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Asymmetric Total Synthesis of Vindorosine, Vindoline, and Key Vinblastine Analogues.

机译:Vindorosine,Vindoline和关键Vinblastine类似物的不对称全合成。

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摘要

Concise asymmetric total syntheses of vindoline (1) and vindorosine (2) are detailed based on a unique intramolecular [4+2]/[3+2] cycloaddition cascade of 1,3,4-oxadiazoles inspired by the natural product structures. A chiral substituent on the tether linking the dienophile and oxadiazole was used to control the facial selectivity of the initiating Diels--Alder reaction and set the absolute stereochemistry of the remaining six stereocenters in the cascade cycloadduct. This key reaction introduced three rings and four C--C bonds central to the pentacyclic ring system setting all six stereocenters and introducing essentially all the functionality found in the natural products in a single step. Implementation of the approach for the synthesis of 1 and 2 required the development of a ring expansion reaction to provide a 6-membered ring suitably functionalized for introduction of the Delta6,7-double bond found in the core structure of the natural products. Two unique approaches were developed that defined our use of a protected hydroxymethyl group as the substituent that controls the stereochemical course of the cycloaddition cascade. In the course of these studies, several analogues of vindoline were prepared containing deep-seated structural changes presently accessible only by total synthesis. These analogues, bearing key modifications at C6--C8, were incorporated into vinblastine analogues and used to probe the unusual importance (100-fold) and define the potential role of the vinblastine Delta6,7-double bond.
机译:基于1,3,4-恶二唑的独特分子内[4 + 2] / [3 + 2]环加成级联反应,详细介绍了由天然产物结构启发而来的简明不对称的长春花碱(1)和长春花碱(2)的总合成。连接亲二烯体和恶二唑的系链上的手性取代基用于控制引发Diels-Alder反应的面部选择性,并设置级联环加合物中其余六个立体中心的绝对立体化学。这一关键反应在五环系统的中心引入了三个环和四个C-C键,从而设置了所有六个立体中心,并一步一步就引入了天然产物中的所有官能团。合成1和2的方法的实现要求开发环扩环反应,以提供一个6元环,该环适当地功能化以引入在天然产物的核心结构中发现的Delta6,7-双键。开发了两种独特的方法,定义了我们使用受保护的羟甲基作为控制环加成级联立体化学过程的取代基。在这些研究过程中,制备了长春新碱的几种类似物,其中包含目前只能通过全合成才能获得的深层结构变化。这些在C6--C8处有关键修饰的类似物被掺入长春碱类似物中,并用于探测异常重要的重要性(100倍)并确定长春碱Delta6,7-双键的潜在作用。

著录项

  • 作者

    Kato, Daisuke.;

  • 作者单位

    The Scripps Research Institute.;

  • 授予单位 The Scripps Research Institute.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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