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(+)-藤黄酸 A 及其类似物的全合成与生物评价。

Total synthesis and biological evaluation of (+)-gambieric acid A and its analogues.

机构信息

Graduate School of Life Sciences, Tohoku University, 2-1-1 Katahira, Aoba-ku, Sendai 980-8577, Japan.

出版信息

Chemistry. 2013 Apr 22;19(17):5276-88. doi: 10.1002/chem.201204303. Epub 2013 Mar 28.

DOI:10.1002/chem.201204303
PMID:23554126
Abstract

In this study, we report the first total synthesis and complete stereostructure of gambieric acid A, a potent antifungal polycyclic ether metabolite, in detail. The A/B-ring exocyclic enol ether 32 was prepared through a Suzuki-Miyaura coupling of the B-ring vinyl iodide 18 and the alkylborate 33 and subsequent closure of the A-ring by using diastereoselective bromoetherification as the key transformation. Suzuki-Miyaura coupling of 32 with acetate-derived enol phosphate 49, followed by ring-closing metathesis of the derived diene, produced the D-ring. Subsequent closure of the C-ring through a mixed thioacetalization completed the synthesis of the A/BCD-ring fragment 8. The A/BCD- and F'GHIJ-ring fragments (i.e., 8 and 9) were assembled through Suzuki-Miyaura coupling. The C25 stereogenic center was elaborated by exploiting the intrinsic conformational property of the seven-membered F'-ring. After the oxidative cleavage of the F'-ring, the E-ring was formed as a cyclic mixed thioacetal (i.e., 70) and then stereoselectively allylated by using glycosylation chemistry. Ring-closing metathesis of the diene 3 thus obtained closed the F-ring and completed the polycyclic ether skeleton. Finally, the J-ring side chain was introduced by using a Julia-Kocienski olefination in the presence of CeCl3 to complete the total synthesis of gambieric acid A (1), thereby unambiguously establishing its complete stereostructure. The present total synthesis enabled us to evaluate the antifungal and antiproliferative activities of 1 and several synthetic analogues.

摘要

在这项研究中,我们详细报道了 Gambieric 酸 A 的首次全合成和完整的立体结构,Gambieric 酸 A 是一种具有强效抗真菌作用的多环醚代谢产物。通过 B 环乙烯基碘化物 18 和烷基硼酸 33 的 Suzuki-Miyaura 偶联以及随后使用非对映选择性溴醚化作为关键转化来闭环 A 环,制备了 A/B 环外环烯醇醚 32。32 与醋酸酯衍生的烯醇磷酸酯 49 的 Suzuki-Miyaura 偶联,随后对衍生的二烯进行闭环复分解反应,生成了 D 环。通过混合硫缩醛化反应闭环 C 环完成了 A/BCD 环片段 8 的合成。通过 Suzuki-Miyaura 偶联将 A/BCD-和 F'GHIJ-环片段(即 8 和 9)组装在一起。通过利用七元 F'-环的固有构象特性来精心设计 C25 立体中心。在 F'-环的氧化裂解之后,形成了作为环状混合硫缩醛(即 70)的 E 环,然后通过糖化学立体选择性地烯丙基化。由此获得的二烯 3 的闭环复分解反应封闭了 F 环并完成了多环醚骨架的构建。最后,在 CeCl3 的存在下使用 Julia-Kocienski 烯烃化反应引入 J-环侧链,完成 Gambieric 酸 A(1)的全合成,从而明确确定了其完整的立体结构。该全合成使我们能够评估 1 和几种合成类似物的抗真菌和抗增殖活性。

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