Your browser doesn't support javascript.
loading
The C-Domain of Oleuropein ß-Glucosidase Assists in Protein Folding and Sequesters the Enzyme in Nucleus.
Koudounas, Konstantinos; Thomopoulou, Margarita; Michaelidis, Christos; Zevgiti, Efstathia; Papakostas, Georgios; Tserou, Paraskevi; Daras, Gerasimos; Hatzopoulos, Polydefkis.
Affiliation
  • Koudounas K; Laboratory of Molecular Biology, Department of Biotechnology, Agricultural University of Athens, 118 55 Athens, Greece (K.K., M.T., C.M., E.Z., G.P., P.T., G.D., P.H.).
  • Thomopoulou M; Laboratory of Molecular Biology, Department of Biotechnology, Agricultural University of Athens, 118 55 Athens, Greece (K.K., M.T., C.M., E.Z., G.P., P.T., G.D., P.H.).
  • Michaelidis C; Laboratory of Molecular Biology, Department of Biotechnology, Agricultural University of Athens, 118 55 Athens, Greece (K.K., M.T., C.M., E.Z., G.P., P.T., G.D., P.H.).
  • Zevgiti E; Laboratory of Molecular Biology, Department of Biotechnology, Agricultural University of Athens, 118 55 Athens, Greece (K.K., M.T., C.M., E.Z., G.P., P.T., G.D., P.H.).
  • Papakostas G; Laboratory of Molecular Biology, Department of Biotechnology, Agricultural University of Athens, 118 55 Athens, Greece (K.K., M.T., C.M., E.Z., G.P., P.T., G.D., P.H.).
  • Tserou P; Laboratory of Molecular Biology, Department of Biotechnology, Agricultural University of Athens, 118 55 Athens, Greece (K.K., M.T., C.M., E.Z., G.P., P.T., G.D., P.H.).
  • Daras G; Laboratory of Molecular Biology, Department of Biotechnology, Agricultural University of Athens, 118 55 Athens, Greece (K.K., M.T., C.M., E.Z., G.P., P.T., G.D., P.H.).
  • Hatzopoulos P; Laboratory of Molecular Biology, Department of Biotechnology, Agricultural University of Athens, 118 55 Athens, Greece (K.K., M.T., C.M., E.Z., G.P., P.T., G.D., P.H.) phat@aua.gr.
Plant Physiol ; 174(3): 1371-1383, 2017 Jul.
Article in En | MEDLINE | ID: mdl-28483880
ABSTRACT
Oleuropein, a terpene-derived glycosylated secoiridoid biosynthesized exclusively by members of the Oleaceae family, is involved in a two-component defense system comprising a ß-glucosidase that activates oleuropein into a toxic glutaraldehyde-like structure. Oleuropein and its deglycosylated derivatives have high pharmaceutical interest. In this study we determined that the in planta heterologous expressed OeGLU, an oleuropein-specific ß-glucosidase from olive (Olea europaea), had enzymatic kinetics similar to the olive native enzyme. The C terminus encompassing the nuclear localization signal sequesters the enzyme in the nucleus, and predetermines the protein-protein recognition and homodimerization. Biochemical analysis revealed that OeGLU is a homomultimer with high Mr In silico prediction modeling of the complex structure and bimolecular fluorescence complementation analyses revealed that the C terminus of OeGLU is essential for the proper assembly of an octameric form, a key conformational feature that determines the activity of the enzyme. Our results demonstrate that intrinsic characteristics of the OeGLU ensure separation from oleuropein and keep the dual-partner defensive system conditionally inactive. Upon cell destruction, the dual-partner defense system is activated and olive massively releases the arsenal of defense.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Cell Nucleus / Beta-Glucosidase / Protein Folding / Olea / Iridoids Type of study: Prognostic_studies Language: En Journal: Plant Physiol Year: 2017 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Cell Nucleus / Beta-Glucosidase / Protein Folding / Olea / Iridoids Type of study: Prognostic_studies Language: En Journal: Plant Physiol Year: 2017 Document type: Article