Hou Mingli, Duan Lei, Slaughter Malcolm M
Department of Physiology and Biophysics, State University of New York at Buffalo, 124 Sherman Hall, 3435 Main Street, Buffalo, NY 14214, USA.
J Physiol. 2008 Jun 15;586(12):2913-26. doi: 10.1113/jphysiol.2008.153437. Epub 2008 Apr 25.
Glycine is the lone fast neurotransmitter for which a metabotropic pathway has not been identified. In retina, we found a strychnine-insensitive glycine response in bipolar and ganglion cells. This glycine response reduced high voltage-activated calcium current. It was G-protein mediated and protein kinase A dependent. The EC(50) of the metabotropic glycine response is 3 mum, an order of magnitude lower than the ionotropic glycine receptor in the same retina. The bipolar cell glutamatergic input to ganglion cells was suppressed by metabotropic glycine action. The synaptic output of about two-thirds of bipolar cells and calcium current in two-thirds of ganglion cells are sensitive to the action of glycine at metabotropic receptors, suggesting this signal regulates specific synaptic pathways in proximal retina. This study resolves the curious absence of a metabotropic glycine pathway in the nervous system and reveals that the major fast inhibitory neurotransmitters, GABA and glycine, both activate G-protein-coupled pathways as well.
甘氨酸是唯一尚未确定其代谢型途径的快速神经递质。在视网膜中,我们在双极细胞和神经节细胞中发现了一种对士的宁不敏感的甘氨酸反应。这种甘氨酸反应降低了高电压激活的钙电流。它是由G蛋白介导且依赖蛋白激酶A的。代谢型甘氨酸反应的半数有效浓度(EC50)为3 μM,比同一视网膜中的离子型甘氨酸受体低一个数量级。代谢型甘氨酸作用抑制了双极细胞向神经节细胞的谷氨酸能输入。约三分之二的双极细胞的突触输出和三分之二的神经节细胞中的钙电流对甘氨酸在代谢型受体上的作用敏感,这表明该信号调节视网膜近端的特定突触通路。这项研究解决了神经系统中代谢型甘氨酸途径奇怪缺失的问题,并揭示主要的快速抑制性神经递质γ-氨基丁酸(GABA)和甘氨酸也都激活G蛋白偶联途径。