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对先前报道的天然过氧瓜二醇 10-去氧类似物的对映选择性全合成。

Enantioselective Total Synthesis of 10-Desoxy Analogue of a Previously Reported Natural Peroxyguaidiol.

机构信息

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.

出版信息

J Org Chem. 2022 Aug 5;87(15):10114-10137. doi: 10.1021/acs.joc.2c01082. Epub 2022 Jul 7.

Abstract

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.

摘要

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。

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