首页> 外文期刊>The New Phytologist >A novel glucuronosyltransferase has an unprecedented ability to catalyse continuous two-step glucuronosylation of glycyrrhetinic acid to yield glycyrrhizin
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A novel glucuronosyltransferase has an unprecedented ability to catalyse continuous two-step glucuronosylation of glycyrrhetinic acid to yield glycyrrhizin

机译:一种新型的葡萄糖醛酸转移酶具有前所未有的催化甘草次酸的连续两步葡萄糖醛糖基化以产生甘草酸的能力

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摘要

Glycyrrhizin is an important bioactive compound that is used clinically to treat chronic hepatitis and is also used as a sweetener world-wide. However, the key UDP-dependent glucuronosyltransferases (UGATs) involved in the biosynthesis of glycyrrhizin remain unknown. To discover unknown UGATs, we fully annotated potential UGATs from Glycyrrhiza uralensis using deep transcriptome sequencing. The catalytic functions of candidate UGATs were determined by an invitro enzyme assay. Systematically screening 434 potential UGATs, we unexpectedly found one unique GuUGAT that was able to catalyse the glucuronosylation of glycyrrhetinic acid to directly yield glycyrrhizin via continuous two-step glucuronosylation. Expression analysis further confirmed the key role of GuUGAT in the biosynthesis of glycyrrhizin. Site-directed mutagenesis revealed that Gln-352 may be important for the initial step of glucuronosylation, and His-22, Trp-370, Glu-375 and Gln-392 may be important residues for the second step of glucuronosylation. Notably, the ability of GuUGAT to catalyse a continuous two-step glucuronosylation reaction was determined to be unprecedented among known glycosyltransferases of bioactive plant natural products. Our findings increase the understanding of traditional glycosyltransferases and pave the way for the complete biosynthesis of glycyrrhizin.
机译:甘草甜素是一种重要的生物活性化合物,临床上用于治疗慢性肝炎,并且在全世界范围内也用作甜味剂。但是,参与甘草甜素生物合成的关键UDP依赖性葡萄糖醛酸转移酶(UGAT)仍然未知。为了发现未知的UGAT,我们使用深度转录组测序对甘草中的潜在UGAT进行了充分注释。候选UGAT的催化功能通过体外酶法测定。系统地筛选了434种潜在的UGAT,我们出乎意料地发现了一种独特的GuUGAT,它能够催化甘草次酸的葡萄糖醛酸糖基化反应,并通过连续的两步葡萄糖醛酸糖基化反应直接产生甘草甜素。表达分析进一步证实了GuUGAT在甘草甜素的生物合成中的关键作用。定点诱变表明,Gln-352对于葡萄糖醛糖基化的初始步骤可能很重要,而His-22,Trp-370,Glu-375和Gln-392可能是葡萄糖醛糖基化的第二步骤的重要残基。值得注意的是,在生物活性植物天然产物的已知糖基转移酶中,GuUGAT催化连续的两步葡萄糖醛糖基化反应的能力被确定是前所未有的。我们的发现增加了对传统糖基转移酶的了解,为甘草甜素的完整生物合成铺平了道路。

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