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环烯醚萜环化酶的发现完善了菊类植物中环烯醚萜途径。

Discovery of iridoid cyclase completes the iridoid pathway in asterids.

作者信息

Colinas Maite, Tymen Chloée, Wood Joshua C, David Anja, Wurlitzer Jens, Morweiser Clara, Gase Klaus, Alam Ryan M, Titchiner Gabriel R, Hamilton John P, Heinicke Sarah, Dirks Ron P, Lopes Adriana A, Caputi Lorenzo, Buell C Robin, O'Connor Sarah E

机构信息

Department of Natural Product Biosynthesis, Max Planck Institute for Chemical Ecology, Jena, Germany.

Center for Applied Genetic Technologies, University of Georgia, Athens, GA, USA.

出版信息

Nat Plants. 2025 Oct 3. doi: 10.1038/s41477-025-02122-6.

Abstract

Iridoids are specialized monoterpenes ancestral to asterid flowering plants that play key roles in defence and are also essential precursors for pharmacologically important alkaloids. The biosynthesis of all iridoids involves the cyclization of the reactive biosynthetic intermediate 8-oxocitronellyl enol. Here, using a variety of approaches including single-nuclei sequencing, we report the discovery of iridoid cyclases from a phylogenetically broad sample of asterid species that synthesize iridoids. We show that these enzymes catalyse formation of 7S-cis-trans and 7R-cis-cis nepetalactol, the two major iridoid stereoisomers found in plants. Our work uncovers a key missing step in the otherwise well-characterized early iridoid biosynthesis pathway in asterids. This discovery unlocks the possibility to generate previously inaccessible iridoid stereoisomers, which will enable metabolic engineering for the sustainable production of valuable iridoid and iridoid-derived compounds.

摘要

环烯醚萜是菊类开花植物祖先中的特殊单萜,在防御中起关键作用,也是药理学上重要生物碱的必需前体。所有环烯醚萜的生物合成都涉及活性生物合成中间体8-氧代香茅烯醇的环化。在这里,我们使用包括单核测序在内的多种方法,报告了从合成环烯醚萜的菊类物种的系统发育广泛样本中发现环烯醚萜环化酶。我们表明,这些酶催化形成7S-顺反式和7R-顺式-顺式荆芥内酯,这是植物中发现的两种主要环烯醚萜立体异构体。我们的工作揭示了菊类中原本特征明确的早期环烯醚萜生物合成途径中一个关键的缺失步骤。这一发现开启了生成以前无法获得的环烯醚萜立体异构体的可能性,这将使代谢工程能够可持续地生产有价值的环烯醚萜和环烯醚萜衍生化合物。

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