Literature DB >> 1444454

Evidence for an essential histidine residue in 4S-limonene synthase and other terpene cyclases.

J I Rajaonarivony1, J Gershenzon, J Miyazaki, R Croteau.   

Abstract

(4S)-Limonene synthase, isolated from glandular trichome secretory cell preparations of Mentha x piperita (peppermint) leaves, catalyzes the metal ion-dependent cyclization of geranyl pyrophosphate, via 3S-linalyl pyrophosphate, to (-)-(4S)-limonene as the principal product. Treatment of this terpene cyclase with the histidine-directed reagent diethyl pyrocarbonate at a concentration of 0.25 mM resulted in 50% loss of enzyme activity, and this activity could be completely restored by treatment of the preparation with 5 mM hydroxylamine. Inhibition with diethyl pyrocarbonate was distinguished from inhibition with thiol-directed reagents by protection studies with histidine and cysteine carried out at varying pH. Inactivation of the cyclase by dye-sensitized photooxidation in the presence of rose bengal gave further indication of the presence of a readily modified histidine residue. Protection of the enzyme against inhibition with diethyl pyrocarbonate was afforded by the substrate geranyl pyrophosphate in the presence of Mn2+, and by the sulfonium ion analog of the linalyl carbocation intermediate of the reaction in the presence of inorganic pyrophosphate plus Mn2+, suggesting that an essential histidine residue is located at or near the active site. Similar studies on the inhibition of other monoterpene and sesquiterpene cyclases with diethyl pyrocarbonate suggest that a histidine residue (or residues) may play an important role in catalysis by this class of enzymes.

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Year:  1992        PMID: 1444454     DOI: 10.1016/0003-9861(92)90246-s

Source DB:  PubMed          Journal:  Arch Biochem Biophys        ISSN: 0003-9861            Impact factor:   4.013


  11 in total

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Authors:  K Back; J Chappell
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3.  TrichOME: a comparative omics database for plant trichomes.

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4.  The maize gene terpene synthase 1 encodes a sesquiterpene synthase catalyzing the formation of (E)-beta-farnesene, (E)-nerolidol, and (E,E)-farnesol after herbivore damage.

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5.  Plant terpenoid synthases: molecular biology and phylogenetic analysis.

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Review 6.  Structural and Chemical Biology of Terpenoid Cyclases.

Authors:  David W Christianson
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7.  Structure of limonene synthase, a simple model for terpenoid cyclase catalysis.

Authors:  David C Hyatt; Buhyun Youn; Yuxin Zhao; Bindu Santhamma; Robert M Coates; Rodney B Croteau; ChulHee Kang
Journal:  Proc Natl Acad Sci U S A       Date:  2007-03-19       Impact factor: 11.205

8.  Cloning of casbene synthase cDNA: evidence for conserved structural features among terpenoid cyclases in plants.

Authors:  C J Mau; C A West
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9.  Functional analysis of (4S)-limonene synthase mutants reveals determinants of catalytic outcome in a model monoterpene synthase.

Authors:  Narayanan Srividya; Edward M Davis; Rodney B Croteau; B Markus Lange
Journal:  Proc Natl Acad Sci U S A       Date:  2015-03-02       Impact factor: 11.205

10.  Biochemical characterization of stromal and thylakoid-bound isoforms of isoprene synthase in willow leaves

Authors: 
Journal:  Plant Physiol       Date:  1998-03       Impact factor: 8.340

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