Institute of Organic Chemistry, Leibniz Universität Hannover, Schneiderberg 1B, 30167 Hannover, Germany.
J Am Chem Soc. 2023 Mar 29;145(12):7021-7029. doi: 10.1021/jacs.3c01262. Epub 2023 Mar 16.
The discovery of illisimonin A in 2017 extended the structural repertoire of the sesquiterpenoids─a class of natural products known for their high oxidation levels and neurotrophic properties─with a new carbon backbone combining the strained -pentalene and norbornane substructures. We report an asymmetric total synthesis of (-)-illisimonin A that traces its tricyclic carbon framework back to a spirocyclic precursor, generated by a tandem-Nazarov/ene cyclization. As crucial link between the spirocyclic key intermediate and illisimonin A, a novel approach for the synthesis of tricyclo[5.2.1.0]decanes via radical cyclization was explored. This approach was applied in a two-stage strategy consisting of Ti(III)-mediated cyclization and semipinacol rearrangement to access the natural product's carbon backbone. These key steps were combined with carefully orchestrated C-H oxidations to establish the dense oxidation pattern.
2017 年,illisimonin A 的发现扩展了倍半萜类化合物的结构骨架——倍半萜类化合物以高氧化水平和神经营养特性而闻名,其具有新的碳骨架,结合了应变的 -戊烯和降冰片烷亚结构。我们报告了(-)-illisimonin A 的不对称全合成,其三环碳框架可追溯到通过串联 Nazarov/ene 环化生成的螺环前体。作为螺环关键中间体和 illisimonin A 之间的关键连接,我们探索了通过自由基环化合成三环[5.2.1.0]癸烷的新方法。该方法应用于两步策略,包括 Ti(III)介导的环化和半频哪醇重排,以获得天然产物的碳骨架。这些关键步骤与精心设计的 C-H 氧化相结合,以建立密集的氧化模式。