首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Presynaptic I1-imidazoline receptors reduce GABAergic synaptic transmission in striatal medium spiny neurons.
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Presynaptic I1-imidazoline receptors reduce GABAergic synaptic transmission in striatal medium spiny neurons.

机译:突触前I1-咪唑啉受体减少纹状体中棘神经元中的GABA能突触传递。

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摘要

Imidazoline receptors are expressed widely in the CNS. In the present study, whole-cell patch-clamp recordings were made from medium spiny neurons in dorsal striatum slices from the rat brain, and the roles of I1-imidazoline receptors in the modulation of synaptic transmission were studied. Moxonidine, an I1-imidazoline receptor agonist, decreased the GABAA receptor-mediated IPSCs in a concentration-dependent manner. However, glutamate-mediated EPSCs were hardly affected. The depression of IPSCs by moxonidine was antagonized by either idazoxan or efaroxan, which are both imidazoline receptor antagonists containing an imidazoline moiety. In contrast, yohimbine and SKF86466 (6-chloro-2,3,4,5-tetrahydro-3-methyl-1H-3-benzazepine), which are alpha2-adrenergic receptor antagonists with no affinity for imidazoline receptors, did not affect the moxonidine-induced inhibition of IPSCs. Moxonidine increased the paired-pulse ratio and reduced the frequency of miniature IPSCs without affecting their amplitude, indicating that this agent inhibits IPSCs via presynaptic mechanisms. Moreover, the sulfhydryl alkylating agent N-ethylmaleimide (NEM) significantly reduced the moxonidine-induced inhibition of IPSCs. Thus, the activation of presynaptic I1-imidazoline receptors decreases GABA-mediated inhibition of medium spiny neurons in the striatum, in which NEM-sensitive proteins such as G(i/o)-type G-proteins play an essential role. The adenylate cyclase activator forskolin partly opposed IPSC inhibition elicited by subsequently applied moxonidine. Furthermore, the protein kinase C (PKC) activator phorbol 12,13-dibutyrate attenuated and the PKC inhibitor chelerythrine potentiated the moxonidine-induced inhibition of IPSCs. These results suggest that IPSC inhibition via presynaptic I1-imidazoline receptors involves intracellular adenylate cyclase activity and is influenced by static PKC activity in the striatum.
机译:咪唑啉受体在中枢神经系统中广泛表达。在本研究中,从大鼠大脑背侧纹状体中层棘突神经元进行全细胞膜片钳记录,并研究了I1-咪唑啉受体在突触传递调节中的作用。 I1-咪唑啉受体激动剂莫索尼定以浓度依赖的方式降低了GABAA受体介导的IPSC。然而,谷氨酸介导的EPSC几乎不受影响。莫索尼定对IPSC的抑制作用被咪唑啉或依法洛辛所拮抗,两者均为含有咪唑啉部分的咪唑啉受体拮抗剂。相反,育亨宾和SKF86466(6-氯-2,3,4,5-四氢-3-甲基-1H-3-苯并ze庚因)是对咪唑啉受体没有亲和力的α2肾上腺素能受体拮抗剂,不会影响莫索尼定对IPSC的抑制作用。莫索尼定可增加配对脉冲比率并降低微型IPSC的频率,而不会影响振幅,这表明该药可通过突触前机制抑制IPSC。此外,巯基烷基化剂N-乙基马来酰亚胺(NEM)大大降低了莫索尼定对IPSC的抑制作用。因此,突触前I1-咪唑啉受体的激活降低了纹状体中多刺神经元的GABA介导的抑制作用,其中NEM敏感蛋白(如G(i / o)型G蛋白)起着至关重要的作用。酪蛋白的腺苷酸环化酶激活剂部分地抵制了随后施加的莫索尼定引起的IPSC抑制。此外,蛋白激酶C(PKC)激活物佛波醇12,13-二丁酸酯减弱,PKC抑制剂白屈菜红碱增强了莫索尼定对IPSC的抑制作用。这些结果表明,通过突触前I1-咪唑啉受体的IPSC抑制涉及细胞内腺苷酸环化酶活性,并受纹状体中静态PKC活性的影响。

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