into their biological function and biotechnological applications.

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来源期刊
Essays in biochemistry
Essays in biochemistry 生物-生化与分子生物学
CiteScore
10.50
自引率
0.00%
发文量
105
审稿时长
>12 weeks
期刊介绍: Essays in Biochemistry publishes short, digestible reviews from experts highlighting recent key topics in biochemistry and the molecular biosciences. Written to be accessible for those not yet immersed in the subject, each article is an up-to-date, self-contained summary of the topic. Bridging the gap between the latest research and established textbooks, Essays in Biochemistry will tell you what you need to know to begin exploring the field, as each article includes the top take-home messages as summary points. Each issue of the journal is guest edited by a key opinion leader in the area, and whether you are continuing your studies or moving into a new research area, the Journal gives a complete picture in one place. Essays in Biochemistry is proud to publish Understanding Biochemistry, an essential online resource for post-16 students, teachers and undergraduates. Providing up-to-date overviews of key concepts in biochemistry and the molecular biosciences, the Understanding Biochemistry issues of Essays in Biochemistry are published annually in October.
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