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Uncovering the origin of Z-configured double bonds in polyketides: intermediate E-double bond formation during borrelidin biosynthesis

Authors :
Kandziora, Nadine
Andexer, Jennifer N.
Moss, Steven J.
Wilkinson, Barrie
Leadlay, Peter F.
Hahn, Frank
Source :
Chemical Science 5 (2014), Nr. 9
Publication Year :
2014
Publisher :
Cambridge : Royal Society of Chemistry, 2014.

Abstract

Formation of Z-configured double bonds in reduced polyketides is uncommon and their origins have not been extensively studied. To investigate the origin of the Z-configured double bond in the macrolide borrelidin, the recombinant dehydratase domains BorDH2 and B0rDH3 were assayed with a synthetic analogue of the predicted tetraketide substrate. The configuration of the dehydrated products was determined to be E in both cases by comparison to synthetic standards. Detailed NMR spectroscopic analysis of the biosynthetic intermediate pre-borrelidin confirmed the E,E-configuration of the fulllength polyketide synthase product. In contrast to a previously-proposed hypothesis, our results show that in this case the Z-configured double bond is not formed via dehydration from a 3 L-configured precursor, but rather as the result of a later isomerization process. Marie Curie programme of the European Union Emmy Noether programme of the Deutsche Forschungsgemeinschaft DAAD

Details

Language :
English
Database :
OpenAIRE
Journal :
Chemical Science 5 (2014), Nr. 9
Accession number :
edsair.doi.dedup.....2034a131a97ea5c6cfffcaea7be93fdb
Full Text :
https://doi.org/10.15488/110