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Total Synthesis of (±)- and (-)-Actinophyllic Acid

机译:(±)-和(-)-肌叶酸的全合成

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摘要

Development of efficient sequences for the total syntheses of (±)-actinophyllic acid (rac-1) and (-)-actinophyllic acid (1) are described. The central step in these syntheses is the aza-Cope/Mannich reaction, which constructs the previously unknown hexacyclic ring system of actinophyllic acid in one step from much simpler tetracyclic precursors. The tetracyclic hexahydro-1,5-methano-1H-azocino[4,3-b]indole ketone rac-37 is assembled from onitrophenylacetic acid in four steps, with oxidative cyclization of a dienolate derivative of tricyclic precursor rac-35 being the central step. In the first-generation synthesis, this intermediate is transformed in two steps to homoallyl amine rac-43, whose formaldiminium derivative undergoes efficient aza-Cope/Mannich reaction to give pentacyclic ketone rac-44. In four additional steps, this intermediate is advanced to (±)-actinophyllic acid. The synthesis is streamlined by elaborating ketone rac-37 to β-hydroxyester intermediate rac-53, which is directly transformed to (±)-actinophyllic acid upon exposure to HCI and paraformaldehyde. This concise second-generation total synthesis of (±)-actinophyllic acid is realized in 22% overall yield from commercially available di-tert-butyl malonate and onitrophenylacetic acid by a sequence that proceeds by way of only six isolated intermediates. The first enantioselective total synthesis of (-)-actinophyllic acid (1) is accomplished by this direct sequence from tricyclic keto malonate (S)-35. Catalytic enantioselective reduction of α,β-unsaturated ketone 66 is the key step in the preparation of intermediate (S)-35 from the commercially available Boc-amino acid 65. Discussed also is the possibility that the aza-Cope/Mannich reaction might be involved in the biosynthesis of (-)-actinophyllic acid.
机译:描述了开发用于总合成(±)-猕猴桃酸(rac-1)和(-)-猕猴桃酸(1)的有效序列的方法。这些合成过程的中心步骤是aza-Cope / Mannich反应,该反应可通过简单得多的四环前体一步来构建肌醇六酸的先前未知的六环系统。四环六氢-1,5-甲基-1H-偶氮基[4,3-b]吲哚酮rac-37由邻硝基苯乙酸分四个步骤组装而成,其中三环前体rac-35的二烯酸酯衍生物的氧化环化为中心步。在第一代合成中,该中间体分两步转化为均烯丙基胺rac-43,其甲醛鎓衍生物经过有效的aza-Cope / Mannich反应生成五环酮rac-44。在另外四个步骤中,该中间体被合成为(±)-肌phyl酸。通过将酮rac-37精制为β-羟基酯中间体rac-53可以简化合成过程,该中间体在暴露于HCl和多聚甲醛后可直接转化为(±)-放线菌酸。通过仅通过六个分离的中间体进行的序列,由市售的丙二酸二叔丁酯和邻硝基苯乙酸以22%的总收率实现了这种简洁的第二代(±)-肌ino酸全合成。通过该直接序列由三环酮基丙二酸酯(S)-35进行(-)-猕猴桃酸(1)的首次对映选择性全合成。 α,β-不饱和酮66的催化对映选择性还原是从市售Boc-氨基酸65制备中间体(S)-35的关键步骤。还讨论了aza-Cope / Mannich反应的可能性参与(-)-actinophyllic酸的生物合成。

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  • 来源
    《Journal of the American Chemical Society》 |2010年第13期|p.4894-4906|共13页
  • 作者单位

    Department of Chemistry, 1102 Natural Sciences II, University of California, Irvine, California 92697-2025;

    Department of Chemistry, 1102 Natural Sciences II, University of California, Irvine, California 92697-2025;

    Department of Chemistry, 1102 Natural Sciences II, University of California, Irvine, California 92697-2025 Ironwood Pharmaceuticals, Inc., 320 Bent Street, Cambridge, MA 02141;

  • 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
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  • 入库时间 2022-08-18 03:15:28

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