首页> 外文期刊>Journal of Molecular Biology >Molecular structure and metal-binding properties of the periplasmic CopK protein expressed in Cupriavidus metallidurans CH34 during copper challenge.
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Molecular structure and metal-binding properties of the periplasmic CopK protein expressed in Cupriavidus metallidurans CH34 during copper challenge.

机译:铜攻击期间在金属角果铜CH34中表达的周质CopK蛋白的分子结构和金属结合特性。

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摘要

The copK gene is localized on the pMOL30 plasmid of Cupriavidus metallidurans CH34 within the complex cop cluster of genes, for which 21 genes have been identified. The expression of the corresponding periplasmic CopK protein is strongly upregulated in the presence of copper, leading to a high periplasmic accumulation. The structure and metal-binding properties of CopK were investigated by NMR and mass spectrometry. The protein is dimeric in the apo state with a dissociation constant in the range of 10(-5) M estimated from analytical ultracentrifugation. Mass spectrometry revealed that CopK has two high-affinity Cu(I)-binding sites per monomer with different Cu(I) affinities. Binding of Cu(II) was observed but appeared to be non-specific. The solution structure of apo-CopK revealed an all-beta fold formed of two beta-sheets in perpendicular orientation with an unstructured C-terminal tail. The dimer interface is formed by the surface of the C-terminal beta-sheet. Binding of the first Cu(I)-ion induces a major structural modification involving dissociation of the dimeric apo-protein. Backbone chemical shifts determined for the 1Cu(I)-bound form confirm the conservation of the N-terminal beta-sheet, while the last strand of the C-terminal sheet appears in slow conformational exchange. We hypothesize that the partial disruption of the C-terminal beta-sheet is related to dimer dissociation. NH-exchange data acquired on the apo-protein are consistent with a lower thermodynamic stability of the C-terminal sheet. CopK contains seven methionine residues, five of which appear highly conserved. Chemical shift data suggest implication of two or three methionines (Met54, Met38, Met28) in the first Cu(I) site. Addition of a second Cu(I) ion further increases protein plasticity. Comparison of the structural and metal-binding properties of CopK with other periplasmic copper-binding proteins reveals two conserved features within these functionally related proteins: the all-beta fold and the methionine-rich Cu(I)-binding site.
机译:copK基因位于复杂的cop基因簇中的金属角果铜CH34的pMOL30质粒上,已鉴定出21个基因。在铜的存在下,相应的周质CopK蛋白的表达被强烈上调,导致高周质积聚。通过NMR和质谱研究了CopK的结构和金属结合性能。该蛋白质为apo态的二聚体,根据分析超速离心法估计其解离常数在10(-5)M范围内。质谱分析表明,CopK每个具有不同Cu(I)亲和力的单体具有两个高亲和力的Cu(I)结合位点。观察到Cu(II)的结合,但是似乎是非特异性的。 apo-CopK的溶液结构揭示了由两个β-折叠在垂直方向上形成的全β折叠,具有无结构的C末端尾巴。二聚体界面由C端β-折叠的表面形成。第一Cu(I)离子的结合诱导主要的结构修饰,涉及二聚脱辅基蛋白的解离。确定为1Cu(I)结合形式的骨干化学位移证实了N末端β-折叠的保守性,而C末端折叠的最后一链出现在缓慢的构象交换中。我们假设,C-末端β-折叠的部分破坏与二聚体解离有关。在脱辅基蛋白上获得的NH交换数据与C端片的较低的热力学稳定性一致。 CopK包含七个蛋氨酸残基,其中五个看起来高度保守。化学位移数据表明在第一个Cu(I)位点含有两个或三个蛋氨酸(Met54,Met38,Met28)。添加第二个Cu(I)离子可进一步提高蛋白质可塑性。 CopK与其他周质铜结合蛋白的结构和金属结合特性的比较揭示了这些功能相关蛋白中的两个保守特征:全β折叠和富甲硫氨酸的Cu(I)结合位点。

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