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通用的铜催化脂肪酸的γ-C(sp)-H内酯化反应

Versatile Copper-Catalyzed γ-C(sp)-H Lactonization of Aliphatic Acids.

作者信息

Zhuang Zhe, Sheng Tao, Qiao Jennifer X, Yeung Kap-Sun, Yu Jin-Quan

机构信息

Department of Chemistry, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, United States.

Small Molecule Drug Discovery, Bristol Myers Squibb Research and Early Development, P.O. Box 4000, Princeton, New Jersey 08543, United States.

出版信息

J Am Chem Soc. 2024 Jun 26;146(25):17311-17317. doi: 10.1021/jacs.4c04043. Epub 2024 Jun 12.

Abstract

Site-selective C(sp)-H oxidation is of great importance in organic synthesis and drug discovery. γ-C(sp)-H lactonization of free carboxylic acids provides the most straightforward means to prepare biologically important lactone scaffolds from abundant and inexpensive carboxylic acids; however, a versatile catalyst for this transformation with a broad substrate scope remains elusive. Herein, we report a simple yet broadly applicable and scalable γ-lactonization reaction of free aliphatic acids enabled by a copper catalyst in combination with inexpensive Selectfluor as the oxidant. This lactonization reaction exhibits compatibility with tertiary, benzylic, allylic, methylene, and primary γ-C-H bonds, affording access to a wide range of structurally diverse lactones such as spiro, fused, and bridged lactones. Notably, exclusive γ-methylene C-H lactonization of cycloalkane carboxylic acids and cycloalkane acetic acids was observed, giving either fused or bridged γ-lactones that are difficult to access by other methods. δ-C-H lactonization was only favored in the presence of tertiary δ-C-H bonds. The synthetic utility of this methodology was demonstrated by the late-stage functionalization of amino acids, drug molecules, and natural products, as well as a two-step total synthesis of (iso)mintlactones (the shortest synthesis reported to date).

摘要

位点选择性C(sp) -H氧化在有机合成和药物发现中具有重要意义。游离羧酸的γ-C(sp) -H内酯化反应为从丰富且廉价的羧酸制备具有生物学重要性的内酯骨架提供了最直接的方法;然而,一种适用于该转化且底物范围广泛的通用催化剂仍然难以实现。在此,我们报道了一种简单但广泛适用且可扩展的游离脂肪酸γ-内酯化反应,该反应由铜催化剂与廉价的Selectfluor作为氧化剂共同实现。这种内酯化反应与叔碳、苄基、烯丙基、亚甲基和伯γ-C-H键具有兼容性,能够合成多种结构多样的内酯,如螺环、稠环和桥环内酯。值得注意的是,观察到环烷羧酸和环烷乙酸的γ-亚甲基C-H键发生了专一性内酯化反应,生成了通过其他方法难以获得的稠环或桥环γ-内酯。只有在存在叔δ-C-H键的情况下,δ-C-H内酯化反应才占优势。该方法的合成实用性通过氨基酸、药物分子和天然产物的后期官能团化以及(异)薄荷内酯的两步全合成(这是迄今为止报道的最短合成路线)得到了证明。

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