Mela Flora, Marti Matteo, Fiorentini Chiara, Missale Cristina, Morari Michele
Section of Pharmacology, and Neuroscience Center, Department of Experimental and Clinical Medicine, University of Ferrara, via Fossato di Mortara 17-19, 44100 Ferrara, Italy.
Mol Cell Neurosci. 2006 Feb;31(2):284-92. doi: 10.1016/j.mcn.2005.09.016. Epub 2005 Oct 24.
Striatal cholinergic nerve terminals express functional group-II metabotropic (mGlu) and NMDA glutamate receptors. To investigate whether these receptors interact to regulate ACh release, LY354740 (a group-II mGlu receptor agonist) and NMDA were co-applied in striatal synaptosomes and slices. LY354740 prevented the NMDA-evoked [3H]-choline release from synaptosomes and ACh release from slices. In synaptosomes, this modulation was prevented by omega-agatoxin IVA, suggesting that it was mediated by P/Q-type high voltage activated Ca++ channels. In slices, LY341495 (a group-II mGlu receptor antagonist) enhanced the NMDA-induced ACh release, suggesting that group-II mGlu receptor activation by endogenous glutamate inhibits NMDA transmission. Co-immunoprecipitation studies excluded direct group-II mGlu-NMDA receptor interactions. Finally, group-II mGlu negative modulation of NMDA transmission was abolished in dopamine-depleted synaptosomes and slices, suggesting that it relied on endogenous dopamine. We conclude that group-II mGlu receptors attenuate NMDA inputs at striatal cholinergic terminals via Ca++ channel modulation and dopamine-sensitive pathways.
纹状体胆碱能神经末梢表达功能性的II组代谢型(mGlu)和NMDA谷氨酸受体。为了研究这些受体是否相互作用以调节乙酰胆碱(ACh)释放,将LY354740(一种II组mGlu受体激动剂)和NMDA共同应用于纹状体突触体和切片中。LY354740可阻止NMDA诱发的突触体中[3H] - 胆碱释放以及切片中ACh释放。在突触体中,这种调节作用可被ω-芋螺毒素IVA阻止,这表明它是由P/Q型高电压激活的Ca++通道介导的。在切片中,LY341495(一种II组mGlu受体拮抗剂)增强了NMDA诱导的ACh释放,这表明内源性谷氨酸激活II组mGlu受体可抑制NMDA传递。免疫共沉淀研究排除了II组mGlu与NMDA受体之间的直接相互作用。最后,在多巴胺耗竭的突触体和切片中,II组mGlu对NMDA传递的负性调节作用消失,这表明它依赖于内源性多巴胺。我们得出结论,II组mGlu受体通过Ca++通道调节和多巴胺敏感途径减弱纹状体胆碱能末梢处的NMDA输入。