Literature DB >> 29570233

Direct production of dihydroxylated sesquiterpenoids by a maize terpene synthase.

Jin Liang1, Jiang Liu1, Reid Brown2, Meirong Jia2, Ke Zhou3, Reuben J Peters2, Qiang Wang1.   

Abstract

The astounding structural and biological diversities of the large class of terpenoid natural products are imparted by both their complex hydrocarbon backbones and further elaboration by the addition of multiple hydroxyl groups, which provide both solubility and specific binding properties. While the role of terpene synthases (TPSs) in generating hydrocarbons with complex backbones is well known, these also are known to generate (singly) hydroxylated products by the addition of water prior to terminating deprotonation. Here a maize sesquiterpene synthase was unexpectedly found to generate dually hydroxylated products directly from (E,E)-farnesyl diphosphate, primarily eudesmane-2,11-diol, along with two closely related structural isomers. The unprecedented formation of these diols was proposed to proceed via initial addition of water to a germacradienyl+ intermediate, followed by protonation of the internal carbon-6,7-double-bond in the resulting hedycarol, with subsequent cyclization and further addition of water to an eudesmolyl+ intermediate. Evidence for the proposed mechanism was provided by labeling studies, as well as site-directed mutagenesis, based on structural modeling, which identified an active site phenylalanine required for the protonation and further elaboration of hedycaryol. This dihydroxylated sesquiterpenoid synthase was specifically expressed in maize roots and induced by pathogen infection, with its major enzymatic product only detected in root exudates or infected roots, suggesting a role in defense. Regardless of the ultimate metabolic fate or physiological role of these diols, this report not only reveals an unanticipated extension of the catalytic prowess of TPSs, but also provides insight into the underlying enzymatic mechanism.
© 2018 The Authors The Plant Journal © 2018 John Wiley & Sons Ltd.

Entities:  

Keywords:  biosynthesis; maize; root; sesquiterpenoid; terpene synthase

Mesh:

Substances:

Year:  2018        PMID: 29570233      PMCID: PMC6020683          DOI: 10.1111/tpj.13901

Source DB:  PubMed          Journal:  Plant J        ISSN: 0960-7412            Impact factor:   6.417


  32 in total

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4.  Identification of a novel hedycaryol synthase gene isolated from Camellia brevistyla flowers and floral scent of Camellia cultivars.

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5.  Terpenoid metabolism in wild-type and transgenic Arabidopsis plants.

Authors:  Asaph Aharoni; Ashok P Giri; Stephan Deuerlein; Frans Griepink; Willem-Jan de Kogel; Francel W A Verstappen; Harrie A Verhoeven; Maarten A Jongsma; Wilfried Schwab; Harro J Bouwmeester
Journal:  Plant Cell       Date:  2003-11-20       Impact factor: 11.277

6.  Protonation of a neutral (S)-beta-bisabolene intermediate is involved in (S)-beta-macrocarpene formation by the maize sesquiterpene synthases TPS6 and TPS11.

Authors:  Tobias G Köllner; Christiane Schnee; Shenghong Li; Ales Svatos; Bernd Schneider; Jonathan Gershenzon; Jörg Degenhardt
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7.  High-level diterpene production by transient expression in Nicotiana benthamiana.

Authors:  Kathleen Brückner; Alain Tissier
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8.  Functional genomic analysis of constitutive and inducible defense responses to Fusarium verticillioides infection in maize genotypes with contrasting ear rot resistance.

Authors:  Alessandra Lanubile; Alberto Ferrarini; Valentina Maschietto; Massimo Delledonne; Adriano Marocco; Diana Bellin
Journal:  BMC Genomics       Date:  2014-08-25       Impact factor: 3.969

9.  The EIMS fragmentation mechanisms of the sesquiterpenes corvol ethers A and B, epi-cubebol and isodauc-8-en-11-ol.

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10.  Emission and Accumulation of Monoterpene and the Key Terpene Synthase (TPS) Associated with Monoterpene Biosynthesis in Osmanthus fragrans Lour.

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Journal:  Front Plant Sci       Date:  2016-01-12       Impact factor: 5.753

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  7 in total

1.  Probing Enzymatic Structure and Function in the Dihydroxylating Sesquiterpene Synthase ZmEDS.

Authors:  Jin Liang; Liping Wang; Jiang Liu; Qinqin Shen; Jingye Fu; Reuben J Peters; Qiang Wang
Journal:  Biochemistry       Date:  2020-06-28       Impact factor: 3.162

2.  The reconstruction and biochemical characterization of ancestral genes furnish insights into the evolution of terpene synthase function in the Poaceae.

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3.  Engineering of Ancestors as a Tool to Elucidate Structure, Mechanism, and Specificity of Extant Terpene Cyclase.

Authors:  Karen Schriever; Patricia Saenz-Mendez; Reshma Srilakshmi Rudraraju; Natalie M Hendrikse; Elton P Hudson; Antonino Biundo; Robert Schnell; Per-Olof Syrén
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Review 4.  Hedycaryol - Central Intermediates in Sesquiterpene Biosynthesis, Part II.

Authors:  Houchao Xu; Jeroen S Dickschat
Journal:  Chemistry       Date:  2022-03-21       Impact factor: 5.020

Review 5.  Biosynthesis and function of terpenoid defense compounds in maize (Zea mays).

Authors:  Anna K Block; Martha M Vaughan; Eric A Schmelz; Shawn A Christensen
Journal:  Planta       Date:  2018-09-06       Impact factor: 4.116

6.  In planta and in silico characterization of five sesquiterpene synthases from Vitis vinifera (cv. Shiraz) berries.

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Journal:  Planta       Date:  2018-08-22       Impact factor: 4.116

7.  The foxtail millet (Setaria italica) terpene synthase gene family.

Authors:  Prema S Karunanithi; David I Berrios; Sadira Wang; John Davis; Tong Shen; Oliver Fiehn; Julin N Maloof; Philipp Zerbe
Journal:  Plant J       Date:  2020-05-03       Impact factor: 6.417

  7 in total

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