Enzymology of Pyran Ring A Formation in Salinomycin Biosynthesis

Tetrahydropyran rings are a common feature of complex polyketide natural products, but much remains to be learned about the enzymology of their formation. The enzyme SalBIII from the salinomycin biosynthetic pathway resembles other polyether epoxide hydrolases/cyclases of the MonB family, but SalBII...

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Veröffentlicht in:Angewandte Chemie 2015-11, Vol.127 (46), p.13826-13829
Hauptverfasser: Luhavaya, Hanna, Dias, Marcio V. B., Williams, Simon R., Hong, Hui, de Oliveira, Luciana G., Leadlay, Peter F.
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Sprache:eng
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Zusammenfassung:Tetrahydropyran rings are a common feature of complex polyketide natural products, but much remains to be learned about the enzymology of their formation. The enzyme SalBIII from the salinomycin biosynthetic pathway resembles other polyether epoxide hydrolases/cyclases of the MonB family, but SalBIII plays no role in the conventional cascade of ring opening/closing. Mutation in the salBIII gene gave a metabolite in which ring A is not formed. Using this metabolite in vitro as a substrate analogue, SalBIII has been shown to form pyran ring A. We have determined the X‐ray crystal structure of SalBIII, and structure‐guided mutagenesis of putative active‐site residues has identified Asp38 and Asp104 as an essential catalytic dyad. The demonstrated pyran synthase activity of SalBIII further extends the impressive catalytic versatility of α+β barrel fold proteins. Nimm zwei: Röntgen‐Kristallographie, Mutagenese und In‐vitro‐Studien identifizieren das Enzym SalBIII im Salinomycin‐Biosynthesepfad als eine Pyransynthase und zeigen die Bedeutung einer katalytischen Dyade. SalBIII ist ein vielversprechender Kandidat für chemoenzymatische Synthesen.
ISSN:0044-8249
1521-3757
DOI:10.1002/ange.201507090