Polyketide Synthase-Mediated O-Methyloxime Formation in the Biosynthesis of the Oximidine Anticancer Agents

Bacterial trans-acyltransferase polyketide synthases (trans-AT PKSs) are modular megaenzymes that employ unusual catalytic domains to assemble diverse bioactive natural products. One such PKS is responsible for the biosynthesis of the oximidine anticancer agents, oxime-substituted benzolactone enami...

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Veröffentlicht in:ANGEWANDTE CHEMIE-INTERNATIONAL EDITION 2023-08, Vol.62 (34)
Hauptverfasser: Vriens, Eveline, De Ruysscher, Dries, Weir, Angus N.M, Dekimpe, Sofie, Steurs, Gert, Shemy, Ahmed, Persoons, Leentje, Santos, Ana Rita, Williams, Christopher, Daelemans, Dirk, Crump, Matthew P, Voet, Arnout, De Borggraeve, Wim, Lescrinier, Eveline, Masschelein, Joleen
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Sprache:eng
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Zusammenfassung:Bacterial trans-acyltransferase polyketide synthases (trans-AT PKSs) are modular megaenzymes that employ unusual catalytic domains to assemble diverse bioactive natural products. One such PKS is responsible for the biosynthesis of the oximidine anticancer agents, oxime-substituted benzolactone enamides that inhibit vacuolar H+ -ATPases. Here, we describe the identification of the oximidine gene cluster in Pseudomonas baetica and the characterization of four novel oximidine variants, including a structurally simpler intermediate that retains potent anticancer activity. Using a combination of in vivo, in vitro and computational approaches, we experimentally elucidate the oximidine biosynthetic pathway and reveal an unprecedented mechanism for O-methyloxime formation. We show that this process involves a specialized monooxygenase and methyltransferase domain and provide insight into their activity, mechanism and specificity. Our findings expand the catalytic capabilities of trans-AT PKSs and identify potential strategies for the production of novel oximidine analogues.
ISSN:1433-7851