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首页> 外文期刊>International journal of biological sciences >Early exposure to paraquat sensitizes dopaminergic neurons to subsequent silencing of PINK1 gene expression in mice
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Early exposure to paraquat sensitizes dopaminergic neurons to subsequent silencing of PINK1 gene expression in mice

机译:早期接触百草枯会使多巴胺能神经元对小鼠中PINK1基因表达的随后沉默敏感

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摘要

Environmental exposure, genetic modification, and aging are considered risky for Parkinson's disease (PD). How these risk factors cooperate to induce progressive neurodegeneration in PD remains largely unknown. Paraquat is an herbicide commonly used for weed and grass control. Exposure to paraquat is associated with the increased incidence of PD. In contrast to familial PD, most sporadic PD cases do not have genetic mutation, but may suffer from partial dysfunction of neuron-protective genes as aging. Using conditional transgenic RNAi, we showed that temporal silencing of PINK1 expression in adult mice increased striatal dopamine, the phenotype that could not be induced by constitutive gene silencing. Moreover, early exposure to paraquat sensitized dopaminergic neurons to subsequent silencing of PINK1 gene expression, leading to a significant loss of dopaminergic neurons. Our findings suggest a novel pathogenesis of PD: exposure to environmental toxicants early in the life reduces the threshold of developing PD and partial dysfunction of neuron-protective genes later in the life initiates a process of progressive neurodegeneration to cross the reduced threshold of dis-ease onset.
机译:环境暴露,基因改造和衰老被认为是帕金森氏病(PD)的风险。这些危险因素如何协同作用以诱导PD进行性神经退行性变仍很未知。百草枯是通常用于杂草和草类控制的除草剂。百草枯暴露与PD发病率增加有关。与家族性PD相比,大多数散发性PD病例没有遗传突变,但可能会随着衰老而遭受神经元保护基因的部分功能障碍。使用条件性转基因RNAi,我们显示成年小鼠中PINK1表达的暂时沉默增加了纹状体多巴胺,该纹状体不能由组成型基因沉默诱导。此外,尽早暴露于百草枯致敏的多巴胺能神经元会导致随后的PINK1基因表达沉默,从而导致多巴胺能神经元的大量损失。我们的发现提示PD的新发病机制:在生命早期接触环境毒物可降低PD的发生阈值,并在生命后期减少神经元保护基因的部分功能障碍,从而引发进行性神经变性过程,从而跨越疾病缓解的阈值发作。

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