...
首页> 外文期刊>Human Molecular Genetics >Conditional Niemann-Pick C mice demonstrate cell autonomous Purkinje cell neurodegeneration.
【24h】

Conditional Niemann-Pick C mice demonstrate cell autonomous Purkinje cell neurodegeneration.

机译:有条件的Niemann-Pick C小鼠表现出细胞自主性浦肯野细胞神经变性。

获取原文
获取原文并翻译 | 示例

摘要

Pathways regulating neuronal vulnerability are poorly understood, yet are central to identifying therapeutic targets for degenerative neurological diseases. Here, we characterize mechanisms underlying neurodegeneration in Niemann-Pick type C (NPC) disease, a lysosomal storage disorder characterized by impaired cholesterol trafficking. To date, the relative contributions of neuronal and glial defects to neuron loss are poorly defined. Using gene targeting, we generate Npc1 conditional null mutant mice. Deletion of Npc1 in mature cerebellar Purkinje cells leads to an age-dependent impairment in motor tasks, including rotarod and balance beam performance. Surprisingly, these mice did not show the early death or weight loss that are characteristic of global Npc1 null mice, suggesting that Purkinje cell degeneration does not underlie these phenotypes. Histological examination revealed the progressive loss of Purkinje cells in an anterior-to-posterior gradient. This cell autonomous neurodegeneration occurs in a spatiotemporal pattern similar to that of global knockout mice. A subpopulation of Purkinje cells in the posterior cerebellum exhibits marked resistance to cell death despite Npc1 deletion. To explore this selective response, we investigated the electrophysiological properties of vulnerable and susceptible Purkinje cell subpopulations. Unexpectedly, Purkinje cells in both subpopulations displayed no electrophysiological abnormalities prior to degeneration. Our data establish that Npc1 deficiency leads to cell autonomous, selective neurodegeneration and suggest that the ataxic symptoms of NPC disease arise from Purkinje cell death rather than cellular dysfunction.
机译:调节神经元脆弱性的途径知之甚少,但对于确定变性神经疾病的治疗靶点而言却至关重要。在这里,我们表征Niemann-Pick C型(NPC)疾病,一种溶酶体贮积病,以胆固醇运输受损为特征的神经退行性病变的机制。迄今为止,神经元和神经胶质缺损对神经元丢失的相对贡献还不清楚。使用基因靶向,我们生成Npc1条件空突变小鼠。 Npc1在成熟的小脑浦肯野细胞中的缺失会导致运动任务的年龄依赖性损伤,包括旋转脚架和平衡木性能。出人意料的是,这些小鼠没有表现出全球性的Npc1缺失小鼠所特有的早期死亡或体重减轻,这表明浦肯野细胞变性并不构成这些表型的基础。组织学检查显示浦肯野细胞以从前到后的梯度逐渐损失。这种细胞自主性神经变性的时空模式类似于全局敲除小鼠。尽管Npc1缺失,小脑后部的浦肯野细胞亚群仍表现出明显的抗细胞死亡能力。为了探索这种选择性反应,我们研究了脆弱和易感浦肯野细胞亚群的电生理特性。出乎意料的是,两个亚群中的浦肯野细胞在变性之前均未表现出电生理异常。我们的数据确定Npc1缺乏会导致细胞自主性,选择性神经退行性变,并提示NPC疾病的共济失调症状是由Purkinje细胞死亡而非细胞功能障碍引起的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号