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Presynaptic and postsynaptic mechanisms underlie paired pulse depression at single GABAergic boutons in rat collicular cultures

机译:突触前和突触后机制是大鼠胶体培养中单个GABA能弹道上配对脉冲抑制的基础

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摘要

Paired pulse depression (PPD) is a common form of short-term synaptic plasticity. The aim of this study was to characterise PPD at the level of a single inhibitory bouton. Low-density collicular cultures were loaded with the Ca2+ indicator Oregon Green-1, active boutons were stained with RH414, and action potentials were blocked with TTX. Evoked IPSCs (eIPSCs) and presynaptic Ca2+ transients were recorded in response to direct presynaptic depolarisation of an individual bouton. The single bouton eIPSCs had a low failure rate (< 0.1), large average quantal content (3-6) and slow decay (τ1 = 15 ms, τ2 = 81 ms). The PPD of eIPSCs had two distinct components: PPDfast and PPDslow (τ = 86 ms and 2 s). PPDslow showed no dependence on extracellular Ca2+ concentration, or on the first eIPSC's failure rate or amplitude. Most probably, it reflects a release-independent inhibition of exocytosis. PPDfast was only observed in normal or elevated Ca2+. It decreased with the failure rate and increased with the amplitude of the first eIPSC. It coincided with paired pulse depression of the presynaptic Ca2+ transients (τ = 120 ms). The decay of the latter was accelerated by EGTA, which also reduced PPDfast. Therefore, a suppressive effect of residual presynaptic Ca2+ on subsequent Ca2+ influx is considered the most likely cause of PPDfast. PPDfast may also have a postsynaptic component, because exposure to a low-affinity GABAA receptor antagonist (TPMPA; 300 μM) counteracted PPDfast, and asynchronous IPSC amplitudes were depressed for a short interval following an eIPSC. Thus, at these synapses, PPD is produced by at least two release-independent presynaptic mechanisms and one release-dependent postsynaptic mechanism.
机译:配对脉冲抑制(PPD)是短期突触可塑性的一种常见形式。这项研究的目的是在单个抑制性按钮的水平上表征PPD。低密度胶体培养物中加载了Ca 2 + 指示剂Oregon Green-1,活性纽扣用RH414染色,动作电位被TTX阻断。记录了诱发的IPSC(eIPSCs)和突触前Ca 2 + 瞬变,以响应单个按钮的直接突触前去极化。单个bouton eIPSC具有较低的故障率(<0.1),较大的平均量子含量(3-6)和缓慢的衰减(τ1= 15 ms,τ2= 81 ms)。 eIPSC的PPD具有两个截然不同的组成部分:PPDfast和PPDslow(τ= 86 ms和2 s)。 PPDslow显示不依赖于细胞外Ca 2 + 的浓度,也不依赖于第一eIPSC的失败率或幅度。最有可能的是,它反映了不依赖释放的胞吐作用抑制。仅在正常或升高的Ca 2 + 中观察到PPDfast。它随着故障率降低而降低,并随着第一eIPSC的幅度而增大。它与突触前Ca 2 + 瞬态的成对脉冲抑制相吻合(τ= 120 ms)。 EGTA加速了后者的衰减,这也降低了PPDfast。因此,残余突触前Ca 2 + 对随后的Ca 2 + 内流的抑制作用被认为是PPDfast的最可能原因。 PPDfast也可能具有突触后成分,因为暴露于低亲和力的GABAA受体拮抗剂(TPMPA; 300μM)会抵消PPDfast,并且在eIPSC之后的很短时间内,异步IPSC振幅会降低。因此,在这些突触中,PPD由至少两种不依赖释放的突触前机制和一种不依赖释放的突触后机制产生。

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