4.1 Article

The biosynthesis of teicoplanin-type glycopeptide antibiotics:: Assignment of p450 mono-oxygenases to side chain Cyclizations of glycopeptide a47934

Journal

CHEMISTRY & BIOLOGY
Volume 14, Issue 9, Pages 1078-1089

Publisher

CELL PRESS
DOI: 10.1016/j.chembiol.2007.08.014

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Streptomyces toyocaensis produces A47934, a teicoplanin-like type-IV glycopeptide with antibiotic activity against methicillin-resistant Staphylococcus aureus. A47934 differs from the type-I vancomycin glycopeptides, which possess a tricyclic peptide backbone, by the presence of an additional ring closure between the aromatic amino acids 1 and 3. To elucidate the order of crosslinking reactions, P450 monooxygenase-inactivation mutants (Delta staF, Delta staG, Delta staH, and Delta staJ) of the A47934 producer were generated, and the accumulated intermediates were analyzed. Thus, the formation of each crosslink could unambiguously be assigned to a specific oxygenase. The structure of the released intermediates from the wild-type non-ribosomal peptide synthetase assembly line facilitated the determination of the cyclization order. Unexpectedly, the additional ring closure in A47934, catalyzed by StaG, is the second oxygenase reaction.

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