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首页> 外文期刊>The biochemical journal >pH-dependence for binding a single nitrite ion to each type-2 copper centre in the copper-containing nitrite reductase of Alcaligenes xylosoxidans
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pH-dependence for binding a single nitrite ion to each type-2 copper centre in the copper-containing nitrite reductase of Alcaligenes xylosoxidans

机译:pH依赖性,用于将单个亚硝酸根离子结合到产碱木素的含铜亚硝酸盐还原酶中的每个2型铜中心

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pThe first quantitative characterization of the interaction of NOsub2/subsup-/sup with the Cu-containing dissimilatory nitrite reductase (NiR) of iAlcaligenes xylosoxidans/iusing steady-state kinetics, equilibrium gel filtration and EPR spectroscopy is described. Each molecule of this protein consists of three equivalent subunits, each containing a type-1 Cu atom and also a type-2 Cu atom at each subunit interface. Enzyme activity increased in a biphasic manner with decreasing pH, having an optimum at pH 5.2 and a plateau between pH 6.1 and 5.8. Equilibrium gel filtration showed that binding of NOsub2/subsup-/sup to the oxidized NiR was also pH-dependent. At pH 7.5, no binding was detectable, but binding was detectable at lower pH values. At pH 5.2, the concentration-dependence for binding of NOsub2/subsup-/sup to the enzyme showed that approx. 4.1 NOsub2/subsup-/sup ions bound per trimeric NiR molecule. Unexpectedly, NiR deficient in type-2 Cu centres bound 1.3 NOsub2/subsup-/sup ions per trimer. When corrected for this binding, a value of 3 NOsub2/subsup-/sup ions bound per trimer of NiR, equivalent to the type-2 Cu content. The NOsub2/subsup-/sup-induced changes in the EPR parameters of the type-2 Cu centre of the oxidized enzyme showed a similar pH-dependence to that of the activity. Binding constants for NOsub2/subsup-/sup at a single type of site, after allowing for the non-specifically bound NOsub2/subsup-/sup, were 350±35 iμ/iM (mean±S.E.M.) at pH 7.5 and &30 iμ/iM at pH 5.2. The apparent iK/isubm/sub for NOsub2/subsup-/sup with saturating concentrations of dithionite as reductant was 35 iμ/iM at pH 7.5, which is 10-fold tighter than for the oxidized enzyme, and is compatible with an ordered mechanism in which the enzyme is reduced before NOsub2/subsup-/sup binds./p
机译:> NO 2 -与产碱木木聚糖的含铜异亚硝酸盐还原酶(NiR)相互作用的首次定量表征描述了稳态动力学,平衡凝胶过滤和EPR光谱。该蛋白质的每个分子均由三个等效的亚基组成,每个亚基在每个亚基界面处都包含1型Cu原子和2型Cu原子。随着pH值的降低,酶的活性呈两相增加,在pH 5.2时达到最佳,在pH 6.1到5.8之间达到平稳。平衡凝胶过滤显示NO 2 -与氧化NiR的结合也是pH依赖性的。在pH 7.5时,未检测到结合,但在较低pH值下可检测到结合。在pH 5.2时,NO 2 -与酶结合的浓度依赖性显示大约为每个三聚NiR分子结合4.1 NO 2 -离子。出乎意料的是,缺乏2型Cu中心的NiR每个三聚体结合了1.3个NO 2 -离子。对此结合进行校正后,每个NiR三聚体结合的3 NO 2 -离子的值相当于2型Cu含量。 NO 2 -诱导的氧化酶2型铜中心的EPR参数变化显示出与活性相似的pH依赖性。在允许非特异性结合的NO 2 -之后,单一类型位点上NO 2 -的结合常数。在pH 7.5时为350±35μM(平均值±SEM),在pH 5.2时为<30μM。 NO 2 -中饱和饱和连二亚硫酸盐作为还原剂的表观 K m 为35 μ< / i> M在pH 7.5时,比氧化酶紧10倍,并且与有序机制兼容,在该机制中,酶在NO 2 -绑定。

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