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Iron is a specific cofactor for distinct oxidation- and aggregation-dependent Aβ toxicity mechanisms in a Drosophila model

机译:铁是果蝇模型中不同的依赖于氧化和聚集的Aβ毒性机制的特定辅助因子

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Metals, including iron, are present at high concentrations in amyloid plaques in individuals with Alzheimer's disease, where they are also thought to be cofactors in generating oxidative stress and modulating amyloid formation. In this study, we present data from several Drosophila models of neurodegenerative proteinopathies indicating that the interaction between iron and amyloid beta peptide (Aβ) is specific and is not seen for other aggregation-prone polypeptides. The interaction with iron is likely to be important in the dimerisation of Aβ and is mediated by three N-terminal histidines. Transgenic fly lines systematically expressing all combinations of HisAla substitutions in Aβ were generated and used to study the pathological role of these residues. Developmental eye phenotypes, longevity and histological examinations indicate that the N-terminal histidines have distinct position-dependent and -independent mechanisms. The former mediate the toxic effects of metals and Aβ aggregation under non-oxidising conditions and the latter are relevant under oxidising conditions. Understanding how Aβ mediates neurotoxic effects in vivo will help to better target pathological pathways using aggregation blockers and metal-modifying agents.
机译:在患有阿尔茨海默氏病的个体的淀粉样斑块中,金属(包括铁)的含量很高,在那里,它们也被认为是产生氧化应激和调节淀粉样蛋白形成的辅助因子。在这项研究中,我们提供了来自果蝇神经退行性蛋白质病的几种模型的数据,这些数据表明铁和淀粉样蛋白β肽(Aβ)之间的相互作用是特异性的,而其他易于聚集的多肽则看不到。与铁的相互作用可能对Aβ的二聚化很重要,并由三个N端组氨酸介导。产生了系统表达Aβ中His> Ala取代的所有组合的转基因蝇系,并用于研究这些残基的病理作用。发育眼表型,寿命和组织学检查表明,N-末端组氨酸具有不同的位置依赖性和非依赖性机制。前者在非氧化条件下介导金属和Aβ聚集的毒性作用,而后者在氧化条件下相关。了解Aβ如何在体内介导神经毒性作用将有助于使用聚集阻滞剂和金属修饰剂更好地靶向病理途径。

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