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首页> 外文期刊>The biochemical journal >Copper(I)-mediated protein–protein interactions result from suboptimal interaction surfaces
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Copper(I)-mediated protein–protein interactions result from suboptimal interaction surfaces

机译:铜(I)介导的蛋白质间相互作用是由次佳的相互作用表面产生的

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pThe homoeostasis of metal ions in cells is the result of the contribution of several cellular pathways that involve transient, often weak, protein–protein interactions. Metal transfer typically implies the formation of adducts where the metal itself acts as a bridge between proteins, by co-ordinating residues of both interacting partners. In the present study we address the interaction between the human copper(I)-chaperone HAH1 (human ATX1 homologue) and a metal-binding domain in one of its partners, namely the P-type copper-transporting ATPase, ATP7A (ATPase, Cusup+/sup transporting, α polypeptide). The adduct was structurally characterized in solution, in the presence of copper(I), and through X-ray crystallography, upon replacing copper(I) with cadmium(II). Further insight was obtained through molecular modelling techniques and site-directed mutagenesis. It was found that the interaction involves a relatively small interface (less than 1000 ?sup2/sup, 1 ?=0.1 nm) with a low fraction of non-polar atoms. These observations provide a possible explanation for the low affinity of the two apoproteins. It appears that electrostatics is important in selecting which domain of the ATPase is able to form detectable amounts of the metal-mediated adduct with HAH1./p
机译:>金属离子在细胞中的稳态是多种细胞途径共同作用的结果,这些途径涉及短暂的(通常是微弱的)蛋白质-蛋白质相互作用。金属转移通常意味着形成加合物,其中金属本身通过协调两个相互作用配偶体的残基充当蛋白质之间的桥梁。在本研究中,我们研究了人类铜(I)-伴侣HAH1(人类ATX1同源物)与金属结合结构域在其伙伴之一之间的相互作用,即P型铜转运ATPase ATP7A(ATPase,Cu + 转运,α多肽)。在溶液中,在铜(I)存在下,通过X射线晶体学,用镉(II)取代铜(I)后,对加合物进行结构表征。通过分子建模技术和定点诱变获得了进一步的见解。发现该相互作用涉及具有较小非极性原子部分的相对较小的界面(小于1000 n sup 2,1 n = 0.1nm)。这些观察结果为两种脱辅基蛋白的低亲和力提供了可能的解释。似乎静电对选择ATPase的哪个域能够与HAH1形成可检测量的金属介导的加合物具有重要意义。

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