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Aging Cell ; 7(2): 260-9, 2008 Mar.
Article in English | MEDLINE | ID: mdl-18221415

ABSTRACT

Studies of mutations affecting lifespan in Caenorhabditis elegans show that mitochondrial generation of reactive oxygen species (ROS) plays a major causative role in organismal aging. Here, we describe a novel mechanism for regulating mitochondrial ROS production and lifespan in C. elegans: progressive mitochondrial protein modification by the glycolysis-derived dicarbonyl metabolite methylglyoxal (MG). We demonstrate that the activity of glyoxalase-1, an enzyme detoxifying MG, is markedly reduced with age despite unchanged levels of glyoxalase-1 mRNA. The decrease in enzymatic activity promotes accumulation of MG-derived adducts and oxidative stress markers, which cause further inhibition of glyoxalase-1 expression. Over-expression of the C. elegans glyoxalase-1 orthologue CeGly decreases MG modifications of mitochondrial proteins and mitochondrial ROS production, and prolongs C. elegans lifespan. In contrast, knock-down of CeGly increases MG modifications of mitochondrial proteins and mitochondrial ROS production, and decreases C. elegans lifespan.


Subject(s)
Caenorhabditis elegans/enzymology , Lactoylglutathione Lyase/biosynthesis , Lactoylglutathione Lyase/deficiency , Longevity , Mitochondria/enzymology , Protein Modification, Translational , Animals , Caenorhabditis elegans Proteins/metabolism , Enzyme Inhibitors , Feedback, Physiological , Gene Expression , Lactoylglutathione Lyase/antagonists & inhibitors , Mitochondrial Proteins/metabolism , Mutation , Oxidative Phosphorylation , Oxidative Stress , Pyruvaldehyde/metabolism , RNA, Helminth , RNA, Messenger/analysis , Reactive Oxygen Species/analysis , Reactive Oxygen Species/metabolism
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