Shiue Yuan-Shin, Dyer Matthew W, Burlow Noah P, Soisaeng Nutthakarn, Lamb Kellan N, Soldi Cristian, Fettinger James C, Tantillo Dean J, Shaw Jared T
Department of Chemistry, University of California, Davis, One Shields Avenue, Davis, California 95616, United States.
Org Lett. 2024 Dec 27;26(51):11129-11133. doi: 10.1021/acs.orglett.4c03863. Epub 2024 Dec 12.
Two routes to assemble the complete tricyclic core of alopecurone C are described. In the first-generation route, an efficient synthesis of the "eastern" half of the target, including a decagram-scale rhodium-catalyzed C-H insertion reaction, was developed. When this route proved intractable for assembling the final flavanone ring, a successful second-generation route was developed from a flavanone precursor (naringenin) employing a later stage C-H insertion. Although the second route was ultimately unsuccessful for preparation of the final target, it does provide the basis for the efficient assembly of the complete tricyclic core of alopecurone C and related flavonostilbenoid natural products.
本文描述了两种构建阿洛哌库隆C完整三环核心的方法。在第一代方法中,开发了一种高效合成目标化合物“东部”半部分的方法,其中包括十克规模的铑催化C-H插入反应。当该方法被证明难以构建最终的黄烷酮环时,从黄烷酮前体(柚皮素)出发,采用后期C-H插入反应,成功开发了第二代方法。尽管第二条路线最终未能成功制备出最终目标化合物,但它确实为高效构建阿洛哌库隆C完整三环核心及相关黄酮芪类天然产物提供了基础。