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首页> 外文期刊>The European Journal of Neuroscience >Pre- and postsynaptic contribution of GABAC receptors to GABAergic synaptic transmission in rat collicular slices and cultures.
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Pre- and postsynaptic contribution of GABAC receptors to GABAergic synaptic transmission in rat collicular slices and cultures.

机译:GABAC受体对大鼠胶束切片和培养物中GABA能突触传递的突触前和突触后贡献。

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摘要

The mammalian superior colliculus (SC) is reported to contain gamma-aminobutyric acid (GABA)C receptors (GABACRs) at high concentration. However, their role in GABAergic synaptic transmission is not yet known. The aim of the present study was: (i) to clarify whether GABACRs are activated by endogenous GABA; and (ii), to determine whether GABACRs play a role in inhibitory synaptic transmission. Experiments were performed on acute horizontal slices from the postnatal rat SC or on collicular neurons in dissociated cell culture. In both preparations, bicuculline-resistant current responses to exogenous GABA and currents elicited by cis-4-aminocrotonic acid (CACA) were blocked by (1,2,5,6-tetrahydropyridine-4-yl) methylphosphinic acid (TPMPA), a GABACR antagonist. The CACA-induced currents exhibited a linear current-voltage relationship and reversed at the Cl- equilibrium potential. These results indicate that functional GABACRs are present in the somato-dendritic membrane of collicular neurons. Miniature inhibitory postsynaptic currents (mIPSCs) were recorded using the whole-cell patch clamp technique. TPMPA significantly decreased mIPSC amplitudes in slices, but not in cultured neurons. As TPMPA decreased also the coefficient of variation of mIPSCs, we suggest that somatodendritic GABACRs are located extrasynaptically but can be involved in the generation of IPSCs if GABA diffusion is constrained. In cultures, individual connections were activated by focal electrical stimulation of single neurons, and evoked inhibitory postsynaptic currents (eIPSCs) were recorded. Paired-pulse stimulation revealed that TPMPA significantly decreased the paired-pulse ratio at short (50 ms) interstimulus intervals, and this effect was inversely dependent on the amplitude of the first eIPSC. We conclude that presynaptic GABACRs are activated by endogenous GABA and can alleviate the short-term depression resulting from a preceding episode of GABA release. Thus, in GABAergic synapses of the SC GABACRs are involved in pre- and postsynaptic functions and may therefore contribute to the activity-dependent adjustment of GABAergic inhibition.
机译:据报道,哺乳动物上丘肌(SC)含有高浓度的γ-氨基丁酸(GABA)C受体(GABACRs)。但是,它们在GABA能突触传递中的作用尚不清楚。本研究的目的是:(i)阐明GABACR是否被内源性GABA激活; (ii)确定GABACRs是否在抑制突触传递中起作用。实验是对来自产后大鼠SC的急性水平切片或分离的细胞培养物中的胶状神经元进行的。在这两种制剂中,对(1-2,5,6-四氢吡啶-4-基)甲基次膦酸(TPMPA)均能阻止对小分子对外源GABA的电流响应和由顺式4-氨基巴豆酸(CACA)引发的电流。 GABACR拮抗剂。 CACA感应的电流表现出线性的电流-电压关系,并在Cl平衡电势处反转。这些结果表明功能性GABACRs存在于神经元的体树突状膜中。使用全细胞膜片钳技术记录微型抑制性突触后电流(mIPSC)。 TPMPA显着降低了切片中的mIPSC幅度,但未降低培养的神经元中的mIPSC幅度。由于TPMPA也降低了mIPSC的变异系数,因此我们建议体突状GABACR位于突触外,但如果GABA扩散受到限制,则可能参与IPSC的产生。在文化中,单个连接是通过单个神经元的局部电刺激来激活的,并记录了诱发的抑制性突触后电流(eIPSC)。配对脉冲刺激显示,TPPMA在较短的(50 ms)刺激间隔内显着降低了配对脉冲比率,并且这种作用与第一eIPSC的幅度成反比。我们得出的结论是,突触前GABACR被内源性GABA激活,并可以缓解由先前GABA释放发作引起的短期抑郁。因此,在SC的GABA能突触中,GABACRs参与突触前和突触后功能,因此可能有助于GABA能抑制活性的调节。

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