首页> 外文期刊>The Journal of Physiology >Activity-dependent downregulation of D-type K+ channel subunit Kv1.2 in rat hippocampal CA3 pyramidal neurons
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Activity-dependent downregulation of D-type K+ channel subunit Kv1.2 in rat hippocampal CA3 pyramidal neurons

机译:大鼠海马CA3锥体神经元D型K +通道亚基Kv1.2的活性依赖性下调

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Abstract The intrinsic excitability of neurons plays a critical role in the encoding of memory at Hebbian synapses and in the coupling of synaptic inputs to spike generation. It has not been studied whether somatic firing at a physiologically relevant frequency can induce intrinsic plasticity in hippocampal CA3 pyramidal cells (CA3-PCs). Here, we show that a conditioning train of 20 action potentials (APs) at 10 Hz causes a persistent reduction in the input conductance and an acceleration of the AP onset time in CA3-PCs, but not in CA1-PCs. Induction of such long-term potentiation of intrinsic excitability (LTP-IE) was accompanied by a reduction in the D-type K+ current, and was abolished by the inhibition of endocytosis or protein tyrosine kinase (PTK). Consistently, the CA3-PCs from Kv1.2 knock-out mice displayed no LTP-IE with the same conditioning. Furthermore, the induction of LTP-IE depended on the back-propagating APs (bAPs) and intact distal apical dendrites. These results indicate that LTP-IE is mediated by the internalization of Kv1.2 channels from the distal regions of apical dendrites, which is triggered by bAP-induced dendritic Ca2+ signalling and the consequent activation of PTK.
机译:摘要神经元的内在兴奋性在Hebbian突触的记忆编码以及突触输入与峰值产生的耦合中起着至关重要的作用。尚未研究以生理学相关频率进行体细胞放电能否在海马CA3锥体细胞(CA3-PCs)中诱导固有的可塑性。在这里,我们显示了在10 Hz时20个动作电位(AP)的调节序列会导致CA3-PC而不是CA1-PC中输入电导的持续减小和AP起始时间的加速。内在兴奋性(LTP-IE)的这种长期增强的诱导伴随着D型K +电流的减少,并由于抑制内吞作用或蛋白酪氨酸激酶(PTK)而被取消。一致地,来自Kv1.2基因敲除小鼠的CA3-PC在相同条件下没有显示LTP-IE。此外,LTP-IE的诱导取决于向后传播的AP(bAP)和完整的远端根尖树突。这些结果表明,LTP-IE由来自顶端树突远端区域的Kv1.2通道的内在作用介导,这是由bAP诱导的树突状Ca2 +信号传导和随后的PTK激活触发的。

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