Increasing Complexity of a Diterpene Synthase Reaction with a Single Residue Switch
- 26 March 2008
- journal article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 130 (16) , 5400-5401
- https://doi.org/10.1021/ja710524w
Abstract
Terpene synthases often catalyze complex reactions involving intricate series of carbocation intermediates. The resulting, generally cyclical, structures provide initial hydrocarbon frameworks that underlie the astonishing structural diversity of the enormous class of terpenoid natural products (>50,000 known), and these enzymes often mediate the committed step in their particular biosynthetic pathway. Accordingly, how terpene synthases specify product outcome has drawn a great deal of attention. In previous work, we have shown that mutational introduction of a hydroxyl group at specific positions within diterpene synthase active sites can "short circuit" complex cyclization and/or rearrangement reactions, resulting in the production of "simpler"' diterpenes. Here we demonstrate that the converse change, substitution of an Ile for Thr at the relevant position in a native pimaradiene synthase, leads to a dramatic increase in reaction complexity. Product outcome is shifted from the tricyclic pimaradiene to a rearranged tetracycle, aphidicol-15-ene. Thus, the nature of the residue at this position acts as a true switch for product outcome. In addition, the ability of aliphatic residue substitution to enable a more complex reaction emphasizes the importance of substrate conformation imposed by a largely inert active site. Furthermore, the profound plasticity of diterpene synthases exemplified by this single residue switch for product outcome is consistent with the screening/diversity-oriented hypothesis of natural products metabolism.Keywords
This publication has 17 references indexed in Scilit:
- A Single Residue Switch Converts Abietadiene Synthase into a Pimaradiene Specific CyclaseJournal of the American Chemical Society, 2007
- Identification of a Biosynthetic Gene Cluster in Rice for MomilactonesJournal of Biological Chemistry, 2007
- Rational Conversion of Substrate and Product Specificity in a Salvia Monoterpene Synthase: Structural Insights into the Evolution of Terpene Synthase FunctionPlant Cell, 2007
- Following evolution's lead to a single residue switch for diterpene synthase product outcomeProceedings of the National Academy of Sciences, 2007
- Identifying and manipulating structural determinates linking catalytic specificities in terpene synthasesProceedings of the National Academy of Sciences, 2006
- Structural Biology and Chemistry of the Terpenoid CyclasesChemical Reviews, 2006
- Engineering Cotton (+)-δ-Cadinene Synthase to an Altered Function: Germacrene D-4-ol SynthasePublished by Elsevier ,2006
- Identification of Syn-Pimara-7,15-Diene Synthase Reveals Functional Clustering of Terpene Synthases Involved in Rice Phytoalexin/Allelochemical BiosynthesisPlant Physiology, 2004
- A gene cluster for secondary metabolism in oat: Implications for the evolution of metabolic diversity in plantsProceedings of the National Academy of Sciences, 2004
- The Variability of Sesquiterpenes Emitted from Two Zea mays Cultivars Is Controlled by Allelic Variation of Two Terpene Synthase Genes Encoding Stereoselective Multiple Product EnzymesPlant Cell, 2004