| Literature DB >> 28625788 |
Drew T Wagner1, Jia Zeng1, Constance B Bailey2, Darren C Gay1, Fang Yuan1, Hannah R Manion1, Adrian T Keatinge-Clay3.
Abstract
In an effort to uncover the structural motifs and biosynthetic logic of the relatively uncharacterized trans-acyltransferase polyketide synthases, we have begun the dissection of the enigmatic dehydrating bimodules common in these enzymatic assembly lines. We report the 1.98 Å resolution structure of a ketoreductase (KR) from the first half of a type A dehydrating bimodule and the 2.22 Å resolution structure of a dehydratase (DH) from the second half of a type B dehydrating bimodule. The KR, from the third module of the bacillaene synthase, and the DH, from the tenth module of the difficidin synthase, possess features not observed in structurally characterized homologs. The DH architecture provides clues for how it catalyzes a unique double dehydration. Correlations between the chemistries proposed for dehydrating bimodules and bioinformatic analysis indicate that type A dehydrating bimodules generally produce an α/β-cis alkene moiety, while type B dehydrating bimodules generally produce an α/β-trans, γ/δ-cis diene moiety.Entities:
Keywords: X-ray crystallography; assembly line architecture; bioinformatics; dehydratase; dehydrating bimodule; double dehydration; ketoreductase; modular polyketide synthase; polyketide; trans-acyltransferase polyketide synthase
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Year: 2017 PMID: 28625788 PMCID: PMC5553570 DOI: 10.1016/j.str.2017.05.011
Source DB: PubMed Journal: Structure ISSN: 0969-2126 Impact factor: 5.006