Suppr超能文献

DJ-1 缺陷型多巴胺能神经元对能量代谢损伤的敏感性增强:钠钾 ATP 酶的作用

Enhanced sensitivity of DJ-1-deficient dopaminergic neurons to energy metabolism impairment: role of Na+/K+ ATPase.

作者信息

Pisani A, Martella G, Tscherter A, Costa C, Mercuri N B, Bernardi G, Shen J, Calabresi P

机构信息

Clinica Neurologica, Dipartimento di Neuroscienze, Università Tor Vergata, Roma, Italy.

出版信息

Neurobiol Dis. 2006 Jul;23(1):54-60. doi: 10.1016/j.nbd.2006.02.001. Epub 2006 Apr 19.

Abstract

DJ-1 gene mutations lead to an inherited form of early-onset parkinsonism. The function of DJ-1 is unclear, though a neuroprotective role has been postulated. Electrophysiological recordings were made of striatal and dopaminergic nigral neurons both of wild-type (WT) and DJ-1-knockout (DJ-1(-/-)) mice. We assessed the responses of dopaminergic cells to combined oxygen and glucose deprivation (OGD), and to the mitochondrial toxin rotenone. OGD induced a membrane hyperpolarization in nigral neurons from WT mice. Similarly, rotenone hyperpolarized neurons and then a depolarization occurred. In DJ-1(-/-) mice, the OGD-induced hyperpolarization was significantly enhanced. Moreover, rotenone caused a shorter hyperpolarization followed by an irreversible depolarization. To evaluate the involvement of Na+/K+ ATPase, we tested ouabain, a Na+/K+ ATPase inhibitor, on two distinct neuronal subtypes. Compared to WT mice, in dopaminergic neurons from DJ-1(-/-) mice, ouabain induced rapid and irreversible membrane potential changes. Notably, this effect was observed at concentrations that were unable to produce membrane potential shifts on striatal spiny neurons, both from WT and DJ-1(-/-) mice. These findings suggest that DJ-1 loss-of-function enhances vulnerability to energy metabolism alterations, and that nigral neurons are particularly sensitive to Na+/K+ ATPase impairment.

摘要

DJ-1基因突变会导致一种遗传性早发性帕金森病。DJ-1的功能尚不清楚,不过有人推测它具有神经保护作用。对野生型(WT)和DJ-1基因敲除(DJ-1(-/-))小鼠的纹状体和多巴胺能黑质神经元进行了电生理记录。我们评估了多巴胺能细胞对氧糖剥夺(OGD)联合处理以及对线粒体毒素鱼藤酮的反应。OGD诱导野生型小鼠黑质神经元出现膜超极化。同样,鱼藤酮使神经元超极化,随后发生去极化。在DJ-1(-/-)小鼠中,OGD诱导的超极化显著增强。此外,鱼藤酮引起的超极化持续时间较短,随后是不可逆的去极化。为了评估Na+/K+ ATP酶的参与情况,我们在两种不同的神经元亚型上测试了Na+/K+ ATP酶抑制剂哇巴因。与野生型小鼠相比,在DJ-1(-/-)小鼠的多巴胺能神经元中,哇巴因诱导了快速且不可逆的膜电位变化。值得注意的是,在野生型和DJ-1(-/-)小鼠纹状体棘状神经元上,该效应在无法产生膜电位变化的浓度下即可观察到。这些发现表明,DJ-1功能丧失会增加对能量代谢改变的易感性,并且黑质神经元对Na+/K+ ATP酶损伤特别敏感。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验