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Probing the mechanism of 1,4-conjugate elimination reactions catalyzed by terpene synthases.


ABSTRACT: The reaction mechanisms of (E)-?-farnesene synthase (EBFS) and isoprene synthase (ISPS), enzymes that catalyze a formal regiospecific 1,4-conjugate elimination of hydrogen diphosphate from (E,E)-farnesyl and dimethylallyl diphosphate (FDP and DMADP) to generate the semiochemicals (E)-?-farnesene and isoprene, respectively, were probed with substrate analogs and kinetic measurements. The results support stepwise reaction mechanisms through analogous enzyme-bound allylic cationic intermediates. For EBFS, we demonstrate that the elimination reaction can proceed via the enzyme-bound intermediate trans-nerolidyl diphosphate, while for ISPS the intermediacy of 2-methylbut-3-enyl 2-diphosphate can be inferred from the product outcome when deuterated DMADPs are used as substrates. Possible implications derived from the mechanistic details of the EBFS-catalyzed reaction for the evolution of sesquiterpene synthases are discussed.

SUBMITTER: Faraldos JA 

PROVIDER: S-EPMC3530649 | biostudies-literature | 2012 Dec

REPOSITORIES: biostudies-literature

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Probing the mechanism of 1,4-conjugate elimination reactions catalyzed by terpene synthases.

Faraldos Juan A JA   Gonzalez Veronica V   Li Amang A   Yu Fanglei F   Köksal Mustafa M   Christianson David W DW   Allemann Rudolf K RK  

Journal of the American Chemical Society 20121211 51


The reaction mechanisms of (E)-β-farnesene synthase (EBFS) and isoprene synthase (ISPS), enzymes that catalyze a formal regiospecific 1,4-conjugate elimination of hydrogen diphosphate from (E,E)-farnesyl and dimethylallyl diphosphate (FDP and DMADP) to generate the semiochemicals (E)-β-farnesene and isoprene, respectively, were probed with substrate analogs and kinetic measurements. The results support stepwise reaction mechanisms through analogous enzyme-bound allylic cationic intermediates. Fo  ...[more]

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