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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Modulation of presynaptic Ca2+ entry by AMPA receptors at individual GABAergic synapses in the cerebellum.
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Modulation of presynaptic Ca2+ entry by AMPA receptors at individual GABAergic synapses in the cerebellum.

机译:AMPA受体对小脑中单个GABA能突触的突触前Ca2 +进入的调节。

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摘要

Cerebellar Purkinje cells (PCs) receive GABAergic input that undergoes powerful retrograde modulation by presynaptic cannabinoid and glutamate receptors. Here we examine a distinct modulatory mechanism at these synapses, which does not require postsynaptic depolarization and acts via presynaptic AMPA receptors. We find that this mechanism operates mainly in the somatic vicinity of PCs in which large boutons of basket cell axons form synapses on the PC soma. We use fast confocal microscopy and detailed kinetic modeling to estimate that, in these boutons, an action potential opens 100-200 Ca2+ channels, eliciting a brief 3-5 microM transient, followed by a longer-term, 15-30 nM rise of free Ca2+ (above the resting level of approximately 100 nM). Brief activation of local AMPA receptors suppresses Ca2+ entry (probably by silencing 20-40 P/Q-type channels) in a subgroup of terminals that tend to show a higher dynamic range of Ca2+ signaling. The results provide the first quantitative description of presynaptic Ca2+ kinetics and its modulation by AMPA receptor activation (most likely via a glutamate spillover-mediated mechanism) at identified GABAergic synapses.
机译:小脑浦肯野细胞(PCs)接受GABA能输入,并通过突触前大麻素和谷氨酸受体经历强大的逆行调节。在这里,我们检查了这些突触的独特调节机制,该机制不需要突触后去极化,而是通过突触前AMPA受体起作用。我们发现,这种机制主要在PC的体细胞附近起作用,在PC附近,大的篮状轴突轴突在PC体上形成突触。我们使用快速共聚焦显微镜和详细的动力学模型来估计,在这些钮扣中,动作电位打开100-200 Ca2 +通道,引起短暂的3-5 microM瞬态,然后长期释放15-30 nM游离态Ca2 +(高于约100 nM的静止水平)。局部AMPA受体的短暂激活会抑制Ca2 +进入终端(可能通过沉默20-40 P / Q型通道),从而趋向于显示较高的Ca2 +信号传导动态范围。结果提供了先后定量的突触前Ca2 +动力学及其在已确定的GABA能突触中通过AMPA受体激活(最可能是通过谷氨酸溢出介导的机制)对其进行调控的定量描述。

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