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ROS-Mediated Inhibition of S-nitrosoglutathione Reductase Contributes to the Activation of Anti-oxidative Mechanisms

Nitric oxide (NO) has emerged as a signaling molecule in plants being involved in diverse physiological processes like germination, root growth, stomata closing and response to biotic and abiotic stress. S-nitrosoglutathione (GSNO) as a biological NO donor has a very important function in NO signali...

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Autores principales: Kovacs, Izabella, Holzmeister, Christian, Wirtz, Markus, Geerlof, Arie, Fröhlich, Thomas, Römling, Gaby, Kuruthukulangarakoola, Gitto T., Linster, Eric, Hell, Rüdiger, Arnold, Georg J., Durner, Jörg, Lindermayr, 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/PMC5102900/
https://www.ncbi.nlm.nih.gov/pubmed/27891135
http://dx.doi.org/10.3389/fpls.2016.01669
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author Kovacs, Izabella
Holzmeister, Christian
Wirtz, Markus
Geerlof, Arie
Fröhlich, Thomas
Römling, Gaby
Kuruthukulangarakoola, Gitto T.
Linster, Eric
Hell, Rüdiger
Arnold, Georg J.
Durner, Jörg
Lindermayr, Christian
author_facet Kovacs, Izabella
Holzmeister, Christian
Wirtz, Markus
Geerlof, Arie
Fröhlich, Thomas
Römling, Gaby
Kuruthukulangarakoola, Gitto T.
Linster, Eric
Hell, Rüdiger
Arnold, Georg J.
Durner, Jörg
Lindermayr, Christian
author_sort Kovacs, Izabella
collection PubMed
description Nitric oxide (NO) has emerged as a signaling molecule in plants being involved in diverse physiological processes like germination, root growth, stomata closing and response to biotic and abiotic stress. S-nitrosoglutathione (GSNO) as a biological NO donor has a very important function in NO signaling since it can transfer its NO moiety to other proteins (trans-nitrosylation). Such trans-nitrosylation reactions are equilibrium reactions and depend on GSNO level. The breakdown of GSNO and thus the level of S-nitrosylated proteins are regulated by GSNO-reductase (GSNOR). In this way, this enzyme controls S-nitrosothiol levels and regulates NO signaling. Here we report that Arabidopsis thaliana GSNOR activity is reversibly inhibited by H(2)O(2) in vitro and by paraquat-induced oxidative stress in vivo. Light scattering analyses of reduced and oxidized recombinant GSNOR demonstrated that GSNOR proteins form dimers under both reducing and oxidizing conditions. Moreover, mass spectrometric analyses revealed that H(2)O(2)-treatment increased the amount of oxidative modifications on Zn(2+)-coordinating Cys47 and Cys177. Inhibition of GSNOR results in enhanced levels of S-nitrosothiols followed by accumulation of glutathione. Moreover, transcript levels of redox-regulated genes and activities of glutathione-dependent enzymes are increased in gsnor-ko plants, which may contribute to the enhanced resistance against oxidative stress. In sum, our results demonstrate that reactive oxygen species (ROS)-dependent inhibition of GSNOR is playing an important role in activation of anti-oxidative mechanisms to damping oxidative damage and imply a direct crosstalk between ROS- and NO-signaling.
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spelling pubmed-51029002016-11-25 ROS-Mediated Inhibition of S-nitrosoglutathione Reductase Contributes to the Activation of Anti-oxidative Mechanisms Kovacs, Izabella Holzmeister, Christian Wirtz, Markus Geerlof, Arie Fröhlich, Thomas Römling, Gaby Kuruthukulangarakoola, Gitto T. Linster, Eric Hell, Rüdiger Arnold, Georg J. Durner, Jörg Lindermayr, Christian Front Plant Sci Plant Science Nitric oxide (NO) has emerged as a signaling molecule in plants being involved in diverse physiological processes like germination, root growth, stomata closing and response to biotic and abiotic stress. S-nitrosoglutathione (GSNO) as a biological NO donor has a very important function in NO signaling since it can transfer its NO moiety to other proteins (trans-nitrosylation). Such trans-nitrosylation reactions are equilibrium reactions and depend on GSNO level. The breakdown of GSNO and thus the level of S-nitrosylated proteins are regulated by GSNO-reductase (GSNOR). In this way, this enzyme controls S-nitrosothiol levels and regulates NO signaling. Here we report that Arabidopsis thaliana GSNOR activity is reversibly inhibited by H(2)O(2) in vitro and by paraquat-induced oxidative stress in vivo. Light scattering analyses of reduced and oxidized recombinant GSNOR demonstrated that GSNOR proteins form dimers under both reducing and oxidizing conditions. Moreover, mass spectrometric analyses revealed that H(2)O(2)-treatment increased the amount of oxidative modifications on Zn(2+)-coordinating Cys47 and Cys177. Inhibition of GSNOR results in enhanced levels of S-nitrosothiols followed by accumulation of glutathione. Moreover, transcript levels of redox-regulated genes and activities of glutathione-dependent enzymes are increased in gsnor-ko plants, which may contribute to the enhanced resistance against oxidative stress. In sum, our results demonstrate that reactive oxygen species (ROS)-dependent inhibition of GSNOR is playing an important role in activation of anti-oxidative mechanisms to damping oxidative damage and imply a direct crosstalk between ROS- and NO-signaling. Frontiers Media S.A. 2016-11-10 /pmc/articles/PMC5102900/ /pubmed/27891135 http://dx.doi.org/10.3389/fpls.2016.01669 Text en Copyright © 2016 Kovacs, Holzmeister, Wirtz, Geerlof, Fröhlich, Römling, Kuruthukulangarakoola, Linster, Hell, Arnold, Durner and Lindermayr. 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
Kovacs, Izabella
Holzmeister, Christian
Wirtz, Markus
Geerlof, Arie
Fröhlich, Thomas
Römling, Gaby
Kuruthukulangarakoola, Gitto T.
Linster, Eric
Hell, Rüdiger
Arnold, Georg J.
Durner, Jörg
Lindermayr, Christian
ROS-Mediated Inhibition of S-nitrosoglutathione Reductase Contributes to the Activation of Anti-oxidative Mechanisms
title ROS-Mediated Inhibition of S-nitrosoglutathione Reductase Contributes to the Activation of Anti-oxidative Mechanisms
title_full ROS-Mediated Inhibition of S-nitrosoglutathione Reductase Contributes to the Activation of Anti-oxidative Mechanisms
title_fullStr ROS-Mediated Inhibition of S-nitrosoglutathione Reductase Contributes to the Activation of Anti-oxidative Mechanisms
title_full_unstemmed ROS-Mediated Inhibition of S-nitrosoglutathione Reductase Contributes to the Activation of Anti-oxidative Mechanisms
title_short ROS-Mediated Inhibition of S-nitrosoglutathione Reductase Contributes to the Activation of Anti-oxidative Mechanisms
title_sort ros-mediated inhibition of s-nitrosoglutathione reductase contributes to the activation of anti-oxidative mechanisms
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5102900/
https://www.ncbi.nlm.nih.gov/pubmed/27891135
http://dx.doi.org/10.3389/fpls.2016.01669
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