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Engineered Cytochrome P450-Catalyzed Oxidative Biaryl Coupling Reaction Provides a Scalable Entry into Arylomycin Antibiotics.

Carmela MolinaroYukie KawasakiGeorge WanyoikeTaiki NishiokaTsuyoshi YamamotoBrad SnedecorSarah J RobinsonFrancis Gosselin
Published in: Journal of the American Chemical Society (2022)
We report herein the first example of a cytochrome P450-catalyzed oxidative carbon-carbon coupling process for a scalable entry into arylomycin antibiotic cores. Starting from wild-type hydroxylating cytochrome P450 enzymes and engineered Escherichia coli , a combination of enzyme engineering, random mutagenesis, and optimization of reaction conditions generated a P450 variant that affords the desired arylomycin core 2d in 84% assay yield. Furthermore, this process was demonstrated as a viable route for the production of the arylomycin antibiotic core on the gram scale. Finally, this new entry affords a viable, scalable, and practical route for the synthesis of novel Gram-negative antibiotics.
Keyphrases
  • gram negative
  • room temperature
  • multidrug resistant
  • wild type
  • escherichia coli
  • electron transfer
  • klebsiella pneumoniae
  • crispr cas
  • ionic liquid
  • high throughput
  • single cell