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神经元活动对离子通道定位和磷酸化的调节。

Regulation of ion channel localization and phosphorylation by neuronal activity.

作者信息

Misonou Hiroaki, Mohapatra Durga P, Park Eunice W, Leung Victor, Zhen Dongkai, Misonou Kaori, Anderson Anne E, Trimmer James S

机构信息

Department of Pharmacology, School of Medicine, University of California, Davis, California 95616, USA.

出版信息

Nat Neurosci. 2004 Jul;7(7):711-8. doi: 10.1038/nn1260. Epub 2004 Jun 13.

Abstract

Voltage-dependent Kv2.1 K(+) channels, which mediate delayed rectifier Kv currents (I(K)), are expressed in large clusters on the somata and dendrites of principal pyramidal neurons, where they regulate neuronal excitability. Here we report activity-dependent changes in the localization and biophysical properties of Kv2.1. In the kainate model of continuous seizures in rat, we find a loss of Kv2.1 clustering in pyramidal neurons in vivo. Biochemical analysis of Kv2.1 in the brains of these rats shows a marked dephosphorylation of Kv2.1. In cultured rat hippocampal pyramidal neurons, glutamate stimulation rapidly causes dephosphorylation of Kv2.1, translocation of Kv2.1 from clusters to a more uniform localization, and a shift in the voltage-dependent activation of I(K). An influx of Ca(2+) leading to calcineurin activation is both necessary and sufficient for these effects. Our finding that neuronal activity modifies the phosphorylation state, localization and function of Kv2.1 suggests an important link between excitatory neurotransmission and the intrinsic excitability of pyramidal neurons.

摘要

电压依赖性Kv2.1钾离子通道介导延迟整流钾电流(I(K)),在主要锥体神经元的胞体和树突上大量聚集表达,在这些部位调节神经元兴奋性。在此,我们报告Kv2.1在定位和生物物理特性方面的活性依赖性变化。在大鼠持续性癫痫发作的红藻氨酸模型中,我们发现体内锥体神经元中Kv2.1聚集缺失。对这些大鼠大脑中Kv2.1的生化分析显示Kv2.1显著去磷酸化。在培养的大鼠海马锥体神经元中,谷氨酸刺激迅速导致Kv2.1去磷酸化、Kv2.1从聚集部位转位至更均匀的定位,并使I(K)的电压依赖性激活发生偏移。导致钙调磷酸酶激活的钙离子内流对于这些效应而言既是必要的也是充分的。我们的发现,即神经元活动可改变Kv2.1的磷酸化状态、定位和功能,提示了兴奋性神经传递与锥体神经元固有兴奋性之间的重要联系。

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