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Dopaminergic modulation of axonal potassium channels and action potential waveform in pyramidal neurons of prefrontal cortex

机译:前额叶皮层锥体神经元轴突钾通道的多巴胺能调节和动作电位波形

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摘要

Voltage-gated K+ (KV) channels play critical roles in shaping neuronal signals. KV channels distributed in the perisomatic regions and thick dendrites of cortical pyramidal neurons have been extensively studied. However, the properties and regulation of KV channels distributed in the thin axons remain unknown. In this study, by performing somatic and axonal patch-clamp recordings from layer 5 pyramidal neurons of prefrontal cortical slices, we showed that the rapidly inactivating A-currents mediated the transient K+ currents evoked by action potential (AP) waveform command (KAP) at the soma, whereas the rapidly activating but slowly inactivating KV1-mediated D-currents dominated the KAP at the axon. In addition, activation of D1-like receptors for dopamine decreased the axonal K+ currents, as a result of an increase in the activity of cAMP–PKA pathway. In contrast, activation of D2-like receptors showed an opposite effect on the axonal K+ currents. Further experiments demonstrated that functional D1-like receptors were expressed at the main axon trunk and their activation could broaden the waveforms of axonal APs. Together, these results show that axonal KV channels were subjected to dopamine modulation, and this modulation could regulate the waveforms of propagating APs at the axon, suggesting an important role of dopaminergic modulation of axonal KV channels in regulating neuronal signalling.
机译:电压门控K + (KV)通道在塑造神经元信号中起关键作用。 KV通道分布在皮质锥体神经元的周围区域和厚树突已被广泛研究。然而,稀疏轴突中分布的KV通道的性质和调节仍然未知。在这项研究中,通过从前额叶皮质切片的第5层锥体神经元执行体细胞和轴突膜片钳记录,我们显示了快速失活的A电流介导了由动作电位引起的瞬时K + 电流( AP)在躯体上的波形命令(KAP),而快速激活但缓慢失活的KV1介导的D电流控制着轴突处的KAP。此外,由于cAMP–PKA通路活性的增加,多巴胺D1样受体的激活降低了轴突K + 电流。相比之下,D2样受体的激活对轴突K + 电流显示相反的作用。进一步的实验表明,功能性D1样受体在主轴突躯干处表达,并且它们的激活可以加宽轴突AP的波形。在一起,这些结果表明轴突KV通道受到多巴胺调制,并且这种调制可以调节在轴突处传播的AP的波形,表明轴突KV通道的多巴胺能调制在调节神经元信号传导中具有重要作用。

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