Axmacher Nikolai, Draguhn Andreas
Johannes-Müller-Institut für Physiologie, Humboldt Universität Berlin, Tucholskystr. 2, 10117 Berlin, Germany.
Neuroreport. 2004 Feb 9;15(2):329-34. doi: 10.1097/00001756-200402090-00024.
Vesicular transmitter release can be regulated by transmitter-gated ion channels at presynaptic axon terminals. The central inhibitory transmitter GABA acts on such presynaptic ionotropic receptors in various cells, including inhibitory interneurons. Here we report that GABA-mediated postsynaptic inhibitory currents in CA3 pyramidal cells of rat hippocampal slices are suppressed by agonists of GABAA receptors. The effect is present for both stimulus-induced and miniature IPSCs, indicating a reduction in the probability of vesicular release by presynaptic, action-potential-independent mechanisms. We conclude that the release of GABA from hippocampal CA3 interneurons is regulated by a negative feedback via presynaptic ionotropic GABA autoreceptors.
囊泡递质释放可由突触前轴突终末的递质门控离子通道调控。中枢抑制性递质γ-氨基丁酸(GABA)作用于包括抑制性中间神经元在内的多种细胞的此类突触前离子型受体。在此我们报告,大鼠海马脑片CA3锥体细胞中GABA介导的突触后抑制性电流被GABAA受体激动剂所抑制。该效应在刺激诱发的和微小抑制性突触后电流(mIPSCs)中均存在,表明通过突触前、不依赖动作电位的机制,囊泡释放概率降低。我们得出结论,海马CA3中间神经元释放GABA受突触前离子型GABA自身受体的负反馈调控。