THE EFFECT OF REDOX-RELATED SPECIES OF NITROGEN MONOXIDE ON TRANSFERRIN AND IRON UPTAKE AND CELLULAR PROLIFERATION OF ERYTHROLEUKEMIA (K562) CELLS

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作者
RICHARDSON, DR
NEUMANNOVA, V
NAGY, E
PONKA, P
机构
[1] SIR MORTIMER B DAVIS JEWISH HOSP,LADY DAVIS INST MED RES,MONTREAL,PQ H3T 1E2,CANADA
[2] MCGILL UNIV,DEPT MED,MONTREAL,PQ,CANADA
[3] MCGILL UNIV,DEPT PHYSIOL,MONTREAL,PQ,CANADA
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R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The iron-responsive element-binding protein (IRE-BP) modulates both ferritin mRNA translation and transferrin receptor (TfR) mRNA stability by binding to specific mRNA sequences called iron-responsive elements (IREs). The regulation of IRE-BP in situ could possibly occur either through its Fe-S cluster and/or via free cysteine sulphydryl groups such as cysteine 437 (Philpott et al, J Biol Chem 268:17655, 1993; and Hirling et al, EMBO J 13:453, 1994). Recently, nitrogen monoxide (NO) has been shown to have markedly different biologic effects depending on its redox state (Lipton et al, Nature 364:626, 1993). Considering this fact, it is conceivable that the NO group, as either the nitrosonium ion (NO+) or nitric oxide (NO.), may regulate IRE-BP activity by S-nitrosylation of key sulphydryl groups or via ligation of NO. to the Fe-S cluster, respectively. This hypothesis has been examined using the NO+ generator, sodium nitroprusside (SNP); the NO. generator, S-nitroso-N-acetylpenicillamine (SNAP); and the NO./peroxynitrite (ONOO-) generator, 3-morpholinosy-dnonimine hydrochloride (SIN-1). Treatment of K562 cells for 18 hours with SNP (1 mmol/L) resulted in a pronounced decrease in both the RNA-binding activity of IRE-BP and the level of TfR mRNA. In addition, Scatchard analysis showed a marked decrease in the number of specific Tf-binding sites, from 590,000/cell (control) to 170,000/cell (test), and there was also a distinct decrease in Fe uptake. Furthermore, SNP did not decrease cellular viability or proliferation. In contrast, the NO. generator, SNAP (1 mmol/L), increased RNA-binding activity of IRE-BP, the level of TfR mRNA, and the number of TfRs in K562 cells. Moreover, both SNAP (1 mmol/L) and SIN-1 (0.5 mmol/L) reduced cellular proliferation. The results are discussed in context of the possible physiologic role of redox-related species of NO in regulating iron metabolism. (C) 1995 by The American Society of Hematology.
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页码:3211 / 3219
页数:9
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