首页> 美国卫生研究院文献>Frontiers in Neuroscience >In Absence of the Cellular Prion Protein Alterations in Copper Metabolism and Copper-Dependent Oxidase Activity Affect Iron Distribution
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In Absence of the Cellular Prion Protein Alterations in Copper Metabolism and Copper-Dependent Oxidase Activity Affect Iron Distribution

机译:在缺乏细胞Pri蛋白的情况下铜代谢和铜依赖性氧化酶活性的变化会影响铁的分布

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摘要

Essential elements as copper and iron modulate a wide range of physiological functions. Their metabolism is strictly regulated by cellular pathways, since dysregulation of metal homeostasis is responsible for many detrimental effects. Neurodegenerative disorders such as Alzheimer's disease, Parkinson's disease and prion diseases are characterized by alterations of metal ions. These neurodegenerative maladies involve proteins that bind metals and mediate their metabolism through not well-defined mechanisms. Prion protein, for instance, interacts with divalent cations via multiple metal-binding sites and it modulates several metal-dependent physiological functions, such as S-nitrosylation of NMDA receptors. In this work we focused on the effect of prion protein absence on copper and iron metabolism during development and adulthood. In particular, we investigated copper and iron functional values in serum and several organs such as liver, spleen, total brain and isolated hippocampus. Our results show that iron content is diminished in prion protein-null mouse serum, while it accumulates in liver and spleen. Our data suggest that these alterations can be due to impairments in copper-dependent cerulopalsmin activity which is known to affect iron mobilization. In prion protein-null mouse total brain and hippocampus, metal ion content shows a fluctuating trend, suggesting the presence of homeostatic compensatory mechanisms. However, copper and iron functional values are likely altered also in these two organs, as indicated by the modulation of metal-binding protein expression levels. Altogether, these results reveal that the absence of the cellular prion protein impairs copper metabolism and copper-dependent oxidase activity, with ensuing alteration of iron mobilization from cellular storage compartments.
机译:铜和铁等基本元素可调节多种生理功能。它们的代谢受到细胞途径的严格调节,因为金属稳态的失调是造成许多有害作用的原因。神经退行性疾病,例如阿尔茨海默氏病,帕金森氏病和病毒疾病的特征是金属离子的改变。这些神经退行性疾病涉及结合金属并通过不确定的机制介导其代谢的蛋白质。例如,病毒蛋白通过多个金属结合位点与二价阳离子相互作用,并调节几种金属依赖性的生理功能,例如NMDA受体的S-亚硝基化。在这项工作中,我们集中研究了absence病毒蛋白缺失对发育和成年期铜和铁代谢的影响。特别是,我们调查了血清和一些器官(例如肝脏,脾脏,全脑和孤立的海马体)中铜和铁的功能值。我们的结果表明,在病毒蛋白无效的小鼠血清中铁含量降低,而在肝脏和脾脏中积累。我们的数据表明,这些变化可能是由于铜依赖性铜蓝蛋白活性受损,已知会影响铁的动员。在无ion病毒蛋白的小鼠整个大脑和海马中,金属离子含量呈波动趋势,这表明存在体内平衡机制。但是,如金属结合蛋白表达水平的调节所示,铜和铁的功能值也可能在这两个器官中改变。总而言之,这些结果表明,细胞病毒蛋白的缺乏损害了铜的代谢和铜依赖性氧化酶的活性,随之而来的是铁从细胞储藏室的迁移。

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