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D2O Labeling to measure active biosynthesis of natural products in medicinal plants

机译:D2O标签测量药用植物中天然产物的活性生物合成

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摘要

Plant natural products have served as a prominent source of medicines throughout human history and are still used today as clinically approved pharmaceuticals. However, many medicinal plants that produce useful compounds are slow growing or recalcitrant to cultivation, making it difficult to investigate the underlying genetic/enzymatic machinery responsible for biosynthesis. To better understand the metabolism of bioactive natural products in slow-growing medicinal plants, we used D2O labeling and LC-MS-based metabolomics to explore the biosynthesis of medically relevant alkaloids in three plant species. Our results provide evidence for sites of active biosynthesis for these alkaloids and demonstrate that D2O labeling can be used as a general method to determine sites of active secondary metabolism over relatively short-timescales. We anticipate that these results will facilitate discovery of complete metabolic pathways for plant natural products of medicinal importance, especially for approaches that rely upon transcriptomics and knowledge of active metabolism to identify biosynthetic enzymes. (c) 2018 American Institute of Chemical Engineers
机译:植物天然产品曾在人类历史上作为突出的药物来源,今天仍然被用作临床批准的药品。然而,许多产生有用化合物的药用植物是培养缓慢或顽皮的缓慢,使得难以研究负责生物合成的潜在遗传/酶机。为了更好地了解生物活性天然产物的生物活性天然产物在缓慢生长的药用植物中,我们使用D2O标记和基于LC-MS的代谢组学,以探索三种植物物种中医学相关生物碱的生物合成。我们的结果为这些生物碱的活性生物合成网站提供了证据,并证明D2O标记可用作测定相对短时间间隙的活性次生代谢部位的一般方法。我们预计这些结果将促进发现药用植物天然产物的完全代谢途径,特别是对于依赖转录组织和有源代谢知识来鉴定生物合成酶的方法。 (c)2018美国化学工程研究所

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