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The Shaping of Two Distinct Dendritic Spikes by A-Type Voltage-Gated K+ Channels

机译:通过A型电压门控K +通道塑造两个不同的树突状尖峰

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摘要

Dendritic ion channels have been a subject of intense research in neuroscience because active ion channels in dendrites shape input signals. Ca2+-permeable channels including NMDA receptors (NMDARs) have been implicated in supralinear dendritic integration, and the IA conductance in sublinear integration. Despite their essential roles in dendritic integration, it has remained uncertain whether these conductance coordinate with, or counteract, each other in the process of dendritic integration. To address this question, experiments were designed in hippocampal CA1 neurons with a recent 3D digital holography system that has shown excellent performance for spatial photoactivation. The results demonstrated a role of IA as a key modulator for two distinct dendritic spikes, low- and high-threshold Ca2+ spikes, through a preferential action of IA on Ca2+-permeable channel-mediated currents, over fast AMPAR-mediated currents. It is likely that the rapid kinetics of IA provides feed-forward inhibition to counteract the regenerative Ca2+ channel-mediated dendritic excitability. This research reveals one dynamic ionic mechanism of dendritic integration, and may contribute to a new understanding of neuronal hyperexcitability embedded in several neural diseases such as epilepsy, fragile X syndrome and Alzheimer’s disease.
机译:树状离子通道一直是神经科学领域的研究热点,因为树突中的活性离子通道会形成输入信号。 Ca 2 + 包括NMDA受体(NMDAR)的可渗透通道与超线性树突状整合和IA电导参与亚线性整合有关。尽管它们在树突整合中起着重要作用,但仍不确定这些电导在树突整合过程中是否彼此协调或抵消。为了解决这个问题,利用最近的3D数字全息系统在海马CA1神经元中设计了实验,该系统在空间光激活方面表现出出色的性能。结果表明,IA可以通过IA对Ca 2+的优先作用,对低水平和高阈值的Ca 2 + 两个不同的树突状棘突起关键调节剂的作用。超渗透通道介导的电流,超过快速AMPAR介导的电流。 IA的快速动力学可能提供前馈抑制作用,以抵消再生的Ca 2 + 通道介导的树突状兴奋性。这项研究揭示了树突状整合的一种动态离子机制,并且可能有助于对神经元过度兴奋性的新认识,这种神经元过度兴奋性嵌入了诸如癫痫病,脆性X综合征和阿尔茨海默氏病等多种神经疾病中。

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