首页> 美国卫生研究院文献>The Journal of Physiology >A-type K+ channels encoded by Kv4.2 Kv4.3 and Kv1.4 differentially regulate intrinsic excitability of cortical pyramidal neurons
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A-type K+ channels encoded by Kv4.2 Kv4.3 and Kv1.4 differentially regulate intrinsic excitability of cortical pyramidal neurons

机译:由Kv4.2Kv4.3和K​​v1.4编码的A型K +通道差异调节皮层锥体神经元的固有兴奋性

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摘要

Rapidly activating and rapidly inactivating voltage-gated A-type K+ currents, IA, are key determinants of neuronal excitability and several studies suggest a critical role for the Kv4.2 pore-forming α subunit in the generation of IA channels in hippocampal and cortical pyramidal neurons. The experiments here demonstrate that Kv4.2, Kv4.3 and Kv1.4 all contribute to the generation of IA channels in mature cortical pyramidal (CP) neurons and that Kv4.2-, Kv4.3- and Kv1.4-encoded IA channels play distinct roles in regulating the intrinsic excitability and the firing properties of mature CP neurons. In vivo loss of Kv4.2, for example, alters the input resistances, current thresholds for action potential generation and action potential repolarization of mature CP neurons. Elimination of Kv4.3 also prolongs action potential duration, whereas the input resistances and the current thresholds for action potential generation in Kv4.3−/− and WT CP neurons are indistinguishable. In addition, although increased repetitive firing was observed in both Kv4.2−/− and Kv4.3−/− CP neurons, the increases in Kv4.2−/− CP neurons were observed in response to small, but not large, amplitude depolarizing current injections, whereas firing rates were higher in Kv4.3−/− CP neurons only with large amplitude current injections. In vivo loss of Kv1.4, in contrast, had minimal effects on the intrinsic excitability and the firing properties of mature CP neurons. Comparison of the effects of pharmacological blockade of Kv4-encoded currents in Kv1.4−/− and WT CP neurons, however, revealed that Kv1.4-encoded IA channels do contribute to controlling resting membrane potentials, the regulation of current thresholds for action potential generation and repetitive firing rates in mature CP neurons.
机译:快速激活和快速失活的电压门控A型K + 电流IA是神经元兴奋性的关键决定因素,多项研究表明,Kv4.2孔形成α亚基在世代中起着关键作用海马和皮质锥体神经元IA通道的变化此处的实验表明,Kv4.2,Kv4.3和K​​v1.4均有助于成熟皮质锥体(CP)神经元的IA通道的产生,并且Kv4.2-,Kv4.3-和Kv1.4编码的IA通道在调节内在兴奋性和成熟CP神经元的放电特性中起着不同的作用。例如,体内Kv4.2的丧失会改变输入的电阻,电流阈值以产生成熟CP神经元的动作电位和使动作电位复极化。消除Kv4.3还会延长动作电位的持续时间,而在Kv4.3 -/-和WT CP神经元中产生动作电位的输入电阻和电流阈值是无法区分的。此外,尽管在Kv4.2 -/-和Kv4.3 -/- CP神经元中均观察到重复放电的增加,但Kv4.2 的增加观察到-/- CP神经元对小的但不大的振幅去极化电流注入有反应,而Kv4.3 -/- CP神经元仅在大振幅下才有放电率当前注射。相比之下,体内Kv1.4的损失对成熟CP神经元的内在兴奋性和放电特性影响很小。比较Kv1.4 -/-和WT CP神经元中Kv4编码电流的药理阻断作用,但是发现,Kv1.4编码的IA通道确实有助于控制静息膜电位,成熟CP神经元中动作电位生成和重复发射速率的当前阈值的调节。

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