An electron spin resonance (ESR) study on the mechanism of ascorbyl radical production by metal-binding proteins

被引:0
作者
A. Mouithys-Mickalad
C. Deby
G. Deby-Dupont
M. Lamy
机构
[1] Universit de Lige Domaine Universitaire duSart,Centre for the Biochemistry of Oxygen, Institut de Chimie
[2] University Hospital of Lige Domaine Universitaire du Sart,Department of Anaesthesia and Intensive Care Medicine
来源
Biometals | 1998年 / 11卷
关键词
ascorbate; albumin; ceruloplasmin; copper; electron spin resonance; iron; transferrin;
D O I
暂无
中图分类号
学科分类号
摘要
The mechanism of ascorbate oxidation by metal-binding proteins (ceruloplasmin, albumin and transferrin) was investigated in vitro and in isolated plasma by the measurement of the ascorbyl free radicals (AFR) by electron spin resonance (ESR). In plasma of 13 healthy volunteers, a spontaneous and variable pro-duction of AFR was detected, which was increased by a 10 M ascorbate overloading; however, this increase was not correlated to the intensity of the spontaneous AFR signal. The addition of Cu and ceruloplasmin to plasma increased the ESR signal, while the addition of transferrin decreased the signal intensity in a dose-dependent manner. In vitro, we demonstrated that ascorbate was oxidized by human serum albumin and by ceruloplasmin, and that this oxidase-like activity was lost by trypsin or heat treatment of these proteins. These two proteins positively interacted in the oxidation of ascorbate, since addition of crude albumin to a solution of ascorbate and ceruloplasmin increased the intensity of ESR signal in a dose-dependent manner. The treatment of albumin by a metal chelator (DDTC) abolished these positive inter-actions. The respective roles of copper and iron in ascorbate oxidation were studied and showed a dose-dependent effect of these ions on ascorbate oxidation. The role of iron was confirmed by the inhibiting effect of metal-free transferrin on iron-dependent ascorbate oxidation. Concerted actions between iron carrying albumin and copper carrying ceruloplasmin appear responsible for the production of AFR in vitro and in vivo. © Rapid Science 1998
引用
收藏
页码:81 / 88
页数:7
相关论文
共 65 条
  • [1] Bielski BHJ(1971)Ascorbic acid free radical. I. Pulse radiolysis study of optical absorption and kinetic properties J Amer Chem Soc 93 5624-5629
  • [2] Comstock DA(1981)Mechanism of disproportionation of ascorbate radicals J Amer Chem Soc 103 3516-3518
  • [3] Bowen RA.(1993)Ascorbate free radical as a marker of oxidative stress: an EPR study Free Radic Biol Med 14 49-55
  • [4] Bielski BHJ(1988)Chicken ceruloplasmin: evidence in support of a trinuclear cluster involving type 2 and 3 copper centers J Biol Chem 263 6480-6483
  • [5] Allen AO(1989)Presence of coupled trinuclear cluster in mammalian ceruloplasmin is essential for efficient electron transfer to oxygen J Biol Chem 264 6183-6187
  • [6] Schwarz HA.(1972)The ascorbate oxidase activity of ceruloplasmin Biochim Biophys Acta 268 41-48
  • [7] Buettner GR(1975)Electron spin resonance study of changes during the development of a mouse myeloid leukaemia. II. The ascorbyl radical Br J Cancer 32 451-455
  • [8] Jurkiewicz BA.(1981)Ascorbate oxidase and its possible involvement in cancer Z Naturforsch C 36 804-808
  • [9] Calabrese LC(1981)ESR investigations on blood treated intravenously with ascorbic acid Z Naturforsch C 36 1-4
  • [10] Carbonaro M(1995)A kinetic study of the coupled iron-ceruloplasmin catalyzed oxidation of ascorbate in the presence of albumin BioMetals 8 328-331