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Total Synthesis and Anti-Cancer Activity of All Known Communesin Alkaloids and Related Derivatives

机译:所有已知的香豆素生物碱及其相关衍生物的总合成及其抗癌活性

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摘要

A unified enantioselective total synthesis and anticancer evaluation of all known epoxide-containing communesin alkaloids and related derivatives is described. Our synthesis is predicated on the convergent and modular diazene-directed assembly of two complex fragments to secure the critical C3a-C3a' linkage followed by a guided biomimetic aminal reorganization to deliver the heptacyclic core of these alkaloids. Concise enantioselective syntheses of the fragments were devised, with highlights including the application of a rationally designed sulfinamide chiral auxiliary, an efficient calcium trifluoromethanesulfonate promoted intramolecular amination, and a diastereoselective epoxidation that simultaneously converts the new chiral auxiliary to a versatile amine protective group. The modularity of our convergent approach enabled the rapid synthesis of all epoxide containing members of the communesin family from a single heterodimeric intermediate, including the first total synthesis of communesins C-E, and G-I, and facilitated our stereochemical revision of (-)-communesin I, the most recently isolated communesin alkaloid. Furthermore, the generality of our biogenetically inspired heterodimer rearrangement was demonstrated in a guided synthesis of a communesin derivative with an unnatural topology. Finally, we report the first comparative analysis of the anticancer activities of all naturally occurring communesin alkaloids A-I and eight complex derivatives against five human cancer cell lines. From these data, we have identified (-)-communesin B as the most potent natural communesin and discovered that derivatives with N8'-sulfonamide substitution exhibit up to a 10-fold increase in potency over the natural alkaloids.
机译:描述了统一的对映选择性全合成和所有已知的含环氧化物的共生生物碱和相关衍生物的抗癌评估。我们的合成基于两个复杂片段的融合和模块化重氮定向组装,以确保关键的C3a-C3a'键连接,然后进行仿生氨基缩醛重组,以提供这些生物碱的七环核心。设计了片段的精确对映选择性合成,重点包括应用合理设计的亚磺酰胺手性助剂,有效的三氟甲磺酸钙促进的分子内胺化和非对映选择性环氧化,同时将新的手性助剂转化为通用的胺保护基。我们收敛方法的模块化使得能够从单个异二聚体中间体快速合成所有包含共价蛋白家族成员的环氧化物,包括首次共合成共价蛋白CE和GI,并促进了我们对(-)-共价蛋白I的立体化学修饰,最近分离的圣公会生物碱。此外,我们的生物遗传学启发的异二聚体重排的一般性在具有非自然拓扑的共生蛋白衍生物的指导合成中得到了证明。最后,我们报告了所有天然存在的共生生物碱A-I和八种复杂衍生物对五种人类癌细胞系的抗癌活性的首次比较分析。从这些数据中,我们已经确定(-)-communesin B是最有效的天然共生素,并发现具有N8'-磺酰胺取代基的衍生物的功效比天然生物碱最多提高了10倍。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2019年第36期|14411-14420|共10页
  • 作者单位

    MIT Dept Chem Cambridge MA 02139 USA;

    MIT Koch Inst Integrat Canc Res 500 Main St Cambridge MA 02139 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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