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自由基介导的三组分偶联和 7-endo 环化反应实现瑞香毒素的全合成。

Total Synthesis of Resiniferatoxin Enabled by Radical-Mediated Three-Component Coupling and 7-endo Cyclization.

机构信息

Graduate School of Pharmaceutical Sciences, The University of Tokyo , Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

J Am Chem Soc. 2017 Nov 15;139(45):16420-16429. doi: 10.1021/jacs.7b10177. Epub 2017 Oct 31.

Abstract

Resiniferatoxin (1) belongs to a daphnane diterpenoid family and has strong agonistic effects on TRPV1, a transducer of noxious temperature and chemical stimuli. The densely oxygenated trans-fused 5/7/6-tricarbocycle (ABC-ring) of 1 presents a daunting challenge for chemical synthesis. Here we report the development of a novel radical-based strategy for assembling 1 from three components: A-ring 9, allyl stannane 18b, and C-ring 17b. The 6-membered 17b, prepared from d-ribose derivative 19, was designed to possess the caged orthoester structure with α-alkoxy selenide as a radical precursor. Upon treatment of 17b with 18b, 9, and V-40, the potently reactive α-alkoxy bridgehead radical was generated from 17b and then sequentially coupled with 9 and 18b to yield 16b. This first radical reaction formed the hindered C9,10-linkage between the A and C-rings and extended the C4-chain on the A-ring in a stereoselective fashion. After derivatization of 16b into 15, the remaining 7-membered B-ring was cyclized in the presence of n-BuSnH and V-40 by utilizing the xanthate on the C-ring as the radical precursor and the allylic dithiocarbonate as the terminator. The second radical reaction thus enabled not only the 7-endo cyclization but also construction of the C8-stereocenter and the C6-exo olefin. Tricycle 14 was elaborated into the targeted 1 by a series of highly optimized chemoselective reactions. The present total synthesis of 1 demonstrates the advantages of radical reactions for linking hindered bonds within carbocycles without damaging preexisting functionalities, thereby offering a new strategic design for multistep target-oriented synthesis.

摘要

树脂毒素 (1) 属于瑞香烷二萜家族,对 TRPV1 有很强的激动作用,TRPV1 是有害温度和化学刺激的传感器。1 的密集含氧反式融合 5/7/6-三碳环 (ABC-环) 呈现出化学合成的艰巨挑战。在这里,我们报告了一种从三个组件组装 1 的新型基于自由基的策略的发展:A 环 9、烯丙基锡烷 18b 和 C 环 17b。从 D-核糖衍生物 19 制备的 6 元 17b 被设计为具有笼状原酸酯结构,其中α-烷氧基硒作为自由基前体。用 18b、9 和 V-40 处理 17b 时,从 17b 中生成了强反应性的α-烷氧基桥头自由基,然后依次与 9 和 18b 偶联,生成 16b。这个第一次自由基反应在 A 和 C 环之间形成了受阻的 C9,10-键,并以立体选择性的方式在 A 环上延伸 C4-链。16b 衍生为 15 后,在 n-BuSnH 和 V-40 的存在下,通过利用 C 环上的黄原酸酯作为自由基前体和烯丙基二硫代碳酸酯作为终止剂,环化剩余的 7 元 B 环。第二个自由基反应不仅使 7-endo 环化,而且还构建了 C8-立体中心和 C6-反式烯烃。三环 14 通过一系列高度优化的选择性化学反应被精心设计成目标 1。1 的全合成证明了自由基反应在不破坏现有官能团的情况下连接碳环中受阻键的优势,从而为多步定向合成提供了新的战略设计。

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