University of Cologne, Department of Chemistry, Greinstrasse 4, 50939, Cologne, Germany.
Angew Chem Int Ed Engl. 2021 Jun 25;60(27):14915-14920. doi: 10.1002/anie.202105733. Epub 2021 Jun 1.
A 12-step total synthesis of the natural product dysiherbol A, a strongly anti-inflammatory and anti-tumor avarane meroterpene isolated from the marine sponge Dysidea sp., was elaborated. As key steps, the synthesis features an enantioselective Cu-catalyzed 1,4-addition/enolate-trapping opening move, an Au-catalyzed double cyclization to build up the tetracyclic core-carbon skeleton, and a late installation of the C5-bridgehead methyl group via proton-induced cyclopropane opening associated with spontaneous cyclic ether formation. The obtained pentacyclic compound (corresponding to an anhydride of the originally suggested structure for dysiherbol A) showed identical spectroscopic data as the natural product, but an opposite molecular rotation. CD-spectroscopic measurements finally confirmed that both the constitution and the absolute configuration of the originally proposed structure of (+)-dysiherbol A need to be revised.
天然产物 dysiherbol A 的 12 步全合成,一种从海洋海绵 Dysidea sp. 中分离出来的具有强烈抗炎和抗肿瘤活性的avarane 倍半萜,得到了详细阐述。作为关键步骤,该合成具有对映选择性的 Cu 催化 1,4-加成/烯醇化物捕获开环反应、Au 催化的双环化反应构建四环核心碳骨架,以及通过质子诱导的环丙烷开环和自发环醚形成来后期安装 C5-桥首甲基基团。得到的五环化合物(与 dysiherbol A 的原始结构的酸酐相对应)显示出与天然产物相同的光谱数据,但分子旋转方向相反。CD 光谱测量最终证实,(+)-dysiherbol A 的原始结构的组成和绝对构型都需要修正。