Kekulé Institute of Organic Chemistry and Biochemistry, University of Bonn, Gerhard-Domagk-Straße 1, 53121, Bonn, Germany.
Max Planck Institute for Chemical Ecology, Hans-Knöll-Straße 8, 07745, Jena, Germany.
Chembiochem. 2024 Apr 16;25(8):e202400104. doi: 10.1002/cbic.202400104. Epub 2024 Mar 6.
The microbial type sesquiterpene synthase RlMTPSL4 from the liverwort Radula lindenbergiana was investigated for its products, showing the formation of several sesquiterpene hydrocarbons. The main product was structurally characterized as the new compound 4,5-diepi-isoishwarane, while the side products included the known hydrocarbons germacrene A, α-selinene, eremophilene and 4,5-diepi-aristolochene. The cyclization mechanism towards 4,5-diepi-isoishwarane catalyzed by RlMTPSL4 was investigated through isotopic labeling experiments, revealing the stereochemical course for the deprotonation step to the neutral intermediate germacrene A, a reprotonation for its further cyclization, and a 1,2-hydride shift along the cascade. The absolute configuration of 4,5-diepi-isoishwarane was determined using a stereoselective deuteration approach, revealing an absolute configuration typically observed for a microbial type sesquiterpene.
从地钱属植物拉登地钱中分离得到的微生物型倍半萜合酶 RlMTPSL4 被研究其产物,显示出几种倍半萜烃的形成。主要产物结构特征为新化合物 4,5-二表-异艾里醇,而副产物包括已知的烃类大根香叶烯 A、α-芹子烯、菖蒲烯和 4,5-二表-阿利士多醇。通过同位素标记实验研究了 RlMTPSL4 催化的 4,5-二表-异艾里醇环化机制,揭示了去质子化步骤到中性中间体大根香叶烯 A 的立体化学过程、其进一步环化的再质子化以及级联过程中的 1,2-氢化物转移。使用立体选择性氘代方法确定了 4,5-二表-异艾里醇的绝对构型,揭示了微生物型倍半萜通常观察到的绝对构型。