化学
双功能
对映选择合成
环加成
全合成
有机催化
三环
组合化学
催化作用
加合物
金鸡纳
立体化学
角鲨胺
立体异构
有机化学
脚手架
曼尼希反应
有机合成
反应条件
作者
So Hyun Jung,Ju Ha Baek,So Young Jang,Yongseok Kwon,Hyeung‐geun Park
摘要
The normorphan framework is a compact, sp3-rich N-bridged scaffold found in biologically active natural products and increasingly valued as a three-dimensional platform for medicinal chemistry. Despite its synthetic and biological relevance, direct catalytic asymmetric access to functionalized normorphan-related architectures remains limited. Here, we describe an enantioselective organocatalytic method for constructing an N-bridged tricyclic scaffold bearing a normorphan skeleton using a bifunctional cinchona alkaloid-derived squaramide catalyst. The reaction between 3-hydroxy-2-pyridones and α,β-unsaturated aldehydes results in the formation of a [4 + 2] cycloaddition adduct as an intermediate, which subsequently undergoes skeletal rearrangement. Mechanistic studies and DFT calculations are consistent with a bifunctional hydrogen-bond donor/base activation mode in which the catalyst organizes the initial cycloaddition step and facilitates the rearrangement process. This methodology provides access to a series of bridged normorphan skeletons that exhibit excellent enantio- and diastereoselectivities (up to 99% ee and dr >20:1). The protocol is scalable to gram quantities and was successfully applied to the asymmetric total synthesis of (+)-peduncularine and the preparation of related analogues, demonstrating the synthetic utility of the enantioenriched tricyclic platform.
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