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Release probability modulates short-term plasticity at a rat giant terminal

机译:释放概率调节大鼠巨末端的短期可塑性

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摘要

class="enumerated" style="list-style-type:decimal">Modulation of release probability is a major factor underlying short-term synaptic plasticity in the central nervous system. We have investigated the relationship between release probability (Pr) and paired-pulse modulation at a large auditory calyceal synapse containing many transmitter release sites. Whole-cell patch electrode recordings were made of excitatory postsynaptic currents (EPSCs), evoked by stimulation of auditory nerve fibres giving rise to the endbulbs of Held.Quantitative estimates of Pr and quantal amplitude were obtained using the recently developed variance-mean analysis technique. Release probability conditions were modulated by bath application of cadmium, elevated calcium and protein kinase C activation by phorbol esters.Our results show that, under physiological conditions, most sites released neurotransmitter following a single presynaptic nerve impulse, with a mean Pr of 0·6. The mean quantal amplitude was 44 pA, which was consistent with the mean amplitude of miniature EPSCs (47 pA).Under high release probability conditions with elevated calcium or phorbol esters, Pr at all sites approached 1·0. At these high Pr values, variance-mean analysis indicated a significant postsynaptic contribution to paired-pulse depression. The miniature EPSC amplitudes were decreased following stimulation in elevated calcium, confirming a postsynaptic component of paired-pulse depression at this glutamatergic connection.A notable feature was the large variability between neurons in the relationship between paired-pulse ratio and Pr. Based on current models of vesicle release and ultrastructural evidence, we suggest that this variability may be partly due to morphological differences between endbulb specializations, particularly in the ratio of fusion-ready to reserve populations of vesicles at endbulb release sites.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 释放概率的调节是中枢神经系统中短期突触可塑性的基础。我们已经研究了在包含许多发射器释放位点的大型听觉萼状突触中释放概率(Pr)和成对脉冲调制之间的关系。全细胞膜片电极记录是通过刺激听觉神经纤维引起Held的终末兴奋而产生的兴奋性突触后电流(EPSC)。 使用最近的定量获得Pr和定量幅度的定量估计开发了方差均值分析技术。 我们的结果表明,在生理条件下,大多数位置在单个突触前神经冲动下释放神经递质,并伴随着佛波酯的释放而调节释放概率条件。 平均Pr为0·6。平均定量振幅为44 pA,与微型EPSC的平均振幅(47 pA)一致。 在钙或佛波醇酯含量较高的高释放概率条件下,所有位点的Pr均接近1·0 。在这些高Pr值下,方差均值分析表明突触后突触对成对脉冲抑制有重要作用。钙离子升高刺激后,EPSC的微小幅度降低,证实了这种谷氨酸能连接的成对脉冲抑制的突触后成分。 一个显着特征是成对脉冲比之间的关系中神经元之间的变异性很大。和Pr。基于当前的囊泡释放模型和超微结构证据,我们认为这种变异性可能部分是由于鳞茎专业化之间的形态差异所致,尤其是在鳞茎释放部位融合准备就绪的囊泡与保留囊泡群体的比例方面。 < / ol>

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