首页> 外文期刊>The Journal of Physiology >K(V)10.1 opposes activity-dependent increase in Ca2+ influx into the presynaptic terminal of the parallel fibre-Purkinje cell synapse
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K(V)10.1 opposes activity-dependent increase in Ca2+ influx into the presynaptic terminal of the parallel fibre-Purkinje cell synapse

机译:K(v)10.1将CA2 +流入的活动依赖性增加进入平行纤维 - 浦羽细胞突触的突触前终端

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The voltage-gated potassium channel K(V)10.1 (Eag1) is widely expressed in the mammalian brain, but its physiological function is not yet understood. Previous studies revealed highest expression levels in hippocampus and cerebellum and suggested a synaptic localization of the channel. The distinct activation kinetics of K(V)10.1 indicate a role during repetitive activity of the cell. Here, we confirm the synaptic localization of K(V)10.1 both biochemically and functionally and that the channel is sufficiently fast at physiological temperature to take part in repolarization of the action potential (AP). We studied the role of the channel in cerebellar physiology using patch clamp and two-photon Ca2+ imaging in K(V)10.1-deficient and wild-type mice. The excitability and action potential waveform recorded at granule cell somata was unchanged, while Ca2+ influx into axonal boutons was enhanced in mutants in response to stimulation with three APs, but not after a single AP. Furthermore, mutants exhibited a frequency-dependent increase in facilitation at the parallel fibre-Purkinje cell synapse at high firing rates. We propose that K(V)10.1 acts as a modulator of local AP shape specifically during high-frequency burst firing when other potassium channels suffer cumulative inactivation.
机译:电压 - 门控钾通道K(V)10.1(Eag1)中广泛表达在哺乳动物的脑中,但其生理功能尚不清楚。先前的研究显示在海马和小脑最高表达水平和所建议的信道的突触定位。 K(V)10.1的不同活化动力学指示细胞的重复活动期间的作用。在这里,我们确认K(V)的突触本地化10.1既生化和功能,并且该信道是足够快的在生理温度下参与动作电位(AP)的复极化。我们使用在K(V)膜片钳和双光子钙成像+ 10.1缺陷型和野生型小鼠的研究中小脑生理信道的作用。录得颗粒细胞胞体的兴奋性和动作电位波形是不变的,而Ca2 +内流进入轴突终扣在突变体增强响应刺激三个AP,而不是一个单一的AP之后。此外,突变体显示出在高燃烧率的平行纤维浦肯野细胞中突触便利的频率依赖性增加。我们建议,K(V)10.1充当本地AP形状特异性的高频时的调制器点射当其它钾通道遭受累积失活。

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