Lon protease preferentially degrades oxidized mitochondrial aconitase by an ATP-stimulated mechanism
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Open Access
- 27 August 2002
- journal article
- research article
- Published by Springer Nature in Nature Cell Biology
- Vol. 4 (9) , 674-680
- https://doi.org/10.1038/ncb836
Abstract
Mitochondrial aconitase is sensitive to oxidative inactivation and can aggregate and accumulate in many age-related disorders. Here we report that Lon protease, an ATP-stimulated mitochondrial matrix protein, selectively recognizes and degrades the oxidized, hydrophobic form of aconitase after mild oxidative modification, but that severe oxidation results in aconitase aggregation, which makes it a poor substrate for Lon. Similarly, a morpholino oligodeoxynucleotide directed against the lon gene markedly decreases the amount of Lon protein, Lon activity and aconitase degradation in WI-38 VA-13 human lung fibroblasts and causes accumulation of oxidatively modified aconitase. The ATP-stimulated Lon protease may be an essential defence against the stress of life in an oxygen environment. By recognizing minor oxidative changes to protein structure and rapidly degrading the mildly modified protein, Lon protease may prevent extensive oxidation, aggregation and accumulation of aconitase, which could otherwise compromise mitochondrial function and cellular viability. Aconitase is probably only one of many mitochondrial matrix proteins that are preferentially degraded by Lon protease after oxidative modification.Keywords
This publication has 50 references indexed in Scilit:
- Age-Related Changes in Protein Oxidation and Proteolysis in Mammalian CellsThe Journals of Gerontology: Series A, 2001
- Protein oxidation and degradation during cellular senescence of human BJ fibroblasts: part II—aging of nondividing cellsThe FASEB Journal, 2000
- Poly-ADP ribose polymerase activates nuclear proteasome to degrade oxidatively damaged histonesProceedings of the National Academy of Sciences, 1999
- Protein Oxidation in Aging, Disease, and Oxidative StressJournal of Biological Chemistry, 1997
- Degradation of oxidized proteins in mammalian cellsThe FASEB Journal, 1997
- Mitochondria contain a proteolytic system which can recognize and degrade oxidatively-denatured proteinsBiochemical Journal, 1988
- Oxidatively denaturated proteins are degraded by an ATP-independent proteolytic pathway in escherichia coliFree Radical Biology & Medicine, 1988
- Intracellular proteolytic systems may function as secondary antioxidant defenses: An hypothesisJournal of Free Radicals in Biology & Medicine, 1986
- Endogenous free radical generation may influence proteolysis in MitochondriaBiochemical and Biophysical Research Communications, 1985
- Turnover of bacterial glutamine synthetase: oxidative inactivation precedes proteolysis.Proceedings of the National Academy of Sciences, 1981