Reactive oxygen species play important roles in redox signaling mainly through a set of reversible post-translational modifications of cysteine thiol residues in proteins, including glutathionylation and dithiol/disulfide exchange. Protein glutathionylation has been extensively studied in mammals but emerging evidence suggests that it can play important roles in plants and in chloroplast in particular. This redox modification involves protein thiols and glutathione and is mainly controlled by glutaredoxins, oxidoreductases belonging to the thioredoxin superfamily. In this review, we first present the possible mechanisms of protein glutathionylation and then introduce the chloroplast systems of glutaredoxins and thioredoxins, in order to pinpoint the biochemical properties that make some glutaredoxin isoforms the master enzymes in deglutathionylation. Finally, we discuss the possible roles of glutathionylation in thiol protection, protein regulation, reactive oxygen species scavenging and redox signaling in chloroplasts, with emphasis on the crosstalk between thioredoxin- and glutaredoxin-mediated signaling pathways.

The emerging roles of protein glutathionylation in chloroplasts / Zaffagnini M.; Bedhomme M.; Lemaire S.D.; Trost P.. - In: PLANT SCIENCE. - ISSN 0168-9452. - STAMPA. - 185-186:(2012), pp. 86-96. [10.1016/j.plantsci.2012.01.005]

The emerging roles of protein glutathionylation in chloroplasts

ZAFFAGNINI, MIRKO;TROST, PAOLO BERNARDO
2012

Abstract

Reactive oxygen species play important roles in redox signaling mainly through a set of reversible post-translational modifications of cysteine thiol residues in proteins, including glutathionylation and dithiol/disulfide exchange. Protein glutathionylation has been extensively studied in mammals but emerging evidence suggests that it can play important roles in plants and in chloroplast in particular. This redox modification involves protein thiols and glutathione and is mainly controlled by glutaredoxins, oxidoreductases belonging to the thioredoxin superfamily. In this review, we first present the possible mechanisms of protein glutathionylation and then introduce the chloroplast systems of glutaredoxins and thioredoxins, in order to pinpoint the biochemical properties that make some glutaredoxin isoforms the master enzymes in deglutathionylation. Finally, we discuss the possible roles of glutathionylation in thiol protection, protein regulation, reactive oxygen species scavenging and redox signaling in chloroplasts, with emphasis on the crosstalk between thioredoxin- and glutaredoxin-mediated signaling pathways.
2012
The emerging roles of protein glutathionylation in chloroplasts / Zaffagnini M.; Bedhomme M.; Lemaire S.D.; Trost P.. - In: PLANT SCIENCE. - ISSN 0168-9452. - STAMPA. - 185-186:(2012), pp. 86-96. [10.1016/j.plantsci.2012.01.005]
Zaffagnini M.; Bedhomme M.; Lemaire S.D.; Trost P.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/112438
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