Southan A P, Robertson B
Electrophysiology Group, Department of Biochemistry, Imperial College of Science, Technology and Medicine, London SW7 2AY, United Kingdom.
J Neurosci. 1998 Feb 1;18(3):948-55. doi: 10.1523/JNEUROSCI.18-03-00948.1998.
Cerebellar basket cells form highly specialized inhibitory synaptic contacts with Purkinje cells, namely the pericellular basket and pinceau nerve terminal structures, wrapping around the Purkinje cell somatic and axon hillock regions. These inhibitory synaptic contacts are ideally located to control the ultimate output of the cerebellar cortex. Previous immunohistochemical studies have shown that these synaptic structures possess a very high density of the dendrotoxin (DTX)-sensitive potassium channel subunit, Kv1.2. We have taken advantage of this unique anatomical arrangement offering a high concentration of identified Kv channel subunits by combining whole-cell patch-clamp recording and fluorescence microscopy to establish a novel preparation and perform the first recordings from unambiguously identified mammalian CNS inhibitory presynaptic terminals. We report that DTX-sensitive potassium channels are present in basket cell terminals but not in the basket cell soma. This selective cellular distribution suggests that these channels play an important role in modulating cerebellar inhibitory synaptic transmission.
小脑篮状细胞与浦肯野细胞形成高度特化的抑制性突触联系,即围绕细胞的篮状结构和扣结神经终末结构,包裹在浦肯野细胞体和轴突起始段区域。这些抑制性突触联系的位置理想,能够控制小脑皮质的最终输出。以往的免疫组织化学研究表明,这些突触结构含有高密度的对树突毒素(DTX)敏感的钾通道亚基Kv1.2。我们利用这种独特的解剖结构,通过结合全细胞膜片钳记录和荧光显微镜技术,提供高浓度的已鉴定钾通道亚基,从而建立了一种新的制备方法,并首次从明确鉴定的哺乳动物中枢神经系统抑制性突触前终末进行记录。我们报告,对DTX敏感的钾通道存在于篮状细胞终末,而不存在于篮状细胞体中。这种选择性的细胞分布表明,这些通道在调节小脑抑制性突触传递中起重要作用。