首页> 外文期刊>Journal of physical chemistry letters >High Energy Resolution-X-ray Absorption Near Edge Structure Spectroscopy Reveals Zn Ligation in Whole Cell Bacteria
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High Energy Resolution-X-ray Absorption Near Edge Structure Spectroscopy Reveals Zn Ligation in Whole Cell Bacteria

机译:高能量分辨率-X射线吸收近边缘结构光谱揭示全细胞细胞中的Zn连接

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Identifying the zinc (Zn) ligation and coordination environment in complex biological and environmental systems is crucial to understand the role of Zn as a biologically essential but sometimes toxic metal. Most studies on Zn coordination in biological or environmental samples rely on the extended X-ray absorption fine structure (EXAFS) region of a Zn K-edge X-ray absorption spectroscopy (XAS) spectrum. However, EXAFS analysis cannot identify unique nearest neighbors with similar atomic number (i.e., O versus N) and provides little information on Zn ligation. Herein, we demonstrate that high energy resolution-X-ray absorption near edge structure (HR-XANES) spectroscopy enables the direct determination of Zn ligation in whole cell bacteria, providing additional insights lost from EXAFS analysis at a fraction of the scan time and Zn concentration. HR-XANES is a relatively new technique that has improved our understanding of trace metals (e.g., Hg, Cu, and Ce) in dilute systems. This study is the first to show that HR-XANES can unambiguously detect Zn coordination to carboxyl, phosphoryl, imidazole, and/or thiol moieties in model microorganisms.
机译:在复杂的生物和环境系统中识别锌(Zn)连接和协调环境至关重要,了解Zn作为生物学上必需但有时毒性金属的作用。对生物或环境样品中的Zn协调的大多数研究依赖于Zn k边缘X射线吸收光谱(XAS)光谱的延长X射线吸收细结构(EXAFS)区域。然而,EXAFS分析无法识别具有类似原子序数的独特最近邻居(即,o与N),并提供有关Zn连接的很少信息。在此,我们证明了靠近边缘结构(HR-XANES)光谱附近的高能量分辨率-X射线吸收能够直接测定全细胞细菌中的Zn连接,从扫描时间和Zn的一小部分中提供从EXAFS分析中丢失的额外洞察力专注。 HR-Xanes是一种相对较新的技术,可以改善稀释系统中对痕量金属(例如,Hg,Cu和Ce)的理解。本研究首先表明HR-XANES可以在模型微生物中毫不疑问地检测到羧基,磷酸,咪唑和/或硫醇部分的Zn协调。

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