Glycoside hydrolases active on microbial exopolysaccharide α-glucans: structures and function.

IF 5.6 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Essays in biochemistry Pub Date : 2023-04-18 DOI:10.1042/EBC20220219
Takatsugu Miyazaki
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引用次数: 3

Abstract

Glucose is the most abundant monosaccharide in nature and is an important energy source for living organisms. Glucose exists primarily as oligomers or polymers and organisms break it down and consume it. Starch is an important plant-derived α-glucan in the human diet. The enzymes that degrade this α-glucan have been well studied as they are ubiquitous throughout nature. Some bacteria and fungi produce α-glucans with different glucosidic linkages compared with that of starch, and their structures are quite complex and not fully understood. Compared with enzymes that degrade the α-(1→4) and α-(1→6) linkages in starch, biochemical and structural studies of the enzymes that catabolize α-glucans from these microorganisms are limited. This review focuses on glycoside hydrolases that act on microbial exopolysaccharide α-glucans containing α-(1→6), α-(1→3), and α-(1→2) linkages. Recently acquired information regarding microbial genomes has contributed to the discovery of enzymes with new substrate specificities compared with that of previously studied enzymes. The discovery of new microbial α-glucan-hydrolyzing enzymes suggests previously unknown carbohydrate utilization pathways and reveals strategies for microorganisms to obtain energy from external sources. In addition, structural analysis of α-glucan degrading enzymes has revealed their substrate recognition mechanisms and expanded their potential use as tools for understanding complex carbohydrate structures. In this review, the author summarizes the recent progress in the structural biology of microbial α-glucan degrading enzymes, touching on previous studies of microbial α-glucan degrading enzymes.

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微生物外多糖α-葡聚糖活性的糖苷水解酶:结构和功能。
葡萄糖是自然界中含量最丰富的单糖,是生物体的重要能量来源。葡萄糖主要以低聚物或聚合物的形式存在,生物体将其分解并消耗。淀粉是人类饮食中重要的植物源性α-葡聚糖。降解α-葡聚糖的酶已经得到了很好的研究,因为它们在自然界中无处不在。一些细菌和真菌产生的α-葡聚糖与淀粉产生的α-葡聚糖具有不同的糖苷键,其结构非常复杂,尚未完全了解。与降解淀粉中α-(1→4)和α-(1→6)键的酶相比,对这些微生物中分解α-葡聚糖的酶的生化和结构研究有限。本文综述了作用于含有α-(1→6)、α-(1→3)和α-(1→2)键的微生物外多糖α-葡聚糖的糖苷水解酶。最近获得的关于微生物基因组的信息有助于发现与先前研究的酶相比具有新底物特异性的酶。新的微生物α-葡聚糖水解酶的发现提示了以前未知的碳水化合物利用途径,并揭示了微生物从外部来源获取能量的策略。此外,α-葡聚糖降解酶的结构分析揭示了它们的底物识别机制,并扩大了它们作为理解复杂碳水化合物结构工具的潜在用途。本文综述了近年来微生物α-葡聚糖降解酶的结构生物学研究进展,并对微生物α-葡聚糖降解酶的研究进展进行了综述。
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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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