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朊病毒突变小鼠海马中 GABA(A)和谷氨酸受体表达、突触易化和长时程增强的调节。

Regulation of GABA(A) and glutamate receptor expression, synaptic facilitation and long-term potentiation in the hippocampus of prion mutant mice.

机构信息

Molecular and Cellular Neurobiotechnology, Institute for Bioengineering of Catalonia, and Department of Cell Biology, University of Barcelona, Barcelona, Spain.

出版信息

PLoS One. 2009 Oct 26;4(10):e7592. doi: 10.1371/journal.pone.0007592.

Abstract

BACKGROUND

Prionopathies are characterized by spongiform brain degeneration, myoclonia, dementia, and periodic electroencephalographic (EEG) disturbances. The hallmark of prioniopathies is the presence of an abnormal conformational isoform (PrP(sc)) of the natural cellular prion protein (PrP(c)) encoded by the Prnp gene. Although several roles have been attributed to PrP(c), its putative functions in neuronal excitability are unknown. Although early studies of the behavior of Prnp knockout mice described minor changes, later studies report altered behavior. To date, most functional PrP(c) studies on synaptic plasticity have been performed in vitro. To our knowledge, only one electrophysiological study has been performed in vivo in anesthetized mice, by Curtis and coworkers. They reported no significant differences in paired-pulse facilitation or LTP in the CA1 region after Schaffer collateral/commissural pathway stimulation.

METHODOLOGY/PRINCIPAL FINDINGS: Here we explore the role of PrP(c) expression in neurotransmission and neural excitability using wild-type, Prnp -/- and PrP(c)-overexpressing mice (Tg20 strain). By correlating histopathology with electrophysiology in living behaving mice, we demonstrate that both Prnp -/- mice but, more relevantly Tg20 mice show increased susceptibility to KA, leading to significant cell death in the hippocampus. This finding correlates with enhanced synaptic facilitation in paired-pulse experiments and hippocampal LTP in living behaving mutant mice. Gene expression profiling using Illumina microarrays and Ingenuity pathways analysis showed that 129 genes involved in canonical pathways such as Ubiquitination or Neurotransmission were co-regulated in Prnp -/- and Tg20 mice. Lastly, RT-qPCR of neurotransmission-related genes indicated that subunits of GABA(A) and AMPA-kainate receptors are co-regulated in both Prnp -/- and Tg20 mice.

CONCLUSIONS/SIGNIFICANCE: Present results demonstrate that PrP(c) is necessary for the proper homeostatic functioning of hippocampal circuits, because of its relationships with GABA(A) and AMPA-Kainate neurotransmission. New PrP(c) functions have recently been described, which point to PrP(c) as a target for putative therapies in Alzheimer's disease. However, our results indicate that a "gain of function" strategy in Alzheimer's disease, or a "loss of function" in prionopathies, may impair PrP(c) function, with devastating effects. In conclusion, we believe that present data should be taken into account in the development of future therapies.

摘要

背景

朊病毒病的特征是脑海绵状变性、肌阵挛、痴呆和周期性脑电图(EEG)障碍。朊病毒病的标志是存在天然细胞朊病毒蛋白(PrP(c))的异常构象异构体(PrP(sc)),该蛋白由 Prnp 基因编码。尽管已经赋予了 PrP(c) 几个角色,但它在神经元兴奋性中的推测功能尚不清楚。尽管早期对 Prnp 敲除小鼠行为的研究描述了轻微的变化,但后来的研究报告了改变的行为。迄今为止,大多数关于突触可塑性的功能性 PrP(c)研究都是在体外进行的。据我们所知,Curtis 及其同事仅在麻醉小鼠体内进行了一项电生理学研究,他们报告说在 Schaffer 侧枝/联合通路上的刺激后,CA1 区的成对脉冲易化或长时程增强没有显著差异。

方法/主要发现:在这里,我们使用野生型、Prnp -/-和过表达 PrP(c)(Tg20 株)的小鼠,通过将组织病理学与活体行为小鼠的电生理学相关联,探索 PrP(c)表达在神经传递和神经兴奋性中的作用。我们证明,不仅 Prnp -/- 小鼠,而且更相关的 Tg20 小鼠对 KA 更敏感,导致海马体中的细胞死亡显著增加。这一发现与在活体行为突变小鼠中的配对脉冲实验中增强的突触易化和海马长时程增强相关。使用 Illumina 微阵列进行基因表达谱分析和 Ingenuity 途径分析表明,129 个参与泛素化或神经传递等经典途径的基因在 Prnp -/-和 Tg20 小鼠中共同调节。最后,对神经递质相关基因的 RT-qPCR 表明,GABA(A)和 AMPA- 谷氨酸受体的亚基在 Prnp -/-和 Tg20 小鼠中共同调节。

结论/意义:目前的结果表明,由于其与 GABA(A)和 AMPA- 谷氨酸神经传递的关系,PrP(c)是海马回路正常体内功能所必需的。最近描述了新的 PrP(c)功能,这表明 PrP(c)是阿尔茨海默病潜在治疗方法的靶点。然而,我们的结果表明,阿尔茨海默病中的“功能获得”策略,或朊病毒病中的“功能丧失”,可能会损害 PrP(c)的功能,产生毁灭性的影响。总之,我们认为,目前的数据应在未来治疗方法的开发中加以考虑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5809/2763346/3ea5a69f40bf/pone.0007592.g001.jpg

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