利用EPR和自旋捕获技术研究一氧化氮与乳铁蛋白的相互作用及其在巨噬细胞中的产生。

A J Carmichael, L Steel-Goodwin, B Gray, C M Arroyo
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引用次数: 16

摘要

利用EPR和自旋捕获技术研究了巨噬细胞源性NO生成硝酸盐(NO3-)和亚硝酸盐(NO2-)的过程。在涉及铁结合蛋白乳铁蛋白的反应中,通过EPR确定NO3-的形成。通过EPR/自旋俘获法测定了NO2-与H2O2反应过程中NO2-的生成。溶解的一氧化氮(NO.)与乳铁蛋白反应产生的EPR谱(77°K)不同于乳铁蛋白的正常EPR谱,表明NO。与结合在乳铁蛋白上的铁离子相互作用,形成铁-亚硝基型络合物。在脂多糖(LPS)刺激后的巨噬细胞悬液上清液中也观察到这种铁-亚硝基型复合物的EPR谱(77度K)。在LPS刺激巨噬细胞时,这些细胞产生NO。从而产生NO3-和NO2-。铁-亚硝基型络合物是由巨噬细胞衍生的NO(.)产生的NO3-与Fe+2反应生成Fe+3和NO(.)后,在含有超乳铁蛋白和碳酸氢盐的反应混合物中形成的。此外,在酸性介质中,NO2-与H2O2反应生成过氧亚硝酸(HOONO),后者迅速分解为羟基自由基(. oh)和二氧化氮(NO2)自由基。在lps刺激的巨噬细胞悬液上清液中,以5,5-二甲基-1-吡咯烷-1-氧化物(DMPO)为自旋诱捕剂,乙醇为。oh清除剂,通过自旋诱捕证实了。oh的产生。确定了DMPO-OH和dmpo -羟乙基加合物的EPR谱。(摘要删节250字)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nitric oxide interaction with lactoferrin and its production by macrophage cells studied by EPR and spin trapping.

The production of nitrate (NO3-) and nitrite (NO2-) from macrophage-derived NO was studied using EPR and spin trapping. The formation of NO3- was determined via EPR in reactions involving the iron-binding protein, lactoferrin. The formation of NO2- was determined via EPR/spin trapping in the reaction between NO2- and H2O2. Dissolved nitric oxide (NO.) was reacted with lactoferrin yielding an EPR spectrum (77 degrees K) different from the normal EPR spectrum obtained for lactoferrin, suggesting that NO. interacts with the ferric ions bound to lactoferrin forming a ferric-nitrosyl type complex. The EPR spectrum (77 degrees K) of this ferric-nitrosyl type complex was also observed in the supernatant fluid of macrophage cell suspensions following their stimulation with lipopolysaccharide (LPS). During LPS stimulation of macrophages, these cells generate NO. which in turn produces NO3- and NO2-. The ferric-nitrosyl type complex is formed in a reaction mixture containing apolactoferrin and bicarbonate following the reaction of Fe+2 with NO3-, generated from macrophage-derived NO(.), to produce Fe+3 and NO(.). Furthermore, in an acidic medium, NO2- reacts with H2O2 forming peroxynitrous acid (HOONO) which rapidly decomposes into hydroxyl radicals (.OH) and the nitrogen dioxide (NO2.) radical. In the supernatant fluid of LPS-stimulated macrophage suspensions, the production of .OH was verified by spin trapping using 5,5-dimethyl-1-pyrroline-1-oxide (DMPO) as the spin trap and ethanol as the .OH scavenger. The EPR spectra corresponding to the DMPO-OH and the DMPO-hydroxyethyl adducts were identified.(ABSTRACT TRUNCATED AT 250 WORDS)

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