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Counting vesicular release events reveals binomial release statistics at single glutamatergic synapses.

机译:计数囊泡释放事件揭示单个谷氨酸能突触的二项式释放统计。

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摘要

Many central glutamatergic synapses contain a single presynaptic active zone and a single postsynaptic density. However, the basic functional properties of such "simple synapses" remain unclear. One important step toward understanding simple synapse function is to analyze the number of synaptic vesicles released in such structures per action potential, but this goal has remained elusive until now. Here, we describe procedures that allow reliable vesicular release counting at simple synapses between parallel fibers and molecular layer interneurons of rat cerebellar slices. Our analysis involves local extracellular stimulation of single parallel fibers and deconvolution of resulting EPSCs using quantal signals as template. We observed a reduction of quantal amplitudes (amplitude occlusion) in pairs of consecutive EPSCs due to receptor saturation. This effect is larger (62%) than previously reported and primarily reflects receptor activation rather than desensitization. In addition to activation-driven amplitude occlusion, each EPSC reduces amplitudes of subsequent events by an estimated 3% due to cumulative desensitization. Vesicular release counts at simple synapses follow binomial statistics with a maximum that varies from 2 to 10 among experiments. This maximum presumably reflects the number of docking sites at a given synapse. These results show striking similarities, as well as significant quantitative differences, with respect to previous results at simple GABAergic synapses. SIGNIFICANCE STATEMENT: It is generally accepted that the output signal of individual central synapses saturates at high release probability, but it remains unclear whether the source of saturation is presynaptic, postsynaptic, or both presynaptic and postsynaptic. To clarify this and other issues concerning the function of synapses, we have developed new recording and analysis methods at single central glutamatergic synapses. We find that individual release events engage a high proportion of postsynaptic receptors (62%), revealing a larger component of postsynaptic saturation than anticipated. Conversely, we also find that the number of released synaptic vesicles is limited at each active zone. Altogether, our results argue for both presynaptic and postsynaptic contributions to signal saturation at single glutamatergic synapses.
机译:许多中央谷氨酸能突触包含单个突触前活性区和单个突触后密度。但是,这种“简单突触”的基本功能特性仍不清楚。理解简单突触功能的重要一步是分析每个动作电位在此类结构中释放的突触小泡的数量,但到目前为止,这一目标仍然遥不可及。在这里,我们描述的程序允许可靠的水泡释放计数在大鼠小脑切片的平行纤维和分子层间神经元之间的简单突触。我们的分析涉及对单根平行纤维的局部细胞外刺激和使用定量信号作为模板的所得EPSC的去卷积。我们观察到由于受体饱和,成对的连续EPSC中的定量振幅(振幅闭塞)降低。该作用比以前报道的要大(62%),并且主要反映了受体激活而不是脱敏。除了激活驱动的幅度闭塞外,由于累积的脱敏,每个EPSC还将后续事件的幅度降低了大约3%。简单突触中的囊泡释放计数遵循二项式统计,在实验之间最大值从2到10不等。该最大值大概反映了给定突触上的对接位点的数量。这些结果与简单的GABA能突触的先前结果显示出惊人的相似性,以及明显的定量差异。意义声明:普遍认为,单个中央突触的输出信号以高释放概率饱和,但是尚不清楚饱和的来源是突触前,突触后还是突触前和突触后。为了弄清这个和其他有关突触功能的问题,我们开发了在单个中央谷氨酸能突触上的新记录和分析方法。我们发现个体释放事件参与高比例的突触后受体(62%),揭示突触后饱和的成分比预期的要大。相反,我们还发现,在每个活动区域,突触囊泡的释放数量受到限制。总而言之,我们的研究结果表明,在单个谷氨酸能突触中,突触前和突触后信号均对信号饱和有贡献。

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