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首页> 外文期刊>Antioxidants and redox signalling >DJ-1 loss by glutaredoxin but not glutathione depletion triggers Daxx translocation and cell death.
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DJ-1 loss by glutaredoxin but not glutathione depletion triggers Daxx translocation and cell death.

机译:DJ-1会被谷胱甘肽损失,但不会耗尽谷胱甘肽而触发Daxx易位和细胞死亡。

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摘要

Environmental and genetic causes are implicated in the etiopathogenesis of Parkinson's disease (PD), a neurodegenerative movement disorder. DJ-1, a putative gene recessively linked to early onset PD, functions as an antioxidant, transcriptional co-activator, and molecular chaperone. We examined DJ-1 status following global perturbation of protein thiol homeostasis by depleting cellular antioxidant glutathione or downregulating glutaredoxin 1, a thiol disulfide oxidoreductase, wherein both paradigms generate oxidative stress. While these perturbations did not affect expression of DJ-1 mRNA, downregulation of glutaredoxin 1 but not glutathione depletion caused loss of DJ-1 protein, translocation of Daxx (a death-associated protein) from nucleus, and cell death. Overexpression of wild-type DJ-1, but not the cysteine mutants, prevented Daxx translocation and cytotoxicity. Protease inhibitors prevented constitutive DJ-1 loss. Residual DJ-1 was present in reduced state, indicating that DJ-1 when oxidized was degraded through proteolysis. Thus, loss of DJ-1 occurring through its oxidative modification and subsequent proteolysis mediated through dysregulation of thiol disulfide oxidoreductase may contribute to pathogenesis of sporadic PD, thus providing a link between environmental challenges and constitutive levels of this vital protein.
机译:环境和遗传原因与帕金森氏病(PD)(一种神经退行性运动障碍)的病因有关。 DJ-1是一种与早发性PD隐性连接的推定基因,具有抗氧化剂,转录共激活因子和分子伴侣的功能。我们通过消耗细胞抗氧化剂谷胱甘肽或下调谷胱甘肽1(一种巯基二硫键氧化还原酶)来抑制蛋白硫醇稳态的总体扰动后的DJ-1状态,其中两种范例均产生氧化应激。尽管这些扰动不影响DJ-1 mRNA的表达,但谷胱甘肽-1的下调而不是谷胱甘肽耗竭的引起DJ-1蛋白的丢失,Daxx(一种与死亡相关的蛋白)从细胞核的移位以及细胞死亡。野生型DJ-1,但不是半胱氨酸突变体的过表达,阻止了Daxx易位和细胞毒性。蛋白酶抑制剂可预防DJ-1组成型丢失。残留的DJ-1以还原状态存在,表明DJ-1氧化时会通过蛋白水解而降解。因此,DJ-1的氧化修饰和随后的巯基二硫键氧化还原酶失调介导的蛋白水解作用导致的DJ-1丢失,可能会导致散发PD的发病,从而在环境挑战与该重要蛋白质的组成水平之间提供了联系。

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