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甘氨酸介导的哺乳动物中枢突触起始可靠性的变化。

Glycine-mediated changes of onset reliability at a mammalian central synapse.

作者信息

Kopp-Scheinpflug C, Dehmel S, Tolnai S, Dietz B, Milenkovic I, Rübsamen R

机构信息

Institute of Biology II, University of Leipzig, Talstrasse 33, 04103 Leipzig, Germany.

出版信息

Neuroscience. 2008 Nov 19;157(2):432-45. doi: 10.1016/j.neuroscience.2008.08.068. Epub 2008 Sep 11.

Abstract

Glycine is an inhibitory neurotransmitter activating a chloride conductance in the mammalian CNS. In vitro studies from brain slices revealed a novel presynaptic site of glycine action in the medial nucleus of the trapezoid body (MNTB) which increases the release of the excitatory transmitter glutamate from the calyx of Held. Here, we investigate the action of glycine on action potential firing of single MNTB neurons from the gerbil under acoustic stimulation in vivo. Iontophoretic application of the glycine receptor antagonist strychnine caused a significant decrease in spontaneous and sound-evoked firing rates throughout the neurons' excitatory response areas, with the largest changes at the respective characteristic frequency (CF). The decreased firing rate was accompanied by longer and more variable onset latencies of sound-evoked responses. Outside the neurons' excitatory response areas, firing rates increased during the application of strychnine due to a reduction of inhibitory sidebands, causing a broadening of frequency tuning. These results indicate that glycine enhances the efficacy for on-CF stimuli, while simultaneously suppressing synaptic transmission for off-CF stimuli. These in vivo results provide evidence of multiple excitatory and inhibitory glycine effects on the same neuronal population in the mature mammalian CNS.

摘要

甘氨酸是一种抑制性神经递质,可激活哺乳动物中枢神经系统中的氯离子电导。脑片的体外研究揭示了甘氨酸在梯形体内侧核(MNTB)中一个新的突触前作用位点,该位点可增加来自Held壶腹的兴奋性递质谷氨酸的释放。在此,我们研究了在体内声刺激下甘氨酸对沙鼠单个MNTB神经元动作电位发放的作用。离子导入甘氨酸受体拮抗剂士的宁导致整个神经元兴奋性反应区域的自发和声音诱发发放率显著降低,在各自的特征频率(CF)处变化最大。发放率降低伴随着声音诱发反应的起始潜伏期延长且更具变异性。在神经元兴奋性反应区域之外,在应用士的宁期间发放率增加,这是由于抑制性边带减少,导致频率调谐变宽。这些结果表明,甘氨酸增强了对CF刺激的效能,同时抑制了对非CF刺激的突触传递。这些体内结果为成熟哺乳动物中枢神经系统中同一神经元群体上甘氨酸的多种兴奋性和抑制性作用提供了证据。

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