首页> 外文学位 >Novel cinchona alkaloid derived ammonium salts as phase-transfer catalysts for the asymmetric synthesis of beta-hydroxy alpha-amino acids via aldol reactions and total synthesis of celogentin C.
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Novel cinchona alkaloid derived ammonium salts as phase-transfer catalysts for the asymmetric synthesis of beta-hydroxy alpha-amino acids via aldol reactions and total synthesis of celogentin C.

机译:新型金鸡纳生物碱衍生的铵盐作为相转移催化剂,用于通过醛醇缩合反应不对称合成β-羟基α-氨基酸和全合成celogentinC。

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摘要

Project I Cinchona alkaloid-derived quaternary ammonium salts have been successfully used as phase-transfer catalysts, particularly in asymmetric alkylations. Our group applied this type of catalyst in the synthesis of beta-hydroxy alpha-amino acids via aldol reactions and discovered that the Park-Jew catalyst afforded good yields and good enantiomeric excess of the syn diasteromers, but negligible diastereoselectivity. This project was therefore focused on the synthesis of novel cinchonidine-derived catalysts with the Park-Jew catalyst as the lead structure. The C3 position of cinchonidine nucleus was modified to achieve dimers and catalysts possessing electron-deficient alkyne and alkene moieties. Synthesized catalysts were tested in the asymmetric aldol reactions, with some of them yielding improvements relative to the Park-Jew catalyst.;Project II Celogentin C is a natural product that was isolated from the seeds of Celosia argentea by Kobayashi in 2001. It is the most potent inhibitor of the polymerization of tubulin from among the celogentin family. The novel bicyclic octapeptide structure contains unusual linkages between leucine beta-carbon and indole C-6 of tryptophan and between tryptophan indole C-2 and imidazole N-1 of histidine. The project culminated in the first total synthesis of celogentin C. Reaction conditions were developed by synthesizing the left-hand ring and the right-hand ring separately, and the total synthesis was accomplished via a left to right strategy. Key transformations in the construction included intermolecular Knoevenagel condensation, radical conjugate addition, macrolactamization, and oxidative coupling.
机译:项目I金鸡纳生物碱衍生的季铵盐已成功地用作相转移催化剂,尤其是在不对称烷基化反应中。我们的小组将这种类型的催化剂应用于通过醛醇缩合反应合成β-羟基α-氨基酸的过程中,发现Park-Jew催化剂的顺式非对映异构体的收率和对映体过量均良好,但非对映选择性可忽略不计。因此,该项目着重于以Park-Jew催化剂为主要结构的新型辛可尼定衍生的催化剂的合成。辛可尼定核的C3位置进行了修改,以实现具有缺电子炔烃和烯烃部分的二聚体和催化剂。合成的催化剂在不对称的羟醛反应中进行了测试,其中一些相对于Park-Jew催化剂有所改进。; Project II Celogentintin C是一种天然产物,由Kobayashi于2001年从银叶芹的种子中分离出来。 celogentin家族中最有效的微管蛋白聚合抑制剂。新型的双环八肽结构在亮氨酸β-碳和色氨酸的吲哚C-6之间以及色氨酸的吲哚C-2和组氨酸的咪唑N-1之间具有不寻常的连接。该项目最终完成了celogentin C的第一次全合成。通过分别合成左手环和右手环来开发反应条件,并通过从左到右的策略完成总合成。结构的关键转变包括分子间的Knoevenagel缩合,自由基共轭物加成,大内酰胺化和氧化偶联。

著录项

  • 作者

    Ma, Bing.;

  • 作者单位

    Brigham Young University.;

  • 授予单位 Brigham Young University.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 307 p.
  • 总页数 307
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:47

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