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A redox switch in CopC: An intriguing copper trafficking protein that binds copper(I) and copper(II) at different sites

机译:CopC中的氧化还原开关:一种有趣的铜转运蛋白,可在不同位置结合铜(I)和铜(II)

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摘要

The protein CopC from Pseudomonas syringae has been found capable of binding copper(I) and copper(II) at two different sites, occupied either one at a time or simultaneously. The protein, consisting of 102 amino acids, is known to bind copper(II) in a position that is now found consistent with a coordination arrangement including His-1, Glu-27, Asp-89, and His-91. A full solution structure analysis is reported here for Cu(I)-CopC. The copper(I) site is constituted by His-48 and three of the four Met residues (40, 43, 46, 51), which are clustered in a Met-rich region. Both copper binding sites have been characterized through extended x-ray absorption fine structure studies. They represent novel coordination environments for copper in proteins. The two sites are ≈30 Å far apart and have little affinity for the ion in the other oxidation state. Oxidation of Cu(I)-CopC or reduction of Cu(II)-CopC causes migration of copper from one site to the other. This behavior is observed both in NMR and EXAFS studies and indicates that CopC can exchange copper between two sites activated by a redox switch. CopC resides in the periplasm of Gram-negative bacteria where there is a multicopper oxidase, CopA, which may modulate the redox state of copper. CopC and CopA are coded in the same operon, responsible for copper resistance. These peculiar and novel properties of CopC are discussed with respect to their relevance for copper homeostasis.
机译:已经发现丁香假单胞菌的CopC蛋白能够在两个不同的位点结合铜(I)和铜(II),这些位点一次或同时被占据。已知该蛋白质由102个氨基酸组成,其结合铜(II)的位置现已发现与包括His-1,Glu-27,Asp-89和His-91在内的配位安排一致。这里报道了Cu(I)-CopC的完整溶液结构分析。铜(I)位点由His-48和四个Met残基中的三个残基(40、43、46、51)组成,这些残基聚集在一个Met富集区域中。两个铜结合位点已通过扩展的X射线吸收精细结构研究进行了表征。它们代表了蛋白质中铜的新型配位环境。这两个位点相距≈30Å,并且与另一种氧化态下的离子几乎没有亲和力。 Cu(I)-CopC的氧化或Cu(II)-CopC的还原导致铜从一个位置迁移到另一个位置。在NMR和EXAFS研究中都观察到了这种行为,表明CopC可以在氧化还原开关激活的两个位点之间交换铜。 CopC驻留在革兰氏阴性细菌的周质中,那里存在一种多铜氧化酶CopA,它可以调节铜的氧化还原状态。 CopC和CopA在同一操纵子中编码,负责铜的电阻。讨论了CopC的这些独特和新颖的特性,它们与铜稳态有关。

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