Institut für Chemie und Biochemie, Strukturbiochemie, Freie Universität Berlin, Takustr. 6, 14195, Berlin, Germany.
Institut für Chemie und Biochemie, Organische Chemie, Freie Universität Berlin, Takustr. 3, 14195, Berlin, Germany.
Nat Commun. 2018 Sep 28;9(1):3971. doi: 10.1038/s41467-018-06325-8.
Terpenes constitute the largest and structurally most diverse natural product family. Most terpenoids exhibit a stereochemically complex macrocyclic core, which is generated by C-C bond forming of aliphatic oligo-prenyl precursors. This reaction is catalysed by terpene synthases (TPSs), which are capable of chaperoning highly reactive carbocation intermediates through an enzyme-specific reaction. Due to the instability of carbocation intermediates, the proteins' structural dynamics and enzyme:substrate interactions during TPS catalysis remain elusive. Here, we present the structure of the diterpene synthase CotB2, in complex with an in crystallo cyclised abrupt reaction product and a substrate-derived diphosphate. We captured additional snapshots of the reaction to gain an overview of CotB2's catalytic mechanism. To enhance insights into catalysis, structural information is augmented with multiscale molecular dynamic simulations. Our data represent fundamental TPS structure dynamics during catalysis, which ultimately enable rational engineering towards tailored terpene macrocycles that are inaccessible by conventional chemical synthesis.
萜类化合物构成了最大和结构最多样化的天然产物家族。大多数萜类化合物表现出立体化学复杂的大环核心,该核心由脂肪族低聚异戊二烯前体的 C-C 键形成生成。该反应由萜烯合酶(TPS)催化,TPS 能够通过酶特异性反应引导高反应性碳正离子中间体。由于碳正离子中间体的不稳定性,TPS 催化过程中蛋白质的结构动力学和酶:底物相互作用仍然难以捉摸。在这里,我们展示了二萜烯合酶 CotB2 与结晶中环化的突发反应产物和底物衍生的二磷酸的复合物结构。我们捕获了反应的附加快照,以全面了解 CotB2 的催化机制。为了增强对催化的了解,结构信息通过多尺度分子动力学模拟进行补充。我们的数据代表了催化过程中 TPS 结构动力学的基本情况,这最终使得可以通过合理的工程设计来获得传统化学合成无法获得的定制萜类大环。