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Distinct contributions of small and large conductance Ca2+-activated K+ channels to rat Purkinje neuron function

机译:小和大电导Ca2 +激活的K +通道对大鼠Purkinje神经元功能的不同贡献

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摘要

The cerebellum is important for many aspects of behaviour, from posture maintenance and goal-oriented reaching movements to timing tasks and certain forms of learning. In every case, information flowing through the cerebellum passes through Purkinje neurons, which receive input from the two primary cerebellar afferents and generate continuous streams of action potentials that constitute the sole output from the cerebellar cortex to the deep nuclei. The tonic firing behaviour observed in Purkinje neurons in vivo is maintained in brain slices even when synaptic inputs are blocked, suggesting that Purkinje neuron activity relies to a significant extent on intrinsic conductances. Previous research has suggested that the interplay between Ca2+ currents and Ca2+-activated K+ channels (KCa channels) is important for Purkinje cell activity, but how many different KCa channel types are present and what each channel type contributes to cell behaviour remains unclear. In order to better understand the ionic mechanisms that control the behaviour of these neurons, we investigated the effects of different Ca2+ channel and KCa channel antagonists on Purkinje neurons in acute slices of rat cerebellum. Our data show that Ca2+ entering through P-type voltage-gated Ca2+ channels activates both small-conductance (SK) and large-conductance (BK) KCa channels. SK channels play a role in setting the intrinsic firing frequency, while BK channels regulate action potential shape and may contribute to the unique climbing fibre response.
机译:小脑对于行为的许多方面都很重要,从姿势保持和面向目标的伸手动作到定时任务和某些形式的学习。在每种情况下,流经小脑的信息都通过Purkinje神经元,这些神经元接收来自两个小脑初级传入神经的输入,并生成连续的动作电位流,这些动作电位构成了小脑皮层至深核的唯一输出。即使在突触输入受阻的情况下,在浦肯野神经元体内观察到的强直性放电行为仍保持在脑切片中,这表明浦肯野神经元的活性在很大程度上取决于内在电导。先前的研究表明,Ca 2 + 电流与Ca 2 + 激活的K + 通道(KCa通道)之间的相互作用对于浦肯野很重要细胞活性,但是尚不清楚有多少种不同的KCa通道类型以及每种通道类型对细胞行为的贡献。为了更好地了解控制这些神经元行为的离子机制,我们研究了不同的Ca 2 + 通道和KCa通道拮抗剂对大鼠小脑急性切片Purkinje神经元的影响。我们的数据表明,通过P型电压门控Ca 2 + 通道进入的Ca 2 + 激活了小电(SK)和大电(BK)KCa通道。 。 SK通道在设定固有点火频率中起作用,而BK通道则调节动作电位形状,并可能有助于独特的攀爬纤维响应。

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