Department of Neuroscience, Columbia University, New York, NY, USA.
J Neurosci. 2013 Aug 21;33(34):13583-99. doi: 10.1523/JNEUROSCI.2427-12.2013.
In many cortical neurons, HCN1 channels are the major contributors to Ih, the hyperpolarization-activated current, which regulates the intrinsic properties of neurons and shapes their integration of synaptic inputs, paces rhythmic activity, and regulates synaptic plasticity. Here, we examine the physiological role of Ih in deep layer pyramidal neurons in mouse prefrontal cortex (PFC), focusing on persistent activity, a form of sustained firing thought to be important for the behavioral function of the PFC during working memory tasks. We find that HCN1 contributes to the intrinsic persistent firing that is induced by a brief depolarizing current stimulus in the presence of muscarinic agonists. Deletion of HCN1 or acute pharmacological blockade of Ih decreases the fraction of neurons capable of generating persistent firing. The reduction in persistent firing is caused by the membrane hyperpolarization that results from the deletion of HCN1 or Ih blockade, rather than a specific role of the hyperpolarization-activated current in generating persistent activity. In vivo recordings show that deletion of HCN1 has no effect on up states, periods of enhanced synaptic network activity. Parallel behavioral studies demonstrate that HCN1 contributes to the PFC-dependent resolution of proactive interference during working memory. These results thus provide genetic evidence demonstrating the importance of HCN1 to intrinsic persistent firing and the behavioral output of the PFC. The causal role of intrinsic persistent firing in PFC-mediated behavior remains an open question.
在许多皮质神经元中,HCN1 通道是 Ih(超极化激活电流)的主要贡献者,Ih 调节神经元的固有特性,并塑造它们对突触输入的整合、调节节律活动以及调节突触可塑性。在这里,我们研究了 Ih 在小鼠前额叶皮层(PFC)深层锥体神经元中的生理作用,重点关注持续活动,这是一种被认为对工作记忆任务期间 PFC 的行为功能很重要的持续放电形式。我们发现,HCN1 有助于在存在毒蕈碱激动剂的情况下,短暂去极化电流刺激诱导的固有持续放电。HCN1 的缺失或 Ih 的急性药理学阻断会降低产生持续放电的神经元比例。持续放电的减少是由 HCN1 缺失或 Ih 阻断导致的膜超极化引起的,而不是超极化激活电流在产生持续活动中的特定作用。体内记录显示,HCN1 的缺失对增强突触网络活动的上状态(up states)没有影响。平行的行为研究表明,HCN1 有助于工作记忆过程中 PFC 依赖性的前摄干扰的解决。因此,这些结果提供了遗传证据,证明了 HCN1 对固有持续放电和 PFC 介导的行为输出的重要性。内在持续放电在 PFC 介导的行为中的因果作用仍然是一个悬而未决的问题。