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Identification of Cerebral Metal Ion Imbalance in the Brain of Aging Octodon degus

机译:八达通天竺鼠大脑中脑金属离子失衡的鉴定

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摘要

The accumulation of redox-active transition metals in the brain and metal dyshomeostasis are thought to be associated with the etiology and pathogenesis of several neurodegenerative diseases, and Alzheimer’s disease (AD) in particular. As well, distinct biometal imaging and role of metal uptake transporters are central to understanding AD pathogenesis and aging but remain elusive, due inappropriate detection methods. We therefore hypothesized that Octodon degus develop neuropathological abnormalities in the distribution of redox active biometals, and this effect may be due to alterations in the expression of lysosomal protein, major Fe/Cu transporters, and selected Zn transporters (ZnTs and ZIPs). Herein, we report the distribution profile of biometals in the aged brain of the endemic Chilean rodent O. degus—a natural model to investigate the role of metals on the onset and progression of AD. Using laser ablation inductively coupled plasma mass spectrometry, our quantitative images of biometals (Fe, Ca, Zn, Cu, and Al) appear significantly elevated in the aged O. degus and show an age-dependent rise. The metals Fe, Ca, Zn, and Cu were specifically enriched in the cortex and hippocampus, which are the regions where amyloid plaques, tau phosphorylation and glial alterations are most commonly reported, whilst Al was enriched in the hippocampus alone. Using whole brain extracts, age-related deregulation of metal trafficking pathways was also observed in O. degus. More specifically, we observed impaired lysosomal function, demonstrated by increased cathepsin D protein expression. An age-related reduction in the expression of subunit B2 of V-ATPase, and significant increases in amyloid beta peptide 42 (Aβ42), and the metal transporter ATP13a2 were also observed. Although the protein expression levels of the zinc transporters, ZnT (1,3,4,6, and 7), and ZIP7,8 and ZIP14 increased in the brain of aged O. degus, ZnT10, decreased. Although no significant age-related change was observed for the major iron/copper regulator IRP2, we did find a significant increase in the expression of DMT1, a major transporter of divalent metal species, 5′-aminolevulinate synthase 2 (ALAS2), and the proto-oncogene, FOS. Collectively, our data indicate that transition metals may be enriched with age in the brains of O. degus, and metal dyshomeostasis in specific brain regions is age-related.
机译:氧化还原活性过渡金属在大脑中的积累和金属异位症被认为与几种神经退行性疾病,尤其是阿尔茨海默氏病(AD)的病因和发病机理有关。同样,独特的生物金属成像和金属摄取转运蛋白的作用对于理解AD的发病机理和衰老至关重要,但由于检测方法不适当,仍然难以捉摸。因此,我们假设Octodon degus在氧化还原活性生物金属的分布中发展出神经病理学异常,并且这种影响可能是由于溶酶体蛋白,主要的Fe / Cu转运蛋白和选定的Zn转运蛋白(ZnTs和ZIP)的表达发生了变化。在这里,我们报道了在地方性智利啮齿动物O. degus的衰老大脑中生物金属的分布情况,这是一个自然模型,用于研究金属在AD发病和进展中的作用。使用激光烧蚀电感耦合等离子体质谱法,我们的生物金属(Fe,Ca,Zn,Cu和Al)的定量图像在老化的O. degus中显着升高,并显示出随年龄增长的趋势。金属Fe,Ca,Zn和Cu在大脑皮层和海马中特别富集,这是淀粉样蛋白斑块,tau磷酸化和神经胶质改变最常见的区域,而Al仅在海马中富集。使用全脑提取物,在O. degus中也观察到了与年龄有关的金属运输途径失控。更具体地说,我们观察到溶酶体功能受损,这由组织蛋白酶D蛋白表达的增加所证实。还观察到了年龄相关的V-ATPase B2亚基表达减少,淀粉样β肽42(Aβ42)和金属转运蛋白ATP13a2显着增加。尽管锌转运蛋白,ZnT(1、3、4、6和7),ZIP7、8和ZIP14在老年O.degus脑中的蛋白表达水平增加,但ZnT10却降低了。尽管没有观察到主要铁/铜调节剂IRP2的年龄相关的显着变化,但我们确实发现DMT1(一种二价金属物种,5'-氨基乙酰丙酸合酶2(ALAS2)的主要转运蛋白)的表达显着增加。原癌基因,FOS。总的来说,我们的数据表明,过渡金属可能随年龄的增长而富集在O. degus的大脑中,而特定大脑区域中的金属动态平衡与年龄有关。

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