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A defence-related Olea europaea ß-glucosidase hydrolyses and activates oleuropein into a potent protein cross-linking agent.
Koudounas, Konstantinos; Banilas, Georgios; Michaelidis, Christos; Demoliou, Catherine; Rigas, Stamatis; Hatzopoulos, Polydefkis.
Afiliación
  • Koudounas K; Department of Biotechnology, Agricultural University of Athens, 118 55 Athens, Greece.
  • Banilas G; Department of Biotechnology, Agricultural University of Athens, 118 55 Athens, Greece Department of Oenology and Beverage Technology, Technological Educational Institute of Athens, 12210 Athens, Greece.
  • Michaelidis C; Department of Biotechnology, Agricultural University of Athens, 118 55 Athens, Greece University of Nicosia Research Foundation, University of Nicosia, 1700 Nicosia, Cyprus.
  • Demoliou C; University of Nicosia Research Foundation, University of Nicosia, 1700 Nicosia, Cyprus.
  • Rigas S; Department of Biotechnology, Agricultural University of Athens, 118 55 Athens, Greece.
  • Hatzopoulos P; Department of Biotechnology, Agricultural University of Athens, 118 55 Athens, Greece phat@aua.gr.
J Exp Bot ; 66(7): 2093-106, 2015 Apr.
Article en En | MEDLINE | ID: mdl-25697790
Oleuropein, the major secoiridoid compound in olive, is involved in a sophisticated two-component defence system comprising a ß-glucosidase enzyme that activates oleuropein into a toxic glutaraldehyde-like structure. Although oleuropein deglycosylation studies have been monitored extensively, an oleuropein ß-glucosidase gene has not been characterized as yet. Here, we report the isolation of OeGLU cDNA from olive encoding a ß-glucosidase belonging to the defence-related group of terpenoid-specific glucosidases. In planta recombinant protein expression assays showed that OeGLU deglycosylated and activated oleuropein into a strong protein cross-linker. Homology and docking modelling predicted that OeGLU has a characteristic (ß/α)8 TIM barrel conformation and a typical construction of a pocket-shaped substrate recognition domain composed of conserved amino acids supporting the ß-glucosidase activity and non-conserved residues associated with aglycon specificity. Transcriptional analysis in various olive organs revealed that the gene was developmentally regulated, with its transcript levels coinciding well with the spatiotemporal patterns of oleuropein degradation and aglycon accumulation in drupes. OeGLU upregulation in young organs reflects its prominent role in oleuropein-mediated defence system. High gene expression during drupe maturation implies an additional role in olive secondary metabolism, through the degradation of oleuropein and reutilization of hydrolysis products.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Beta-Glucosidasa / Olea / Iridoides Tipo de estudio: Prognostic_studies Idioma: En Revista: J Exp Bot Asunto de la revista: BOTANICA Año: 2015 Tipo del documento: Article País de afiliación: Grecia

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Beta-Glucosidasa / Olea / Iridoides Tipo de estudio: Prognostic_studies Idioma: En Revista: J Exp Bot Asunto de la revista: BOTANICA Año: 2015 Tipo del documento: Article País de afiliación: Grecia