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A Single Flavoenzyme Forges the Pentacyclic Skeleton of α-Cyclopiazonic Acid

  • Minjun Wang
  • , Ting Cheng
  • , Wenyuan Zhang
  • , You Ming Kuo
  • , Yuexuan Li
  • , Yue Yan
  • , Po Yun Hisao
  • , Chin Yuan Chang*
  • , Nan Wang*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

The biosynthesis of α-cyclopiazonic acid (α-CPA) is notable for generating a complex pentacyclic scaffold using a minimal three-enzyme pathway. The final step, catalyzed by CpaO, converts linear β-CPA into α-CPA through an enigmatic oxidative cyclization. Here, we report the structural and mechanistic characterization of CpaO. X-ray crystallography reveals a three-domain architecture belonging to the flavin-dependent amine oxidase (FAO) superfamily, while CpaO represents a previously undescribed subfamily distinguished by an essential, covalently linked FAD (8α-N1-histidyl) and divergent substrate-binding domains. High-resolution structures of the CpaO/β-CPA complex, validated by mutagenesis, identify key active-site residues (His165, Trp317, Asp412, Tyr283) that anchor the substrate. Combined structural, mutational, and molecular dynamics analyses further suggest distinct yet cooperative roles for Tyr283 and Ser167 in modulating substrate access and subsequent binding. Derived from these data, we propose a stereospecific mechanism initiated by FAD-mediated hydride abstraction, which triggers a bicyclization cascade to form the final C and D rings. This study resolves a long-standing biosynthetic mystery and expands the catalytic repertoire of flavoenzymes, offering a template for the chemoenzymatic synthesis of complex indole alkaloids.

Original languageEnglish
Pages (from-to)10725-10733
Number of pages9
JournalJournal of the American Chemical Society
Volume148
Issue number10
DOIs
StatePublished - 18 Mar 2026

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