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May 3, 20265 citations

Divergent and consecutive skeletal editing of saturated primary amines.

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LLLonghai LiSSShiwei SuXZXian Zheng

Key Points

  • The research aims to develop a method for converting saturated primary amines into nitrogen heterocycles through skeletal editing.
  • Developed a skeletal editing approach using iodane-mediated oxidation.
  • Generated an imino ether intermediate for diverse nucleophile reactions.
  • Enabled consecutive skeletal editing for carbon-to-nitrogen transmutations and ring contractions.
  • Achieved high regioselectivity and diastereospecificity (>20:1).
  • Generated over 15 classes of structurally diverse nitrogen heterocycles.
  • Successfully performed site-controlled transformations and ring contractions in a one-pot reaction.

Abstract

Given the prevalence of nitrogen heterocycles in pharmaceuticals, divergent skeletal editing techniques that enable rapid access to a diverse library of azacycles from a single substrate are highly desirable. Herein, we report a skeletal editing approach that converts abundant saturated primary amines into N-heterocycles, with exceptional functional-group compatibility, broad skeletal diversity, superior regioselectivity, and diastereospecificity (both >20:1). By harnessing the reactivity of hypervalent iodines, an imino ether intermediate is generated through mild iodane-mediated oxidation, facile N-internalization, and methoxy anion addition. This pivotal intermediate serves as a versatile platform capable of interception by a wide spectrum of nucleophiles, thereby enabling the generation of structurally diverse nitrogen heterocycles (>15 classes). Furthermore, this strategy enables challenging site-controlled carbon-to-nitrogen transmutation and ring contraction of natural products through a one-pot, consecutive skeletal editing sequence.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69f6e6648071d4f1bdfc7157https://doi.org/10.1126/science.aee5416
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