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真菌糖基转移酶-甲基转移酶功能模块对酚类化合物的甲基化作用

Methylglucosylation of Phenolic Compounds by Fungal Glycosyltransferase-Methyltransferase Functional Modules.

机构信息

Biotechnology Research Institute , Chinese Academy of Agricultural Sciences , 12 Zhongguancun South Street , Beijing 100081 , P. R. China.

School of Agricultural Sciences , Zhengzhou University , Kexue Avenue 100 , Zhengzhou 450001 , P. R. China.

出版信息

J Agric Food Chem. 2019 Aug 7;67(31):8573-8580. doi: 10.1021/acs.jafc.9b02819. Epub 2019 Jul 23.

Abstract

Glycosylation endows both natural and synthetic small molecules with modulated physicochemical and biological properties. Plant and bacterial glycosyltransferases capable of decorating various privileged scaffolds have been extensively studied, but those from kingdom Fungi still remain underexploited. Here, we use a combination of genome mining and heterologous expression techniques to identify four novel glycosyltransferase-methyltransferase (GT-MT) functional modules from Hypocreales fungi. These GT-MT modules display decent substrate promiscuity and regiospecificity, methylglucosylating a panel of natural products such as flavonoids, stilbenoids, anthraquinones, and benzenediol lactones. Native GT-MT modules can be split up and regrouped into hybrid modules with similar or even improved efficacy as compared with native pairs. Methylglucosylation of kaempferol considerably improves its insecticidal activity against the larvae of oriental armyworm (Walker). Our work provides a set of efficient biocatalysts for the combinatorial biosynthesis of small molecule glycosides that may have significant importance to the pharmaceutical, agricultural, and food industries.

摘要

糖基化赋予天然和合成小分子调节的物理化学和生物学特性。能够修饰各种特权支架的植物和细菌糖基转移酶已被广泛研究,但真菌界的那些仍然未被充分利用。在这里,我们使用基因组挖掘和异源表达技术的组合,从Hypocreales 真菌中鉴定出四个新型糖基转移酶-甲基转移酶(GT-MT)功能模块。这些 GT-MT 模块显示出相当的底物广谱性和区域特异性,甲基化了一系列天然产物,如类黄酮、芪类、蒽醌和苯二酚内酯。与天然对相比,天然 GT-MT 模块可以分裂并重新组合成具有相似甚至更好效果的混合模块。山柰酚的甲基化大大提高了其对东方行军虫(Walker)幼虫的杀虫活性。我们的工作为小分子糖苷的组合生物合成提供了一组高效的生物催化剂,这可能对制药、农业和食品工业具有重要意义。

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