Womack Mary D, Chevez Carolyn, Khodakhah Kamran
Department of Neuroscience, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
J Neurosci. 2004 Oct 6;24(40):8818-22. doi: 10.1523/JNEUROSCI.2915-04.2004.
Cerebellar Purkinje neurons fire spontaneously in the absence of synaptic transmission. P/Q-type voltage-gated calcium channels and calcium-activated potassium channels are required for normal spontaneous activity. Blocking P/Q-type calcium channels paradoxically mimics the effects of blocking calcium-activated potassium channels. Thus, an important function of the P/Q-type calcium channels is to provide calcium for activation of calcium-activated potassium channels. Purkinje neurons express several classes of voltage-gated calcium channels, and the P/Q- and T-type channels make comparable contributions to total calcium entry after an action potential. Here we demonstrate that calcium-activated potassium channels are activated exclusively by calcium entering through P/Q-type voltage-gated calcium channels. This selective coupling is maintained even when calcium flux through voltage-gated channels is increased by increasing the extracellular calcium concentration. Small decreases in P/Q current density are likely to alter spontaneous activity of Purkinje neurons via decreased recruitment of calcium-activated potassium channels. In both human and murine animal models, mutations that decrease P/Q current density in Purkinje neurons also cause cerebellar ataxia. Alterations in the spontaneous activity of Purkinje neurons may be an important contributing factor to the ataxia in these subjects.
在没有突触传递的情况下,小脑浦肯野神经元会自发放电。正常的自发活动需要P/Q型电压门控钙通道和钙激活钾通道。阻断P/Q型钙通道反而会模拟阻断钙激活钾通道的效果。因此,P/Q型钙通道的一个重要功能是为激活钙激活钾通道提供钙。浦肯野神经元表达几类电压门控钙通道,在动作电位后,P/Q型和T型通道对总钙内流的贡献相当。在这里,我们证明钙激活钾通道仅由通过P/Q型电压门控钙通道进入的钙激活。即使通过增加细胞外钙浓度来增加通过电压门控通道的钙通量,这种选择性偶联仍会保持。P/Q电流密度的小幅降低可能会通过减少钙激活钾通道的募集来改变浦肯野神经元的自发活动。在人类和小鼠动物模型中,降低浦肯野神经元中P/Q电流密度的突变也会导致小脑共济失调。浦肯野神经元自发活动的改变可能是这些受试者共济失调的一个重要促成因素。