Nguyen Thi-Kieu-Oanh, Jamali Arash, Lanoue Arnaud, Gontier Eric, Dauwe Rebecca
EA3900 BioPI, University of Picardy Jules Verne, UFR Sciences, 33 rue Saint Leu, 80039 Amiens cedex, France.
EA3900 BioPI, University of Picardy Jules Verne, UFR Pharmacie, 1 rue des Louvels, 80039 Amiens cedex, France.
Phytochemistry. 2015 Aug;116:94-103. doi: 10.1016/j.phytochem.2015.03.005. Epub 2015 Mar 27.
The tropane alkaloid spectrum in Solanaceae is highly variable within and between species. Little is known about the topology and the coordination of the biosynthetic pathways leading to the variety of tropine and pseudotropine derived esters in the alkaloid spectrum, or about the metabolic dynamics induced by tropane alkaloid biosynthesis stimulating conditions. A good understanding of the metabolism, including all ramifications, is however necessary for the development of strategies to increase the abundance of pharmacologically interesting compounds such as hyoscyamine and scopolamine. The present study explores the tropane alkaloid metabolic pathways in an untargeted approach involving a correlation-based network analysis. Using GC-MS metabolite profiling, the variation and co-variation among tropane alkaloids and primary metabolites was monitored in 60 Datura innoxia Mill. individuals, of which half were exposed to tropane alkaloid biosynthesis stimulating conditions by co-culture with Agrobacterium rhizogenes. Considerable variation was evident in the relative proportions of the tropane alkaloids. Remodeling of the tropane alkaloid spectrum under co-culture with A. rhizogenes involved a specific and strong increase of hyoscyamine production and revealed that the accumulation of hyoscyamine, 3-tigloyloxy-6,7-epoxytropane, and 3-methylbutyryloxytropane was controlled independently of the majority of tropane alkaloids. Based on correlations between metabolites, we propose a biosynthetic origin of hygrine, the order of esterification of certain di-oxygenated tropanes, and that the rate of acetoxylation contributes to control of hyoscyamine production. Overall, this study shows that the biosynthesis of tropane alkaloids may be far more complex and finely controlled than previously expected.
茄科植物中托烷生物碱谱在种内和种间高度可变。对于生物碱谱中导致多种托品和假托品衍生酯的生物合成途径的拓扑结构和协调方式,或者对于托烷生物碱生物合成刺激条件诱导的代谢动力学,人们了解甚少。然而,要制定策略来增加诸如莨菪碱和东莨菪碱等具有药理活性的化合物的丰度,就必须深入了解包括所有分支的代谢过程。本研究采用基于相关性的网络分析的非靶向方法,探索托烷生物碱的代谢途径。利用气相色谱 - 质谱代谢物谱分析,监测了60株无刺曼陀罗(Datura innoxia Mill.)个体中托烷生物碱和初级代谢物之间的变化及共变情况,其中一半个体通过与发根农杆菌共培养,暴露于托烷生物碱生物合成刺激条件下。托烷生物碱的相对比例存在明显差异。与发根农杆菌共培养时,托烷生物碱谱的重塑涉及莨菪碱产量的特异性大幅增加,并且表明莨菪碱、3 - 惕各酰氧基 - 6,7 - 环氧托烷和3 - 甲基丁酰氧基托烷的积累与大多数托烷生物碱的积累无关。基于代谢物之间的相关性,我们提出了古豆碱的生物合成起源、某些双氧化托烷的酯化顺序,以及乙酰氧基化速率对莨菪碱产量的控制作用。总体而言,本研究表明托烷生物碱的生物合成可能比先前预期的要复杂得多且受到更精细的调控。