Lavernhe Rémi, Wang Qian, Zhu Jieping
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.
Angew Chem Int Ed Engl. 2025 Jan 10;64(2):e202414612. doi: 10.1002/anie.202414612. Epub 2024 Oct 17.
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.
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。