首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >N-type calcium channel alpha1B subunit (Cav2.2) knock-out mice display hyperactivity and vigilance state differences.
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N-type calcium channel alpha1B subunit (Cav2.2) knock-out mice display hyperactivity and vigilance state differences.

机译:N型钙通道alpha1B亚基(Cav2.2)剔除小鼠表现出过度活跃和警惕状态的差异。

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Differential properties of voltage-dependent Ca2+ channels have been primarily ascribed to the alpha1 subunit, of which 10 different subtypes are currently known. For example, channels that conduct the N-type Ca2+ current possess the alpha1B subunit (Cav2.2), which has been localized, inter alia, to the piriform cortex, hippocampus, hypothalamus, locus coeruleus, dorsal raphe, thalamic nuclei, and granular layer of the cortex. Some of these regions have been previously implicated in metabolic and vigilance state control, and selective block of the N-type Ca2+ channel causes circadian rhythm disruption. In this study of Cav2.2-/- knock-out mice, we examined potential differences in feeding behavior, spontaneous locomotion, and the sleep-wake cycle. Cav2.2-/- mice did not display an overt metabolic phenotype but were hyperactive, demonstrating a 20% increase in activity under novel conditions and a 95% increase in activity under habituated conditions during the dark phase, compared with wild-type littermates. Cav2.2-/- mice also displayed vigilance state differences during the light phase, including increased consolidation of rapid-eye movement (REM) sleep and increased intervals between non-REM (NREM) and wakefulness episodes. EEG spectral power was increased during wakefulness and REM sleep and was decreased during NREM sleep in Cav2.2-/- mice. These results indicate a role of the N-type Ca2+ channel in activity and vigilance state control, which we interpret in terms of effects on neurotransmitter release.
机译:电压依赖性Ca2 +通道的差异特性主要归因于alpha1亚基,目前已知其中10个不同的亚型。例如,传导N型Ca2 +电流的通道具有alpha1B亚基(Cav2.2),该亚基尤其定位于梨状皮层,海马,下丘脑,蓝斑,背do,丘脑核和颗粒状皮层。这些区域中的某些区域先前已参与代谢和警戒状态控制,并且N型Ca2 +通道的选择性阻滞导致昼夜节律紊乱。在这项关于Cav2.2-/-敲除小鼠的研究中,我们检查了喂养行为,自发运动和睡眠-觉醒周期的潜在差异。 Cav2.2-/-小鼠没有表现出明显的代谢表型,而是活跃的,与野生型同窝仔相比,在黑暗条件下,在新条件下的活性增加了20%,在适应条件下的活性增加了95%。 Cav2.2-/-小鼠在光照期也表现出警觉状态差异,包括快速眼动(REM)睡眠的巩固增加以及非REM(NREM)和觉醒发作之间的间隔增加。在Cav2.2-/-小鼠中,在清醒和REM睡眠期间脑电图频谱功率增加,而在NREM睡眠期间脑电波频谱功率下降。这些结果表明N型Ca2 +通道在活动和警惕状态控制中的作用,我们根据对神经递质释放的影响来解释这些作用。

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