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首页> 外文期刊>Plant and Cell Physiology >The Cyt P450 Enzyme CYP716A47 Catalyzes the Formation of Protopanaxadiol from Dammarenediol-II During Ginsenoside Biosynthesisn in Panax ginseng
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The Cyt P450 Enzyme CYP716A47 Catalyzes the Formation of Protopanaxadiol from Dammarenediol-II During Ginsenoside Biosynthesisn in Panax ginseng

机译:Cyt P450酶CYP716A47催化人参皂苷生物合成过程中由丹烯二醇-II产生的原托那沙糖醇。

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摘要

Ginseng (Panax ginseng C.A. Meyer) is one of the most popular medicinal herbs and contains pharmacologically active components, ginsenosides, in its roots. Ginsenosides, a class of tetracyclic triterpene saponins, are thought to be synthesized from dammarenediol-II after hydroxylation by the Cyt P450 (CYP) enzyme and then glycosylation by glycosyltransferase (GT). However, no genes encoding the hydroxylation and glycosylation in ginsenoside biosynthesis have been identified. Here, we identify protopanaxadiol synthase, which is a CYP enzyme (CYP716A47), to be involved in the hydroxylation of dammarenediol-II at the C-12 position to yield protopanaxadiol. Nine putative full CYP sequences were isolated from the expressed sequence tags (ESTs) of methyl jasmonate (MeJA)-treated adventitious ginseng roots. The CYP716A47 gene product was selected as the putative protopanaxadiol synthase because this gene was transcriptionally activated not only by MeJA treatment but also in transgenic ginseng that overexpresses squalene synthase and overproduces ginsenosides. In vitro enzymatic activity assays revealed that CYP716A47 catalyzed the oxidation of dammarenediol-II to produce protopanaxadiol. Ectopic expression of CYP716A47 in recombinant WAT21 yeasts that were fed dammarenediol-II yielded protopanaxadiol. Furthermore, co-expression of the dammarenediol synthase gene (PgDDS) and CYP716A47 in yeast yielded protopanaxadiol without adding dammarenediol-II. The chemical structures of the protopanaxadiol products from dammarenediol-II were confirmed using liquid chromatography–atmospheric pressure chemical ionization mass spectrometry (LC/APCIMS). Thus, CYP716A47 is a dammarenediol 12-hydroxylase that produces protopanaxadiol from dammarenediol-II.
机译:人参(Panax ginseng C.A. Meyer)是最受欢迎的草药之一,其根部含有药理活性成分人参皂甙。人参皂苷是一类四环三萜皂苷,被认为是由达玛烯二醇-II通过Cyt P450(CYP)酶羟化后再通过糖基转移酶(GT)糖基化而合成的。然而,尚未鉴定出编码人参皂苷生物合成中的羟基化和糖基化的基因。在这里,我们确定前托那沙糖醇合酶,这是一种CYP酶(CYP716A47),在C-12位置处丹烯二醇-II的羟基化反应中产生前托那沙糖醇。从茉莉酸甲酯(MeJA)处理的不定参根中表达的序列标签(EST)中分离出九个假定的完整CYP序列。 CYP716A47基因产物被选作推定的原托那沙糖醇合酶,因为该基因不仅通过MeJA处理而且在过表达角鲨烯合酶并过量产生人参皂甙的转基因人参中被转录激活。体外酶活性测定表明,CYP716A47催化达玛烯二醇-II的氧化,生成原托那沙醇。 CYP716A47在达玛烯二醇-II喂养的重组WAT21酵母中的异位表达产生了原托那沙糖醇。此外,在不添加达玛烯二醇-II的情况下,达玛烯二醇合酶基因(PgDDS)和CYP716A47在酵母中的共表达产生了原托那沙二醇。使用液相色谱-大气压化学电离质谱法(LC / APCIMS)确认了由金刚烷二醇-II制备的原丹酚二醇产品的化学结构。因此,CYP716A47是由丹烯二醇-II产生原托那沙糖醇的丹烯二醇12-羟化酶。

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