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首页> 外文期刊>The Journal of Physiology >Multiple modes of GABAergic inhibition of rat cerebellar granule cells.
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Multiple modes of GABAergic inhibition of rat cerebellar granule cells.

机译:GABA能抑制大鼠小脑颗粒细胞的多种模式。

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摘要

Cerebellar granule cells are inhibited phasically by GABA released synaptically from Golgi cells, but are inhibited more powerfully by tonic activity of high affinity alpha 6 subunit-containing GABAA receptors. During development the tonic activity is generated by the accumulation of GABA released by action potentials, but in the adult the tonic activity is independent of action potentials. Here we show that in adult rats the tonic activation of GABAA receptors is produced by non-vesicular transmitter release and is reduced by the activity of GAT-1 and GAT-3 GABA transporters, demonstrating that alterations of GABA uptake will modulate information flow through granule cells. Acetylcholine (ACh) evokes a large Ca2+-dependent but action potential-independent release of GABA, which activates alpha 6 subunit-containing GABAA receptors. These data show that three separate modes of transmitter release can activate GABAA receptors in adult cerebellar granule cells: action potential-evoked exocytotic GABA release, non-vesicular release, and ACh-evoked Ca2+-dependent release independent of action potentials. The relative magnitudes of the inhibitory charge transfers generated by action potential-evoked release (during high frequency stimulation of the mossy fibres), tonic inhibition and superfused ACh are 1:3:12, indicating that tonic and ACh-mediated inhibition may play a major role in regulating granule cell firing.
机译:从高尔基细胞中突触释放的GABA逐步抑制小脑颗粒细胞,但高亲和力的含α6亚基的GABAA受体的强直性活性则更有效地抑制小脑颗粒细胞。在发育过程中,滋补活性是由动作电位释放的GABA积累而产生的,但在成年人中,滋补活性与动作电位无关。在这里,我们显示成年大鼠的GABAA受体的补品激活是通过非水泡递质释放产生的,并被GAT-1和GAT-3 GABA转运蛋白的活性降低,表明GABA吸收的改变将调节通过颗粒的信息流。细胞。乙酰胆碱(ACh)引起大量的Ca2 +依赖但动作电位独立的GABA释放,从而激活了包含α6亚基的GABAA受体。这些数据表明,三种独立的递质释放模式可以激活成人小脑颗粒细胞中的GABAA受体:动作电位诱发的胞外GABA释放,非水泡释放以及ACh诱发的Ca2 +依赖性释放(与动作电位无关)。动作电位诱发释放(在长生苔藓纤维的刺激过程中),强直抑制和超融合ACh产生的抑制电荷转移的相对大小为1:3:12,表明强直和ACh介导的抑制可能起主要作用在调节粒细胞射击中的作用。

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