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通过(氮杂)吲哚/苯并呋喃骨架的重塑合成具有不同官能团的取代吡啶。

Synthesis of substituted pyridines with diverse functional groups via the remodeling of (Aza)indole/Benzofuran skeletons.

作者信息

Vaithegi Kannan, Yi Sihyeong, Lee Ji Hyae, Varun Begur Vasanthkumar, Park Seung Bum

机构信息

CRI Center for Chemical Proteomics, Department of Chemistry, Seoul National University, Seoul, 08826, Republic of Korea.

出版信息

Commun Chem. 2023 Jun 7;6(1):112. doi: 10.1038/s42004-023-00914-5.

Abstract

Substituted pyridines with diverse functional groups are important structural motifs found in numerous bioactive molecules. Several methodologies for the introduction of various bio-relevant functional groups to pyridine have been reported, but there is still a need for a single robust method allowing the selective introduction of multiple functional groups. This study reports a ring cleavage methodology reaction for the synthesis of 2-alkyl/aryl 3-electron-withdrawing groups (esters, sulfones, and phosphonates) 5-aminoaryl/phenol pyridines via the remodeling of 3-formyl (aza)indoles/benzofurans. Totally ninety-three 5-aminoaryl pyridines and thirty-three 5-phenol pyridines were synthesized showing the robustness of the developed methodology. The application of this methodology further provided a privileged pyridine scaffold containing biologically relevant molecules and direct drug/natural product conjugation with ethyl 2-methyl nicotinate.

摘要

具有不同官能团的取代吡啶是众多生物活性分子中重要的结构基序。已经报道了几种将各种与生物相关的官能团引入吡啶的方法,但仍然需要一种单一的可靠方法来选择性地引入多个官能团。本研究报道了一种环裂解方法反应,通过3-甲酰基(氮杂)吲哚/苯并呋喃的重塑来合成2-烷基/芳基3-吸电子基团(酯、砜和膦酸酯)5-氨基芳基/苯酚吡啶。总共合成了93种5-氨基芳基吡啶和33种5-苯酚吡啶,显示了所开发方法的稳健性。该方法的应用进一步提供了一个含有生物相关分子的特殊吡啶支架,并实现了与2-甲基烟酸乙酯的直接药物/天然产物共轭。

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