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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Kinetic and spectroscopic characterization of tungsten-substituted DMSO reductase from Rhodobacter sphaeroides
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Kinetic and spectroscopic characterization of tungsten-substituted DMSO reductase from Rhodobacter sphaeroides

机译:来自乳菌氏菌氏菌钨 - 取代的DMSO还原酶的动力学和光谱表征

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We have examined the kinetic and spectroscopic properties of a tungsten-substituted form of DMSO reductase from Rhodobacter sphaeroides, an enzyme that normally possesses molybdenum. Partial reduction with sodium dithionite yields a well-resolved W(V) EPR signal of the so-called "high-g split" type that exhibits markedly greater g-anisotropy than the corresponding Mo(V) signal of the native form of the enzyme, with the g values shifted to higher magnetic field by as much as Delta g (ave) = 0.056. Deuteration of the enzyme confirms that the coupled proton is solvent-exchangeable, allowing us to accurately simulate the tungsten hyperfine coupling. Global curve-fitting analysis of UV/vis absorption spectra observed in the course of the reaction of the tungsten-substituted enzyme with sodium dithionite affords a well-defined absorption spectrum for the W(V) species. Surprisingly, the absorption spectrum for this species exhibits significantly larger molar extinction coefficients than either the reduced or the oxidized spectrum. This spectrum, in conjunction with those for fully oxidized W(VI) and fully reduced W(IV) enzyme, has been used to deconvolute the absorption spectra seen in the course of turnover, in the which enzyme is reacted with sodium dithionite and DMSO, demonstrating that the W(V) is an authentic catalytic intermediate that accumulates to approximately 50% of the total enzyme in the steady state.
机译:我们研究了从乳菌氏菌氏菌氏菌的DMSO还原酶的钨替代形式的动力学和光谱性质,一种通常具有钼的酶。用二硫代硫酸钠的部分还原产生了所谓的“高G分裂”型的良好分辨的W(V)EPR信号,其表现出比酶的天然形式的相应MO(V)信号显着更大的G-各向异性,G值与ΔG(AVE)= 0.056的达到更高的磁场移动到更高的磁场。酶的氘代证实,偶联的质子是溶剂可更换的,允许我们准确地模拟钨高血清偶联。在钨取代酶与二硫代钠的反应过程中观察到的全局曲线拟合分析,具有二硫代氨酸钠,为W(v)种具有明确的吸收光谱。令人惊奇的是,该物种的吸收光谱表现出明显较大的摩尔消光系数,而不是降低或氧化光谱。该光谱与完全氧化W(VI)和完全减少的W(IV)酶一起使用的光谱,已被用于去卷积在趋势过程中看到的吸收光谱,其中酶与二硫代钛矿和DMSO反应,证明W(V)是一种正宗的催化中间体,其在稳定状态下积聚到总酶的约50%。

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