State Key Laboratory of Bioorganic and Natural Products Chemistry, Center for Excellence in Molecular Synthesis, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 345 Lingling Road, Shanghai 200032, China.
J Org Chem. 2022 Aug 5;87(15):10114-10137. doi: 10.1021/acs.joc.2c01082. Epub 2022 Jul 7.
Described herein is an enantioselective synthesis of an analogue of a previously reported guaiane endoperoxide isolated from aerial parts of . The polycyclic framework of the target structure was constructed with the C-7 stereogenic center derived from L-(-)-carvone and other stereogenic centers installed via substrate chirality-induced asymmetric reactions, starting with the synthesis of the seven-membered ring through regioselective enolization of carvone, ring-expansion, and installation of a conjugated C═C bond. Further functionalization was then achieved through regioselective enolization, triflation, and installation of an isopropenyl group. During the synthesis, some exceptions to the well-known rules of "thermodynamic control" and "kinetic control" in enolization of asymmetric cyclic ketones were observed. In construction of the bridged five-membered and endoperoxy rings, a peroxycarbenium [3 + 2] cycloaddition reaction with alkenes was carried out with several alkenes-silyl--dihydroperoxides of different relative configurations. However, no expected [3 + 2] products were observed. Finally, the five-membered ring was smoothly installed through an intramolecular Darzens reaction, and the peroxy functionality was introduced via a carbon-centered radical-mediated reaction with triplet oxygen, followed by an intramolecular etherification under acidic conditions. Comparison of the H and C NMR spectra of the synthetic analogue and the natural product revealed that the latter was definitely not an endoperoxide.
本文描述了一种从 香茅 的地上部分分离出的 previously reported guaiane endoperoxide 的类似物的对映选择性合成。目标结构的多环骨架是通过底物手性诱导的不对称反应构建的,其中 C-7 手性中心来自 L-(-)-香芹酮,其他手性中心通过区域选择性烯醇化、环扩张和共轭 C═C 键的安装来实现。然后通过区域选择性烯醇化、三氟甲磺酸酯化和异丙烯基的安装来实现进一步的官能化。在合成过程中,观察到不对称环状酮烯醇化中一些著名的“热力学控制”和“动力学控制”规则的例外。在桥接的五元环和过氧环的构建中,用过氧碳正离子[3+2]环加成反应与不同相对构型的几种烯烃-硅基-二氢过氧化物进行反应。然而,没有观察到预期的[3+2]产物。最后,通过分子内 Darzens 反应顺利地安装了五元环,并通过三重态氧介导的碳中心自由基反应引入过氧基官能团,然后在酸性条件下进行分子内环醚化。合成类似物和天然产物的 1H 和 13C NMR 谱的比较表明,后者肯定不是过氧化物。