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海洋抗癌半萜类化合物(+)-dysiherbols A-E修订结构的发散性全合成

Divergent total synthesis of the revised structures of marine anti-cancer meroterpenoids (+)-dysiherbols A-E.

作者信息

Chong Chuanke, Chang Le, Grimm Isabelle, Zhang Qunlong, Kuang Yang, Wang Bingjian, Kang Jingyi, Liu Wenhui, Baars Julian, Guo Yuanqiang, Schmalz Hans-Günther, Lu Zhaoyong

机构信息

State Key Laboratory of Medicinal Chemical Biology, College of Pharmacy, Nankai University 38 Tongyan Rd Tianjin 300350 China

Department of Chemistry, University of Cologne Greinstrasse 4 50939 Koeln Germany

出版信息

Chem Sci. 2023 Feb 28;14(12):3302-3310. doi: 10.1039/d3sc00173c. eCollection 2023 Mar 22.

Abstract

We report here a concise and divergent enantioselective total synthesis of the revised structures of marine anti-cancer sesquiterpene hydroquinone meroterpenoids (+)-dysiherbols A-E (6-10) using dimethyl predysiherbol 14 as a key common intermediate. Two different improved syntheses of dimethyl predysiherbol 14 were elaborated, one starting from Wieland-Miescher ketone derivative 21, which is regio- and diastereoselectively α-benzylated prior to establishing the 6/6/5/6-fused tetracyclic core structure through intramolecular Heck reaction. The second approach exploits an enantioselective 1,4-addition and a Au-catalyzed double cyclization to build-up the core ring system. (+)-Dysiherbol A (6) was prepared from dimethyl predysiherbol 14 direct cyclization, while (+)-dysiherbol E (10) was synthesized through allylic oxidation and subsequent cyclization of 14. Epoxidation of 14 afforded allylic alcohol 45 or unexpectedly rearranged homoallylic alcohol 44. By inverting the configuration of the hydroxy groups, exploiting a reversible 1,2-methyl shift and selectively trapping one of the intermediate carbenium ions through oxy-cyclization, we succeeded to complete the total synthesis of (+)-dysiherbols B-D (7-9). The total synthesis of (+)-dysiherbols A-E (6-10) was accomplished in a divergent manner starting from dimethyl predysiherbol 14, which led to the revision of their originally proposed structures.

摘要

我们在此报告,以二甲基前 dysiherbol 14 为关键共同中间体,对海洋抗癌倍半萜对苯二酚杂萜类化合物(+)-dysiherbols A-E(6-10)的修订结构进行了简洁且发散性的对映选择性全合成。阐述了两种不同的二甲基前 dysiherbol 14 的改进合成方法,一种从 Wieland-Miescher 酮衍生物 21 开始,在通过分子内 Heck 反应建立 6/6/5/6-稠合四环核心结构之前,对其进行区域和非对映选择性α-苄基化。第二种方法利用对映选择性 1,4-加成和金催化的双环化反应来构建核心环系。(+)-Dysiherbol A(6)由二甲基前 dysiherbol 14 直接环化制备,而(+)-dysiherbol E(10)通过 14 的烯丙基氧化和随后的环化反应合成。14 的环氧化反应得到烯丙醇 45 或意外重排的高烯丙醇 44。通过反转羟基的构型,利用可逆的 1,2-甲基迁移并通过氧环化选择性捕获其中一个中间体碳正离子,我们成功完成了(+)-dysiherbols B-D(7-9)的全合成。(+)-dysiherbols A-E(6-10)的全合成从二甲基前 dysiherbol 14 开始以发散方式完成,这导致了对其最初提出的结构的修订。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97a4/10033909/69d5b6e6e533/d3sc00173c-f1.jpg

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