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Traceless Electrophilic Amination for the Synthesis of Unprotected Cyclic β-Amino Acids

机译:无痕亲电胺化,用于合成未受保护的环状β-氨基酸

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摘要

Electrophilic aminations involve an umpolung of a nitrogen atom, providing an alternate, distinctive synthetic strategy. The recent advent of various designed O-substituted hydroxylamines has significantly advanced this research field. An underappreciated issue is atom economy of the transformations: The necessary activating group on the oxygen atom is left in coproduced waste. Herein, we describe Rh-catalyzed electrophilic amination of substituted isoxazolidin-5-ones for the synthesis of unprotected, cyclic beta-amino acids featuring either benzo-fused or spirocyclic scaffolds. Using the cyclic hydroxylamines allows for retaining both nitrogen and oxygen functionalities in the product. The traceless, redox neutral process proceeds on a gram scale with as little as 0.1 mol % catalyst loading. In contrast to related electrophilic aminations in the literature, a series of mechanistic experiments suggests a unique pathway involving spirocyclization, followed by the skeletal rearrangement. The insights provided herein shed light on a nuanced reactivity of the active species, Rh-nitrenoid generated from the activated hydroxylamine, and extend the knowledge on electrophilic aromatic substitutions.
机译:电泳胺涉及氮原子的umpolung,提供交替,独特的合成策略。最近各种设计的O-取代的羟胺的出现显着提出了这一研究领域。低估的问题是转型的原子经济:氧原子上必要的激活组留在副产品中。在此,我们描述了用于合成未受保护的异恶唑嗪-5-氨基酸的RH催化的甲氧唑烷-5-氨基酸,其具有苯并稠合或螺环支架。使用环状羟胺允许保留产品中的氮和氧官能团。无痕,氧化还原中性过程采用克拉垢进行,催化剂负荷少于0.1mol%。与文献中的相关亲电子酰胺形成对比,一系列机械实验表明了一种涉及梭菌的独特途径,其次是骨骼重排。本文提供的洞察揭示了活性物种的患者对活性物质的细致性反应性,并从活化的羟胺产生的rh-nitrenoid,并延长了亲电芳族取代的知识。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2019年第26期|10530-10537|共8页
  • 作者单位

    Inst Microbial Chem BIKAKEN Shinagawa Ku 3-14-23 Kamiosaki Tokyo 1410021 Japan;

    Inst Microbial Chem BIKAKEN Shinagawa Ku 3-14-23 Kamiosaki Tokyo 1410021 Japan;

    Inst Microbial Chem BIKAKEN Shinagawa Ku 3-14-23 Kamiosaki Tokyo 1410021 Japan;

    Inst Microbial Chem BIKAKEN Shinagawa Ku 3-14-23 Kamiosaki Tokyo 1410021 Japan;

  • 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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  • 入库时间 2022-08-18 22:16:41

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