Lombe Blaise Kimbadi, Zhou Tingan, Caputi Lorenzo, Ploss Kerstin, O'Connor Sarah E
Department of Natural Product Biosynthesis, Max Planck Institute for Chemical Ecology, Hans-Knöll-Straße 8, 07745, Jena, Germany.
Angew Chem Int Ed Engl. 2025 Jan 27;64(5):e202418306. doi: 10.1002/anie.202418306. Epub 2024 Nov 22.
Quinine is a historically important natural product containing a methoxy group that has been assumed to be incorporated at a late pathway stage. Here we show that the methoxy group in quinine and related alkaloids is introduced onto the starting substrate tryptamine. Feeding studies definitively show that 5-methoxytryptamine is utilized as a quinine biosynthetic intermediate in planta. We discover the biosynthetic genes that encode the responsible oxidase and methyltransferase, and we use these genes to reconstitute the early steps of the alkaloid biosynthetic pathway in Nicotiana benthamiana to produce a mixture of methoxylated and non-methoxylated alkaloid intermediates. Importantly, we show that the co-occurrence of both tryptamine and 5-methoxytryptamine substrates, along with the substrate promiscuity of downstream pathway enzymes, enable parallel formation of both methoxylated and non-methoxylated alkaloids.
奎宁是一种具有历史重要性的天然产物,含有一个甲氧基,一直以来人们认为该甲氧基是在生物合成途径的后期阶段掺入的。在此我们表明,奎宁及相关生物碱中的甲氧基是在起始底物色胺上引入的。饲喂实验明确表明,5-甲氧基色胺在植物体内被用作奎宁生物合成的中间体。我们发现了编码负责氧化酶和甲基转移酶的生物合成基因,并利用这些基因在本氏烟草中重构生物碱生物合成途径的早期步骤,以产生甲氧基化和非甲氧基化生物碱中间体的混合物。重要的是,我们表明色胺和5-甲氧基色胺底物的同时存在,以及下游途径酶的底物混杂性,使得甲氧基化和非甲氧基化生物碱能够平行形成。