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dc.contributor.authorBegara-Morales, Juan C.
dc.contributor.authorSánchez-Calvo, Beatriz
dc.contributor.authorGómez-Rodríguez, María V.
dc.contributor.authorChaki, Mounira
dc.contributor.authorValderrama, Raquel
dc.contributor.authorMata-Pérez, Capilla
dc.contributor.authorLópez-Jaramillo, Javier
dc.contributor.authorCorpas, Francisco J.
dc.contributor.authorBarroso, Juan B.
dc.date.accessioned2025-01-20T17:22:04Z
dc.date.available2025-01-20T17:22:04Z
dc.date.issued2019
dc.identifier.urihttp://hdl.handle.net/10366/162077
dc.description.abstractLow temperature (LT) negatively affects plant growth and development via the alteration of the metabolism of reactive oxygen and nitrogen species (ROS and RNS). Among RNS, tyrosine nitration, the addition of an NO2 group to a tyrosine residue, can modulate reduced nicotinamide-dinucleotide phosphate (NADPH)-generating systems and, therefore, can alter the levels of NADPH, a key cofactor in cellular redox homeostasis. NADPH also acts as an indispensable electron donor within a wide range of enzymatic reactions, biosynthetic pathways, and detoxification processes, which could affect plant viability. To extend our knowledge about the regulation of this key cofactor by this nitric oxide (NO)-related post-translational modification, we analyzed the effect of tyrosine nitration on another NADPH-generating enzyme, the NADP-malic enzyme (NADP-ME), under LT stress. In Arabidopsis thaliana seedlings exposed to short-term LT (4 °C for 48 h), a 50% growth reduction accompanied by an increase in the content of superoxide, nitric oxide, and peroxynitrite, in addition to diminished cytosolic NADP-ME activity, were found. In vitro assays confirmed that peroxynitrite inhibits cytosolic NADP-ME2 activity due to tyrosine nitration. The mass spectrometric analysis of nitrated NADP-ME2 enabled us to determine that Tyr-73 was exclusively nitrated to 3-nitrotyrosine by peroxynitrite. The in silico analysis of the Arabidopsis NADP-ME2 protein sequence suggests that Tyr73 nitration could disrupt the interactions between the specific amino acids responsible for protein structure stability. In conclusion, the present data show that short-term LT stress affects the metabolism of ROS and RNS, which appears to negatively modulate the activity of cytosolic NADP-ME through the tyrosine nitration process.es_ES
dc.language.isoenges_ES
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Unported*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/*
dc.subjectNADP malic enzyme; low temperature; nitric oxide; tyrosine nitration; peroxynitrite; reactive oxygen species; reactive nitrogen species; nitro-oxidative stresses_ES
dc.titleShort-Term Low Temperature Induces Nitro-Oxidative Stress that Deregulates the NADP-Malic Enzyme Function by Tyrosine Nitration in Arabidopsis thalianaes_ES
dc.typeinfo:eu-repo/semantics/articlees_ES
dc.relation.publishversion10.3390/ANTIOX8100448es_ES
dc.rights.accessRightsinfo:eu-repo/semantics/openAccesses_ES
dc.identifier.essn2076-3921
dc.journal.titleAntioxidantses_ES
dc.volume.number8es_ES
dc.issue.number10es_ES
dc.page.initial448es_ES
dc.type.hasVersioninfo:eu-repo/semantics/publishedVersiones_ES


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