Oxidant-induced apoptosis is mediated by oxidation of the actin-regulatory protein cofilin
Top Cited Papers
- 6 September 2009
- journal article
- research article
- Published by Springer Nature in Nature Cell Biology
- Vol. 11 (10) , 1241-1246
- https://doi.org/10.1038/ncb1968
Abstract
The function of oxidation of specific proteins during apoptosis has been unclear. Oxidation of the actin-binding protein cofilin induces its translocation to the mitochondria, where it triggers the opening of the permeability transition pore independently of the BH3-only apoptotic factor Bax, and is required for oxidant-induced apoptosis. Physiological oxidants that are generated by activated phagocytes comprise the main source of oxidative stress during inflammation1,2. Oxidants such as taurine chloramine (TnCl) and hydrogen peroxide (H2O2) can damage proteins and induce apoptosis, but the role of specific protein oxidation in this process has not been defined. We found that the actin-binding protein cofilin is a key target of oxidation. When oxidation of this single regulatory protein is prevented, oxidant-induced apoptosis is inhibited. Oxidation of cofilin causes it to lose its affinity for actin and to translocate to the mitochondria, where it induces swelling and cytochrome c release by mediating opening of the permeability transition pore (PTP). This occurs independently of Bax activation and requires both oxidation of cofilin Cys residues and dephosphorylation at Ser 3. Knockdown of endogenous cofilin using targeted siRNA inhibits oxidant-induced apoptosis, which is restored by re-expression of wild-type cofilin but not by cofilin containing Cys to Ala mutations. Exposure of cofilin to TnCl results in intramolecular disulphide bonding and oxidation of Met residues to Met sulphoxide, but only Cys oxidation causes cofilin to induce mitochondrial damage.Keywords
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