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首页> 外文期刊>Plant and cell physiology >The involvement of beta-amyrin 28-oxidase (CYP716A52v2) in oleanane-type ginsenoside biosynthesis in Panax ginseng.
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The involvement of beta-amyrin 28-oxidase (CYP716A52v2) in oleanane-type ginsenoside biosynthesis in Panax ginseng.

机译:β-amyrin28-氧化酶(CYP716A52v2)与人参中的齐墩果烷型人参皂苷生物合成有关。

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摘要

Panax species are the most popular medicinal herbs. The root of these plants contains pharmacologically active triterpene saponins, also known as ginsenosides, compounds that are divided into dammarane- and oleanane-type triterpenes. Two CYP716A subfamily genes (CYP716A47 and CYP716A53v2) were recently characterized, encoding an enzyme catalyzing the hydroxylation of dammarane-type triterpenes in Panax ginseng. Herein, we report that one CYP716A subfamily gene (CYP716A52v2) isolated from P. ginseng encodes a beta-amyrin 28-oxidase, which is suggested to modify beta-amyrin into oleanolic acid, a precursor of an oleanane-type saponin (mainly ginsenoside Ro) in P. ginseng. The ectopic expression of both PNY1 and CYP716A52v2 in recombinant yeast resulted in erythrodiol and oleanolic acid production, respectively. In vitro enzymatic activity assays biochemically confirmed that CYP716A52v2 catalyzed the oxidation of beta-amyrin to produce oleanolic acid, and the chemical structure of the oleanolic acid product was confirmed using gas chromatography-mass spectrometry (GC/MS). Transgenic P. ginseng plants were generated via Agrobacterium tumefaciens-mediated transformation: the overexpression of CYP716A52v2 greatly increased the content of oleanane-type ginsenoside (ginsenoside Ro), whereas RNA interference against CYP716A52v2 markedly reduced it. Furthermore, the levels of other dammarene-type ginsenosides were not affected in these transgenic lines. These results indicate that CYP716A52v2 is a beta-amyrin 28-oxidase that plays a key role in the biosynthesis of oleanane-type triterpenes in P. ginseng
机译:人参是最受欢迎的草药。这些植物的根包含具有药理活性的三萜皂苷,也称为人参皂苷,这些化合物分为丹玛烷型和齐墩果型三萜。最近对两个CYP716A亚家族基因(CYP716A47和CYP716A53v2)进行了表征,该基因编码一种催化人参中达玛烷型三萜烯羟基化的酶。在此,我们报道了从人参中分离出的一个CYP716A亚家族基因(CYP716A52v2)编码一个β-淀粉酶28-氧化酶,建议将β-淀粉酶修饰为齐墩果酸,一种齐墩果烷型皂苷(主要是人参皂甙Ro)的前体。 )在人参中。 PNY1和CYP716A52v2在重组酵母中的异位表达分别导致赤藓糖醇和齐墩果酸的产生。体外酶活性测定通过生物化学方法证实了CYP716A52v2催化β-淀粉酶氧化生成齐墩果酸,并通过气相色谱-质谱法(GC / MS)确认了齐墩果酸产物的化学结构。转基因人参植物是通过根癌农杆菌介导的转化产生的:CYP716A52v2的过表达大大增加了齐墩果烷型人参皂甙(人参皂甙Ro)的含量,而RNA对CYP716A52v2的干扰显着降低了它。此外,在这些转基因品系中,其他达玛琳型人参皂甙的水平没有受到影响。这些结果表明CYP716A52v2是一种β-amyrin28-氧化酶,在人参中的齐墩果烷型三萜的生物合成中起关键作用。

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