The In Vitro Interaction of 12-Oxophytodienoic Acid and Related Conjugated Carbonyl Compounds with Thiol Antioxidants

Autor(en): Maynard, Daniel
Viehhauser, Andrea
Knieper, Madita
Dreyer, Anna
Manea, Ghamdan
Telman, Wilena
Butter, Falk
Chibani, Kamel
Scheibe, Renate 
Dietz, Karl-Josef
Stichwörter: ARABIDOPSIS; Arabidopsis thaliana; Biochemistry & Molecular Biology; CHLOROPLAST; cyclophilin; CYCLOPHILIN 20-3; cysteine covalent modification; FLUORESCENCE; GLUTATHIONE; MECHANISMS; OXYLIPINS; peroxiredoxin; phytohormones; protein-ligand interaction; PROTEINS; REDOX REGULATION; thiol antioxidants; thioredoxin; THIOREDOXIN-F
Erscheinungsdatum: 2021
Herausgeber: MDPI
Enthalten in: BIOMOLECULES
Band: 11
Ausgabe: 3
Zusammenfassung: 
alpha,beta-unsaturated carbonyls interfere with numerous plant physiological processes. One mechanism of action is their reactivity toward thiols of metabolites like cysteine and glutathione (GSH). This work aimed at better understanding these interactions. Both 12-oxophytodienoic acid (12-OPDA) and abscisic acid (ABA) conjugated with cysteine. It was found that the reactivity of alpha,beta-unsaturated carbonyls with GSH followed the sequence trans-2-hexenal < 12-OPDA approximate to 12-OPDA-ethylester < 2-cyclopentenone << methyl vinylketone (MVK). Interestingly, GSH, but not ascorbate (vitamin C), supplementation ameliorated the phytotoxic potential of MVK. In addition, 12-OPDA and 12-OPDA-related conjugated carbonyl compounds interacted with proteins, e.g., with members of the thioredoxin (TRX)-fold family. 12-OPDA modified two cysteinyl residues of chloroplast TRX-f1. The OPDAylated TRX-f1 lost its activity to activate the Calvin-Benson-cycle enzyme fructose-1,6-bisphosphatase (FBPase). Finally, we show that 12-OPDA interacts with cyclophilin 20-3 (Cyp20-3) non-covalently and affects its peptidyl-prolyl-cis/trans isomerase activity. The results demonstrate the high potential of 12-OPDA as a diverse interactor and cellular regulator and suggest that OPDAylation may occur in plant cells and should be investigated as novel regulatory mechanism.
DOI: 10.3390/biom11030457

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