首页> 美国卫生研究院文献>The Journal of Physiology >Spike Ca2+ influx upmodulates the spike afterdepolarization and bursting via intracellular inhibition of KV7/M channels
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Spike Ca2+ influx upmodulates the spike afterdepolarization and bursting via intracellular inhibition of KV7/M channels

机译:穗状Ca2 +流入通过去抑制KV7 / M通道的细胞内去极化和爆发后上调穗状体

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摘要

In principal brain neurons, activation of Ca2+ channels during an action potential, or spike, causes Ca2+ entry into the cytosol within a millisecond. This in turn causes rapid activation of large conductance Ca2+-gated channels, which enhances repolarization and abbreviates the spike. Here we describe another remarkable consequence of spike Ca2+ entry: enhancement of the spike afterdepolarization. This action is also mediated by intracellular modulation of a particular class of K+ channels, namely by inhibition of KV7 (KCNQ) channels. These channels generate the subthreshold, non-inactivating M-type K+ current, whose activation curtails the spike afterdepolarization. Inhibition of KV7/M by spike Ca2+ entry allows the spike afterdepolarization to grow and can convert solitary spikes into high-frequency bursts of action potentials. Through this novel intracellular modulatory action, Ca2+ spike entry regulates the discharge mode and the signalling capacity of principal brain neurons.
机译:在主要的脑神经元中,在动作电位或峰值期间激活Ca 2 + 通道会导致Ca 2 + 在毫秒内进入细胞质。这反过来导致大电导的Ca 2 + 门控通道快速激活,从而增强了复极化作用并简化了尖峰。在这里,我们描述了尖峰Ca 2 + 进入的另一个显着结果:去极化后尖峰的增强。此作用还通过特定类别的K + 通道的细胞内调节来介导,即通过抑制KV7(KCNQ)通道。这些通道产生亚阈值,非灭活的M型K + 电流,其激活会限制去极化后的尖峰。尖峰Ca 2 + 的进入抑制KV7 / M,使尖峰去极化后的穗增长,并且可以将孤立的尖峰转变为动作电位的高频突发。通过这种新颖的细胞内调节作用,Ca 2 + 尖峰进入调节了主要脑神经元的放电模式和信号传导能力。

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