Robles Gómez Angel A, Vega Ana V, Gónzalez-Sandoval Carolina, Barral Jaime
Neurociencias, UIICSE, FES Iztacala, UNAM, México.
Carrera de Médico Cirujano, UBIMED, FES Iztacala UNAM, México.
Synapse. 2018 Feb;72(2). doi: 10.1002/syn.22017. Epub 2017 Nov 22.
Potassium channels play an important role in modulating synaptic activity both at presynaptic and postsynaptic levels. We have shown before that presynaptically located K and K channels modulate the strength of corticostriatal synapses in rat brain, but the role of other types of potassium channels at these synapses remains largely unknown. Here, we show that calcium-dependent potassium channels BK-type but not SK-type channels are located presynaptically in corticostriatal synapses. We stimulated cortical neurons in rat brain slices and recorded postsynaptic excitatory potentials (EPSP) in medium spiny neurons (MSN) in dorsal neostriatum. By using a paired pulse protocol, we induced synaptic facilitation before applying either BK- or SK-specific toxins. Thus, we found that blockage of BK with iberiotoxin (10 nM) reduces synaptic facilitation and increases the amplitude of the EPSP, while exposure to SK-blocker apamin (100 nM) has no effect. Additionally, we induced train action potentials on striatal MSN by current injection before and after the exposure to K toxins. We found that the action potential becomes broader when the MSN is exposed to iberiotoxin, although it has no impact on frequency. In contrast, exposure to apamin results in loss of afterhyperpolarization phase and an increase of spike frequency. Therefore, we concluded that postsynaptic SK channels are involved in afterhyperpolarization and modulation of spike frequency while the BK channels are involved on the late repolarization phase of the action potential. Altogether, our results show that calcium-dependent potassium channels modulate both input towards and output from the striatum.
钾通道在调节突触前和突触后水平的突触活动中发挥着重要作用。我们之前已经表明,突触前定位的钾通道调节大鼠大脑中皮质纹状体突触的强度,但这些突触中其他类型钾通道的作用仍 largely 未知。在这里,我们表明钙依赖性钾通道BK型而非SK型通道突触前定位在皮质纹状体突触中。我们刺激大鼠脑片的皮质神经元,并记录背侧新纹状体中中等棘状神经元(MSN)的突触后兴奋性电位(EPSP)。通过使用配对脉冲方案,在应用BK或SK特异性毒素之前,我们诱导了突触易化。因此,我们发现用iberiotoxin(10 nM)阻断BK会降低突触易化并增加EPSP的幅度,而暴露于SK阻断剂蜂毒明肽(100 nM)则没有影响。此外,在暴露于钾毒素之前和之后,我们通过电流注入在纹状体MSN上诱导串行动作电位。我们发现当MSN暴露于iberiotoxin时动作电位变宽,尽管它对频率没有影响。相反,暴露于蜂毒明肽会导致超极化后阶段丧失和尖峰频率增加。因此,我们得出结论,突触后SK通道参与超极化后和尖峰频率的调节,而BK通道参与动作电位的晚期复极化阶段。总之,我们的结果表明钙依赖性钾通道调节纹状体的输入和输出。