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从肉苁蓉中克隆和生化表征一种新的香豆素糖基转移酶 CtUGT1。

Molecular cloning and biochemical characterization of a new coumarin glycosyltransferase CtUGT1 from Cistanche tubulosa.

机构信息

Modern Research Center for Traditional Chinese Medicine, School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing 100029, People's Republic of China.

Modern Research Center for Traditional Chinese Medicine, School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing 100029, People's Republic of China.

出版信息

Fitoterapia. 2021 Sep;153:104995. doi: 10.1016/j.fitote.2021.104995. Epub 2021 Jul 20.

Abstract

UDP-glycosyltransferases (UGTs) are an important and functionally diverse family of enzymes involved in secondary metabolite biosynthesis. Coumarin is one of the most common skeletons of natural products with candidate pharmacological activities. However, to date, many reported GTs from plants mainly recognized flavonoids as sugar acceptors. Only limited GTs could catalyze the glycosylation of coumarins. In this study, a new UGT was cloned from Cistanche tubulosa, a valuable traditional tonic Chinese herb, which is abundant with diverse glycosides such as phenylethanoid glycosides, lignan glycosides, and iridoid glycosides. Sequence alignment and phylogenetic analysis showed that CtUGT1 is phylogenetically distant from most of the reported flavonoid UGTs and adjacent to phenylpropanoid UGTs. Extensive in vitro enzyme assays found that although CtUGT1 was not involved in the biosynthesis of bioactive glycosides in C. tubulosa, it could catalyze the glucosylation of coumarins umbelliferone 1, esculetine 2, and hymecromone 3 in considerable yield. The glycosylated products were identified by comparison with the reference standards or NMR spectroscopy, and the results indicated that CtUGT1 can regiospecifically catalyze the glucosylation of hydroxyl coumarins at the C7-OH position. The key residues that determined CtUGT1's activity were further discussed based on homology modeling and molecular docking analyses. Combined with site-directed mutagenesis results, it was found that H19 played an irreplaceable role as the crucial catalysis basis. CtUGT1 could be used in the enzymatic preparation of bioactive coumarin glycosides.

摘要

尿苷二磷酸-糖基转移酶(UGTs)是参与次生代谢产物生物合成的一个重要且功能多样的酶家族。香豆素是具有候选药理活性的天然产物中最常见的骨架之一。然而,迄今为止,许多来自植物的报道的 GT 主要将黄酮类化合物识别为糖受体。只有有限的 GT 能够催化香豆素的糖基化。在这项研究中,从肉苁蓉(一种珍贵的传统滋补中药)中克隆了一种新的 UGT,这种植物富含多种糖苷,如苯乙醇苷、木脂素糖苷和环烯醚萜糖苷。序列比对和系统发育分析表明,CtUGT1 在系统发育上与大多数报道的黄酮类 UGT 相距甚远,与苯丙素 UGT 相邻。广泛的体外酶分析发现,尽管 CtUGT1 不参与肉苁蓉中生物活性糖苷的生物合成,但它可以相当大的产率催化香豆素 Umbelliferone 1、Esculetine 2 和 Hymecromone 3 的葡萄糖基化。通过与参比标准品或 NMR 光谱比较鉴定糖基化产物,结果表明 CtUGT1 可以在 C7-OH 位置上对羟基香豆素进行区域特异性葡萄糖基化。根据同源建模和分子对接分析进一步讨论了决定 CtUGT1 活性的关键残基。结合定点突变结果发现,H19 作为关键催化基础发挥了不可替代的作用。CtUGT1 可用于生物活性香豆素糖苷的酶法制备。

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