Institute of Biochemistry and Technical Biochemistry, University of Stuttgart, Allmandring 31, 70569, Stuttgart-Vaihingen, Germany.
Angew Chem Int Ed Engl. 2021 Jun 7;60(24):13251-13256. doi: 10.1002/anie.202101228. Epub 2021 May 6.
Cascade reactions appeared as a cutting-edge strategy to streamline the assembly of complex structural scaffolds from naturally available precursors in an atom-, as well as time, labor- and cost-efficient way. We herein report a strategy to control cationic cyclization cascades by exploiting the ability of anchoring dynamic substrates in the active site of terpene cyclases via designed hydrogen bonding. Thereby, it is possible to induce "directed" cyclizations in contrast to established "non-stop" cyclizations (99:1) and predestinate cascade termination at otherwise catalytically barely accessible intermediates. As a result, we are able to provide efficient access to naturally widely occurring apocarotenoids, value-added flavors and fragrances in gram-scale by replacing multi-stage synthetic routes to a single step with unprecedented selectivity (>99.5 % ee) and high yields (up to 89 %).
级联反应是一种前沿策略,可以有效地将复杂结构支架从天然前体中组装起来,原子经济性、时间经济性、劳动力经济性和成本经济性都很高。在此,我们报告了一种通过利用设计的氢键将动态底物锚定在萜烯环化酶活性位点上来控制阳离子环化级联的策略。因此,可以诱导“定向”环化,而不是建立的“不停”环化(99:1),并在否则难以催化的中间产物处预定级联终止。结果,我们能够通过用前所未有的选择性(>99.5%ee)和高收率(高达 89%)将多步合成路线替换为一步,以克级规模有效地获得天然广泛存在的脱羧类胡萝卜素、增值香料和香精。