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氧化还原活性铁离子在猪主动脉亚细胞组分中S-亚硝基半胱氨酸分解中的作用

Role of redox-active iron ions in the decomposition of S-nitrosocysteine in subcellular fractions of porcine aorta.

作者信息

Sorenson E, Skiles E H, Xu B, Aleryani S, Kostka P

机构信息

Department of Chemistry, Cleveland State University, OH 44115, USA.

出版信息

Eur J Biochem. 2000 Jul;267(14):4593-9. doi: 10.1046/j.1432-1327.2000.01522.x.

Abstract

We recently reported that degradation of S-nitrosocysteine in homogenates of porcine aorta increased severalfold in the presence of Mg2+ ions [Kostka, P., Xu, B. & Skiles, E.H. (1999) J. Cardiovasc. Pharmacol. 33, 665-670]. The objective of the present study was to examine this in greater detail. The rate of S-nitrosocysteine degradation by aortic homogenates in the presence of Mg2+ ions exhibited differential sensitivity to chelators of iron ions. Terpyridine and diethylenetriamine penta-acetic acid (5-500 microM) caused a concentration-dependent inhibition of S-nitrosocysteine decay, whereas deferoxamine (100 microM) was ineffective. o-Phenanthroline (250 microM), a selective chelator of Fe2+ ions, potentiated the reaction at low initial concentrations of S-nitrosocysteine (< or = 15 microM) and inhibited the reaction at higher concentrations. The inhibitory effects of o-phenanthroline were related to suppression of S-nitrosocysteine decay by cysteine-mediated reduction of Fe3+. In the presence of o-phenanthroline, S-nitrosocysteine decomposition followed saturable kinetics with K0.5 = 3.8 +/- 0.3 microM and h = 1.8 +/- 0.1 (mean +/- SE, n = 4). Comparison of the rates of S-nitrosocysteine decay in different subcellular fractions showed selective association with the cytosolic fraction, as documented by copurification with lactate dehydrogenase activity. At non-limiting concentrations of S-nitrosocysteine, the rate of degradation in the cytosolic fraction was 4.1 +/- 0.3 nmol.min-1.(mg protein)-1 (n = 4). It is concluded that the cytosolic fraction of porcine aorta contains a protein factor, presumably an enzyme, capable of catalyzing heterolytic decomposition of the S-NO bond of S-nitrosocysteine in a process involving redox cycling of iron ions.

摘要

我们最近报道,在Mg2+离子存在的情况下,猪主动脉匀浆中S-亚硝基半胱氨酸的降解增加了几倍[科斯特卡,P.,徐,B.和斯基尔斯,E.H.(1999年)《心血管药理学杂志》33,665 - 670]。本研究的目的是更详细地研究这一现象。在Mg2+离子存在的情况下,主动脉匀浆对S-亚硝基半胱氨酸的降解速率对铁离子螯合剂表现出不同的敏感性。三联吡啶和二乙烯三胺五乙酸(5 - 500微摩尔)引起S-亚硝基半胱氨酸衰变的浓度依赖性抑制,而去铁胺(100微摩尔)无效。邻菲罗啉(250微摩尔),一种Fe2+离子的选择性螯合剂,在低初始浓度的S-亚硝基半胱氨酸(≤15微摩尔)时增强反应,而在较高浓度时抑制反应。邻菲罗啉的抑制作用与通过半胱氨酸介导的Fe3+还原抑制S-亚硝基半胱氨酸衰变有关。在邻菲罗啉存在的情况下,S-亚硝基半胱氨酸分解遵循饱和动力学,K0.5 = 3.8±0.3微摩尔,h = 1.8±0.1(平均值±标准误,n = 4)。不同亚细胞组分中S-亚硝基半胱氨酸衰变速率的比较表明,其与胞质组分存在选择性关联,这通过与乳酸脱氢酶活性共纯化得到证明。在S-亚硝基半胱氨酸非限制浓度下,胞质组分中的降解速率为4.1±0.3纳摩尔·分钟-1·(毫克蛋白)-1(n = 4)。结论是,猪主动脉的胞质组分含有一种蛋白质因子,可能是一种酶,能够在涉及铁离子氧化还原循环的过程中催化S-亚硝基半胱氨酸的S-NO键的异裂分解。

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