A physiological model to study iron recycling in macrophages

被引:88
作者
Delaby, C
Pilard, N
Hetet, G
Driss, F
Grandchamp, B
Beaumont, C
Canonne-Hergaux, F
机构
[1] Univ Paris 07, INSERM, U656, Fer & Stnth Heme Genet Physiol & Pathol, F-75018 Paris, France
[2] Hop Bichat Claude Bernard, Serv Biochim Hormonale & Genet, F-75877 Paris, France
关键词
macrophages; red blood cell; erythrophagocytosis; gene expression; imflammation;
D O I
10.1016/j.yexcr.2005.07.002
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Following crythrophagocytosis (EP) of senescent red blood cells (RBCs), heme iron is recycled to the plasma by tissue macrophages. This process is critical for mammalian iron homeostasis but remains elusive. We characterized a cellular model using artificially-aged murine RBCs and murine bone marrow-derived macrophages (BMDMs) and study mRNA and protein expression of HO-1, ferroportin and ferritin after EP. In vitro ageing of PBCs was obtained by raising intracellular calcium concentration. These RBCs exhibit several features of erythrocyte senescence including externalization of phosphatidyl-serine, specific binding and phagocytosis by BMDMs. During the first hours of EP, we observed a rapid increase of HO-1 and ferroportin mRNAs and proteins, whereas ferritin protein expression was progressively induced with no major changes in RNA levels. At later stages after EP, a different pattern of expression was observed with a net decrease of ferroportin, a sustained high level of HO-1, and a strong increase in ferritins. Taken together, these results suggest that after EP, iron is rapidly extracted from heme and exported by ferroportin. Surprisingly, the gene expression profile at late stages after EP, which is indicative of iron storage, is reminiscent of what is observed in inflammation. However, phagocytosis of artificially-aged red blood cells seems to repress the proinflammatory response of macrophages. (c) 2005 Elsevier Inc. All rights reserved.
引用
收藏
页码:43 / 53
页数:11
相关论文
共 45 条
[1]   A novel mammalian iron-regulated protein involved in intracellular iron metabolism [J].
Abboud, S ;
Haile, DJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (26) :19906-19912
[2]  
Bornman L, 1999, J CELL PHYSIOL, V178, P1
[3]   Programmed cell death in mature erythrocytes: a model for investigating death effector pathways operating in the absence of mitochondria [J].
Bratosin, D ;
Estaquier, J ;
Petit, F ;
Arnoult, D ;
Quatannens, B ;
Tissier, JP ;
Slomianny, C ;
Sartiaux, C ;
Alonso, C ;
Huart, JJ ;
Montreuil, J ;
Ameisen, JC .
CELL DEATH AND DIFFERENTIATION, 2001, 8 (12) :1143-1156
[4]   Cellular and molecular mechanisms of senescent erythrocyte phagocytosis by macrophages. A review [J].
Bratosin, D ;
Mazurier, J ;
Tissier, JP ;
Estaquier, J ;
Huart, JJ ;
Ameisen, JC ;
Aminoff, D ;
Montreuil, J .
BIOCHIMIE, 1998, 80 (02) :173-195
[5]   Molecular mechanisms of erythrophagocytosis. Characterization of the senescent erythrocytes that are phagocytized by macrophages [J].
Bratosin, D ;
Mazurier, J ;
Tissier, JP ;
Slomianny, C ;
Estaquier, J ;
RussoMarie, F ;
Huart, JJ ;
Freyssinet, JM ;
Aminoff, D ;
Ameisen, JC ;
Montreuil, J .
COMPTES RENDUS DE L ACADEMIE DES SCIENCES SERIE III-SCIENCES DE LA VIE-LIFE SCIENCES, 1997, 320 (10) :811-818
[6]  
CANONNEHERGAUX F, 2005, IN PRESS GASTROINTES
[7]   Positional cloning of zebrafish ferroportin1 identifies a conserved vertebrate iron exporter [J].
Donovan, A ;
Brownlie, A ;
Zhou, Y ;
Shepard, J ;
Pratt, SJ ;
Moynihan, J ;
Paw, BH ;
Drejer, A ;
Barut, B ;
Zapata, A ;
Law, TC ;
Brugnara, C ;
Kingsley, PD ;
Palis, J ;
Fleming, MD ;
Andrews, NC ;
Zon, LI .
NATURE, 2000, 403 (6771) :776-781
[8]   The iron exporter ferroportin/Slc40a1 is essential for iron homeostasis [J].
Donovan, A ;
Lima, CA ;
Pinkus, JL ;
Pinkus, GS ;
Zon, LI ;
Robine, S ;
Andrews, NC .
CELL METABOLISM, 2005, 1 (03) :191-200
[9]   Iron regulatory proteins and the molecular control of mammalian iron metabolism [J].
Eisenstein, RS .
ANNUAL REVIEW OF NUTRITION, 2000, 20 :627-662
[10]   Macrophages that have ingested apoptotic cells in vitro inhibit proinflammatory cytokine production through autocrine/paracrine mechanisms involving TGF-β, PGE2, and PAF [J].
Fadok, VA ;
Bratton, DL ;
Konowal, A ;
Freed, PW ;
Westcott, JY ;
Henson, PM .
JOURNAL OF CLINICAL INVESTIGATION, 1998, 101 (04) :890-898