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首页> 外文期刊>Biochemistry >Characterization of the Metal Receptor Sites in Escherichia coli Zur, an Ultrasensitive Zinc(II) Metalloregulatory Protein
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Characterization of the Metal Receptor Sites in Escherichia coli Zur, an Ultrasensitive Zinc(II) Metalloregulatory Protein

机译:大肠杆菌Zur(一种超敏锌(II)金属调控蛋白)中金属受体位点的表征

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The Escherichia coli Zur protein is a Fur homologue that regulated expression of Zn(II) uptake systems. The zinc-loaded form of Zur is proposed to bind DNA and repress transcription of the znuABC genes. Recent in vitro data indicate that the transcriptional activity of Zur is half-maximal when free Zn(II) concentrations are in the sub-femtomolar range, making it the most sensitive Zn(II) metalloregulatory protein reported to date. Previous results indicate that Zur binds at least one zinc; however, little else is known about Zn(II) binding. We have purified E. coli Zur to homogeneity and found that it has two Zn(II) binding sites per monomer with different coordination environments. Using Zn(II) binding assays, ICP-AES analysis, and Zn EXAFS analysis, we show that one zinc is tightly bound in an S_3(N/O) coordination environment. Both Co(II) and Zn(II) were substituted onto the second metal binding site and probed by EXAFS and UV-visible absorption spectroscopy. These studies indicate that Co(II) is bound in an A(N/O)_3 coordination environment with tetrahedral geometry. The Zn(II) EXAFS of Zn_2Zur, which is consistent with the results for both sites, indicates an average coordination environment of S_2(N/O)_2, presumably due to one S(N/O)_3 site and one S_3(N/O) site. These studies reveal the coordination environments that confer such exceptional zinc sensitivity and may provide the foundation for understanding the molecular basis of metal ion selectivity. A comparison of the metal binding sites in Zur with its Fe(II)-sensing homologue Fur provides clues as to why these two proteins with similar structures respond to two very different metal ions.
机译:大肠杆菌Zur蛋白是Fur同源物,可调节Zn(II)摄取系统的表达。 Zur的锌负载形式被提议与DNA结合并抑制znuABC基因的转录。最近的体外数据表明,当游离Zn(II)浓度在亚飞摩尔范围内时,Zur的转录活性是最大的一半,使其成为迄今报道的最敏感的Zn(II)金属调控蛋白。先前的结果表明Zur结合了至少一种锌。但是,关于Zn(II)结合知之甚少。我们已经将大肠杆菌Zur纯化至同质,发现每个具有不同配位环境的单体具有两个Zn(II)结合位点。使用Zn(II)结合测定,ICP-AES分析和Zn EXAFS分析,我们显示了一个锌在S_3(N / O)配位环境中紧密结合。 Co(II)和Zn(II)均被取代到第二个金属结合位点上,并通过EXAFS和紫外可见吸收光谱进行探测。这些研究表明Co(II)绑定在具有四面体几何形状的A(N / O)_3配位环境中。 Zn_2Zur的Zn(II)EXAFS与两个位点的结果均相符,表明S_2(N / O)_2的平均配位环境,大概是由于一个S(N / O)_3位和一个S_3(N / O)网站。这些研究揭示了赋予这种锌敏感性的配位环境,并可能为理解金属离子选择性的分子基础提供基础。将Zur中的金属结合位点与其Fe(II)感应同源物Fur进行比较,可以提供线索,说明为什么这两种结构相似的蛋白质对两种截然不同的金属离子有反应。

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