Isotopic evidence of unaccounted for Fe and Cu erythropoietic pathways

被引:109
作者
Albarede, Francis [1 ]
Telouk, Philippe
Lamboux, Aline
Jaouen, Klervia
Balter, Vincent
机构
[1] Univ Lyon 1, Ecole Normale Super Lyon, F-69007 Lyon, France
关键词
BIOCHEMICAL BASIS; IRON; COPPER; ZINC; METABOLISM; EXCRETION; TRANSFERRIN; RESISTANCE; CISPLATIN; FERRITIN;
D O I
10.1039/c1mt00025j
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
070307 [化学生物学]; 071010 [生物化学与分子生物学];
摘要
Despite its potential importance for understanding perturbations in the Fe-Cu homeostatic pathways, the natural isotopic variability of these metals in the human body remains unexplored. We measured the Fe, Cu, and Zn isotope compositions of total blood, serum, and red blood cells of similar to 50 young blood donors by multiple-collector ICP-MS after separation and purification by anion exchange chromatography. Zinc shows much less overall isotopic variability than Fe and Cu, which indicates that isotope fractionation depends more on redox conditions than on ligand coordination. On average, Fe in erythrocytes is isotopically light with respect to serum, whereas Cu is heavy. Iron and Cu isotope compositions clearly separate erythrocytes of men and women. Fe and Cu from B-type men erythrocytes are visibly more fractionated than all the other blood types. Isotope compositions provide an original method for evaluating metal mass balance and homeostasis. Natural isotope variability shows that the current models of Fe and Cu erythropoiesis violate mass balance requirements. It unveils unsuspected major pathways for Fe, with erythropoietic production of isotopically heavy ferritin and hemosiderin, and for Cu, with isotopically light Cu being largely channeled into blood and lymphatic circulation rather than into superoxide dismutase-laden erythrocytes. Iron isotopes provide an intrinsic measuring rod of the erythropoietic yield, while Cu isotopes seem to gauge the relative activity of erythropoiesis and lymphatics.
引用
收藏
页码:926 / 933
页数:8
相关论文
共 41 条
[1]
Precise and accurate isotopic measurements using multiple-collector ICPMS [J].
Albarède, F ;
Telouk, P ;
Blichert-Toft, J ;
Boyet, M ;
Agranier, A ;
Nelson, B .
GEOCHIMICA ET COSMOCHIMICA ACTA, 2004, 68 (12) :2725-2744
[2]
Albarede F., 1995, Introduction to Geochemical Modeling, P543, DOI [10.1017/CBO9780511622960, DOI 10.1017/CBO9780511622960]
[3]
Understanding heme transport [J].
Andrews, NC .
NEW ENGLAND JOURNAL OF MEDICINE, 2005, 353 (23) :2508-2509
[4]
Bodily variability of zinc natural isotope abundances in sheep [J].
Balter, Vincent ;
Zazzo, Antoine ;
Moloney, Aidan P. ;
Moynier, Fred ;
Schmidt, Olaf ;
Monahan, Frank J. ;
Albarede, Francis .
RAPID COMMUNICATIONS IN MASS SPECTROMETRY, 2010, 24 (05) :605-612
[5]
Cellular copper distribution: a mechanistic systems biology approach [J].
Banci, Lucia ;
Bertini, Ivano ;
Cantini, Francesca ;
Ciofi-Baffoni, Simone .
CELLULAR AND MOLECULAR LIFE SCIENCES, 2010, 67 (15) :2563-2589
[6]
Erythropoiesis and iron [J].
Cavill, I .
BEST PRACTICE & RESEARCH CLINICAL HAEMATOLOGY, 2002, 15 (02) :399-409
[7]
Erythroblastic islands: niches for erythropoiesis [J].
Chasis, Joel Anne ;
Mohandas, Narla .
BLOOD, 2008, 112 (03) :470-478
[8]
Decreased hephaestin activity in the intestine of copper-deficient mice causes systemic iron deficiency [J].
Chen, HJ ;
Huang, G ;
Su, T ;
Gao, H ;
Attieh, ZK ;
McKie, AT ;
Anderson, GJ ;
Vulpe, CD .
JOURNAL OF NUTRITION, 2006, 136 (05) :1236-1241
[9]
Serum ferritin is derived primarily from macrophages through a nonclassical secretory pathway [J].
Cohen, Lyora A. ;
Gutierrez, Lucia ;
Weiss, Avital ;
Leichtmann-Bardoogo, Yael ;
Zhang, De-liang ;
Crooks, Daniel R. ;
Sougrat, Rachid ;
Morgenstern, Avigail ;
Galy, Bruno ;
Hentze, Matthias W. ;
Lazaro, Francisco J. ;
Rouault, Tracey A. ;
Meyron-Holtz, Esther G. .
BLOOD, 2010, 116 (09) :1574-1584
[10]
Metabolic crossroads of iron and copper [J].
Collins, James F. ;
Prohaska, Joseph R. ;
Knutson, Mitchell D. .
NUTRITION REVIEWS, 2010, 68 (03) :133-147