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首页> 外文期刊>Journal of the American Chemical Society >Concise Substrate-Controlled Asymmetric Total Syntheses of Dioxabicyclic Marine Natural Products with 2,10-Dioxabicydo- [7.3.0]dodecene and 2,9-Dioxabicyclo[6.3.0]undecene Skeletons
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Concise Substrate-Controlled Asymmetric Total Syntheses of Dioxabicyclic Marine Natural Products with 2,10-Dioxabicydo- [7.3.0]dodecene and 2,9-Dioxabicyclo[6.3.0]undecene Skeletons

机译:具有2,10-二氧杂双环-[7.3.0]十二碳烯和2,9-二氧杂双环[6.3.0]十一碳烯骨架的二氧杂双环海洋天然产物的简洁底物控制的不对称全合成

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摘要

We report a completely substrate-controlled approach to the asymmetric total synthesis of representative dioxabicyclic bromoallene marine natural products with either a 2,10-dioxabicyclo[7.3.0]dodecene or 2,9-dioxabicydo[6.3.0]-undecene skeleton from commercially available glycidol as a common starting material. The former include (-)-isolaurallene (l), the enantiomeric form of natural (+)-neolaurallene (2), and (+)-itomanallene A (3c), and the latter are (+)-laurallene (4) and (+)-pannosallene (5a). In addition, our first syntheses of 3c and 5a established the structure and absolute stereochemistry of both natural oroducts. Our general aonroach to establish the α,α'-relative stereochemistry of the medium-ring (oxonene or oxocene) and tetrahydrofuran, respectively, involved the judicious pairing of our protecting-group-dependent intermolecular amide enolate alkylation (either chemoselective chelation-controlled or dianion alkylation) with either our intramolecular amide enolate or nitrile anion alkylation. Remarkable selectivity was achieved through the use of the appropriate alkylation steps, and this approach offered us optional access to any of these dioxabicyclic bromoallene marine natural products. In addition, a computational analysis was performed to investigate conformational effects on the rate of oxonene formation via RCM, a key step in these approaches. The results suggested an alternative rationale for reactivity based on the avoidance of eclipsing torstional interactions in the AS2-type ring conformation.
机译:我们报告了完全有底物控制的方法,可从商业上与2,10-二氧杂双环[7.3.0]十二碳烯或2,9-二氧杂双环[6.3.0]-十一碳烯骨架进行不对称全合成代表性的二恶双环溴丙二烯海洋天然产物。可用缩水甘油作为常用原料。前者包括(-)-异欧拉烯(1),对映体形式的天然(+)-异欧拉烯(2)和(+)-itomanallene A(3c),后者是(+)-异欧蕾烯(4)和(+)-泛醇(5a)。此外,我们的3c和5a的首次合成建立了两种天然高岭土的结构和绝对立体化学。我们分别建立中等环(oxonene或oxocene)和四氢呋喃的α,α'相对立体化学的一般蟑螂,涉及我们保护基依赖性分子间酰胺烯醇烷基化(化学选择螯合控制或化学选择性螯合)的明智配对。分子内酰胺烯酸酯或腈阴离子烷基化)。通过使用适当的烷基化步骤,可以实现显着的选择性,这种方法为我们提供了使用这些二氧双环溴代丙二烯海洋天然产物中任何一种的可选途径。另外,进行了计算分析以研究构象对经由RCM对氧杂环丁烯形成速率的影响,这是这些方法中的关键步骤。结果提出了一种反应性的替代性原理,其基础是避免在AS2型环构象中发生蚀性相互作用。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2012年第49期|20178-20188|共11页
  • 作者单位

    The Research Institute of Pharmaceutical Sciences, College of Pharmacy, Seoul National University, Seoul 151-742, Korea;

    The Research Institute of Pharmaceutical Sciences, College of Pharmacy, Seoul National University, Seoul 151-742, Korea;

    The Research Institute of Pharmaceutical Sciences, College of Pharmacy, Seoul National University, Seoul 151-742, Korea;

    Chemistry Research Laboratory, Department of Chemistry, University of Oxford, Mansfield Road, Oxford 0X1 3TA, United Kingdom;

  • 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
  • 中图分类
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