Title of article :
Two different pathways are involved in peroxynitrite-induced senescence and apoptosis of human erythrocytes
Author/Authors :
Donatella Pietraforte، نويسنده , , Paola Matarrese، نويسنده , , Elisabetta Straface، نويسنده , , Lucrezia Gambardella، نويسنده , , Alessio Metere، نويسنده , , Giuseppe Scorza، نويسنده , , Thomas L. Leto، نويسنده , , Walter Malorni، نويسنده , , Maurizio Minetti، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Pages :
13
From page :
202
To page :
214
Abstract :
CO2 changes the biochemistry of peroxynitrite basically in two ways: (i) nitrating species is the CO3 – / NO2 radical pair, and (ii) peroxynitrite diffusion distance is significantly reduced. For peroxynitrite generated extracellularly this last effect is particularly dramatic at low cell density because CO3 – and NO2 are short-lived and decay mostly in the extracellular space or at the cell surface/membrane. This study was aimed to distinguish between peroxynitrite-induced extra- and intracellular modifications of red blood cells (RBC). Our results show that at low cell density and in the presence of CO2 peroxynitrite induced the oxidation of surface thiols, the formation of 3-nitrotyrosine and DMPO-RBC adducts, and the down-regulation of glycophorins A and C (biomarkers of senescence). Reactivation of glycolysis reversed only the oxidation of surface thiols. Without CO2 peroxynitrite also induced the oxidation of hemoglobin and glutathione, the accumulation of lactate, a decrease in ATP, the clustering of band 3, the externalization of phosphatidylserine, and the activation of caspases 8 and 3 (biomarkers of apoptosis). The latter biomarkers were all reversed by reactivation of glycolysis. We hypothesize that cell senescence could (generally) be derived by irreversible radical-mediated oxidation of membrane targets, while the appearance of apoptotic biomarkers could be bolstered by oxidation of intracellular targets. These results suggest that, depending on extracellular homolysis or diffusion to the intracellular space, peroxynitrite prompts RBCs toward either senescence or apoptosis through different oxidation mechanisms.
Keywords :
Nitric oxide , Peroxynitrite , GSH , red blood cell , aging , Apoptosis , Glycophorins , Band 3 , protein 4.1 , spin trapping , DMPO , 3-Nitrotyrosine , DBNBS , Carbon dioxide , thiols
Journal title :
Free Radical Biology and Medicine
Serial Year :
2007
Journal title :
Free Radical Biology and Medicine
Record number :
520816
Link To Document :
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