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糖基转移酶的研究进展——多样化人参皂苷生产的重要生物部件

Advance in glycosyltransferases, the important bioparts for production of diversified ginsenosides.

机构信息

The SATCM Key Laboratory for New Resources & Quality Evaluation of Chinese Medicine, The MOE Key Laboratory for Standardization of Chinese Medicines and Shanghai Key Laboratory of Compound Chinese Medicines, Institute of Chinese Materia Medica, Shanghai University of Traditional Chinese Medicine, Shanghai 201203, China.

The SATCM Key Laboratory for New Resources & Quality Evaluation of Chinese Medicine, The MOE Key Laboratory for Standardization of Chinese Medicines and Shanghai Key Laboratory of Compound Chinese Medicines, Institute of Chinese Materia Medica, Shanghai University of Traditional Chinese Medicine, Shanghai 201203, China.

出版信息

Chin J Nat Med. 2020 Sep;18(9):643-658. doi: 10.1016/S1875-5364(20)60003-6.

Abstract

Ginsenosides are a series of glycosylated triterpenoids predominantly originated from Panax species with multiple pharmacological activities such as anti-aging, mediatory effect on the immune system and the nervous system. During the biosynthesis of ginsenosides, glycosyltransferases play essential roles by transferring various sugar moieties to the sapogenins in contributing to form structure and bioactivity diversified ginsenosides, which makes them important bioparts for synthetic biology-based production of these valuable ginsenosides. In this review, we summarized the functional elucidated glycosyltransferases responsible for ginsenoside biosynthesis, the advance in the protein engineering of UDP-glycosyltransferases (UGTs) and their application with the aim to provide in-depth understanding on ginsenoside-related UGTs for the production of rare ginsenosides applying synthetic biology-based microbial cell factories in the future.

摘要

人参皂苷是一系列主要源自人参属植物的糖基化三萜皂苷,具有多种药理活性,如抗衰老、对免疫系统和神经系统的调节作用。在人参皂苷的生物合成过程中,糖基转移酶通过将各种糖基转移到甾体皂苷上,发挥着重要作用,有助于形成结构和生物活性多样化的人参皂苷,这使得它们成为基于合成生物学生产这些有价值的人参皂苷的重要生物部件。在这篇综述中,我们总结了负责人参皂苷生物合成的功能已阐明的糖基转移酶,以及 UDP-糖基转移酶(UGTs)的蛋白质工程的进展及其应用,以期为未来应用基于合成生物学的微生物细胞工厂生产稀有人参皂苷时,深入了解与人参皂苷相关的 UGTs 提供帮助。

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