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In vitro elucidation of the crucial but complex oxidative tailoring steps in rufomycin biosynthesis enables one pot conversion of rufomycin B to rufomycin C.

Gustavo Perez OrtizJohn D SiddaEmmanuel L C de Los SantosCatherine B HubertSarah M Barry
Published in: Chemical communications (Cambridge, England) (2021)
The antimycobacterial peptides, rufomycins, have their antibiotic activity conferred by oxidative tailoring of the cyclic peptide. Here we elucidate the roles of cytochrome P450s RufS and RufM in regioselective epoxidation and alkyl oxidation respectively and demonstrate how RufM and RufS create a complex product profile dependent on redox partner availability. Finally, we report the in vitro one pot conversion of rufomycin B to rufomycin C.
Keyphrases
  • hydrogen peroxide
  • amino acid
  • electron transfer
  • cell wall