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首页> 外文期刊>The Journal of Comparative Neurology >Expression of Kv3.1b potassium channel is widespread in macaque motor cortex pyramidal cells: A histological comparison between rat and macaque
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Expression of Kv3.1b potassium channel is widespread in macaque motor cortex pyramidal cells: A histological comparison between rat and macaque

机译:KV3.1b钾通道的表达在猕猴马克马克式锥形锥体锥体上普及:大鼠和猕猴之间的组织学比较

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There are substantial differences across species in the organization and function of the motor pathways. These differences extend to basic electrophysiological properties. Thus, in rat motor cortex, pyramidal cells have long duration action potentials, while in the macaque, some pyramidal neurons exhibit short duration "thin" spikes. These differences may be related to the expression of the fast potassium channel Kv3.1b, which in rat interneurons is associated with generation of thin spikes. Rat pyramidal cells typically lack these channels, while there are reports that they are present in macaque pyramids. Here we made a systematic, quantitative comparison of the Kv3.1b expression in sections from macaque and rat motor cortex, using two different antibodies (NeuroMab, Millipore). As our standard reference, we examined, in the same sections, Kv3.1b staining in parvalbumin-positive interneurons, which show strong Kv3.1b immunoreactivity. In macaque motor cortex, a large sample of pyramidal neurons were nearly all found to express Kv3.1b in their soma membranes. These labeled neurons were identified as pyramidal based either by expression of SMI32 (a pyramidal marker), or by their shape and size, and lack of expression of parvalbumin (a marker for some classes of interneuron). Large (Betz cells), medium, and small pyramidal neurons all expressed Kv3.1b. In rat motor cortex, SMI32-postive pyramidal neurons expressing Kv3.1b were very rare and weakly stained. Thus, there is a marked species difference in the immunoreactivity of Kv3.1b in pyramidal neurons, and this may be one of the factors explaining the pronounced electrophysiological differences between rat and macaque pyramidal neurons.
机译:在机动途径的组织和功能中,物种中存在显着差异。这些差异延伸到基本的电生理性质。因此,在大鼠电动机皮质中,金字塔细胞具有长的持续时间作用电位,而在猕猴中,一些金字塔神经元表现出短持续时间“薄”钉。这些差异可能与快速钾通道Kv3.1b的表达有关,在大鼠中间核与薄尖峰的产生相关。大鼠金字塔型细胞通常缺乏这些通道,同时有报道将它们存在于猕猴的金字塔中。在这里,我们使用两种不同抗体(Neuromab,Millipore)的猕猴和大鼠电机皮层中kV3.1b表达的系统,定量比较。作为我们的标准参考,我们在同一部分中检查,kv3.1b在Parvalbumin-阳性中间核中染色,其显示出强烈的Kv3.1b免疫反应性。在短尾克拉克电动机皮质中,几乎全部发现大型金字塔神经元样品在其躯体膜中表达kv3.1b。这些标记的神经元通过表达SMI32(锥形标志物)或通过它们的形状和尺寸来鉴定为金字塔,以及缺乏对帕瓦仑的表达(一些用于某些类别的标志物)。大(betz细胞),培养基和小金字塔神经元都表达kV3.1b。在大鼠电动机皮质中,表达KV3.1b的SMI32末期金字塔神经元非常罕见和弱染色。因此,在金字塔神经元的kV3.1b中的免疫反应性存在明显的物种差异,这可能是解释大鼠和短尾宫锥体神经元的明显电生理学差异的因素之一。

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