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The Arabidopsis TOR Kinase Specifically Regulates the Expression of Nuclear Genes Coding for Plastidic Ribosomal Proteins and the Phosphorylation of the Cytosolic Ribosomal Protein S6

Protein translation is an energy consuming process that has to be fine-tuned at both the cell and organism levels to match the availability of resources. The target of rapamycin kinase (TOR) is a key regulator of a large range of biological processes in response to environmental cues. In this study,...

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Autores principales: Dobrenel, Thomas, Mancera-Martínez, Eder, Forzani, Céline, Azzopardi, Marianne, Davanture, Marlène, Moreau, Manon, Schepetilnikov, Mikhail, Chicher, Johana, Langella, Olivier, Zivy, Michel, Robaglia, Christophe, Ryabova, Lyubov A., Hanson, Johannes, Meyer, Christian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5100631/
https://www.ncbi.nlm.nih.gov/pubmed/27877176
http://dx.doi.org/10.3389/fpls.2016.01611
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author Dobrenel, Thomas
Mancera-Martínez, Eder
Forzani, Céline
Azzopardi, Marianne
Davanture, Marlène
Moreau, Manon
Schepetilnikov, Mikhail
Chicher, Johana
Langella, Olivier
Zivy, Michel
Robaglia, Christophe
Ryabova, Lyubov A.
Hanson, Johannes
Meyer, Christian
author_facet Dobrenel, Thomas
Mancera-Martínez, Eder
Forzani, Céline
Azzopardi, Marianne
Davanture, Marlène
Moreau, Manon
Schepetilnikov, Mikhail
Chicher, Johana
Langella, Olivier
Zivy, Michel
Robaglia, Christophe
Ryabova, Lyubov A.
Hanson, Johannes
Meyer, Christian
author_sort Dobrenel, Thomas
collection PubMed
description Protein translation is an energy consuming process that has to be fine-tuned at both the cell and organism levels to match the availability of resources. The target of rapamycin kinase (TOR) is a key regulator of a large range of biological processes in response to environmental cues. In this study, we have investigated the effects of TOR inactivation on the expression and regulation of Arabidopsis ribosomal proteins at different levels of analysis, namely from transcriptomic to phosphoproteomic. TOR inactivation resulted in a coordinated down-regulation of the transcription and translation of nuclear-encoded mRNAs coding for plastidic ribosomal proteins, which could explain the chlorotic phenotype of the TOR silenced plants. We have identified in the 5′ untranslated regions (UTRs) of this set of genes a conserved sequence related to the 5′ terminal oligopyrimidine motif, which is known to confer translational regulation by the TOR kinase in other eukaryotes. Furthermore, the phosphoproteomic analysis of the ribosomal fraction following TOR inactivation revealed a lower phosphorylation of the conserved Ser240 residue in the C-terminal region of the 40S ribosomal protein S6 (RPS6). These results were confirmed by Western blot analysis using an antibody that specifically recognizes phosphorylated Ser240 in RPS6. Finally, this antibody was used to follow TOR activity in plants. Our results thus uncover a multi-level regulation of plant ribosomal genes and proteins by the TOR kinase.
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spelling pubmed-51006312016-11-22 The Arabidopsis TOR Kinase Specifically Regulates the Expression of Nuclear Genes Coding for Plastidic Ribosomal Proteins and the Phosphorylation of the Cytosolic Ribosomal Protein S6 Dobrenel, Thomas Mancera-Martínez, Eder Forzani, Céline Azzopardi, Marianne Davanture, Marlène Moreau, Manon Schepetilnikov, Mikhail Chicher, Johana Langella, Olivier Zivy, Michel Robaglia, Christophe Ryabova, Lyubov A. Hanson, Johannes Meyer, Christian Front Plant Sci Plant Science Protein translation is an energy consuming process that has to be fine-tuned at both the cell and organism levels to match the availability of resources. The target of rapamycin kinase (TOR) is a key regulator of a large range of biological processes in response to environmental cues. In this study, we have investigated the effects of TOR inactivation on the expression and regulation of Arabidopsis ribosomal proteins at different levels of analysis, namely from transcriptomic to phosphoproteomic. TOR inactivation resulted in a coordinated down-regulation of the transcription and translation of nuclear-encoded mRNAs coding for plastidic ribosomal proteins, which could explain the chlorotic phenotype of the TOR silenced plants. We have identified in the 5′ untranslated regions (UTRs) of this set of genes a conserved sequence related to the 5′ terminal oligopyrimidine motif, which is known to confer translational regulation by the TOR kinase in other eukaryotes. Furthermore, the phosphoproteomic analysis of the ribosomal fraction following TOR inactivation revealed a lower phosphorylation of the conserved Ser240 residue in the C-terminal region of the 40S ribosomal protein S6 (RPS6). These results were confirmed by Western blot analysis using an antibody that specifically recognizes phosphorylated Ser240 in RPS6. Finally, this antibody was used to follow TOR activity in plants. Our results thus uncover a multi-level regulation of plant ribosomal genes and proteins by the TOR kinase. Frontiers Media S.A. 2016-11-07 /pmc/articles/PMC5100631/ /pubmed/27877176 http://dx.doi.org/10.3389/fpls.2016.01611 Text en Copyright © 2016 Dobrenel, Mancera-Martínez, Forzani, Azzopardi, Davanture, Moreau, Schepetilnikov, Chicher, Langella, Zivy, Robaglia, Ryabova, Hanson and Meyer. http://creativecommons.org/licenses/by/4.0/ 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
Dobrenel, Thomas
Mancera-Martínez, Eder
Forzani, Céline
Azzopardi, Marianne
Davanture, Marlène
Moreau, Manon
Schepetilnikov, Mikhail
Chicher, Johana
Langella, Olivier
Zivy, Michel
Robaglia, Christophe
Ryabova, Lyubov A.
Hanson, Johannes
Meyer, Christian
The Arabidopsis TOR Kinase Specifically Regulates the Expression of Nuclear Genes Coding for Plastidic Ribosomal Proteins and the Phosphorylation of the Cytosolic Ribosomal Protein S6
title The Arabidopsis TOR Kinase Specifically Regulates the Expression of Nuclear Genes Coding for Plastidic Ribosomal Proteins and the Phosphorylation of the Cytosolic Ribosomal Protein S6
title_full The Arabidopsis TOR Kinase Specifically Regulates the Expression of Nuclear Genes Coding for Plastidic Ribosomal Proteins and the Phosphorylation of the Cytosolic Ribosomal Protein S6
title_fullStr The Arabidopsis TOR Kinase Specifically Regulates the Expression of Nuclear Genes Coding for Plastidic Ribosomal Proteins and the Phosphorylation of the Cytosolic Ribosomal Protein S6
title_full_unstemmed The Arabidopsis TOR Kinase Specifically Regulates the Expression of Nuclear Genes Coding for Plastidic Ribosomal Proteins and the Phosphorylation of the Cytosolic Ribosomal Protein S6
title_short The Arabidopsis TOR Kinase Specifically Regulates the Expression of Nuclear Genes Coding for Plastidic Ribosomal Proteins and the Phosphorylation of the Cytosolic Ribosomal Protein S6
title_sort arabidopsis tor kinase specifically regulates the expression of nuclear genes coding for plastidic ribosomal proteins and the phosphorylation of the cytosolic ribosomal protein s6
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5100631/
https://www.ncbi.nlm.nih.gov/pubmed/27877176
http://dx.doi.org/10.3389/fpls.2016.01611
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