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萜烯合酶在不同生物中二萜型倍半萜的生物合成中的作用。

Terpene Synthases in the Biosynthesis of Drimane-Type Sesquiterpenes across Diverse Organisms.

机构信息

Institute of Biological Chemistry, Academia Sinica, Taipei 115, Taiwan R.O.C.

出版信息

Chembiochem. 2023 Nov 16;24(22):e202300518. doi: 10.1002/cbic.202300518. Epub 2023 Sep 13.

Abstract

Drimane-type sesquiterpenes (DTSs) are significant terpenoid natural products characterized by their unique C bicyclic skeleton. They are produced by various organisms including plants, fungi, bacteria and marine organisms, and exhibit a diverse array of bioactivities. These bioactivities encompass antifeedant, anti-insecticidal, anti-bacterial, anti-fungal, anti-viral and anti-proliferative properties. Some DTSs contribute to the pungent flavor found in herb plants like water pepper, while others serve as active components responsible for the anti-cancer activities observed in medicinal mushrooms such as (-)-antrocin from Antrodia cinnamomea. Recently, DTS synthases have been identified in various organisms, biosynthesizing drimenol, drim-8-ene-11-ol and (+)-albicanol, which all possess the characteristic drimane skeleton. Interestingly, despite these enzymes producing chemical molecules with a drimane scaffold, they exhibit minimal amino acid sequence identity across different organisms. This Concept article focuses on the discovery of DTS synthases and the tailoring enzymes generating the chemical diversity of drimane natural products. We summarize and discuss their key features, including the chemical mechanisms, catalytic motifs and functional domains employed by these terpene synthases to generate DTS scaffolds.

摘要

二萜型倍半萜(DTS)是一类具有独特 C 双环骨架的重要萜类天然产物。它们由各种生物产生,包括植物、真菌、细菌和海洋生物,并表现出多样化的生物活性。这些生物活性包括抗食、抗昆虫、抗细菌、抗真菌、抗病毒和抗增殖特性。一些 DTS 有助于赋予香草植物如水胡椒的刺激性风味,而另一些则作为活性成分,负责药用蘑菇如 Antrodia cinnamomea 中的 (-)-antrocin 所观察到的抗癌活性。最近,在各种生物中鉴定出了 DTS 合酶,它们生物合成 drimenol、drim-8-ene-11-ol 和 (+)-albicanol,它们都具有特征性的二烯骨架。有趣的是,尽管这些酶产生具有二烯骨架的化学分子,但它们在不同生物中的氨基酸序列同一性很小。这篇综述文章重点介绍了 DTS 合酶的发现以及产生二烯天然产物化学多样性的修饰酶。我们总结并讨论了它们的关键特征,包括这些萜烯合酶用于生成 DTS 支架的化学机制、催化基序和功能域。

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