Abstract

Methylglyoxal (MG) is a reactive metabolic intermediate generated during various cellular biochemical reactions, including glycolysis. The accumulation of MG indiscriminately modifies proteins, including important cellular antioxidant machinery, leading to severe oxidative stress, which is implicated in multiple neurodegenerative disorders, aging, and cardiac disorders. Although cells possess efficient glyoxalase systems for detoxification, their functions are largely dependent on the glutathione cofactor, the availability of which is self-limiting under oxidative stress. Thus, higher organisms require alternate modes of reducing the MG-mediated toxicity and maintaining redox balance. In this report, we demonstrate that Hsp31 protein, a member of the ThiJ/DJ-1/PfpI family in Saccharomyces cerevisiae, plays an indispensable role in regulating redox homeostasis. Our results show that Hsp31 possesses robust glutathione-independent methylglyoxalase activity and suppresses MG-mediated toxicity and ROS levels as compared with another paralog, Hsp34. On the other hand, glyoxalase-defective mutants of Hsp31 were found highly compromised in regulating the ROS levels. Additionally, Hsp31 maintains cellular glutathione and NADPH levels, thus conferring protection against oxidative stress, and Hsp31 relocalizes to mitochondria to provide cytoprotection to the organelle under oxidative stress conditions. Importantly, human DJ-1, which is implicated in the familial form of Parkinson disease, complements the function of Hsp31 by suppressing methylglyoxal and oxidative stress, thus signifying the importance of these proteins in the maintenance of ROS homeostasis across phylogeny.

Highlights

  • ThiJ/DJ-1/PfpI protein family members possess glutathione-independent glyoxalase activity

  • YDR533Cp (Hsp31) Possesses Robust Methylglyoxalase Activity and Protects Cells from Glyoxal Toxicity—To investigate the role of the Hsp31 class of proteins (Hsp31, Hsp32, Hsp33, and Hsp34) in combating toxicity due to the metabolic intermediates glyoxals, we first generated single ⌬hsp31, ⌬hsp32, ⌬hsp33, and ⌬hsp34 knock-out yeast strains in BY4741 background by homologous recombination

  • Our analyses reveal the importance of the glyoxalase activity of Hsp31 class proteins in reducing cellular glyoxal toxicity in Saccharomyces cerevisiae

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Summary

Background

ThiJ/DJ-1/PfpI protein family members possess glutathione-independent glyoxalase activity. Results: S. cerevisiae Hsp, an efficient glyoxalase among all paralogs is essential for cytoprotection under oxidative stress conditions. Conclusion: The robust glyoxalase activity of Hsp aids in the maintenance of glutathione levels, and its mitochondrial localization provides protection against oxidative stress. We demonstrate that Hsp protein, a member of the ThiJ/DJ-1/PfpI family in Saccharomyces cerevisiae, plays an indispensable role in regulating redox homeostasis. Our results show that Hsp possesses robust glutathione-independent methylglyoxalase activity and suppresses MG-mediated toxicity and ROS levels as compared with another paralog, Hsp. Hsp maintains cellular glutathione and NADPH levels, conferring protection against oxidative stress, and Hsp relocalizes to mitochondria to provide cytoprotection to the organelle under oxidative stress conditions. Human DJ-1, which is implicated in the familial form of Parkinson disease, complements the function of Hsp by suppressing methylglyoxal and oxidative stress, signify-

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