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糖基转移酶介导的小分子糖基多样化研究进展

Advances in glycosyltransferase-mediated glycodiversification of small molecules.

作者信息

Thuan Nguyen Huy, Huong Quach Thi Thu, Lam Bui Dinh, Tam Ho Thanh, Thu Pham The, Canh Nguyen Xuan, Tatipamula Vinay Bharadwaj

机构信息

Center for Pharmaceutical Biotechnology, Duy Tan University, Da Nang, 550000 Vietnam.

College of Medicine and Pharmacy, Duy Tan University, Danang, Vietnam.

出版信息

3 Biotech. 2024 Sep;14(9):209. doi: 10.1007/s13205-024-04044-0. Epub 2024 Aug 23.

Abstract

Currently, numerous glycosides have been synthesized and used in clinical applications, neutraceuticals, cosmetics, and food processing. Structurally, a glycoside is composed of aglycone attaching to one or several sugar moieties so-called glycone. It is found that biochemical or biopharmaceutical properties of glycoside are mainly determined by its sugar part and thereby alternation of this glycone resulting in novel structure and characteristics as well. The use of traditional production methods of glycosides such as direct extraction and purification from plants, animals, or microorganisms is very challenging (laborious, time-consuming, technique, high price, low yield, etc.). Alternatively, the use of enzymatic methods for the biosynthesis of glycosides has become a highly promising tool. Particularly, the diverse structure of glycosides can be obtained using the promiscuous catalytic activity of glycosyltransferases (GT) mined from bioresources (plants, fungi, microorganisms, etc.). In addition, the exploration of GT catalytic promiscuity toward diverse aglycones, and glycones has indeed been interesting and played a key role in the production of novel glycosides. This review described the recent advances in glycosyltransferase-mediated glycodiversification of small molecules (flavonoids, steroids, terpenoids, etc.). Mostly, references were collected from 2014 to 2023.

摘要

目前,众多糖苷已被合成并应用于临床、营养保健品、化妆品及食品加工领域。从结构上看,糖苷由连接一个或多个糖部分(即所谓的糖基)的苷元组成。研究发现,糖苷的生化或生物制药特性主要由其糖部分决定,因此糖基的改变也会产生新的结构和特性。使用传统的糖苷生产方法,如从植物、动物或微生物中直接提取和纯化,极具挑战性(费力、耗时、技术要求高、价格昂贵、产量低等)。相比之下,利用酶法生物合成糖苷已成为一种非常有前景的工具。特别是,利用从生物资源(植物、真菌、微生物等)中挖掘出的糖基转移酶(GT)的混杂催化活性,可以获得多种结构的糖苷。此外,探索GT对不同苷元和糖基的催化混杂性确实很有趣,并且在新型糖苷的生产中发挥了关键作用。本文综述了糖基转移酶介导的小分子(黄酮类、甾体类、萜类等)糖基多样化的研究进展。大部分参考文献收集于2014年至2023年。

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