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[4+1] 通过原位生成的亚胺炔进行Alder-烯反应形成1-吡咯啉的杂环化反应:在硼瑞卡平全合成中的发展与应用

[4+1] Heteroannulation to Form 1-Pyrrolines through Alder-Ene Reaction of in situ Generated Ynimines: Development and Application in Total Synthesis of Borrecapine.

作者信息

Lavernhe Rémi, Wang Qian, Zhu Jieping

机构信息

Laboratory of Synthesis and Natural Products I, nstitute of Chemical Sciences and Engineering, Ecole Polytechnique Fédérale de Lausanne, EPFL-SB-ISIC-LSPN, BCH 5304, 1015, Lausanne, Switzerland.

出版信息

Angew Chem Int Ed Engl. 2025 Jan 10;64(2):e202414612. doi: 10.1002/anie.202414612. Epub 2024 Oct 17.

Abstract

We report in this paper a novel Cu-catalyzed synthesis of polysubstituted 1-pyrrolines. The reaction of β,γ-unsaturated oxime esters 4 with terminal alkynes 5 in the presence of a catalytic amount of Cu(OAc) and 2,2'-biquinoline affords the corresponding 1,6-enynimines, which undergo a highly stereoselective Alder-ene reaction to afford 1-pyrrolines with concomitant generation of a quaternary carbon and a 2-azadiene motif. It represents an unusual [4+1] heteroannulation reaction wherein terminal alkynes act as a one carbon donor and are 1,1-difunctionalized. Mechanistic studies suggest that the allylic hydrogen trans to the oxime ester main chain is selectively transferred to the electron-rich alkyne during the pericyclic reaction. The resulting 1-pyrrolines undergo facile acid-catalyzed regioselective Wagner-Meerwein rearrangement to provide 2H-pyrroles in excellent yields. The 2H-pyrroles are also accessible from 4 and 5 in a one-pot manner without isolation of the 1-pyrrolines. Leveraging this heteroannulation reaction as a key step, the first total synthesis of borrecapine, a 2,3,3,5-tetrasubstituted pyrrolidine, is accomplished.

摘要

我们在本文中报道了一种新型的铜催化多取代1-吡咯啉的合成方法。β,γ-不饱和肟酯4与末端炔烃5在催化量的醋酸铜和2,2'-联喹啉存在下反应,生成相应的1,6-烯炔亚胺,该烯炔亚胺进行高度立体选择性的Alder-ene反应,生成1-吡咯啉,同时生成一个季碳和一个2-氮杂二烯基序。这代表了一种不寻常的[4+1]杂环化反应,其中末端炔烃作为一个碳供体并进行1,1-双官能化。机理研究表明,在周环反应过程中,与肟酯主链反式的烯丙基氢选择性地转移到富电子的炔烃上。所得的1-吡咯啉经酸催化的区域选择性瓦格纳-米尔温重排,以优异的产率提供2H-吡咯。2H-吡咯也可以通过4和5一锅法制备,无需分离1-吡咯啉。利用这种杂环化反应作为关键步骤,完成了2,3,3,5-四取代吡咯烷borrecapine的首次全合成。

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