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由 中的 YdhE 对异丁香酚和单萜的糖基化作用。

Glucosylation of Isoeugenol and Monoterpenes in by YdhE from .

机构信息

Department of Life Science and Biochemical Engineering, Sun Moon University, 70 Sun Moon-ro 221, Tangjeong-myeon, Asan-si 31460, Republic of Korea.

Department of Pharmaceutical Engineering and Biotechnology, Sun Moon University, 70 Sun Moon-ro 221, Tangjeong-myeon, Asan-si 31460, Republic of Korea.

出版信息

Molecules. 2023 Apr 28;28(9):3789. doi: 10.3390/molecules28093789.

Abstract

has been regarded as a food-grade microorganism. In recent years, the research to improve the activities of beneficial therapeutics and pharmaceutical substances has resulted in the engineering of the therapeutically favorable cell factory system of In this study, we successfully glucosylated isoeugenol and other monoterpene derivatives in using a promiscuous YdhE, which is a glycosyltransferase from . For efficient glucosylation, cultivation conditions such as the production time, substrate concentration, carbon source, and culture medium were optimized. Our system successfully converted about 93% of the isoeugenol to glucosylated compounds in the culture. The glucoside compounds were then purified, analyzed, and identified as isoeugenol-1--β-d-glucoside and isoeugenol-1--β-d-(2″-acetyl)-glucoside.

摘要

已被视为一种食品级微生物。近年来,为提高有益治疗和药物物质的活性而进行的研究,导致了治疗上有利的细胞工厂系统的工程化。在这项研究中,我们成功地在 中对异丁香酚和其他单萜衍生物进行了葡萄糖基化,使用的是一种混杂的 YdhE,它是一种来自 的糖基转移酶。为了实现高效的葡萄糖基化,我们优化了培养条件,如生产时间、底物浓度、碳源和培养基。我们的系统成功地将约 93%的异丁香酚转化为培养物中的葡萄糖基化化合物。然后对糖苷化合物进行纯化、分析和鉴定,结果表明它们是异丁香酚-1--β-d-葡萄糖苷和异丁香酚-1--β-d-(2″-乙酰基)-葡萄糖苷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0718/10180135/3c56d0f9ddc2/molecules-28-03789-g001.jpg

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