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September 10, 2025Journal of the American Chemical Society4 citations

Enantioselective Synthesis of Spirocyclic Nitrogen-Containing Heterocycles Catalyzed by an Iridium-Containing Cytochrome

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JXJingtong XuBBBrandon J. BloomerJBJohn N. Brunn

Key Points

  • Enantioselectivity reached up to 99%, leading to more complex spirocyclic amines.
  • The study identified a novel iridium-containing cytochrome variant through mutagenesis.
  • The method synthesizes spiroazetidines, spiropyrrolidines, and spiropiperidines effectively.
  • This approach highlights significant utility for producing valuable amino acid derivatives.

Abstract

In the past decade, thousands of synthetic building blocks, intermediates, and drug candidates containing a spirocyclopropane core with at least one nitrogen atom have been investigated for a range of biological activities. These compounds create three-dimensional architectures that maintain the rigidity of their more sp2-rich analogs. Most examples contain simple core structures with unsubstituted cyclopropyl moieties, and only one has been made enantioselectively. Therefore, a straightforward method to produce more complex spirocyclic amines with high stereoselectivity would be of great synthetic utility. Here, we report the stereoselective cyclopropanation of methylene-substituted saturated heterocycles catalyzed by an iridium-containing cytochrome. After just four rounds of mutagenesis, we identified a variant that forms spiroazetidines, spiropyrrolidines, and spiropiperidines with enantioselectivities up to 99%. These results demonstrate an expeditious route to valuable, rigid, sp3-rich amino acid linchpins.

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Cite This Study

Xu et al. (2025) studied this question.

synapsesocial.com/papers/68c1a78854b1d3bfb60e1436https://doi.org/10.1021/jacs.5c06239
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