首页> 外文学位 >Applications of ring-closing metathesis in construction of alkaloid natural products: Synthetic studies on the immunosuppressant FR901483 and lundurines A-C.
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Applications of ring-closing metathesis in construction of alkaloid natural products: Synthetic studies on the immunosuppressant FR901483 and lundurines A-C.

机译:闭环复分解在生物碱天然产物构建中的应用:免疫抑制剂FR901483和lundurines A-C的合成研究。

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摘要

Ring-closing metathesis (RCM) has proven to be a valuable tool for constructing alkaloid-like, poly-cyclic compounds. The syntheses of alkaloid structures we were interested in developing, could utilize RCM to construct a spirocyclic structure for the immunosuppressant FR901483 and the tetracyclic framework of lundurines A-C asymmetrically.;The azaspirane core of FR901483 was obtained via an addition of an allylsilane to an N-acyl iminium ion, and a RCM. Other key functional group manipulations were a stereoselective hydroboration and a subsequent lactonization that provided a precursor for a lactone-lactam rearrangement. This rearrangement provided the azatricyclic core of FR901483. In the enantioselective approach to FR901483 a new mildly cleavable protecting group was developed. Addition of a zinc nucleophile to a chiral N-acyl iminium ion, and a RCM provided the desired precursor for the hydroboration/lactone-lactam rearrangement sequence but without a sufficient stereoselection.;A novel approach toward the total synthesis of lundurines A-C has been developed. The key features of the approach involve an intramolecular cyclopropanation of the indole C(2)-C(3) double bond, an enantioselective tandem RCM to construct the tetracyclic core and a concise synthesis to access the RCM precursor. An Ugi reaction was utilized with both cyclic and acyclic ketones, 2-vinyltryptamine derivative, a carboxylic acid and an isocyanide to access diverse compounds, including RCM precursors. An alternative reductive amination route to construct the RCM precursor for the lundurines was found to be more efficient and high yielding than the Ugi approach. An RCM was utilized to affect the closure of the five-and eight-membered rings of the tetracyclic core. This constitutes as the first example of RCM of a 2-vinylindole derivative to give an indole-fused eight-membered ring.
机译:闭环复分解(RCM)已被证明是构建生物碱样多环化合物的有价值的工具。我们有兴趣开发的生物碱结构的合成,可以利用RCM不对称地构建免疫抑制剂FR901483和lundurine AC的四环骨架的螺环结构。FR901483的氮杂螺烷核心是通过将烯丙基硅烷添加到N-酰基亚胺离子和RCM。其他关键的官能团操作是立体选择性氢硼化和随后的内酯​​化,为内酯-内酰胺重排提供了前体。这种重排提供了FR901483的氮杂三环核。在对FR901483的对映选择性方法中,开发了新的轻度可裂解的保护基。将锌亲核试剂加到手性N-酰基亚胺鎓离子上,以及RCM为氢硼化/内酯-内酰胺重排序列提供了所需的前体,但没有足够的立体选择。;已开发出一种新的方法来合成lundurine AC 。该方法的关键特征包括吲哚C(2)-C(3)双键的分子内环丙烷化,构造四环核的对映选择性串联RCM和简洁的合成方法以访问RCM前体。将Ugi反应与环状和非环状酮,2-乙烯基色胺衍生物,羧酸和异氰酸酯一起使用,以获取包括RCM前体在内的各种化合物。发现一种替代的胺化还原途径来构建lundurines的RCM前体比Ugi方法更有效和更高的收率。利用RCM影响四环核的五元和八元环的闭合。这是2-乙烯基吲哚衍生物的RCM的第一个实例,得到吲哚稠合的八元环。

著录项

  • 作者

    Simila, Suvi Tuula.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 355 p.
  • 总页数 355
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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