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Enantioselective Total Synthesis of (+)-Brefeldin A and 7-epi-Brefeldin A

机译:(+)-布雷菲德菌素A和7-表-布雷菲德菌素A的对映选择性全合成

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摘要

A convergent enantioselective route to brefeldin A (BFA) and 7-epi-BFA was developed. The key C-4/C-5 chiral centers were established by using chiral auxiliary induced intermolecular asymmetric aldolization in the presence of TiCl_4 and TMEDA. The results with the thiazolidinethione/TiCl_4 mediated intermolecular asymmetric aldolization added some new information about the scope and limitations to the existing knowledge of that type of reactions (which so far was essentially limited to the reactions with N-propionyl thiazolidinethiones). During the course a method for protecting the liable aldol hydroxyl groups by using inexpensive TBSCl in DMF with 2,6-lutidine as the base was developed to replace the otherwise unavoidable TBSOTf procedure. Due to the excessive steric hindrance, removal of the auxiliary was much more difficult than most literature cases. Cleavage of the oxazolidinone by reduction was almost impossible. The thiazolidinethione auxiliary was relatively easier to remove. However, several reactions reported for facile removal of thiazolidinethione auxiliaries in the literature still failed. Reductive removal of the thiazolidinethione auxiliary was most effectively realized with LiBH4 in diethyl ether in the presence of 1 equiv of MeOH (a modification of a literature procedure for removal of oxazolidinone auxiliaries in less hindered substrates). Apart from the auxiliary removal, oxidation of the alcohol into aldehyde and the deprotection of the dithiolane protecting group were also rather difficult in the present context. A range of methods were screened before final solutions were found. The five-membered ring was constructed by employing an intramolecular Mukaiyama reaction after many attempts with the intramolecular aldolization under a variety of conditions failed. The rate of elimination of the alkoxyl to form the α,β-double bond of the key intermediate cyclopentenone 49 with DBU was highly solvent dependent (very sluggish in CH_2Cl_2 but rather fast in MeOH). Introduction of the lower chain (which was synthesized by using a Jacobsen KHR to establish the C-15 chirality) was achieved through a Michael addition similar to the precedents in the literature. It has not been noticed before that the yield of this Michael reaction could be dramatically raised by using 3 equiv of the copper-lithium reagent 55. Reduction of the C-7 carbonyl was apparently more difficult than similar cases in the literature. After examination of many reagents under various conditions, it was found that the best reagent for yielding the α-isomer was (S)-2-methyl-CBS-borolidine/BH_3 and that for the β-isomer was L-Selectride. The α- and β-isomers were then further elaborated into (+)-brefeldin A and 7-epi-BFA, respectively. An unexpected yet very interesting solubility difference between BFA and 7-epi-BFA was also observed.
机译:开发了向布雷菲德菌素A(BFA)和7-epi-BFA的收敛对映选择性路线。在TiCl_4和TMEDA存在下,通过手性辅助诱导的分子间不对称醛醇缩合,建立了关键的C-4 / C-5手性中心。噻唑烷硫酮/ TiCl_4介导的分子间不对称醛醇缩合的结果为该反应类型的现有知识(到目前为止,基本上仅限于与N-丙酰基噻唑烷硫酮的反应)提供了一些有关范围和限制的新信息。在该过程中,开发了一种方法,该方法通过在DMF中使用廉价的TBSC1,以2,6-二甲基吡啶为碱,来保护有效的羟醛羟基,以替代原本不可避免的TBSOTf程序。由于过多的空间位阻,与大多数文献中的案例相比,去除辅助剂要困难得多。通过还原裂解恶唑烷酮几乎是不可能的。噻唑烷硫酮助剂相对较容易除去。然而,文献中报道的几种可轻易除去噻唑烷硫酮助剂的反应仍然失败。在存在1当量的MeOH的情况下,在乙醚中用LiBH4最有效地实现了噻唑烷硫酮助剂的还原去除(对在受阻较小的底物中去除恶唑烷酮助剂的文献方法的修改)。除了辅助去除之外,在当前情况下,将醇氧化为醛和使二硫杂环戊烷保护基脱保护也相当困难。在找到最终解决方案之前,筛选了一系列方法。在许多条件下,通过分子内醛醇缩合的多次尝试失败后,通过进行分子内Mukaiyama反应来构建五元环。用DBU消除形成关键中间体环戊烯酮49的α,β-双键的烷氧基的速率高度依赖溶剂(在CH_2Cl_2中非常缓慢,而在MeOH中则非常快)。通过类似于文献中的先例的迈克尔加成法,引入了下链(通过使用Jacobsen KHR合成以建立C-15手性进行合成)。以前还没有注意到通过使用3当量的铜锂试剂55可以大大提高迈克尔反应的产率。与文献中的类似情况相比,还原C-7羰基显然更困难。在各种条件下检查了许多试剂后,发现产生α-异构体的最佳试剂是(S)-2-甲基-CBS-硼烷/ BH_3,而β-异构体的最佳试剂是L-Selectride。然后将α-异构体和β-异构体分别进一步加工成(+)-布雷菲德菌素A和7-epi-BFA。还观察到了BFA和7-epi-BFA之间意想不到但非常有趣的溶解度差异。

著录项

  • 来源
    《The Journal of Organic Chemistry》 |2004年第11期|p.3857-3865|共9页
  • 作者单位

    State Key Laboratory of Bio-organic and Natural Products Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 354 Fenglin Road, Shanghai 200032, China;

  • 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 有机化学;
  • 关键词

  • 入库时间 2022-08-18 00:03:24

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