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在工程酵母中组合生物合成豆科天然和稀有三萜类化合物。

Combinatorial biosynthesis of legume natural and rare triterpenoids in engineered yeast.

机构信息

Kihara Institute for Biological Research, Yokohama City University, Maioka-cho 641-12, Totsuka-ku, Yokohama, Kanagawa, 244-0813 Japan.

出版信息

Plant Cell Physiol. 2013 May;54(5):740-9. doi: 10.1093/pcp/pct015. Epub 2013 Jan 31.

Abstract

Triterpenoid saponins are a diverse group of specialized (secondary) metabolites with many biological properties. The model legume Medicago truncatula has an interesting profile of triterpenoid saponins from which sapogenins are differentiated into hemolytic and non-hemolytic types according to the position of their functional groups and hemolytic properties. Gene co-expression analysis confirmed the presence of candidate P450s whose gene expression correlated highly with that of β-amyrin synthase (bAS). Among these, we identified CYP716A12 and CYP93E2 as key enzymes in hemolytic and non-hemolytic sapogenin biosynthetic pathways. The other candidate P450s showed no β-amyrin oxidation activity. However, among the remaining candidate P450s, CYP72A61v2 expression highly correlated with that of CYP93E2, and CYP72A68v2 expression highly correlated with that of CYP716A12. These correlation values were higher than occurred with bAS expression. We generated yeast strains expressing bAS, CPR, CYP93E2 and CYP72A61v2, and bAS, CPR, CYP716A12 and CYP72A68v2. These transgenic yeast strains produced soyasapogenol B and gypsogenic acid, respectively. We were therefore able to identify two CYP72A subfamily enzymes: CYP72A61v2, which modifies 24-OH-β-amyrin, and CYP72A68v2, which modifies oleanolic acid. Additionally, P450s that seemed not to work together in planta were combinatorially expressed in transgenic yeast. The yeast strains (expressing bAS, CPR, CYP72A63 and CYP93E2 or CYP716A12) produced rare triterpenoids that do not occur in M. truncatula. These results show the potential for combinatorial synthesis of diverse triterpenoid structures and enable identification of the enzymes involved in their biosynthesis.

摘要

三萜皂苷是一类具有多种生物特性的多样化的特殊(次生)代谢产物。模式豆科植物苜蓿(Medicago truncatula)具有有趣的三萜皂苷特征,根据其功能基团的位置和溶血特性,将其皂角苷分化为溶血型和非溶血型。基因共表达分析证实了候选 P450 的存在,其基因表达与 β-香树脂醇合酶(bAS)高度相关。在这些候选 P450 中,我们鉴定出 CYP716A12 和 CYP93E2 为溶血和非溶血皂角苷生物合成途径中的关键酶。其他候选 P450 则没有β-香树脂醇氧化活性。然而,在其余的候选 P450 中,CYP72A61v2 的表达与 CYP93E2 高度相关,CYP72A68v2 的表达与 CYP716A12 高度相关。这些相关值高于与 bAS 表达的相关值。我们生成了表达 bAS、CPR、CYP93E2 和 CYP72A61v2 以及 bAS、CPR、CYP716A12 和 CYP72A68v2 的酵母菌株。这些转基因酵母菌株分别产生了大豆皂醇 B 和 gypsogenic 酸。因此,我们能够鉴定出两种 CYP72A 亚家族酶:CYP72A61v2,修饰 24-OH-β-香树脂醇,以及 CYP72A68v2,修饰齐墩果酸。此外,在植物中似乎没有协同作用的 P450 被组合表达在转基因酵母中。酵母菌株(表达 bAS、CPR、CYP72A63 和 CYP93E2 或 CYP716A12)产生了在苜蓿中不存在的罕见三萜类化合物。这些结果表明了多样化三萜类结构的组合合成的潜力,并能够鉴定参与其生物合成的酶。

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