首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Electrophysiological characterization of voltage-gated K(+) currents in cerebellar basket and purkinje cells: Kv1 and Kv3 channel subfamilies are present in basket cell nerve terminals.
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Electrophysiological characterization of voltage-gated K(+) currents in cerebellar basket and purkinje cells: Kv1 and Kv3 channel subfamilies are present in basket cell nerve terminals.

机译:小脑篮和浦肯野细胞中电压门控的K(+)电流的电生理学表征:篮细胞神经末梢中存在Kv1和Kv3通道亚家族。

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To understand the processes underlying fast synaptic transmission in the mammalian CNS, we must have detailed knowledge of the identity, location, and physiology of the ion channels in the neuronal membrane. From labeling studies we can get clues regarding the distribution of ion channels, but electrophysiological methods are required to determine the importance of each ion channel in CNS transmission. Dendrotoxin-sensitive potassium channel subunits are highly concentrated in cerebellar basket cell nerve terminals, and we have previously shown that they are responsible for a significant fraction of the voltage-gated potassium current in this region. Here, we further investigate the characteristics and pharmacology of the voltage-dependent potassium currents in these inhibitory nerve terminals and compare these observations with those obtained from somatic recordings in basket and Purkinje cell soma regions. We find that alpha-DTX blocks basket cell nerve terminal currents and not somatic currents, and the IC(50) for alpha-DTX in basket cell terminals is 3.2 nM. There are at least two distinct types of potassium currents in the nerve terminal, a DTX-sensitive low-threshold component, and a second component that activates at much more positive voltages. Pharmacological experiments also reveal that nerve terminal potassium currents are also markedly reduced by 4-AP and TEA, with both high-sensitivity (micromolar) and low-sensitivity (millimolar) components present. We suggest that basket cell nerve terminals have potassium channels from both the Kv1 and Kv3 subfamilies, whereas somatic currents in basket cell and Purkinje cell bodies are more homogeneous.
机译:若要了解哺乳动物中枢神经系统中快速突触传递的过程,我们必须对神经元膜中离子通道的身份,位置和生理学有详细的了解。从标记研究中,我们可以获得有关离子通道分布的线索,但是需要电生理方法来确定每个离子通道在CNS传输中的重要性。树突毒素敏感的钾通道亚基高度集中在小脑篮细胞神经末梢,我们以前已经证明它们在该区域的电压门控钾电流中占很大比例。在这里,我们进一步研究这些抑制性神经末梢中电压依赖性钾电流的特性和药理作用,并将这些观察结果与从篮和浦肯野细胞体区域中的体细胞记录中获得的观察结果进行比较。我们发现,α-DTX阻断了篮细胞神经末梢电流而不是体细胞电流,并且α-DTX在篮细胞末梢的IC(50)为3.2 nM。神经末梢中至少有两种截然不同的钾电流,一种是DTX敏感的低阈值成分,另一种是在更高的正电压下激活的第二成分。药理实验还显示,4-AP和TEA还同时具有高敏感性(微摩尔)和低敏感性(毫摩尔)成分,从而显着降低了神经末梢钾电流。我们建议,篮状细胞神经末梢具有来自Kv1和Kv3亚科的钾通道,而篮状细胞和浦肯野细胞体中的体细胞电流更为均匀。

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