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无卤卡宾的齐亚米西安-登施泰特单原子骨架编辑。

Halogencarbene-free Ciamician-Dennstedt single-atom skeletal editing.

作者信息

Liu Shaopeng, Yang Yong, Song Qingmin, Liu Zhaohong, Sivaguru Paramasivam, Zhang Yifan, de Ruiter Graham, Anderson Edward A, Bi Xihe

机构信息

Department of Chemistry, Northeast Normal University, Changchun, China.

Schulich Faculty of Chemistry, Technion-Israel Institute of Technology, Haifa, Israel.

出版信息

Nat Commun. 2024 Nov 19;15(1):9998. doi: 10.1038/s41467-024-54379-8.

Abstract

Single-atom skeletal editing is an increasingly powerful tool for scaffold hopping-based drug discovery. However, the insertion of a functionalized carbon atom into heteroarenes remains rare, especially when performed in complex chemical settings. Despite more than a century of research, Ciamician-Dennstedt (C-D) rearrangement remains limited to halocarbene precursors. Herein, we report a general methodology for the Ciamician-Dennstedt reaction using α-halogen-free carbenes generated in situ from N-triftosylhydrazones. This one-pot, two-step protocol enables the insertion of various carbenes, including those previously unexplored in C-D skeletal editing chemistry, into indoles/pyrroles scaffolds to access 3-functionalized quinolines/pyridines. Mechanistic studies reveal a pathway involving the intermediacy of a 1,4-dihydroquinoline intermediate, which could undergo oxidative aromatization or defluorinative aromatization to form different carbon-atom insertion products.

摘要

单原子骨架编辑是基于骨架跃迁的药物发现中一种越来越强大的工具。然而,将功能化碳原子插入杂芳烃的情况仍然很少见,尤其是在复杂的化学环境中进行时。尽管经过了一个多世纪的研究,齐亚米西安-丹施泰特(C-D)重排仍然仅限于卤代卡宾前体。在此,我们报道了一种使用由N-三氟甲磺酰腙原位生成的无α-卤素卡宾进行齐亚米西安-丹施泰特反应的通用方法。这种一锅两步法能够将各种卡宾,包括那些以前在C-D骨架编辑化学中未探索过的卡宾,插入吲哚/吡咯骨架中,以获得3-功能化喹啉/吡啶。机理研究揭示了一条涉及1,4-二氢喹啉中间体的途径,该中间体可以进行氧化芳构化或脱氟芳构化以形成不同的碳原子插入产物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/500b/11574194/aee8997369f0/41467_2024_54379_Fig1_HTML.jpg

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