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谷氨酸能受体亚型对星状细胞γ-氨基丁酸释放的双相调节

Biphasic modulation of GABA release from stellate cells by glutamatergic receptor subtypes.

作者信息

Liu Siqiong June

机构信息

Department of Biology, Mueller Laboratory, Penn State University, State College, PA 16802, USA.

出版信息

J Neurophysiol. 2007 Jul;98(1):550-6. doi: 10.1152/jn.00352.2007. Epub 2007 May 30.

Abstract

The release of inhibitory transmitters from CNS neurons can be modulated by ionotropic glutamate receptors that are present in the presynaptic terminals. In the cerebellum, glutamate released from climbing fibers (but not from parallel fibers) activates presynaptic AMPA receptors and suppresses the release of the inhibitory transmitter GABA from basket cells onto postsynaptic Purkinje cells. This input-specific modulation has been attributed to the close proximity of the climbing fibers to the axons of the basket cells. Our recent work indicates that glutamate released from parallel fibers can "spill over" and reach the axons of stellate cells. Here I test the possibility that this spillover glutamate can activate presynaptic AMPA receptors in stellate cells and in this way modulate their release of GABA. I find that stimulation of parallel fibers activates AMPA receptors and transiently suppresses autoreceptor and autaptic GABAergic currents in stellate cells. Activation of AMPA receptors reduces the release of GABA and the suppression occurs more frequently in immature cells that have a high release probability. By contrast the release of GABA from mature stellate cells that have a low release probability is potentiated by the activation of NMDA-type glutamate receptors on presynaptic terminals. Thus during development, the glutamatergic modulation of GABA release switches from an AMPA-receptor-mediated transient suppression to a NMDA-receptor-induced lasting potentiation.

摘要

中枢神经系统(CNS)神经元释放抑制性递质的过程可被存在于突触前终末的离子型谷氨酸受体所调节。在小脑,从攀缘纤维(而非平行纤维)释放的谷氨酸激活突触前的AMPA受体,并抑制抑制性递质γ-氨基丁酸(GABA)从篮状细胞释放到突触后浦肯野细胞上。这种输入特异性调节归因于攀缘纤维与篮状细胞轴突的紧密相邻。我们最近的研究表明,从平行纤维释放的谷氨酸可以“溢出”并到达星状细胞的轴突。在此,我测试了这种溢出的谷氨酸能否激活星状细胞中的突触前AMPA受体,并以此方式调节其GABA释放的可能性。我发现,刺激平行纤维可激活AMPA受体,并短暂抑制星状细胞中的自身受体和自突触GABA能电流。AMPA受体的激活会减少GABA的释放,且这种抑制在具有高释放概率的未成熟细胞中更频繁地发生。相比之下,具有低释放概率的成熟星状细胞释放GABA则会因突触前终末NMDA型谷氨酸受体的激活而增强。因此,在发育过程中,GABA释放的谷氨酸能调节从AMPA受体介导的短暂抑制转变为NMDA受体诱导的持久增强。

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