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Biochemical quantitation of the eIF5A hypusination in Arabidopsis thaliana uncovers ABA-dependent regulation

The eukaryotic translation elongation factor eIF5A is the only protein known to contain the unusual amino acid hypusine which is essential for its biological activity. This post-translational modification is achieved by the sequential action of the enzymes deoxyhypusine synthase (DHS) and deoxyhypus...

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Autores principales: Belda-Palazón, Borja, Nohales, María A., Rambla, José L., Aceña, José L., Delgado, Oscar, Fustero, Santos, Martínez, M. Carmen, Granell, Antonio, Carbonell, Juan, Ferrando, Alejandro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4032925/
https://www.ncbi.nlm.nih.gov/pubmed/24904603
http://dx.doi.org/10.3389/fpls.2014.00202
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author Belda-Palazón, Borja
Nohales, María A.
Rambla, José L.
Aceña, José L.
Delgado, Oscar
Fustero, Santos
Martínez, M. Carmen
Granell, Antonio
Carbonell, Juan
Ferrando, Alejandro
author_facet Belda-Palazón, Borja
Nohales, María A.
Rambla, José L.
Aceña, José L.
Delgado, Oscar
Fustero, Santos
Martínez, M. Carmen
Granell, Antonio
Carbonell, Juan
Ferrando, Alejandro
author_sort Belda-Palazón, Borja
collection PubMed
description The eukaryotic translation elongation factor eIF5A is the only protein known to contain the unusual amino acid hypusine which is essential for its biological activity. This post-translational modification is achieved by the sequential action of the enzymes deoxyhypusine synthase (DHS) and deoxyhypusine hydroxylase (DOHH). The crucial molecular function of eIF5A during translation has been recently elucidated in yeast and it is expected to be fully conserved in every eukaryotic cell, however the functional description of this pathway in plants is still sparse. The genetic approaches with transgenic plants for either eIF5A overexpression or antisense have revealed some activities related to the control of cell death processes but the molecular details remain to be characterized. One important aspect of fully understanding this pathway is the biochemical description of the hypusine modification system. Here we have used recombinant eIF5A proteins either modified by hypusination or non-modified to establish a bi-dimensional electrophoresis (2D-E) profile for the three eIF5A protein isoforms and their hypusinated or unmodified proteoforms present in Arabidopsis thaliana. The combined use of the recombinant 2D-E profile together with 2D-E/western blot analysis from whole plant extracts has provided a quantitative approach to measure the hypusination status of eIF5A. We have used this information to demonstrate that treatment with the hormone abscisic acid produces an alteration of the hypusine modification system in Arabidopsis thaliana. Overall this study presents the first biochemical description of the post-translational modification of eIF5A by hypusination which will be functionally relevant for future studies related to the characterization of this pathway in Arabidopsis thaliana.
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spelling pubmed-40329252014-06-05 Biochemical quantitation of the eIF5A hypusination in Arabidopsis thaliana uncovers ABA-dependent regulation Belda-Palazón, Borja Nohales, María A. Rambla, José L. Aceña, José L. Delgado, Oscar Fustero, Santos Martínez, M. Carmen Granell, Antonio Carbonell, Juan Ferrando, Alejandro Front Plant Sci Plant Science The eukaryotic translation elongation factor eIF5A is the only protein known to contain the unusual amino acid hypusine which is essential for its biological activity. This post-translational modification is achieved by the sequential action of the enzymes deoxyhypusine synthase (DHS) and deoxyhypusine hydroxylase (DOHH). The crucial molecular function of eIF5A during translation has been recently elucidated in yeast and it is expected to be fully conserved in every eukaryotic cell, however the functional description of this pathway in plants is still sparse. The genetic approaches with transgenic plants for either eIF5A overexpression or antisense have revealed some activities related to the control of cell death processes but the molecular details remain to be characterized. One important aspect of fully understanding this pathway is the biochemical description of the hypusine modification system. Here we have used recombinant eIF5A proteins either modified by hypusination or non-modified to establish a bi-dimensional electrophoresis (2D-E) profile for the three eIF5A protein isoforms and their hypusinated or unmodified proteoforms present in Arabidopsis thaliana. The combined use of the recombinant 2D-E profile together with 2D-E/western blot analysis from whole plant extracts has provided a quantitative approach to measure the hypusination status of eIF5A. We have used this information to demonstrate that treatment with the hormone abscisic acid produces an alteration of the hypusine modification system in Arabidopsis thaliana. Overall this study presents the first biochemical description of the post-translational modification of eIF5A by hypusination which will be functionally relevant for future studies related to the characterization of this pathway in Arabidopsis thaliana. Frontiers Media S.A. 2014-05-16 /pmc/articles/PMC4032925/ /pubmed/24904603 http://dx.doi.org/10.3389/fpls.2014.00202 Text en Copyright © 2014 Belda-Palazón, Nohales, Rambla, Aceña, Delgado, Fustero, Martínez, Granell, Carbonell and Ferrando. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Belda-Palazón, Borja
Nohales, María A.
Rambla, José L.
Aceña, José L.
Delgado, Oscar
Fustero, Santos
Martínez, M. Carmen
Granell, Antonio
Carbonell, Juan
Ferrando, Alejandro
Biochemical quantitation of the eIF5A hypusination in Arabidopsis thaliana uncovers ABA-dependent regulation
title Biochemical quantitation of the eIF5A hypusination in Arabidopsis thaliana uncovers ABA-dependent regulation
title_full Biochemical quantitation of the eIF5A hypusination in Arabidopsis thaliana uncovers ABA-dependent regulation
title_fullStr Biochemical quantitation of the eIF5A hypusination in Arabidopsis thaliana uncovers ABA-dependent regulation
title_full_unstemmed Biochemical quantitation of the eIF5A hypusination in Arabidopsis thaliana uncovers ABA-dependent regulation
title_short Biochemical quantitation of the eIF5A hypusination in Arabidopsis thaliana uncovers ABA-dependent regulation
title_sort biochemical quantitation of the eif5a hypusination in arabidopsis thaliana uncovers aba-dependent regulation
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4032925/
https://www.ncbi.nlm.nih.gov/pubmed/24904603
http://dx.doi.org/10.3389/fpls.2014.00202
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