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首页> 外文期刊>Frontiers in Cellular Neuroscience >Tonically Active α5GABAA Receptors Reduce Motoneuron Excitability and Decrease the Monosynaptic Reflex
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Tonically Active α5GABAA Receptors Reduce Motoneuron Excitability and Decrease the Monosynaptic Reflex

机译:调理活性的α5GABAA受体降低motonuron兴奋性并降低单突触反射。

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Motoneurons, the final common path of the Central Nervous System (CNS), are under a complex control of its excitability in order to precisely translate the interneuronal pattern of activity into skeletal muscle contraction and relaxation. To fulfill this relevant function, motoneurons are provided with a vast repertoire of receptors and channels, including the extrasynaptic GABAA receptors which have been poorly investigated. Here, we confirmed that extrasynaptic α5 subunit-containing GABAA receptors localize with choline acetyltransferase (ChAT) positive cells, suggesting that these receptors are expressed in turtle motoneurons as previously reported in rodents. In these cells, α5GABAA receptors are activated by ambient GABA, producing a tonic shunt that reduces motoneurons’ membrane resistance and affects their action potential firing properties. In addition, α5GABAA receptors shunted the synaptic excitatory inputs depressing the monosynaptic reflex (MSR) induced by activation of primary afferents. Therefore, our results suggest that α5GABAA receptors may play a relevant physiological role in motor control.
机译:作为中枢神经系统(CNS)最终共同路径的动子神经元,处于其兴奋性的复杂控制之下,目的是将神经元间的活动模式精确地转化为骨骼肌的收缩和松弛。为了实现这一相关功能,向运动神经元提供了大量的受体和通道,包括尚未被充分研究的突触外GABAA受体。在这里,我们证实了突触外含α5亚基的GABAA受体位于胆碱乙酰转移酶(ChAT)阳性细胞中,这表明这些受体在乌龟运动神经元中表达,正如先前在啮齿动物中报道的那样。在这些细胞中,α5GABAA受体被周围的GABA激活,产生强力分流,从而降低了运动神经元的膜电阻并影响其动作电位的发射特性。此外,α5GABAA受体使突触兴奋性输入分流,从而抑制由初级传入神经激活引起的单突触反射(MSR)。因此,我们的结果表明α5GABAA受体可能在运动控制中起着相关的生理作用。

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