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甘氨酸输入可诱导蝾螈视杆光感受器中的突触易化。

Glycine input induces the synaptic facilitation in salamander rod photoreceptors.

作者信息

Shen Wen, Jiang Zheng, Li Baoqin

机构信息

College of Biomedical Science, Florida Atlantic University, 777 Glades Road, Boca Raton, FL 33431, USA.

出版信息

J Biomed Sci. 2008 Nov;15(6):743-54. doi: 10.1007/s11373-008-9263-x. Epub 2008 Jun 16.

Abstract

Glycinergic synapses in photoreceptors are made by centrifugal feedback neurons in the network, but the function of the synapses is largely unknown. Here we report that glycinergic input enhances photoreceptor synapses in amphibian retinas. Using specific antibodies against a glycine transporter (GlyT2) and glycine receptor beta subunit, we identified the morphology of glycinergic input in photoreceptor terminals. Electrophysiological recordings indicated that 10 muM glycine depolarized rods and activated voltage-gated Ca(2+) channels in the neurons. The effects facilitated glutamate vesicle release in photoreceptors, meanwhile increased the spontaneous excitatory postsynaptic currents in Off-bipolar cells. Endogenous glycine feedback also enhanced glutamate transmission in photoreceptors. Additionally, inhibition of a Cl(-) uptake transporter NKCC1 with bumetanid effectively eliminated glycine-evoked a weak depolarization in rods, suggesting that NKCC1 maintains a high Cl(-) level in rods, which causes to depolarize in responding to glycine input. This study reveals a new function of glycine in retinal synaptic transmission.

摘要

光感受器中的甘氨酸能突触由网络中的离心反馈神经元形成,但其功能在很大程度上尚不清楚。在此我们报告,甘氨酸能输入增强了两栖动物视网膜中的光感受器突触。使用针对甘氨酸转运体(GlyT2)和甘氨酸受体β亚基的特异性抗体,我们确定了光感受器终末中甘氨酸能输入的形态。电生理记录表明,10 μM甘氨酸使视杆细胞去极化,并激活了神经元中的电压门控Ca(2+)通道。这些效应促进了光感受器中谷氨酸囊泡的释放,同时增加了Off双极细胞中的自发兴奋性突触后电流。内源性甘氨酸反馈也增强了光感受器中的谷氨酸传递。此外,用布美他尼抑制Cl(-)摄取转运体NKCC1可有效消除甘氨酸诱发的视杆细胞微弱去极化,这表明NKCC1维持视杆细胞中高Cl(-)水平,从而导致在对甘氨酸输入作出反应时去极化。本研究揭示了甘氨酸在视网膜突触传递中的新功能。

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