Scanning nitrogen in sp<sup>3</sup>-rich scaffolds enabled by carbonyl-to-nitrogen atom swap.

Zhang, Zining; Liang, Zhehan; Ye, Rong; Dong, Guangbin · Science · 2026

basic_science · Level V

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Abstract

Medicinal chemistry campaigns routinely require access to series of saturated nitrogen heterocycle (SNH)-based analogs that place nitrogen at different positions to probe structure-activity relationships. However, systematic preparation of <i>N</i>-positional variants remains synthetically burdensome. In this work, we report a strategy for nitrogen scanning in sp<sup>3</sup>-rich scaffolds enabled by the exchange of a carbonyl group with an amine moiety, formally achieving a carbonyl-to-nitrogen (CO-to-N) atom swap. Because ketone positional isomers can be readily obtained through carbonyl transposition or carbon-hydrogen oxidation from a common carbocyclic precursor, the CO-to-N atom swap greatly streamlines the preparation of SNH positional analogs and obviates the need for multiple de novo syntheses. The CO-to-N reaction exhibits exceptional functional group compatibility and generality, which makes it well suited for late-stage modification of complex bioactive molecules and for isotopic labeling.