Antioxidant Systems are Regulated by Nitric Oxide-Mediated Post-translational Modifications (NO-PTMs)

Frontiers in Plant Science
Juan C Begara-MoralesJuan B Barroso

Abstract

Nitric oxide (NO) is a biological messenger that orchestrates a plethora of plant functions, mainly through post-translational modifications (PTMs) such as S-nitrosylation or tyrosine nitration. In plants, hundreds of proteins have been identified as potential targets of these NO-PTMs under physiological and stress conditions indicating the relevance of NO in plant-signaling mechanisms. Among these NO protein targets, there are different antioxidant enzymes involved in the control of reactive oxygen species (ROS), such as H2O2, which is also a signal molecule. This highlights the close relationship between ROS/NO signaling pathways. The major plant antioxidant enzymes, including catalase, superoxide dismutases (SODs) peroxiredoxins (Prx) and all the enzymatic components of the ascorbate-glutathione (Asa-GSH) cycle, have been shown to be modulated to different degrees by NO-PTMs. This mini-review will update the recent knowledge concerning the interaction of NO with these antioxidant enzymes, with a special focus on the components of the Asa-GSH cycle and their physiological relevance.

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Citations

Mar 6, 2018·Journal of Experimental Botany·Juan C Begara-MoralesJuan B Barroso
Aug 5, 2017·Journal of Cell Science·Francisco J Corpas, Juan B Barroso
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May 3, 2019·Journal of Experimental Botany·Salvador González-GordoFrancisco J Corpas
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May 22, 2019·Journal of Experimental Botany·Juan C Begara-MoralesJuan B Barroso
Jul 22, 2019·Journal of Experimental Botany·Inmaculada Sánchez-VicenteOscar Lorenzo
Jan 6, 2018·Journal of Experimental Botany·Francisco J CorpasJosé M Palma
Feb 8, 2020·Breast Cancer : Basic and Clinical Research·Deepshikha MishraDebabrata Banerjee
Feb 11, 2020·Frontiers in Plant Science·Bin WangShijiang Zhu
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Jun 9, 2020·Frontiers in Plant Science·Marek Petřivalský, Lenka Luhová
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Jul 17, 2021·Journal of Hazardous Materials·Zsuzsanna Kolbert, Attila Ördög
Jul 14, 2021·Antioxidants & Redox Signaling·Christophe Glorieux, Pedro Buc Calderon

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