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细胞朊蛋白的缺失会影响海马体CA1神经元中的钙离子稳态。

Loss of the cellular prion protein affects the Ca2+ homeostasis in hippocampal CA1 neurons.

作者信息

Fuhrmann Martin, Bittner Tobias, Mitteregger Gerda, Haider Nicole, Moosmang Sven, Kretzschmar Hans, Herms Jochen

机构信息

Center of Neuropathology and Prion Research, Ludwig Maximilians University, 81377 Munich, Germany.

出版信息

J Neurochem. 2006 Sep;98(6):1876-85. doi: 10.1111/j.1471-4159.2006.04011.x.

Abstract

Previous neurophysiological studies on prion protein deficient (Prnp(-/-)) mice have revealed a significant reduction of slow afterhyperpolarization currents (sI(AHP)) in hippocampal CA1 pyramidal cells. Here we aim to determine whether loss of PrP(C.) directly affects the potassium channels underlying sI(AHP) or if sI(AHP) is indirectly disturbed by altered intracellular Ca(2+) fluxes. Patch-clamp measurements and confocal Ca(2+) imaging in acute hippocampal slice preparations of Prnp(-/-) mice compared to littermate control mice revealed a reduced Ca(2+) rise in CA1 neurons lacking PrP(C) following a depolarization protocol known to induce sI(AHP). Moreover, we observed a reduced Ca(2+) influx via l-type voltage gated calcium channels (VGCCs). No differences were observed in the protein expression of the pore forming alpha1 subunit of VGCCs Prnp(-/-) mice. Surprisingly, the beta2 subunit, critically involved in the transport of the alpha1 subunit to the plasma membrane, was found to be up-regulated in knock out hippocampal tissue. On mRNA level however, no differences could be detected for the alpha1C, D and beta2-4 subunits. In conclusion our data support the notion that lack of PrP(C.) does not directly affect the potassium channels underlying sI(AHP), but modulates these channels due to its effect on the intracellular free Ca(2+) concentration via a reduced Ca(2+) influx through l-type VGCCs.

摘要

先前对朊病毒蛋白缺陷(Prnp(-/-))小鼠的神经生理学研究表明,海马CA1锥体神经元中缓慢后超极化电流(sI(AHP))显著减少。在这里,我们旨在确定PrP(C)的缺失是否直接影响sI(AHP)所依赖的钾通道,或者sI(AHP)是否因细胞内Ca(2+)通量改变而受到间接干扰。与同窝对照小鼠相比,对Prnp(-/-)小鼠急性海马脑片标本进行膜片钳测量和共聚焦Ca(2+)成像发现,在已知可诱导sI(AHP)的去极化方案后,缺乏PrP(C)的CA1神经元中Ca(2+)升高减少。此外,我们观察到通过L型电压门控钙通道(VGCCs)的Ca(2+)内流减少。在Prnp(-/-)小鼠中,未观察到VGCCs孔形成α1亚基的蛋白表达有差异。令人惊讶的是,在敲除小鼠海马组织中,发现对α1亚基向质膜转运至关重要的β2亚基上调。然而,在mRNA水平上,未检测到α1C、D和β2 - 4亚基有差异。总之,我们的数据支持这样的观点,即缺乏PrP(C)不会直接影响sI(AHP)所依赖的钾通道,而是通过减少L型VGCCs的Ca(2+)内流,对细胞内游离Ca(2+)浓度产生影响,从而调节这些通道。

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