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Article Dans Une Revue Journal of Biological Chemistry Année : 2014

Molecular characterization of Quinate and Shikimate metabolism in Populus trichocarpa

J. Guo
  • Fonction : Auteur
Y. Carrington
  • Fonction : Auteur
J. Ehlting
  • Fonction : Auteur

Résumé

Background: Shikimate is essential for protein biosynthesis. Quinate and its derivatives are protective secondary metabolites. Results: Members of the same gene family encode enzymes with either shikimate or quinate dehydrogenase activity. Conclusion: The molecular genetic basis of plant quinate metabolism has been unraveled in vitro. Significance: Identifying quinate metabolic enzymes will allow testing its ecological function and may enable biotechnological applications. The shikimate pathway leads to the biosynthesis of aromatic amino acids essential for protein biosynthesis and the production of a wide array of plant secondary metabolites. Among them, quinate is an astringent feeding deterrent that can be formed in a single step reaction from 3-dehydroquinate catalyzed by quinate dehydrogenase (QDH). 3-Dehydroquinate is also the substrate for shikimate biosynthesis through the sequential actions of dehydroquinate dehydratase (DQD) and shikimate dehydrogenase (SDH) contained in a single protein in plants. The reaction mechanism of QDH resembles that of SDH. The poplar genome encodes five DQD/SDH-like genes (Poptr1 to Poptr5), which have diverged into two distinct groups based on sequence analysis and protein structure prediction. In vitro biochemical assays proved that Poptr1 and -5 are true DQD/SDHs, whereas Poptr2 and -3 instead have QDH activity with only residual DQD/SDH activity. Poplar DQD/SDHs have distinct expression profiles suggesting separate roles in protein and lignin biosynthesis. Also, the QDH genes are differentially expressed. In summary, quinate (secondary metabolism) and shikimate (primary metabolism) metabolic activities are encoded by distinct members of the same gene family, each having different physiological functions.

Dates et versions

hal-01253900 , version 1 (11-01-2016)

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J. Guo, Y. Carrington, A. Alber, J. Ehlting. Molecular characterization of Quinate and Shikimate metabolism in Populus trichocarpa. Journal of Biological Chemistry, 2014, 289 (34), pp.23846-23858. ⟨10.1074/jbc.M114.558536⟩. ⟨hal-01253900⟩
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