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首页> 外文期刊>The Journal of Physiology >Postsynaptic GABAB receptor signalling enhances LTD in mouse cerebellar Purkinje cells.
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Postsynaptic GABAB receptor signalling enhances LTD in mouse cerebellar Purkinje cells.

机译:突触后GABA B受体信号转导增强小鼠小脑浦肯野细胞中的LTD。

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摘要

Long-term depression (LTD) of excitatory transmission at cerebellar parallel fibre-Purkinje cell synapses is a form of synaptic plasticity crucial for cerebellar motor learning. Around the postsynaptic membrane of these synapses, B-type gamma-aminobutyric acid receptor (GABABR), a Gi/o protein-coupled receptor for the inhibitory transmitter GABA is concentrated and closely associated with type-1 metabotropic glutamate receptors (mGluR1) whose signalling is a key factor for inducing LTD. We found that in cultured Purkinje cells, GABABR activation enhanced LTD of a glutamate-evoked current (LTDglu), increasing the magnitude of depression. It has been reported that parallel fibre-Purkinje cell synapses receive a micromolar level of GABA spilled over from the synaptic terminals of the neighbouring GABAergic interneurons. This level of GABA was able to enhance LTDglu. Our pharmacological analyses revealed that the betagamma subunits but not the alpha subunit of Gi/o protein mediated GABABR-mediated LTDglu enhancement. Gi/o protein activation was sufficient to enhance LTDglu. In this respect, LTDglu enhancement is clearly distinguished from the previously reported GABABR-mediated augmentation of an mGluR1-coupled slow excitatory postsynaptic potential. Baclofen application for only the induction period of LTDglu was sufficient to enhance LTDglu, suggesting that GABABR signalling may modulate mechanisms underlying LTDglu induction. Baclofen augmented mGluR1-coupled Ca2+ release from the intracellular stores in a Gi/o protein-dependent manner. Therefore, GABABR-mediated LTDglu enhancement is likely to result from augmentation of mGluR1 signalling. Furthermore, pharmacological inhibition of GABABR reduced the magnitude of LTD at parallel fibre-Purkinje cell synapses in cerebellar slices. These findings demonstrate a novel mechanism that would facilitate cerebellar motor learning.
机译:小脑平行纤维-Purkinje细胞突触的兴奋性传递的长期抑制(LTD)是一种对小脑运动学习至关重要的突触可塑性。在这些突触的突触后膜周围,B型γ-氨基丁酸受体(GABABR)(抑制递质GABA的Gi / o蛋白偶联受体)被浓缩并与1型代谢型谷氨酸受体(mGluR1)紧密相关。是诱导LTD的关键因素。我们发现,在培养的浦肯野细胞中,GABABR激活增强了谷氨酸诱发电流(LTDglu)的LTD,从而增加了抑郁的程度。据报道,平行纤维-浦肯野细胞突触接收到微摩尔水平的GABA,其从邻近的GABA能性中神经元的突触末端溢出。此水平的GABA能够增强LTDglu。我们的药理分析表明,Gi / o蛋白介导的GABABR介导的LTDglu增强的betagamma亚基而不是alpha亚基。 Gi / o蛋白激活足以增强LTDglu。在这方面,LTDglu增强明显不同于先前报道的GABABR介导的mGluR1偶联的缓慢兴奋性突触后电位的增强。 Baclofen仅在LTDglu的诱导期就足以增强LTDglu,这表明GABABR信号传导可能调节LTDglu诱导的机制。巴氯芬以Gi / o蛋白依赖性方式增强了细胞内存储中mGluR1偶联的Ca2 +的释放。因此,GABABR介导的LTDglu增强可能是mGluR1信号增强的结果。此外,GABABR的药理抑制作用降低了小脑切片中平行纤维-浦肯野细胞突触处的LTD幅度。这些发现表明了一种新颖的机制,可以促进小脑运动学习。

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