position to afford azepinones under mild conditions. Subsequent photochemical 2 + 2 cycloaddition triggers two-carbon exocyclic transposition, delivering pyrrolidinone scaffolds not readily accessible through direct pyridine editing. This sequence constitutes a rare example of bidirectional ring-size editing (6 → 7 → 5) from a single core structure. The method exhibits a broad substrate scope, excellent functional group tolerance, and compatibility with late-stage modifications of drug molecules. This work establishes pyridines as versatile substrates for divergent skeletal editing and provides a practical framework for scaffold hopping in medicinal chemistry.
Luo et al. (Mon,) studied this question.
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