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首页> 外文期刊>The Journal of Physiology >Insights into migraine mechanisms and CaV2.1 calcium channel function from mouse models of familial hemiplegic migraine.
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Insights into migraine mechanisms and CaV2.1 calcium channel function from mouse models of familial hemiplegic migraine.

机译:从家族性偏瘫偏头痛的小鼠模型中了解偏头痛的机制和CaV2.1钙通道功能。

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Migraine is a very common disabling brain disorder with unclear pathogenesis. A subtype of migraine with aura (familial hemiplegic migraine type 1: FHM1) is caused by mutations in CaV2.1 (P/Q-type) Ca2+ channels. This review describes the functional consequences of FHM1 mutations in knockin mouse models carrying the mild R192Q or severe S218L mutations in the orthologous gene. The FHM1 knockin mice show allele dosage-dependent gain-of-function of neuronal P/Q-type Ca2+ current, reflecting activation of mutant channels at lower voltages, and allele dosage- and sex-dependent facilitation of induction and propagation of cortical spreading depression (CSD), the phenomenon that underlies migraine aura. Gain-of-function of neuronal Ca2+ current, facilitation of CSD and post-CSD motor deficits were larger in S218L than R192Q knockin mice, in correlation with the more severe human S218L phenotype. Enhanced cortical excitatory neurotransmission, due to increased action potential-evoked Ca2+ influx and increased probability of glutamate release at pyramidal cell synapses, but unaltered inhibitory neurotransmission at fast-spiking interneuron synapses, were demonstrated in R192Q knockin mice. Evidence for a causative link between enhanced glutamate release and CSD facilitation was obtained. The data from FHM1 mice strengthen the view of CSD as a key player in the pathogenesis of migraine, give insight into CSD mechanisms and point to episodic disruption of excitation-inhibition balance and neuronal hyperactivity as the basis for vulnerability to CSD ignition in migraine.
机译:偏头痛是一种非常常见的致残性脑部疾病,发病机理不清楚。具有先兆的偏头痛亚型(家族性偏瘫偏头痛1型:FHM1)是由CaV2.1(P / Q型)Ca2 +通道的突变引起的。这篇综述描述了在直系同源基因中携带轻度R192Q或严重S218L突变的敲入小鼠模型中FHM1突变的功能后果。 FHM1敲入小鼠显示神经元P / Q型Ca2 +电流的等位基因剂量依赖性功能获得,反映较低电压下突变通道的激活,以及等位基因剂量和性别依赖性促进皮层扩展性抑郁症的传播(CSD),这是偏头痛先兆的基础。与更严重的人类S218L表型相关,S218L中神经元Ca2 +电流的功能获得性,CSD的促进作用和CSD后的运动障碍比R192Q敲入小鼠更大。在R192Q敲入小鼠中证实,由于动作电位诱发的Ca2 +内流增加和锥体细胞突触中谷氨酸释放的可能性增加,皮质兴奋性神经传递增强,但快加突触中枢神经突触中抑制性神经传递未改变。证据表明,谷氨酸释放增加与CSD促进作用之间存在因果关系。 FHM1小鼠的数据加强了CSD在偏头痛发病机理中的关键作用的观点,深入了解了CSD机制,并指出了兴奋抑制平衡和神经元活动过度的间歇性破坏,这是偏头痛中CSD点燃易感性的基础。

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