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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Selective coupling of T-type calcium channels to SK potassium channels prevents intrinsic bursting in dopaminergic midbrain neurons.
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Selective coupling of T-type calcium channels to SK potassium channels prevents intrinsic bursting in dopaminergic midbrain neurons.

机译:T型钙通道与SK钾通道的选择性偶联可防止多巴胺能中脑神经元内在爆发。

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摘要

Dopaminergic midbrain (DA) neurons display two principal activity patterns in vivo, single-spike and burst firing, the latter coding for reward-related events. We have shown recently that the small-conductance calcium-activated potassium channel SK3 controls pacemaker frequency and precision in DA neurons of the substantia nigra (SN), and previous studies have implicated SK channels in the transition to burst firing. To identify the upstream calcium sources for SK channel activation in DA SN neurons, we studied the sensitivity of SK channel-mediated afterhyperpolarization (AHP) currents to inhibitors of different types of voltage-gated calcium channels in perforated patch-clamp recordings. Cobalt-sensitive AHP currents were not affected by L-type and P/Q-type calcium channel inhibitors and were reduced slightly (26%) by the N-type channel inhibitor omega-conotoxin-GVIA. In contrast, AHP currents were blocked substantially (85-94%) by micromolar concentrations of nickel (IC50, 33.75 microm) and mibefradil (IC50, 4.83 microm), indistinguishable from the nickel and mibefradil sensitivities of T-type calcium currents (IC50 values, 33.86 and 4.59 microm, respectively). These results indicate that SK channels are activated selectively via T-type calcium channels in DA SN neurons. Consequently, SK currents displayed use-dependent inactivation with similar time constants when compared with those of T-type calcium currents and generated a transient rebound inhibition. Both SK and T-type channels were essential for the stability of spontaneous pacemaker activity, and, in some DA SN neurons, T-type channel inhibition was sufficient to induce intrinsic burst firing. The functional coupling of SK to T-type channels has important implications for the temporal integration of synaptic input and might help to understand how DA neurons switch between pacemaker and burst-firing modes in vivo.
机译:多巴胺能中脑(DA)神经元在体内表现出两种主要的活动模式,即单发和爆发,后者编码与奖赏相关的事件。我们最近发现,小电导钙激活钾通道SK3控制着黑质(SN)的DA神经元中的起搏器频率和精确度,并且先前的研究已经暗示了SK通道向爆发放电过渡。为了识别DA SN神经元中SK通道激活的上游钙源,我们研究了穿孔膜片钳记录中SK通道介导的超极化(AHP)电流对不同类型的电压门控钙通道抑制剂的敏感性。钴敏感的AHP电流不受L型和P / Q型钙通道抑制剂的影响,而由N型通道抑制剂omega-conotoxin-GVIA略有降低(26%)。相比之下,AHP电流被微摩尔浓度的镍(IC50,33.75 microm)和咪贝地尔(IC50,4.83 microm)基本上阻止(85-94%),与T型钙电流的镍和咪贝地尔敏感性(IC50值)没有区别。 ,分别为33.86和4.59微米)。这些结果表明,SK通道通过DA SN神经元中的T型钙通道被选择性激活。因此,与T型钙电流相比,SK电流表现出与使用有关的失活,并且具有与T型钙电流相似的时间常数,并产生了短暂的回弹抑制作用。 SK和T型通道对于自发性起搏器活动的稳定性都是必不可少的,并且,在某些DA SN神经元中,T型通道抑制作用足以诱导内在的爆发。 SK与T型通道的功能耦合对突触输入的时间整合具有重要意义,并且可能有助于了解DA神经元如何在体内起搏器和猝发模式之间切换。

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