Van der Zee J, Barr D P, Mason R P
Department of Medical Biochemistry, State University Leiden, Netherlands.
Free Radic Biol Med. 1996;20(2):199-206. doi: 10.1016/0891-5849(95)02031-4.
Various mechanisms have been proposed for the reaction between heme proteins and organic hydroperoxides, including a peroxidase-type mechanism and homolytic cleavage. We used electron spin resonance (ESR) spectroscopy to investigate the formation of radicals in a hematin/tert-butyl hydroperoxide system. Spin trapping studies, using 5,5-dimethyl-1-pyrroline N-oxide (DMPO), showed the formation of peroxyl and alkoxyl radicals in this system. At higher hematin concentrations an alkyl radical adduct could also be detected, which was identified as the methyl radical by using the spin trap 2-methyl-2-nitrosopropane. Furthermore, the relative contribution of the peroxyl and alkoxyl radical adducts was determined at various DMPO concentrations using computer simulation. It was found that at low DMPO concentrations both the alkoxyl and the peroxyl radical adducts could be detected. At higher DMPO concentrations, on the other hand, the alkoxyl radical dominated, whereas the peroxyl radical adduct decreased to a small portion of the total radical adduct population. Thus, the alkoxyl radical was the initial radical, produced by homolytic scission of the O-O bond of the hydroperoxide by ferric hematin. Although some tert-butyl peroxyl radicals could be detected by direct ESR, the majority of the peroxyl radicals detected by spin trapping were methyl peroxyl radicals, formed in the reaction between methyl radicals (formed by beta-scission of the alkoxyl radicals) and oxygen.
关于血红素蛋白与有机氢过氧化物之间的反应,已经提出了多种机制,包括过氧化物酶型机制和均裂裂解。我们使用电子自旋共振(ESR)光谱来研究血红素/叔丁基氢过氧化物体系中自由基的形成。使用5,5 - 二甲基 - 1 - 吡咯啉N - 氧化物(DMPO)进行的自旋捕获研究表明,该体系中形成了过氧自由基和烷氧自由基。在较高的血红素浓度下,还可以检测到烷基自由基加合物,通过使用自旋捕获剂2 - 甲基 - 2 - 亚硝基丙烷将其鉴定为甲基自由基。此外,使用计算机模拟确定了在不同DMPO浓度下过氧自由基和烷氧自由基加合物的相对贡献。结果发现,在低DMPO浓度下,可以检测到烷氧自由基和过氧自由基加合物。另一方面,在较高的DMPO浓度下,烷氧自由基占主导,而过氧自由基加合物减少到总自由基加合物群体的一小部分。因此,烷氧自由基是最初的自由基,由高铁血红素对氢过氧化物的O - O键进行均裂产生。虽然通过直接ESR可以检测到一些叔丁基过氧自由基,但通过自旋捕获检测到的大多数过氧自由基是甲基过氧自由基,它们是在甲基自由基(由烷氧自由基的β - 断裂形成)与氧气的反应中形成的。