首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >CopC Protein from Pseudomonas syringae:Intermolecular Transfer of Copper from Both the Copper(l)and Copper(ll)Sites
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CopC Protein from Pseudomonas syringae:Intermolecular Transfer of Copper from Both the Copper(l)and Copper(ll)Sites

机译:丁香假单胞菌的CopC蛋白:铜(l)和铜(ll)站点中的铜分子间转移

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摘要

The CopC protein from Pseudomonas syringae pathovar tomato is expressed as one of four proteins encoded by the operon CopABCD that is responsible for copper resistance.It is a small soluble molecule(10.5 kDa)with a beta-barrel structure and features two distinct copper binding sites,which are highly specific for Cu~I(K_D >= 10~(-13))and Cu~II(K_b approx=10~(-15)).These dissociation constants were estimated via ligand competition experiments monitored by electronic spectral and fluorescence probes.The chemistries of the two copper sites are interdependent.When the Cu~II site is empty,the Cu~I ion is oxidized by air,but when both sites are occupied,the molecule is stable in air.The availability of an unoccupied site of higher affinity induces intermolecular transfer of either Cu~Ior Cu~II while maintaining free copper ion concentrations in solution at sub-picomolar levels.This intriguing copper chemistry is consistent with the proposed role of CopC as a copper carrier in the oxidizing periplasmic space.These properties would allow it to exchange either Cu~I or Cu~II with its putative partners CopA,CopB,and CopD,contrasting with the role of the Cu~I(only)chaperones found in the reducing cytoplasm.
机译:丁香假单胞菌(Pseudomonas syringae)致病番茄的CopC蛋白被表达为操纵子CopABCD编码的四种蛋白之一,该蛋白负责铜抗性,是一个小可溶性分子(10.5 kDa),具有β-桶结构,具有两个不同的铜结合位点这些离解常数对Cu〜I(K_D> = 10〜(-13))和Cu〜II(K_b大约= 10〜(-15))具有高度特异性。两个铜位的化学性质是相互依赖的。当Cu〜II位为空时,Cu〜I离子被空气氧化,但是当两个位都被占据时,分子在空气中稳定。未被占据的较高亲和力位点诱导Cu〜Ior Cu〜II的分子间转移,同时将溶液中的游离铜离子浓度维持在亚皮摩尔水平。这种有趣的铜化学性质与CopC作为氧化性pe中铜载体的拟议作用一致这些性质使它可以与推测的伴侣CopA,CopB和CopD交换Cu〜I或Cu〜II,这与在还原性细胞质中发现的Cu〜I(仅)伴侣分子的作用相反。

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