Department of Pharmacology, University of Tennessee College of Medicine, Memphis, TN 38163, USA.
J Neurophysiol. 2011 Feb;105(2):554-70. doi: 10.1152/jn.00707.2010. Epub 2010 Dec 15.
The GABA projection neurons in the substantial nigra pars reticulata (SNr) are key output neurons of the basal ganglia motor control circuit. These neurons fire sustained high-frequency, short-duration spikes that provide a tonic inhibition to their targets and are critical to movement control. We hypothesized that a robust voltage-activated K(+) conductance that activates quickly and resists inactivation is essential to the remarkable fast-spiking capability in these neurons. Semi-quantitative RT-PCR (qRT-PCR) analysis on laser capture-microdissected nigral neurons indicated that mRNAs for Kv3.1 and Kv3.4, two key subunits for forming high activation threshold, fast-activating, slow-inactivating, 1 mM tetraethylammonium (TEA)-sensitive, fast delayed rectifier (I(DR-fast)) type Kv channels, are more abundant in fast-spiking SNr GABA neurons than in slow-spiking nigral dopamine neurons. Nucleated patch clamp recordings showed that SNr GABA neurons have a strong Kv3-like I(DR-fast) current sensitive to 1 mM TEA that activates quickly at depolarized membrane potentials and is resistant to inactivation. I(DR-fast) is smaller in nigral dopamine neurons. Pharmacological blockade of I(DR-fast) by 1 mM TEA impaired the high-frequency firing capability in SNr GABA neurons. Taken together, these results indicate that Kv3-like channels mediating fast-activating, inactivation-resistant I(DR-fast) current are critical to the sustained high-frequency firing in SNr GABA projection neurons and hence movement control.
黑质网状部的 GABA 投射神经元(SNr)是基底神经节运动控制回路的关键输出神经元。这些神经元产生持续的高频、短持续时间的尖峰,对其靶标提供紧张性抑制,对于运动控制至关重要。我们假设,一种强大的电压激活的 K(+)电导,能够快速激活并抵抗失活,对于这些神经元显著的快速放电能力至关重要。对激光捕获微解剖的黑质神经元进行半定量 RT-PCR(qRT-PCR)分析表明,Kv3.1 和 Kv3.4 的 mRNA,这两种关键亚基形成高激活阈值、快速激活、缓慢失活、1 mM 四乙铵(TEA)敏感、快速延迟整流(I(DR-fast))型 Kv 通道,在快速放电的 SNr GABA 神经元中比在慢速放电的黑质多巴胺神经元中更为丰富。有核膜片钳记录显示,SNr GABA 神经元具有强烈的 Kv3 样 I(DR-fast)电流,对 1 mM TEA 敏感,在去极化膜电位下快速激活,并且不易失活。在黑质多巴胺神经元中,I(DR-fast)较小。1 mM TEA 对 I(DR-fast)的药理学阻断损害了 SNr GABA 神经元的高频放电能力。总之,这些结果表明,介导快速激活、不易失活的 I(DR-fast)电流的 Kv3 样通道对于 SNr GABA 投射神经元持续高频放电以及运动控制至关重要。