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dc.creatorCastella C., Mirtziou I., Seassau A., Boscari A., Montrichard F., Papadopoulou K., Rouhier N., Puppo A., Brouquisse R.en
dc.date.accessioned2023-01-31T07:41:52Z
dc.date.available2023-01-31T07:41:52Z
dc.date.issued2017
dc.identifier10.1016/j.niox.2017.02.004
dc.identifier.issn10898603
dc.identifier.urihttp://hdl.handle.net/11615/72316
dc.description.abstractPlant glutathione peroxidases (Gpx) catalyse the reduction of various peroxides, such as hydrogen peroxide (H2O2), phospholipid hydroperoxides and peroxynitrite, but at the expense of thioredoxins rather than glutathione. A main function of plant Gpxs is the protection of biological membranes by scavenging phospholipid hydroperoxides, but some Gpxs have also been associated with H2O2 sensing and redox signal transduction. Nitric oxide (NO) is not only known to induce the expression of Gpx family members, but also to inhibit Gpx activity, presumably through the S-nitrosylation of conserved cysteine residues. In the present study, the effects of NO-donors on both the activity and S-nitrosylation state of purified Medicago truncatula Gpx1 were analyzed using biochemical assay measurements and a biotin-switch/mass spectrometry approach. MtGpx1 activity was only moderately inhibited by the NO-donors diethylamine-NONOate and S-nitrosoglutathione, and the inhibition may be reversed by DTT. The three conserved Cys of MtGpx1 were found to be modified through S-nitrosylation and S-glutathionylation, although to different extents, by diethylamine-NONOate and S-nitrosoglutathione, or by a combination of diethylamine-NONOate and reduced glutathione. The regulation of MtGpx1 and its possible involvement in the signaling process is discussed in the light of these results. © 2017 Elsevier Inc.en
dc.language.isoenen
dc.sourceNitric Oxide - Biology and Chemistryen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85013655382&doi=10.1016%2fj.niox.2017.02.004&partnerID=40&md5=eb114c183e3eaf75bd17da98ee274fc8
dc.subject3,3 bis(2 aminoethyl) 1 hydroxy 2 oxotriazeneen
dc.subjectamino aciden
dc.subjectbiotinen
dc.subjectcumene hydroperoxideen
dc.subjectcysteineen
dc.subjectenteropeptidaseen
dc.subjectglutathioneen
dc.subjectglutathione peroxidase 1en
dc.subjecthydrogen peroxideen
dc.subjectnitric oxideen
dc.subjectreduced nicotinamide adenine dinucleotide phosphateen
dc.subjectreduced nicotinamide adenine dinucleotide phosphate dehydrogenaseen
dc.subjects nitrosoglutathioneen
dc.subjectglutathione peroxidaseen
dc.subjectglutathione peroxidase 1en
dc.subjectnitric oxideen
dc.subjectalkylationen
dc.subjectArticleen
dc.subjectbarrel medicen
dc.subjectenzyme activityen
dc.subjectglutathionylationen
dc.subjectmass spectrometryen
dc.subjectnitrosylationen
dc.subjectnonhumanen
dc.subjectoxidation reduction reactionen
dc.subjectoxidation reduction stateen
dc.subjectpriority journalen
dc.subjectprotein processingen
dc.subjectsignal transductionen
dc.subjectamino acid sequenceen
dc.subjectbarrel medicen
dc.subjectdrug effecten
dc.subjectgeneticsen
dc.subjectmass fragmentographyen
dc.subjectmetabolismen
dc.subjectprotein processingen
dc.subjectAmino Acid Sequenceen
dc.subjectGas Chromatography-Mass Spectrometryen
dc.subjectGlutathione Peroxidaseen
dc.subjectMedicago truncatulaen
dc.subjectNitric Oxideen
dc.subjectProtein Processing, Post-Translationalen
dc.subjectAcademic Press Inc.en
dc.titlePost-translational modifications of Medicago truncatula glutathione peroxidase 1 induced by nitric oxideen
dc.typejournalArticleen


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