首页> 外文期刊>The Journal of Physiology >Time-matched pre- and postsynaptic changes of GABAergic synaptic transmission in the developing mouse superior colliculus.
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Time-matched pre- and postsynaptic changes of GABAergic synaptic transmission in the developing mouse superior colliculus.

机译:在发育中的小鼠上丘中,GABA能突触传递的时间匹配的突触前和突触后变化。

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Developmental changes in the kinetics of GABAergic postsynaptic currents have been reported for various brain structures. However, it has remained unclear whether these modifications are matched by presynaptic changes. We addressed this question by analysing evoked IPSCs (eIPSCs) in mouse superior colliculus slices between postnatal day (P) 1 and 22. eIPSCs were elicited by electrical stimulation and measured in the whole-cell patch-clamp configuration. IPSCs were analysed using the binomial model of synaptic transmission. The readily releasable pool (RRP, N) was estimated from the cumulative eIPSC amplitude histograms during 50-Hz stimulation. Median delayed IPSC (dIPSC) amplitude was used as a quantal amplitude (q) estimate. The mean release probability (p) was determined as the mean eIPSC amplitude divided by the product of RRP and q. The experiments revealed that GABAergic synapses pass through two distinct periods of functional adjustment: (i) P1-3 (coincidental with the onset of glutamatergic spontaneous activity and a switch from depolarizing to hyperpolarizing GABA action) displayed a significant decrease of p, associated with an increase in the paired-pulse ratio (eIPSC(2)/eIPSC(1)); and (ii) P6-15 (the period before and shortly after eye opening) is characterized by a drastic reduction of IPSC duration. On the presynaptic side, it was accompanied by a down-regulation of asynchronous release in favour of stimulus-locked synchronous release. We conclude that postsynaptic modifications of GABAergic synaptic transmission in the superior colliculus (SC) are indeed accompanied by presynaptic changes, and this may guarantee the necessary efficacy of inhibition during the developmental reconstruction of the synaptic network in the SC.
机译:已经报道了各种大脑结构的GABA能突触后电流动力学的发展变化。但是,尚不清楚这些修饰是否与突触前的变化相匹配。我们通过分析出生后第1天到第22天之间小鼠上丘切片中诱发的IPSC(eIPSC)来解决此问题。eIPSC是通过电刺激诱发的,并在全细胞膜片钳配置中进行了测量。使用突触传递的二项式模型分析了IPSC。根据50 Hz刺激期间的累积eIPSC振幅直方图估算了易于释放的池(RRP,N)。中位延迟IPSC(dIPSC)幅度用作量化幅度(q)估计。将平均释放概率(p)确定为平均eIPSC振幅除以RRP和q的乘积。实验表明,GABA能突触经历了两个不同的功能调节阶段:(i)P1-3(与谷氨酸能自发活动同时发生以及从去极化转变为超极化GABA作用同时发生)显示p显着降低,与p配对脉冲比率(eIPSC(2)/ eIPSC(1))的增加; (ii)P6-15(睁眼之前和之后不久的时间)的特点是IPSC持续时间大大减少。在突触前,它伴随着异步释放的下调,有利于刺激锁定的同步释放。我们得出的结论是,上丘(SC)中的GABA能突触传递的突触后修饰确实伴随着突触前变化,这可以保证在SC突触网络的发育重建过程中必要的抑制功效。

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