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帕金森病相关突变型α-突触核蛋白在中脑多巴胺能神经元中的条件性表达导致进行性神经退行性变和转录因子核受体相关 1 的降解。

Conditional expression of Parkinson's disease-related mutant α-synuclein in the midbrain dopaminergic neurons causes progressive neurodegeneration and degradation of transcription factor nuclear receptor related 1.

机构信息

Transgenics Section, Laboratory of Neurogenetics, National Institute on Aging, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

J Neurosci. 2012 Jul 4;32(27):9248-64. doi: 10.1523/JNEUROSCI.1731-12.2012.

Abstract

α-Synuclein (α-syn) plays a prominent role in the degeneration of midbrain dopaminergic (mDA) neurons in Parkinson's disease (PD). However, only a few studies on α-syn have been performed in the mDA neurons in vivo, which may be attributed to a lack of α-syn transgenic mice that develop PD-like severe degeneration of mDA neurons. To gain mechanistic insights into the α-syn-induced mDA neurodegeneration, we generated a new line of tetracycline-regulated inducible transgenic mice that overexpressed the PD-related α-syn A53T missense mutation in the mDA neurons. Here we show that the mutant mice developed profound motor disabilities and robust mDA neurodegeneration, resembling some key motor and pathological phenotypes of PD. We also systematically examined the subcellular abnormalities that appeared in the mDA neurons of mutant mice and observed a profound decrease of dopamine release, the fragmentation of Golgi apparatus, and the impairments of autophagy/lysosome degradation pathways in these neurons. To further understand the specific molecular events leading to the α-syn-dependent degeneration of mDA neurons, we found that overexpression of α-syn promoted a proteasome-dependent degradation of nuclear receptor-related 1 protein (Nurr1), whereas inhibition of Nurr1 degradation ameliorated the α-syn-induced loss of mDA neurons. Given that Nurr1 plays an essential role in maintaining the normal function and survival of mDA neurons, our studies suggest that the α-syn-mediated suppression of Nurr1 protein expression may contribute to the preferential vulnerability of mDA neurons in the pathogenesis of PD.

摘要

α-突触核蛋白(α-syn)在帕金森病(PD)中中脑多巴胺能(mDA)神经元的退化中起着重要作用。然而,仅有少数研究在体内 mDA 神经元中进行了α-syn 研究,这可能归因于缺乏可发展出类似于 PD 中 mDA 神经元严重退化的 PD 样病变的α-syn 转基因小鼠。为了深入了解α-syn 诱导的 mDA 神经退行性变的机制,我们产生了一种新的四环素调控的可诱导转基因小鼠系,该小鼠在 mDA 神经元中过表达了与 PD 相关的α-syn A53T 错义突变。在这里,我们发现突变小鼠出现了严重的运动障碍和 mDA 神经元大量退化,类似于 PD 的一些关键运动和病理表型。我们还系统地检查了突变小鼠 mDA 神经元中出现的亚细胞异常,观察到这些神经元中多巴胺释放显著减少、高尔基器碎片化以及自噬/溶酶体降解途径受损。为了进一步了解导致 mDA 神经元中α-syn 依赖性退化的特定分子事件,我们发现α-syn 的过表达促进了核受体相关 1 蛋白(Nurr1)的蛋白酶体依赖性降解,而抑制 Nurr1 降解则改善了α-syn 诱导的 mDA 神经元丢失。鉴于 Nurr1 在维持 mDA 神经元的正常功能和存活中起着至关重要的作用,我们的研究表明,α-syn 介导的 Nurr1 蛋白表达抑制可能有助于 PD 发病机制中 mDA 神经元的优先易损性。

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