Giant polyketide synthase enzymes in the biosynthesis of giant marine polyether toxins.
basic_science · Level V
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- Record sourced from PubMed, PMID 39116217.
- Also identified by DOI 10.1126/science.ado3290 and PMC identifier 11416037.
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Abstract
<i>Prymnesium parvum</i> are harmful haptophyte algae that cause massive environmental fish kills. Their polyketide polyether toxins, the prymnesins, are among the largest nonpolymeric compounds in nature and have biosynthetic origins that have remained enigmatic for more than 40 years. In this work, we report the "PKZILLAs," massive <i>P. parvum</i> polyketide synthase (PKS) genes that have evaded previous detection. PKZILLA-1 and -2 encode giant protein products of 4.7 and 3.2 megadaltons that have 140 and 99 enzyme domains. Their predicted polyene product matches the proposed pre-prymnesin precursor of the 90-carbon-backbone A-type prymnesins. We further characterize the variant PKZILLA-B1, which is responsible for the shorter B-type analog prymnesin-B1, from <i>P. parvum</i> RCC3426 and thus establish a general model of haptophyte polyether biosynthetic logic. This work expands expectations of genetic and enzymatic size limits in biology.
Medical subject headings
- Haptophyta
- Polyether Toxins
- Polyketide Synthases