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Redox activities of mono- and binuclear forms of low-molecular and protein-bound dinitrosyl iron complexes with thiol-containing ligands

机译:低分子和蛋白质结合的二亚硝酰基铁配合物与含硫醇的配体的单核和双核形式的氧化还原活性

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EPR, optical, electrochemical and stopped-flow methods were used to demonstrate that Fe(NO)(2) fragments in paramagnetic mononuclear and diamagnetic binuclear forms of dinitrosyl iron complexes with glutathione are reversibly reduced by a two-electron mechanism to be further transformed from the initial state with d(7) configuration into states with the d(8) and d(9) electronic configurations of the iron atom. Under these conditions, both forms of DNIC display identical optical and EPR characteristics in state d(9) suggesting that reduction of the binuclear form of DNIC initiates their reversible decomposition into two mononuclear dinitrosyl iron fragments, one of which is EPR-silent (d(8)) and the other one is EPR-active (d(9)). Both forms of DNIC produce EPR signals with the following values of the g-factor: g(perpendicular to) = 2.01, g(parallel to) = 1.97, g(aver). = 2.0. M-DNIC with glutathione manifest an ability to pass into state d(9), however, only in solutions with a low content of free glutathione. Similar transitions were established for protein-bound M- and B-DNIC with thiol-containing ligands. (C) 2014 Elsevier Inc. All rights reserved.
机译:EPR,光学,电化学和停止流方法用于证明顺磁性单核和反磁性双核形式的二亚硝酰基铁与谷胱甘肽的复合物中的Fe(NO)(2)片段可通过双电子机理可逆地还原,从而从具有d(7)构型的初始状态变为具有铁原子的d(8)和d(9)电子构型的状态。在这些条件下,两种形式的DNIC在状态d(9)下都显示出相同的光学和EPR特性,这表明DNIC的双核形式的还原会引发其可逆分解为两个单核二亚硝基铁碎片,其中一个是EPR沉默的(d( 8)),而另一个是EPR有效(d(9))。两种形式的DNIC都会产生具有以下g因子值的EPR信号:g(垂直于)= 2.01,g(平行于)= 1.97,g(平均值)。 = 2.0。带有谷胱甘肽的M-DNIC仅在游离谷胱甘肽含量低的溶液中才具有进入状态d(9)的能力。对于具有含硫醇的配体的蛋白质结合的M-和B-DNIC,建立了类似的过渡。 (C)2014 Elsevier Inc.保留所有权利。

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