Notartomaso Serena, Mascio Giada, Scarselli Pamela, Martinello Katiuscia, Fucile Sergio, Gradini Roberto, Bruno Valeria, Battaglia Giuseppe, Nicoletti Ferdinando
IRCCS Neuromed, Pozzilli, Italy.
IRCCS Neuromed, Pozzilli, Italy; Department of Physiology and Pharmacology, University Sapienza of Rome, Italy.
Neuropharmacology. 2017 Mar 15;115:51-59. doi: 10.1016/j.neuropharm.2016.07.032. Epub 2016 Aug 3.
The neuronal K/Cl symporter, KCC2, shapes synaptic responses mediated by Cl-permeant GABA receptors. Moving from the evidence that excitatory neurotransmission drives changes in KCC2 expression in cerebellar neurons, we studied the regulation of KCC2 expression by group-I metabotropic glutamate (mGlu) receptors in the cerebellum of adult mice. Mice lacking mGlu5 receptors showed a large reduction in cerebellar KCC2 protein levels and a loss of KCC2 immunoreactivity in Purkinje cells. Similar changes were seen in mice treated with the mGlu5 receptor antagonist, MPEP, whereas treatment with the mGlu5 receptor positive allosteric modulator (PAM), VU0360172, increased KCC2 expression. In contrast, pharmacological inhibition of mGlu1 receptors with JNJ16259685 enhanced cerebellar KCC2 protein levels and KCC2 immunoreactivity in Purkinje cells, whereas treatment with the mGlu1 receptor PAM, RO0711401, reduced KCC2 expression. To examine whether the reduction in KCC2 expression caused by the absence or the inhibition of mGlu5 receptors could affect GABAergic transmission, we performed electrophysiological and behavioral studies. Recording of extracellular action potentials in Purkinje cells showed that the inhibitory effect of the GABA receptor agonist, muscimol, was lost in cerebellar slices prepared from mGlu5 mice or from mice treated systemically with MPEP, in line with the reduction in KCC2 expression. Similarly, motor impairment caused by the GABA receptor PAM, diazepam, was attenuated in mice pre-treated with MPEP. These findings disclose a novel function of mGlu5 receptors in the cerebellum and suggest that mGlu5 receptor ligands might influence GABAergic transmission in the cerebellum and affect motor responses to GABA-mimetic drugs. This article is part of the Special Issue entitled 'Metabotropic Glutamate Receptors, 5 years on'.
神经元钾氯同向转运体KCC2塑造由氯离子通透型γ-氨基丁酸(GABA)受体介导的突触反应。基于兴奋性神经传递驱动小脑神经元中KCC2表达变化的证据,我们研究了成年小鼠小脑中I组代谢型谷氨酸(mGlu)受体对KCC2表达的调控。缺乏mGlu5受体的小鼠小脑中KCC2蛋白水平大幅降低,浦肯野细胞中KCC2免疫反应性丧失。在用mGlu5受体拮抗剂MPEP处理的小鼠中也观察到了类似变化,而用mGlu5受体正变构调节剂(PAM)VU0360172处理则增加了KCC2表达。相反,用JNJ16259685对mGlu1受体进行药理学抑制可增强小脑中KCC2蛋白水平以及浦肯野细胞中的KCC2免疫反应性, 而用mGlu1受体PAM RO0711401处理则降低了KCC2表达。为了研究mGlu5受体缺失或抑制导致的KCC2表达降低是否会影响GABA能传递,我们进行了电生理和行为学研究。记录浦肯野细胞的细胞外动作电位表明,在由mGlu5基因敲除小鼠或全身用MPEP处理的小鼠制备的小脑切片中,GABA受体激动剂蝇蕈醇的抑制作用消失,这与KCC2表达降低一致。同样,GABA受体PAM地西泮引起的运动障碍在预先用MPEP处理的小鼠中有所减轻。这些发现揭示了mGlu5受体在小脑中的新功能,并表明mGlu5受体配体可能影响小脑中的GABA能传递,并影响对GABA模拟药物的运动反应。本文是名为“代谢型谷氨酸受体,5年回顾”特刊的一部分。