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首页> 外文期刊>Biochemistry >Reaction of Bovine Cytochrome c Oxidase with Hydrogen Peroxide Produces a Tryptophan Cation Radical and a Porphyrin Cation Radical
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Reaction of Bovine Cytochrome c Oxidase with Hydrogen Peroxide Produces a Tryptophan Cation Radical and a Porphyrin Cation Radical

机译:牛细胞色素c氧化酶与过氧化氢的反应产生色氨酸阳离子自由基和卟啉阳离子自由基

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Oxidized bovine cytochrome c oxidase reacts with hydrogen peroxide to generate two electron paramagnetic resonance (EPR) free radical signals (Fabian, M., and Palmer, G. (1995) Biochemistry 34, 13802-13810). These radicals are associated with the binuclear center and give rise to two overlapped EPR signals, one signal being narrower in line width (#DELTA#Hptp = 12 G) than the other (#DELTA#Hptp = 45 G). We have used electron uclear double resonance (ENDOR) spectrometry to identify the two different chemical species giving rise to these two EPR signals. Comparison of the ENDOR spectrum associated with the narrow signal with that of compound I of horseradish peroxidase (formed by reaction of that enzyme with hydrogen peroxide) demonstrates that the two species are virtually identical. The chemical species giving rise to the narrow signal is therefore identified as an exchange-coupled porphyrin cation radical similar to that formed in horseradish peroxidase compound I. Comparison of the ENDOR spectrum of compound ES (formed by the reaction of hydrogen peroxide with cycochrome c peroxidase) with that of the broad signal indicates that the chemical species givning rise to the broad EPR signal in cytochrome c oxidase is probably an exchange coupled tryptophan cation radical. Thsi is substantiated using H_2O/D_2O solvent exchange experimetns where the ENDOR difference spectrum of the broad EPR signal of cytochrome c oxidase shows a feature consistnet with hyperfine coupling to the exchangeable N(1) proton of a tryptophan cation radical.
机译:氧化的牛细胞色素C氧化酶与过氧化氢反应,生成两个电子顺磁共振(EPR)自由基信号(Fabian,M.和Palmer,G.(1995)Biochemistry 34,13802-13810)。这些自由基与双核中心相关,并产生两个重叠的EPR信号,一个信号的线宽(#DELTA#Hptp = 12 G)比另一个信号的线宽(#DELTA#Hptp = 45 G)窄。我们已经使用电子核双共振(ENDOR)光谱来识别产生这两个EPR信号的两种不同化学物质。将与窄信号相关的ENDOR光谱与辣根过氧化物酶的化合物I(由该酶与过氧化氢反应形成)进行比较,表明这两种物质实际上是相同的。因此,产生窄信号的化学物质被鉴定为与辣根过氧化物酶化合物I中形成的类似的交换耦合卟啉阳离子基团。化合物ES ENDOR光谱的比较(由过氧化氢与cycochrome c过氧化物酶反应形成) )信号与宽信号的信号表明在细胞色素C氧化酶中产生宽EPR信号的化学物质可能是交换耦合的色氨酸阳离子自由基。这是使用H_2O / D_2O溶剂交换实验证实的,其中细胞色素C氧化酶的宽EPR信号的ENDOR差异谱显示特征色网,与色氨酸阳离子自由基的可交换N(1)质子超精细偶联。

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