首页> 美国卫生研究院文献>The Journal of Neuroscience >Distinct Frequency-Dependent Regulation of Nerve Terminal Excitability and Synaptic Transmission by IA and IK Potassium Channels Revealed by Drosophila Shaker and Shab Mutations
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Distinct Frequency-Dependent Regulation of Nerve Terminal Excitability and Synaptic Transmission by IA and IK Potassium Channels Revealed by Drosophila Shaker and Shab Mutations

机译:果蝇摇床和Shab突变揭示了IA和IK钾通道对神经末梢兴奋性和突触传递的不同频率依赖性调节。

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摘要

Regulation of synaptic efficacy by nerve terminal excitability has not been extensively studied. We performed genetic and pharmacological dissections for presynaptic actions of K+ channels in Drosophila neuromuscular transmission by using electrophysiological and optical imaging techniques. Current understanding of the roles of the Shab IK channel and its mammalian Kv2 counterparts is relatively poor, as compared with that for Shaker IA channels and their Kv1 homologues. Our results revealed the striking effect of Shab mutations during high-frequency synaptic activity, as well as a functional division in synaptic regulation between the Shaker and Shab channels. Shaker channels control the basal level of release, indicated by a response to single nerve stimulation, whereas Shab channels regulate repetitive synaptic activities. These observations highlight the crucial control of nerve terminal excitability by Shaker and Shab channels to confer temporal patterns of synaptic transmission and suggest the potential participation of these channels, along with the transmitter release machinery, in activity-dependent synaptic plasticity.
机译:通过神经末梢兴奋性调节突触功效的方法尚未得到广泛研究。我们通过电生理学和光学成像技术对果蝇神经肌肉传递中K + 通道的突触前作用进行了遗传和药理解剖。与Shaker IA通道及其Kv1同源物相比,目前对Shab IK通道及其哺乳动物Kv2对应物的作用的了解相对较差。我们的研究结果揭示了高频突触活动中Shab突变的惊人作用,以及Shaker和Shab通道之间的突触调节功能划分。摇床通道控制基础释放水平,以对单神经刺激的反应表示,而摇床通道则调节重复的突触活动。这些观察结果强调了摇床和Shab通道对神经末梢兴奋性的关键控制,以赋予突触传递的时间模式,并暗示这些通道以及递质释放机制可能参与了活动依赖性突触可塑性。

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