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首页> 外文期刊>Neurobiology of disease >Glucocerebrosidase activity, cathepsin D and monomeric alpha-synuclein interactions in a stem cell derived neuronal model of a PD associated GBA1 mutation
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Glucocerebrosidase activity, cathepsin D and monomeric alpha-synuclein interactions in a stem cell derived neuronal model of a PD associated GBA1 mutation

机译:葡萄糖纤维素酶活性,组织蛋白酶D和单体α-突触核蛋白在PD相关GBA1突变的干细胞衍生神经元模型中的相互作用

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The presence of GBA1 gene mutations increases risk for Parkinson's disease (PD), but the pathogenic mechanisms of GBA1 associated PD remain unknown. Given that impaired alpha-synuclein turnover is a hallmark of PD pathogenesis and cathepsin D is a key enzyme involved in alpha-synuclein degradation in neuronal cells, we have examined the relationship of glucocerebrosidase (GCase), cathepsin D and monomeric alpha-synuclein in human neural crest stem cell derived dopaminergic neurons. We found that normal activity of GCase is necessary for cathepsin D to perform its function of monomeric alpha-synuclein removal from neurons. GBA1 mutations lead to a lower level of cathepsin D protein and activity, and higher level of monomeric alpha-synuclein in neurons. When GBA1 mutant neurons were treated with GCase replacement or chaperone therapy; cathepsin D protein levels and activity were restored, and monomeric alpha-synuclein decreased. When cathepsin D was inhibited, GCase replacement failed to reduce monomeric alpha-synuclein levels in GBA1 mutant neurons. These data indicate that GBA1 gene mutations increase monomeric alpha-synuclein levels via an effect on lysosomal cathepsin D in neurons.
机译:GBA1基因突变的存在增加了帕金森病的风险(Pd),但GBA1相关PD的致病机制仍然未知。鉴于α-突触核蛋白的周转损伤是PD发病机制的标志,并且组织蛋白酶D是神经元细胞中α-突触核蛋白的关键酶,我们研究了葡萄糖纤维素酶(GCESE),组织蛋白酶D和单体α-突触核蛋白在人中的关系神经嵴干细胞衍生的多巴胺能神经元。我们发现,组织蛋白酶D需要GCEAS的正常活性,以进行从神经元的单体α-突触核蛋蛋白去除的功能。 GBA1突变导致细胞膜D蛋白和活性的较低水平,并且神经元中的单体α-突触核蛋白的较高水平。当用Gcase替代或伴侣疗法治疗GBA1突变神经元时;恢复组织蛋白酶D蛋白水平和活性,单体α-突触核蛋白降低。当抑制组织蛋白酶D时,GCEAS替代未能降低GBA1突变神经元中的单体α-突触核蛋白水平。这些数据表明GBA1基因突变通过神经元中的溶酶体组织蛋白酶D的影响增加单体α-突触核蛋白水平。

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