首页> 外文期刊>The Journal of Physiology >Vesicle pool partitioning influences presynaptic diversity and weighting in rat hippocampal synapses.
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Vesicle pool partitioning influences presynaptic diversity and weighting in rat hippocampal synapses.

机译:囊泡池分配影响大鼠海马突触中的突触前多样性和权重。

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摘要

Hippocampal synapses display a range of release probabilities. This is partially the result of scaling of release probability with the total number of releasable vesicles at each synapse. We have compared synaptic release and vesicle pool sizes across a large number of hippocampal synapses using FM 1-43 and confocal fluorescence microscopy. We found that the relationship between the number of recycling vesicles at a synapse and its release probability is dependent on firing frequency. During firing at 10 Hz, the release probability of each synapse is closely related to the number of recycling vesicles that it contains. In contrast, during firing at 1 Hz, different synapses turn over their recycling vesicle pools at different rates leading to an indirect relationship between recycling vesicle pool size and release probability. Hence two synapses may release vesicles at markedly different rates during low frequency firing, even if they contain similar numbers of vesicles. Both further kinetic analyses and manipulation of the number of vesicles in the readily releasable pool using phorbol ester treatment suggested that this imprecise scaling observed during firing at 1 Hz resulted from synapse-to-synapse differences in the proportion of recycling vesicles partitioned into the readily releasable pool. Hence differential partitioning between vesicle pools affects presynaptic weighting in a frequency-dependent manner. Since hippocampal single unit firing rates shift between 1 Hz and 10 Hz regimes with behavioural state, differential partitioning may be a mechanism for encoding information in hippocampal circuits.
机译:海马突触显示出一系列的释放概率。这部分是释放概率与每个突触处可释放囊泡总数的比例缩放的结果。我们已经比较了使用FM 1-43和共聚焦荧光显微镜观察大量海马突触的突触释放和囊泡池大小。我们发现,突触中回收囊泡的数量与其释放概率之间的关系取决于发射频率。在以10 Hz的频率发射期间,每个突触的释放概率与其包含的再循环囊泡的数量密切相关。相反,在以1 Hz的频率发射期间,不同的突触以不同的速率翻转其回收囊泡池,从而导致回收囊泡池大小与释放概率之间存在间接关系。因此,两个突触可能在低频发射期间以明显不同的速率释放囊泡,即使它们包含相似数量的囊泡也是如此。进一步的动力学分析和使用佛波酯处理的易释放池中囊泡数量的操纵均表明,以1 Hz发射时观察到的这种不精确的结垢是由于突触之间的差异而造成的,这些突触与突触之间的再循环囊泡分配到易释放的比例有所不同。池。因此,囊泡池之间的差异分配以频率依赖的方式影响突触前加权。由于海马单个单位的放电频率在行为状态下在1 Hz和10 Hz的范围内变化,因此差分分配可能是在海马回路中编码信息的机制。

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