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PMID: 25151118 Published · ppublish English

The novel role of peroxiredoxin-2 in red cell membrane protein homeostasis and senescence.

Free radical biology & medicine ·Vol. 76 ·2015-08-25

Matté Alessandro, Pantaleo Antonella, Ferru Emanuela, Turrini Franco, Bertoldi Mariarita, Lupo Francesca, Siciliano Angela, Ho Zoon Chae, De Franceschi Lucia

Abstract

Peroxiredoxin-2 (Prx2), a typical two-cysteine peroxiredoxin, is the third most abundant protein in red cells. Although progress has been made in the functional characterization of Prx2, its role in red cell membrane protein homeostasis is still under investigation. Here, we studied Prx2(-/-) mouse red cells. The absence of Prx2 promotes (i) activation of the oxidative-induced Syk pathway; (ii) increased band 3 Tyr phosphorylation, with clustered band 3; and (iii) increased heat shock protein (HSP27 and HSP70) membrane translocation. This was associated with enhanced in vitro erythrophagocytosis of Prx2(-/-) red cells and reduced Prx2(-/-) red cell survival, indicating the possible role of Prx2 membrane recruitment in red cell aging and in the clearance of oxidized hemoglobin and damaged proteins through microparticles. Indeed, we observed an increased release of microparticles from Prx2(-/-) mouse red cells. The mass spectrometric analysis of erythroid microparticles found hemoglobin chains, membrane proteins, and HSPs. To test these findings, we treated Prx2(-/-) mice with antioxidants in vivo. We observed that N-acetylcysteine reduced (i) Syk activation, (ii) band 3 clusterization, (iii) HSP27 membrane association, and (iv) erythroid microparticle release, resulting in increased Prx2(-/-) mouse red cell survival. Thus, we propose that Prx2 may play a cytoprotective role in red cell membrane protein homeostasis and senescence.

Keywords
Free radicals Microparticles N-acetylcysteine Oxidative stress Peroxiredoxin-2 Red cells
Article Info
Journal
Free radical biology & medicine
Abbr.
Free Radic Biol Med
Published
2015-08-25
Indexed
2014-12-03
Updated
2016-11-25
Language
English
Country/Region
United States
NLM ID
8709159
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