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两性霉素V及其类似物的全合成与生物学评价

Total synthesis and biological evaluation of amphidinolide V and analogues.

作者信息

Fürstner Alois, Flügge Susanne, Larionov Oleg, Takahashi Yohei, Kubota Takaaki, Kobayashi Jun'ichi

机构信息

Max-Planck-Institut für Kohlenforschung, 45470 Mülheim/Ruhr, Germany.

出版信息

Chemistry. 2009;15(16):4011-29. doi: 10.1002/chem.200802068.

Abstract

The awesome power of metathesis is illustrated by a concise synthesis of the extremely scarce marine natural product amphidinolide V, which hinges on a sequence of ring-closing alkyne metathesis followed by intermolecular enyne metathesis with ethylene (see scheme). As a complete set of conceivable stereoisomers was prepared, the constitution and absolute configuration of this macrolide could be established and first insights into structure-activity relationships governing its cytotoxicity were obtained.A sequence of ring-closing alkyne metathesis followed by an intermolecular enyne metathesis of the resulting cycloalkyne with ethene was used to forge the macrocyclic skeleton and to set the vicinal exo-methylene branches characteristic for the cytotoxic marine natural product amphidinolide V (1). Comparison of the synthetic material with an authentic sample of this extremely scarce metabolite isolated from a dinoflagellate of the Amphidinium sp. eliminated any doubts about its structure and allowed the absolute configuration of amphidinolide V to be determined as 8R,9S,10S,13R. Moreover, the flexibility inherent to the underlying synthesis blueprint also opened access to a comprehensive set of diastereomers of 1 as well as to synthetic analogues differing from the natural lead in the lipophilic chains appended to the macrocyclic core. This set of designed analogues gave first insights into structure-activity relationships, which revealed that the stereostructure of the macrolactone is a highly critical parameter, whereas the examined alterations of the side chain did not diminish the cytotoxicity of the compounds to any notable extent.

摘要

复分解反应的强大力量通过极其稀有的海洋天然产物两性霉素V的简洁合成得以体现,该合成依赖于一系列的闭环炔烃复分解反应,随后是与乙烯的分子间烯炔复分解反应(见方案)。由于制备了一套完整的可想象的立体异构体,因此可以确定这种大环内酯的结构和绝对构型,并首次获得了关于其细胞毒性的构效关系的见解。一系列闭环炔烃复分解反应,随后是所得环炔烃与乙烯的分子间烯炔复分解反应,用于构建大环骨架并设置细胞毒性海洋天然产物两性霉素V(1)特有的邻位外向亚甲基支链。将合成材料与从叉鞭金藻属的一种甲藻中分离出的这种极其稀有的代谢物的真实样品进行比较,消除了对其结构的任何疑问,并确定两性霉素V的绝对构型为8R,9S,10S,13R。此外,基础合成蓝图固有的灵活性还为1的一组全面的非对映异构体以及与大环核心连接的亲脂性链中与天然先导物不同的合成类似物提供了途径。这组设计的类似物首次提供了构效关系的见解,结果表明大环内酯的立体结构是一个高度关键的参数,而所研究的侧链变化并没有在任何显著程度上降低化合物的细胞毒性。

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