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A Ring Expansion Strategy Toward the Synthesis of Hetisine-Type C20-Diterpenoid Alkaloids.

机译:环向己内酰胺型C20-二萜生物碱合成的扩环策略。

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摘要

A benzyne insertion ring expansion strategy toward the synthesis of hetisine-type C20-diterpenoid alkaloids has been developed. The first chapter of this manuscript presents an introduction to C20-diterpenoid alkaloids and previous synthetic work toward selected target core structures. The second and third chapters outline our ring expansion strategy for the synthesis of the core of the natural product cossonidine and efforts to complete its total synthesis.;An overview of the structural and biological properties of C20-diterpenoid alkaloids is provided, as well as a survey of the synthetic studies that have been carried out thus far toward natural products containing the hetidine and hetisine-type framework. The two existing syntheses of a hetisine-type diterpenoid alkaloid are also described. This review outlines some of the salient structural challenges associated with the synthesis of these compounds, as well as the strategies applied to their construction.;An approach involving a ring expansion was developed to access a tricyclic motif conserved in the hetidine and hetisine frameworks. The acyl-alkylation of aryne intermediates by insertion into C--C sigma bonds was applied to several beta-ketoesters and aryne precursors to investigate the efficacy of this transformation on complex systems. Three tricyclic intermediates were synthesized that contain functional handles at the appropriate positions for C--N bond formation to construct the hetisine core.;With a sequence in place to arrive as several desired tricyclic intermediates, they were then employed to investigate C--N bond formation. A range of conditions was explored, and the desired azabicycle was accessed in 3 steps from the tricyclic scaffold. The requisite [2.2.2] bicycle was then formed in 2 steps to complete the hetisine core. Finally, the synthetic sequence was modified in order to introduce a methyl group necessary for completion of the natural product target. This methylation pathway has been successful in providing the full hetisine core en route to the synthesis of the natural product cossonidine.
机译:已经开发出一种苯并炔插入环扩展策略,用于合成鸟嘌呤型C20-二萜生物碱。该手稿的第一章介绍了C20-二萜生物碱以及针对选定目标核心结构的先前合成工作。第二章和第三章概述了我们的天然产物cossonidine核心合成的扩环策略以及完成其总合成的努力。;提供了C20-二萜生物碱的结构和生物学特性的概述,以及迄今对含有庚啶和鸟嘌呤型骨架的天然产物进行的合成研究的综述。还介绍了两种现有的氢化胆碱类双萜生物碱的合成方法。这篇综述概述了与这些化合物的合成相关的一些显着的结构挑战,以及应用于其构建的策略。;一种涉及环扩展的方法被开发出来,以获取在庚啶和庚啶骨架中保守的三环基序。通过插入C-C sigma键将芳烃中间体的酰基烷基化应用于几种β-酮酸酯和芳烃前体,以研究这种转化对复杂系统的功效。合成了三个三环中间体,这些中间体在适当的位置具有功能手柄,以形成C--N键以构建hetisine核心;通过适当的顺序到达以得到几种所需的三环中间体,然后将它们用于研究C--N键的形成。探索了一系列条件,并从三环支架中分3步获得了所需的氮杂双环。然后分两步形成必要的[2.2.2]自行车,以完成hetisine核心。最后,修饰合成序列以引入完成天然产物靶标所必需的甲基。该甲基化途径已经成功地在合成天然产物可乐定的途中提供了完整的肝素核心。

著录项

  • 作者

    Kisunzu, Jessica Kristine.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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