Self-protection of cytosolic malate dehydrogenase against oxidative stress in Arabidopsis.

Archive ouverte

Huang, Jingjing | Niazi, Adnan Khan | Young, David | Rosado, Leonardo Astolfi | Vertommen, Didier | Bodra, Nandita | Abdelgawwad, Mohamed Ragab | Vignols, Florence | Wei, Bo | Wahni, Khadija | Bashandy, Talaat | Bariat, Laetitia | van Breusegem, Frank | Messens, Joris | Reichheld, Jean-Philippe

Edité par CCSD ; Oxford University Press (OUP) -

Plant malate dehydrogenase (MDH) isoforms are found in different cell compartments and function in key metabolic pathways. It is well known that the chloroplastic NADP-dependent MDH activities are strictly redox regulated and controlled by light. However, redox dependence of other NAD-dependent MDH isoforms have been less studied. Here, we show by in vitro biochemical characterization that the major cytosolic MDH isoform (cytMDH1) is sensitive to H2O2 through sulfur oxidation of cysteines and methionines. CytMDH1 oxidation affects the kinetics, secondary structure, and thermodynamic stability of cytMDH1. Moreover, MS analyses and comparison of crystal structures between the reduced and H2O2-treated cytMDH1 further show that thioredoxin-reversible homodimerization of cytMDH1 through Cys330 disulfide formation protects the protein from overoxidation. Consistently, we found that cytosolic thioredoxins interact specifically with cytMDH in a yeast two-hybrid system. Importantly, we also show that cytosolic and chloroplastic, but not mitochondrial NAD-MDH activities are sensitive to H2O2 stress in Arabidopsis. NAD-MDH activities decreased both in a catalase2 mutant and in an NADP-thioredoxin reductase mutant, emphasizing the importance of the thioredoxin-reducing system to protect MDH from oxidation in vivo. We propose that the redox switch of the MDH activity contributes to adapt the cell metabolism to environmental constraints.

Consulter en ligne

Suggestions

Du même auteur

Cysteine redox regulation of carbon metabolism in Arabidopsis thaliana

Archive ouverte | Khan Niazi, Adnan | CCSD

International audience. A common occurrence of abio c and bio c stresses is the accumula on of reac ve oxygen species (ROS) which leads to oxida ve condi ons. ROS homeostasis is controlled through a complex network ...

Redox Modification of the Iron-Sulfur Glutaredoxin GRXS17 Activates Holdase Activity and Protects Plants from Heat Stress

Archive ouverte | Martins, Laura | CCSD

International audience. Heat stress induces misfolding and aggregation of proteins unless they are guarded by chaperone systems. Here, we examined the function of the glutaredoxin GRXS17, a member of thiol reductase...

FAST REDOX RESPONSE OF IRON-SULFUR GLUTAREDOXIN GRXS17 ACTIVATES ITS HOLDASE ACTIVITY AND PROTECTS PLANTS FROM HEAT STRESS

Archive ouverte | Martins, Laura | CCSD

International audience. Arabidopsis GRXS17 is an iron-sulfur clusters (ISC) glutaredoxin that consists of an N-terminal TRX-domain and three CGFS-ac ve site mo f-containing GRX-domains, coordina ng three ISC in a gl...

Chargement des enrichissements...