Publication | Closed Access
Molecular Basis for Stellatic Acid Biosynthesis: A Genome Mining Approach for Discovery of Sesterterpene Synthases
92
Citations
20
References
2015
Year
Bioorganic ChemistryEngineeringMolecular BiologyChemical BiologyDiverse SesterterpenoidsBiosynthesisBiochemical TaxonomyNew Sesterterpene SynthaseSesterterpene SynthasesNatural Product BiosynthesisAlcohol DehydrogenasesBiotransformationAldehyde DehydrogenaseBiochemistryBiocatalysisEmericella VariecolorNatural Product SynthesisFunctional GenomicsGenome Mining ApproachBioinformaticsStellatic Acid BiosynthesisNatural SciencesSynthetic BiologyPathway Engineering
The search for a new sesterterpene synthase in the genome of Emericella variecolor, which reportedly produces diverse sesterterpenoids, is described. One gene product (a chimeric protein with prenyltransferase and terpene cyclase domains) led to the synthesis of a novel tricyclic sesterterpene, stellata-2,6,19-triene (1), from DMAPP and IPP, and the hydrocarbon was further transformed into stellatic acid (2) by cytochrome P450 monooxygenase encoded by the gene adjacent to the sesterterpene synthase gene.
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