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PMID:17059387
| Citation |
Iuchi, Y, Okada, F, Onuma, K, Onoda, T, Asao, H, Kobayashi, M and Fujii, J (2007) Elevated oxidative stress in erythrocytes due to a SOD1 deficiency causes anaemia and triggers autoantibody production. Biochem. J. 402:219-27 |
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| Abstract |
Reactive oxygen species are involved in the aging process and diseases. Despite the important role of Cu/Zn SOD (superoxide dismutase) encoded by SOD1, SOD1-/- mice appear to grow normally under conventional breeding conditions. In the present paper we report on a novel finding showing a distinct connection between oxidative stress in erythrocytes and the production of autoantibodies against erythrocytes in SOD1-/- mice. Evidence is presented to show that SOD1 is primarily required for maintaining erythrocyte lifespan by suppressing oxidative stress. A SOD1 deficiency led to an increased erythrocyte vulnerability by the oxidative modification of proteins and lipids, resulting in anaemia and compensatory activation of erythropoiesis. The continuous destruction of oxidized erythrocytes appears to induce the formation of autoantibodies against certain erythrocyte components, e.g. carbonic anhydrase II, and the immune complex is deposited in the glomeruli. The administration of an antioxidant, N-acetylcysteine, suppressed erythrocyte oxidation, ameliorated the anaemia, and inhibited the production of autoantibodies. These data imply that a high level of oxidative stress in erythrocytes increases the production of autoantibodies, possibly leading to an autoimmune response, and that the intake of antioxidants would prevent certain autoimmune responses by maintaining an appropriate redox balance in erythrocytes. |
| Links |
PubMed PMC1798435 Online version:10.1042/BJ20061386 |
| Keywords |
Acetylcysteine/pharmacology; Anemia/enzymology; Anemia/genetics; Anemia/immunology; Anemia/pathology; Animals; Antioxidants/pharmacology; Autoantibodies/biosynthesis; Autoantibodies/immunology; Erythrocytes/enzymology; Erythrocytes/immunology; Inflammation/drug therapy; Inflammation/metabolism; Inflammation/pathology; Mice; Mice, Knockout; Oxidation-Reduction; Oxidative Stress/drug effects; Phenotype; Superoxide Dismutase/deficiency; Superoxide Dismutase/genetics; Superoxide Dismutase/metabolism |
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Significance
Annotations
| Gene product | Qualifier | GO ID | GO term name | Evidence Code | with/from | Aspect | Notes | Status |
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