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Structural Basis of Polyketide Synthase O-Methylation

  • Meredith A. Skiba
  • , Marissa M. Bivins
  • , John R. Schultz
  • , Steffen M. Bernard
  • , William D. Fiers
  • , Qingyun Dan
  • , Sarang Kulkarni
  • , Peter Wipf
  • , William H. Gerwick
  • , David H. Sherman
  • , Courtney C. Aldrich
  • , Janet L. Smith

Research output: Contribution to journalArticlepeer-review

Abstract

Modular type I polyketide synthases (PKSs) produce some of the most chemically complex metabolites in nature through a series of multienzyme modules. Each module contains a variety of catalytic domains to selectively tailor the growing molecule. PKS O-methyltransferases (O-MTs) are predicted to methylate β-hydroxyl or β-keto groups, but their activity and structure have not been reported. We determined the domain boundaries and characterized the catalytic activity and structure of the StiD and StiE O-MTs, which methylate opposite β-hydroxyl stereocenters in the myxobacterial stigmatellin biosynthetic pathway. Substrate stereospecificity was demonstrated for the StiD O-MT. Key catalytic residues were identified in the crystal structures and investigated in StiE O-MT via site-directed mutagenesis and further validated with the cyanobacterial CurL O-MT from the curacin biosynthetic pathway. Initial structural and biochemical analysis of PKS O-MTs supplies a new chemoenzymatic tool, with the unique ability to selectively modify hydroxyl groups during polyketide biosynthesis.

Original languageEnglish (US)
Pages (from-to)3221-3228
Number of pages8
JournalACS Chemical Biology
Volume13
Issue number12
DOIs
StatePublished - Dec 21 2018

Bibliographical note

Publisher Copyright:
© Copyright 2018 American Chemical Society.

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