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Formation and implications of alpha-synuclein radical in Maneb- and paraquat-induced models of Parkinson’s disease

机译:在Maneb和百草枯诱发的帕金森氏病模型中α-突触核蛋白自由基的形成及其意义

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摘要

Parkinson’s disease (PD) is a debilitating, progressive, neurodegenerative disorder characterized by progressive loss of dopaminergic neurons and motor deficits. Alpha-synuclein-containing aggregates represent a feature of a variety of neurodegenerative disorders, including PD; however, the mechanism that initiates and promotes intraneuronal alpha-synuclein aggregation remains unknown. We hypothesized protein radical formation as an initiating mechanism for alpha-synuclein aggregation. Therefore, we used the highly sensitive immuno-spin trapping technique to investigate protein radical formation as a possible mechanism of alpha-synuclein aggregation as well as to investigate the source of protein radical formation in the midbrains of Maneb and paraquat coexposed mice. Coexposure to Maneb and paraquat for 6 weeks resulted in active microgliosis, NADPH oxidase activation, and inducible nitric oxide synthase (iNOS) induction, which culminated in protein radical formation in the midbrains of mice. Results obtained with immuno-spin trapping and immunoprecipitation experiments confirmed formation of alpha-synuclein radicals in dopaminergic neurons of exposed mice. Free radical formation requires NADPH oxidase and iNOS, as indicated by decreased protein radical formation in knockout mice (P47phox−/− and iNOS−/−) and in mice treated with inhibitors such as FeTPPS (a peroxynitrite decomposition catalyst), 1400W (an iNOS inhibitor), or apocynin (a NADPH oxidase inhibitor). Concurrence of protein radical formation with dopaminergic neuronal death indicated a link between protein radicals and disease progression. Taken together, these results show for the first time the formation and detection of the alpha-synuclein radical and suggest that NADPH oxidase and iNOS play roles in peroxynitrite-mediated protein radical formation and subsequent neuronal death in the midbrains of Maneb and paraquat coexposed mice.
机译:帕金森氏病(PD)是一种令人衰弱的进行性神经退行性疾病,其特征在于多巴胺能神经元的进行性丧失和运动功能障碍。含α-突触核蛋白的聚集体代表了包括PD在内的多种神经退行性疾病的特征。然而,启动和促进神经元内α-突触核蛋白聚集的机制仍然未知。我们假设蛋白质自由基的形成是α-突触核蛋白聚集的起始机制。因此,我们使用了高度敏感的免疫自旋捕获技术来研究蛋白质自由基的形成,这可能是α-突触核蛋白聚集的一种机制,并研究了Maneb和百草枯共暴露小鼠中脑中蛋白质自由基形成的来源。与Maneb和百草枯共暴露6周导致活动性小胶质细胞增生,NADPH氧化酶活化和诱导型一氧化氮合酶(iNOS)诱导,最终导致小鼠中脑的蛋白质自由基形成。免疫自旋捕获和免疫沉淀实验获得的结果证实了暴露小鼠多巴胺能神经元中α-突触核蛋白自由基的形成。自由基形成需要NADPH氧化酶和iNOS,如基因敲除小鼠(P47phox -/-和iNOS -// )和经抑制剂处理的小鼠中蛋白质自由基形成减少所表明的那样如FeTPPS(一种过亚硝酸盐分解催化剂),1400W(一种iNOS抑制剂)或Apocynin(一种NADPH氧化酶抑制剂)。蛋白自由基形成与多巴胺能神经元死亡的并发表明蛋白自由基与疾病进展之间存在联系。综上所述,这些结果首次显示了α-突触核蛋白自由基的形成和检测,并表明NADPH氧化酶和iNOS在过氧化亚硝酸盐介导的蛋白自由基形成以及随后的Maneb和百草枯共暴露小鼠的中枢神经元死亡中起作用。

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