EFFECT OF NITRIC-OXIDE ON EXPRESSION OF TRANSFERRIN RECEPTOR AND FERRITIN AND ON CELLULAR IRON-METABOLISM IN K562 HUMAN ERYTHROLEUKEMIA-CELLS

被引:52
作者
ORIA, R
SANCHEZ, L
HOUSTON, T
HENTZE, MW
LIEW, FY
BROCK, JH
机构
[1] UNIV GLASGOW,WESTERN INFIRM,DEPT IMMUNOL,GLASGOW G11 6NT,LANARK,SCOTLAND
[2] UNIV ZARAGOZA,FAC VET,ZARAGOZA,SPAIN
[3] UNIV GLASGOW,WESTERN INFIRM,DEPT MED,GLASGOW G11 6NT,LANARK,SCOTLAND
[4] EUROPEAN MOLEC BIOL LAB,GENE EXPRESS PROGRAMME,HEIDELBERG,GERMANY
关键词
D O I
10.1182/blood.V85.10.2962.bloodjournal85102962
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Nitric oxide (NO) is known to increase the affinity of the intracellular iron-regulatory protein (IRP) for iron-response elements (IREs) in transferrin receptor and ferritin mRNAs, suggesting that it may act as a regulator of cellular iron metabolism. In this study, exogenous MO produced by adding the NO-generator S-nitroso-N-acetyl penicillamine gave a dose-dependent upregulation of transferrin receptor expression by K562 erythroleukemia cells and increased levels of transferrin receptor mRNA. NO did not affect the affinity of transferrin binding by the transferrin receptor. NO alone did not alter intracellular ferritin levels, but it did abrogate the inhibitory effect of the iron chelator desferrioxamine and potentiated the stimulatory effect of additional iron, NO also caused some increase in ferritin mRNA levels, which might mask any IRP-/IRE-mediated inhibitory effect of NO on ferritin translation, Although NO did not affect net iron uptake, it increased release of iron from K562 cells pulsed previously with Fe-59, and subcellular fractionation showed that it also increased the proportion of intracellular iron bound to ferritin. These findings provide direct evidence that NO can affect cellular iron metabolism and suggest that NO produced in vivo by activated bone marrow macrophages might affect erythropoiesis. (C) 1995 by The American Society of Hematology.
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页码:2962 / 2966
页数:5
相关论文
共 28 条
  • [1] ALVAREZHERNANDE.X, 1986, BIOCHIM BIOPHYS ACTA, V886, P214
  • [2] ALVAREZHERNANDEZ X, 1989, LAB INVEST, V61, P319
  • [3] BATES GW, 1973, J BIOL CHEM, V248, P3228
  • [4] POSTTRANSCRIPTIONAL REGULATION OF TRANSFERRIN RECEPTOR MESSENGER-RNA BY IFN-GAMMA
    BOURGEADE, MF
    SILBERMANN, F
    KUHN, L
    TESTA, U
    PESCHLE, C
    MEMET, S
    THANG, MN
    BESANCON, F
    [J]. NUCLEIC ACIDS RESEARCH, 1992, 20 (12) : 2997 - 3003
  • [5] IRON-RESPONSIVE ELEMENTS - REGULATORY RNA SEQUENCES THAT CONTROL MESSENGER-RNA LEVELS AND TRANSLATION
    CASEY, JL
    HENTZE, MW
    KOELLER, DM
    CAUGHMAN, SW
    ROUAULT, TA
    KLAUSNER, RD
    HARFORD, JB
    [J]. SCIENCE, 1988, 240 (4854) : 924 - 928
  • [6] BIOSYNTHESIS OF NITRIC-OXIDE ACTIVATES IRON REGULATORY FACTOR IN MACROPHAGES
    DRAPIER, JC
    HIRLING, H
    WIETZERBIN, J
    KALDY, P
    KUHN, LC
    [J]. EMBO JOURNAL, 1993, 12 (09) : 3643 - 3649
  • [7] INTERLEUKIN-1 ADMINISTRATION IN MICE PRODUCES HYPOFERREMIA DESPITE NEUTROPENIA
    GORDEUK, VR
    PRITHVIRAJ, P
    DOLINAR, T
    BRITTENHAM, GM
    [J]. JOURNAL OF CLINICAL INVESTIGATION, 1988, 82 (06) : 1934 - 1938
  • [8] GRAHAM G, 1976, J LAB CLIN MED, V88, P477
  • [9] Harford J., 1994, IRON METABOLISM HLTH, P123
  • [10] EPR CHARACTERIZATION OF MOLECULAR TARGETS FOR NO IN MAMMALIAN-CELLS AND ORGANELLES
    HENRY, Y
    LEPOIVRE, M
    DRAPIER, JC
    DUCROCQ, C
    BOUCHER, JL
    GUISSANI, A
    [J]. FASEB JOURNAL, 1993, 7 (12) : 1124 - 1134