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Molecular basis for azetidine-2-carboxylic acid biosynthesis

  • Technical University of Munich
  • Stockholm University
  • Muséum National d'Histoire Naturelle
  • Institut de Neurosciences de la Timone, Centre National de la Recherche Scientifique - Aix-Marseille University
  • Max Planck Institute for Terrestrial Microbiology
  • Johann Wolfgang Goethe University
  • Myria Biosciences AG
  • Philipps-Universität Marburg
  • Senckenberg Society for Nature Research

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

Azetidine-2-carboxylic acid (AZE) is a long-known plant metabolite. Recently, AZE synthases have been identified in bacterial natural product pathways involving non-ribosomal peptide synthetases. AZE synthases catalyse the intramolecular 4-exo-tet cyclisation of S-adenosylmethionine (SAM), yielding a highly strained heterocycle. Here, we combine structural and biochemical analyses with quantum mechanical calculations and mutagenesis studies to reveal catalytic insights into AZE synthases. The cyclisation of SAM is facilitated by an exceptional substrate conformation and supported by desolvation effects as well as cation-π interactions. In addition, we uncover related SAM lyases in diverse bacterial phyla, suggesting a wider prevalence of AZE-containing metabolites than previously expected. To explore the potential of AZE as a proline mimic in combinatorial biosynthesis, we introduce an AZE synthase into the pyrrolizixenamide pathway and thereby engineer analogues of azabicyclenes. Taken together, our findings provide a molecular framework to understand and exploit SAM-dependent cyclisation reactions.

Original languageEnglish
Article number1348
JournalNature Communications
Volume16
Issue number1
DOIs
StatePublished - Dec 2025

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