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铜配体突变对具有绿色铜中心的铜氧化还原蛋白的影响。

Impact of copper ligand mutations on a cupredoxin with a green copper center.

机构信息

Aix-Marseille Univ, CNRS, BIP UMR 7281, 31 chemin J. Aiguier, 13009 Marseille Cedex 20, France.

Aix Marseille Univ, CNRS, Unité de Fermentation, FR 3479, 31 chemin J. Aiguier, 13009 Marseille Cedex 20, France.

出版信息

Biochim Biophys Acta Bioenerg. 2017 May;1858(5):351-359. doi: 10.1016/j.bbabio.2017.02.007. Epub 2017 Feb 16.

Abstract

Mononuclear cupredoxins contain a type 1 copper center with a trigonal or tetragonal geometry usually maintained by four ligands, a cystein, two histidines and a methionine. The recent discovery of new members of this family with unusual properties demonstrates, however, the versatility of this class of proteins. Changes in their ligand set lead to drastic variation in their metal site geometry and in the resulting spectroscopic and redox features. In our work, we report the identification of the copper ligands in the recently discovered cupredoxin AcoP. We show that even though AcoP possesses a classical copper ligand set, it has a highly perturbed copper center. In depth studies of mutant's properties suggest a high degree of constraint existing in the copper center of the wild type protein and even the addition of exogenous ligands does not lead to the reconstitution of the initial copper center. Not only the chemical nature of the axial ligand but also constraints brought by its covalent binding to the protein backbone might be critical to maintain a green copper site with high redox potential. This work illustrates the importance of experimentally dissecting the molecular diversity of cupredoxins to determine the molecular determinants responsible for their copper center geometry and redox potential.

摘要

单体铜氧化还原酶含有一个 1 型铜中心,通常由四个配体(一个半胱氨酸、两个组氨酸和一个蛋氨酸)维持其三角或四方几何形状。然而,最近发现具有不寻常性质的该家族的新成员证明了这类蛋白质的多功能性。它们配体集的变化导致其金属位点几何形状以及由此产生的光谱和氧化还原特性发生剧烈变化。在我们的工作中,我们报告了在最近发现的 AcoP 铜氧化还原酶中鉴定出铜配体。我们表明,尽管 AcoP 具有经典的铜配体集,但它具有高度受扰的铜中心。对突变体性质的深入研究表明,在野生型蛋白质的铜中心存在高度的约束,甚至添加外源性配体也不能导致初始铜中心的重建。不仅轴向配体的化学性质,而且其与蛋白质骨架的共价结合带来的约束,对于维持具有高氧化还原电位的绿色铜中心可能是至关重要的。这项工作说明了通过实验剖析铜氧化还原酶的分子多样性来确定其铜中心几何形状和氧化还原电位的分子决定因素的重要性。

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