| Literature DB >> 26641306 |
Matthew Anttila1, Wendy Strangman1, Robert York1, Carmelo Tomas1, Jeffrey L C Wright1.
Abstract
Understanding the biosynthesis of dinoflagellate polyketides presents many unique challenges. Because of the remaining hurdles to dinoflagellate genome sequencing, precursor labeling studies remain the only viable way to investigate dinoflagellate biosynthesis. However, prior studies have shown that polyketide chain assembly does not follow any of the established processes. Additionally, acetate, the common precursor for polyketides, is frequently scrambled, thus compromising interpretation. These factors are further compounded by low production yields of the compounds of interest. A recent report on the biosynthesis of spirolides, a group belonging to the growing class of toxic spiroimines, provided some insight into the polyketide assembly process based on acetate labeling studies, but many details were left uncertain. By feeding (13)C methyl-labeled methionine to cultures of Alexandrium ostenfeldii, the producing organism of 13-desmethylspirolide C, and application of the odd-even methylation rule, the complete biosynthetic pathway has been established.Entities:
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Year: 2015 PMID: 26641306 DOI: 10.1021/acs.jnatprod.5b00869
Source DB: PubMed Journal: J Nat Prod ISSN: 0163-3864 Impact factor: 4.050