Yang Yang, Hardman Clayton
Genomics Institute of the Novartis Research Foundation, 10675 John Jay Hopkins Drive, San Diego, California 92121, USA.
Org Biomol Chem. 2017 Oct 18;15(40):8576-8593. doi: 10.1039/c7ob01948c.
Chiral 2-substituted-6-methyl 2,3-dihydropyidinones 9, which can be facilely obtained from an asymmetric vinylogous Mannich reaction (VMR) with 1,3-bis-trimethysily enol ether, were used as versatile intermediates in constructing chiral polyfunctional piperidine-based compounds. The 6-methyl group of such compounds can be conveniently functionalized via alkylation and acylation reactions to provide efficient entries to the synthesis of a variety of chiral multi-substituted piperidine-based compounds. Further elaboration of the corresponding intermediates also provided access to polyfunctional indolizidine-based compounds. These methods were showcased in an asymmetric synthesis of 2,6-di-substituted piperidine compound 13, reported as the key intermediate in the synthesis of (+)-calvine and a natural alkaloid (-)-indolizidine 209D. Furthermore, selective C5 iodination of compound 9 enabled the installation of additional functional groups at this position. Finally, we demonstrated that the oxidative cleavage of 2-substituted-6-methyl-2,3-dihydropyidinones is a practical and efficient method for the enantioselective synthesis of β-amino acids, which can undergo further intra-molecular cyclization to give the corresponding chiral four-membered β-lactam derivatives.
手性2-取代-6-甲基-2,3-二氢吡啶酮9可通过与1,3-双三甲基硅基烯醇醚的不对称乙烯型曼尼希反应(VMR)轻松获得,它被用作构建手性多官能团哌啶类化合物的通用中间体。这类化合物的6-甲基可通过烷基化和酰化反应方便地进行官能化,从而为合成各种手性多取代哌啶类化合物提供有效途径。对相应中间体的进一步衍生化还提供了合成多官能团中氮茚类化合物的方法。这些方法在2,6-二取代哌啶化合物13的不对称合成中得到了展示,该化合物被报道为(+)-卡尔文和天然生物碱(-)-中氮茚209D合成中的关键中间体。此外,化合物9的选择性C5碘化使得能够在该位置引入额外的官能团。最后,我们证明了2-取代-6-甲基-2,3-二氢吡啶酮的氧化裂解是对映选择性合成β-氨基酸的一种实用且有效的方法,β-氨基酸可进一步进行分子内环化以得到相应的手性四元β-内酰胺衍生物。