Feng Steven Si, Jaeger Dieter
Department of Biology, Emory University, Atlanta, GA 30322, USA.
Cerebellum. 2008;7(4):542-6. doi: 10.1007/s12311-008-0077-1.
We used the method of dynamic current clamping to determine the properties and function of the SK calcium-dependent K(+) current in neurons of the deep cerebellar nuclei (DCN). As previously reported, block of SK current with apamin leads to bursting of DCN neurons and a steepening of the f-I curve. We show here that the properties of the slow spike afterhyperpolarization are fully controlled by SK current and we derive kinetic properties of this current that explain its action on DCN neurons. Overall, the SK current provides an effective mechanism to tune the regularity of spiking and the f-I curve of DCN neurons.
我们采用动态电流钳制法来确定小脑深部核团(DCN)神经元中SK钙依赖性钾电流的特性和功能。如先前报道,蜂毒明肽阻断SK电流会导致DCN神经元产生爆发式放电以及f-I曲线变陡。我们在此表明,慢后超极化的特性完全由SK电流控制,并且我们推导了该电流的动力学特性,这些特性解释了其对DCN神经元的作用。总体而言,SK电流提供了一种有效的机制来调节DCN神经元放电的规律性和f-I曲线。