首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >MULTIPLE-EDGE XAS STUDIES OF SYNTHETIC IRON-COPPER BRIDGED MOLECULAR ASSEMBLIES RELEVANT TO CYTOCHROME C OXIDASE - STRUCTURE DETERMINATION USING MULTIPLE-SCATTERING ANALYSIS WITH STATISTICAL EVALUATION OF ERRORS
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MULTIPLE-EDGE XAS STUDIES OF SYNTHETIC IRON-COPPER BRIDGED MOLECULAR ASSEMBLIES RELEVANT TO CYTOCHROME C OXIDASE - STRUCTURE DETERMINATION USING MULTIPLE-SCATTERING ANALYSIS WITH STATISTICAL EVALUATION OF ERRORS

机译:用多散射分析和统计估计法确定与细胞色素C氧化酶结构有关的铁铜桥联分子组合的多边缘XAS研究

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An X-ray absorption spectroscopy study has been carried out at the Fe and Cu K-edges for two bridged molecular assemblies, both of which contain an Fe-X-Cu (X = O2-, OH-) bridge unit, some of whose features are relevant to the binuclear site of cytochrome c oxidase. The two complexes [(OEP)Fe-O-Cu(Me(6)tren)](1+) and [(OEP)Fe-(OH)-Cu(Me(5)tren)(OClO3)](1+) have similar structural fragments around the metal centers except that they differ significantly in the bridge structure (the former contains a linear oxo bridge while the latter has a bent hydroxo bridge). We report a comparative study of these complexes using multiple-scattering (MS) EXAFS analysis and the program package GNXAS. It is found that there is a dramatic increase in the amplitude of the Fe-X-Cu MS pathway as the bridge unit approaches linearity. Full EXAFS MS analysis enables accurate quantitation of bridge metrical details and geometry for both complexes. These studies were done with an expanded version of GNXAS, which allows for simultaneous multiple-edge fitting. Such multiple-edge analysis (using both Fe and Cu edge data) allows common pathways (in this case involving the Fe-X-Cu bridge) to be constrained to be the same, thus improving the observation/variable ratio and enhancing sensitivity for determination of the bridge structure. The accuracy of the structural determination for the bridge units is evaluated by a statistical analysis methodology in which correlations among fitting parameters are identified and contour plots are used to determine random error. The overall error in the EXAFS structural determination is found by establishing the variance with the crystallographically determined values: for the EXAFS-determined parameters at distances below 4 Angstrom, distances and angles deviated on average from crystallographic values by 0.014 Angstrom and 1.5 degrees, respectively. It is also established that structural features in the Fe absorption preedge are diagnostic of oxo vs hydroxo ligation. The relevance of this study to the structural definition of binuclear bridged sites in cytochrome c oxidase and other metalloenzymes is considered. [References: 49]
机译:已经在Fe和Cu K边缘对两个桥连的分子组件进行了X射线吸收光谱研究,这两个桥连分子组件均包含Fe-X-Cu(X = O2-,OH-)桥单元,其中一些这些特征与细胞色素C氧化酶的双核位点有关。两种络合物[(OEP)Fe-O-Cu(Me(6)tren)](1+)和[(OEP)Fe-(OH)-Cu(Me(5)tren)(OClO3)](1+ )在金属中心周围具有相似的结构碎片,除了它们在桥结构上有显着差异(前者包含线性氧代桥,而后者具有弯曲的羟基桥)。我们报告了使用多重散射(MS)EXAFS分析和程序包GNXAS对这些复合物的比较研究。发现随着桥单元趋于线性,Fe-X-Cu MS路径的振幅急剧增加。完整的EXAFS MS分析能够对两种配合物的桥梁度量详细信息和几​​何结构进行准确定量。这些研究是使用GNXAS的扩展版本完成的,该版本允许同时进行多边拟合。这种多边缘分析(同时使用Fe和Cu边缘数据)可以将共同路径(在这种情况下涉及Fe-X-Cu桥)限制为相同,从而提高了观测/可变比并提高了测定的灵敏度的桥梁结构。通过统计分析方法评估桥梁单元的结构确定精度,在该方法中,确定拟合参数之间的相关性,并使用轮廓图确定随机误差。 EXAFS结构确定中的总体误差是通过与晶体学确定的值建立方差来发现的:对于EXAFS确定的参数,当距离小于4埃时,距离和角度与晶体学值的平均偏差分别为0.014埃和1.5度。还确定了Fe吸收前沿中的结构特征是对氧代与羟基键合的诊断。考虑到这项研究与细胞色素c氧化酶和其他金属酶中双核桥接位点的结构定义有关。 [参考:49]

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