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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Synaptic activity unmasks dopamine D2 receptor modulation of a specific class of layer V pyramidal neurons in prefrontal cortex
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Synaptic activity unmasks dopamine D2 receptor modulation of a specific class of layer V pyramidal neurons in prefrontal cortex

机译:突触活动揭示前额叶皮层中特定类别的V层锥体神经元的多巴胺D2受体调节

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摘要

Dopamine D2 receptors (D2Rs) play a major role in the function of the prefrontal cortex (PFC), and may contribute to prefrontal dysfunction in conditions such as schizophrenia. Here we report that in mouse PFC, D2Rs are selectively expressed by a subtype of layer V pyramidal neurons that have thick apical tufts, prominent h-current, and subcortical projections. Within this subpopulation, the D2R agonist quinpirole elicits a novel afterdepolarization that generates voltage fluctuations and spiking for hundreds of milliseconds. Surprisingly, this afterdepolarization is masked in quiescent brain slices, but is readily unmasked by physiologic levels of synaptic input which activate NMDA receptors, possibly explaining why this phenomenon has not been reported previously. Notably, we could still elicit this afterdepolarization for some time after the cessation of synaptic stimulation. In addition to NMDA receptors, the quinpirole-induced afterdepolarization also depended on L-type Ca 2+ channels and was blocked by the selective L-type antagonist nimodipine. To confirm that D2Rs can elicit this afterdepolarization by enhancing Ca 2+ (and Ca 2+-dependent) currents, we measured whole-cell Ca 2+ potentials that occur after blocking Na + and K + channels, and found quinpirole enhanced these potentials, while the selective D2R antagonist sulpiride had the opposite effect. Thus, D2Rs can elicit a Ca 2+-channel-dependent afterdepolarization that powerfully modulates activity in specific prefrontal neurons. Through this mechanism, D2Rs might enhance outputs to subcortical structures, contribute to reward-related persistent firing, or increase the level of noise in prefrontal circuits.
机译:多巴胺D2受体(D2Rs)在前额叶皮层(PFC)的功能中起主要作用,在精神分裂症等疾病中可能导致前额叶功能障碍。在这里我们报告,在小鼠PFC中,D2Rs由具有浓厚的顶簇,显着的h电流和皮层下投射的V层锥体神经元的一种亚型选择性表达。在这个亚群中,D2R激动剂喹吡罗引发了一种新颖的去极化作用,该作用会产生电压波动并产生数百毫秒的峰值。出人意料的是,这种去极化作用在静止的脑片中被掩盖,但是很容易被激活NMDA受体的生理水平的突触输入所掩盖,这也许可以解释为什么以前没有报道这种现象。值得注意的是,在突触刺激停止后的一段时间内,我们仍然可以引起这种去极化。除NMDA受体外,喹吡罗诱导的去极化也依赖于L型Ca 2+通道,并被选择性L型拮抗剂尼莫地平阻断。为了确认D2Rs可以通过增强Ca 2+(和依赖Ca 2+的电流)引起去极化,我们测量了阻断Na +和K +通道后发生的全细胞Ca 2+电势,发现喹吡罗增强了这些电势,而选择性D2R拮抗剂舒必利具有相反的作用。因此,D2Rs可以引起一个依赖Ca 2+通道的去极化作用,该去极化作用有力地调节了特定额前神经元的活性。通过这种机制,D2R可能会增强皮质下结构的输出,促进与奖励有关的持续射击或增加前额叶回路中的噪声水平。

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