Department of Chemical Sciences, University of Padova, via Marzolo, 1 35131 Padova, Italy; Department of Drug Discovery and Development, Istituto Italiano di Tecnologia, Via Morego, 30 16163 Genoa, Italy.
Department of Biomedical Sciences, University of Padova, Via Ugo Bassi, 58b 35121 Padova, Italy; Department of Biology, University of Padova, Via Ugo Bassi, 58b 35121 Padova, Italy.
J Biol Chem. 2014 Apr 11;289(15):10887-10899. doi: 10.1074/jbc.M113.535112. Epub 2014 Feb 24.
Lack of oxidative stress control is a common and often prime feature observed in many neurodegenerative diseases. Both DJ-1 and SOD1, proteins involved in familial Parkinson disease and amyotrophic lateral sclerosis, respectively, play a protective role against oxidative stress. Impaired activity and modified expression of both proteins have been observed in different neurodegenerative diseases. A potential cooperative action of DJ-1 and SOD1 in the same oxidative stress response pathway may be suggested based on a copper-mediated interaction between the two proteins reported here. To investigate the mechanisms underlying the antioxidative function of DJ-1 in relation to SOD1 activity, we investigated the ability of DJ-1 to bind copper ions. We structurally characterized a novel copper binding site involving Cys-106, and we investigated, using different techniques, the kinetics of DJ-1 binding to copper ions. The copper transfer between the two proteins was also examined using both fluorescence spectroscopy and specific biochemical assays for SOD1 activity. The structural and functional analysis of the novel DJ-1 copper binding site led us to identify a putative role for DJ-1 as a copper chaperone. Alteration of the coordination geometry of the copper ion in DJ-1 may be correlated to the physiological role of the protein, to a potential failure in metal transfer to SOD1, and to successive implications in neurodegenerative etiopathogenesis.
氧化应激控制的缺失是许多神经退行性疾病中常见且通常是主要特征。分别参与家族性帕金森病和肌萎缩性侧索硬化症的 DJ-1 和 SOD1 蛋白均对氧化应激起到保护作用。在不同的神经退行性疾病中均观察到这两种蛋白的活性受损和表达改变。基于此处报道的两种蛋白之间的铜介导相互作用,可以推测 DJ-1 和 SOD1 可能在同一氧化应激反应途径中具有协同作用。为了研究 DJ-1 与 SOD1 活性相关的抗氧化功能的机制,我们研究了 DJ-1 结合铜离子的能力。我们对涉及 Cys-106 的新型铜结合位点进行了结构表征,并使用不同技术研究了 DJ-1 与铜离子结合的动力学。还使用荧光光谱法和 SOD1 活性的特定生化测定法研究了两种蛋白之间的铜转移。对新型 DJ-1 铜结合位点的结构和功能分析使我们确定了 DJ-1 作为铜伴侣蛋白的潜在作用。DJ-1 中铜离子的配位几何的改变可能与该蛋白的生理作用、向 SOD1 转移金属的潜在失败以及随后对神经退行性疾病发病机制的影响有关。