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Evidence that GABA ρ subunits contribute to functional ionotropic GABA receptors in mouse cerebellar Purkinje cells

机译:GABAρ亚基有助于小鼠小脑浦肯野细胞功能性离子性GABA受体的证据

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摘要

Ionotropic γ-amino butyric acid (GABA) receptors composed of heterogeneous molecular subunits are major mediators of inhibitory responses in the adult CNS. Here, we describe a novel ionotropic GABA receptor in mouse cerebellar Purkinje cells (PCs) using agents reported to have increased affinity for ρ subunit-containing GABAC over other GABA receptors. Exogenous application of the GABAC-preferring agonist cis-4-aminocrotonic acid (CACA) evoked whole-cell currents in PCs, whilst equimolar concentrations of GABA evoked larger currents. CACA-evoked currents had a greater sensitivity to the selective GABAC antagonist (1,2,5,6-tetrahydropyridin-4-yl)methylphosphinic acid (TPMPA) than GABA-evoked currents. Focal application of agonists produced a differential response profile; CACA-evoked currents displayed a much more pronounced attenuation with increasing distance from the PC soma, displayed a slower time-to-peak and exhibited less desensitization than GABA-evoked currents. However, CACA-evoked currents were also completely blocked by bicuculline, a selective agent for GABAA receptors. Thus, we describe a population of ionotropic GABA receptors with a mixed GABAA/GABAC pharmacology. TPMPA reduced inhibitory synaptic transmission at interneurone–Purkinje cell (IN–PC) synapses, causing clear reductions in miniature inhibitory postsynaptic current (mIPSC) amplitude and frequency. Combined application of NO-711 (a selective GABA transporter subtype 1 (GAT-1) antagonist) and SNAP-5114 (a GAT-(2)/3/4 antagonist) induced a tonic GABA conductance in PCs; however, TPMPA had no effect on this current. Immunohistochemical studies suggest that ρ subunits are expressed predominantly in PC soma and proximal dendritic compartments with a lower level of expression in more distal dendrites; this selective immunoreactivity contrasted with a more uniform distribution of GABAA α1 subunits in PCs. Finally, co-immunoprecipitation studies suggest that ρ subunits can form complexes with GABAA receptor α1 subunits in the cerebellar cortex. Overall, these data suggest that ρ subunits contribute to functional ionotropic receptors that mediate a component of phasic inhibitory GABAergic transmission at IN–PC synapses in the cerebellum.
机译:由异质分子亚基组成的离子型γ-氨基丁酸(GABA)受体是成人中枢神经系统抑制反应的主要介质。在这里,我们描述了一种小鼠小脑浦肯野细胞(PCs)中的新型离子型GABA受体,使用的试剂据报道对含ρ亚基的GABAC的亲和力高于其他GABA受体。外源应用首选GABAC激动剂顺式4-氨基巴豆酸(CACA)引起PC中的全细胞电流,而等摩尔浓度的GABA引起较大的电流。与GABA诱发电流相比,CACA诱发电流对选择性GABAC拮抗剂(1,2,5,6-四氢吡啶-4-基)甲基次膦酸(TPMPA)的敏感性更高。激动剂的局部应用产生了不同的响应曲线;与GABA诱发的电流相比,CACA诱发的电流随着与PC躯体距离的增加而显示出更明显的衰减,呈现出较慢的峰值时间,并表现出更少的脱敏性。但是,CACA诱发的电流也被双瓜氨酸(GABAA受体的选择剂)完全阻断。因此,我们描述了具有混合GABAA / GABAC药理学的离子型GABA受体群体。 TPMPA减少了中性神经元–浦肯野细胞(IN–PC)突触的抑制性突触传递,从而导致微型抑制性突触后电流(mIPSC)幅度和频率明显降低。 NO-711(一种选择性的GABA转运蛋白亚型1(GAT-1)拮抗剂)和SNAP-5114(一种GAT-(2)/ 3/4拮抗剂)的联合应用在PC中诱导了强直GABA传导。但是,TPPMA对此电流没有影响。免疫组织化学研究表明,ρ亚基主要在PC体和近端树突区室中表达,而在远端树突中的表达水平较低。这种选择性的免疫反应性与PC中GABAAα1亚基更均匀的分布形成对比。最后,共同免疫沉淀研究表明,小脑皮层中ρ亚基可与GABAA受体α1亚基形成复合物。总体而言,这些数据表明ρ亚基有助于功能性离子型受体,介导小脑IN–PC突触处的阶段性抑制性GABA能传递。

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