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首页> 外文期刊>Neuron >A Preferentially Segregated Recycling Vesicle Pool of Limited Size Supports Neurotransmission in Native Central Synapses
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A Preferentially Segregated Recycling Vesicle Pool of Limited Size Supports Neurotransmission in Native Central Synapses

机译:优先分离的有限大小的回收囊泡池支持天然中央突触中的神经传递。

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At small central synapses, efficient turnover of vesicles is crucial for stimulus-driven transmission, but how the structure of this recycling pool relates to its functional role remains unclear. Here we characterize the organizational principles of functional vesicles at native hippocampal synapses with nanoscale resolution using fluorescent dye labeling and electron microscopy. We show that the recycling pool broadly scales with the magnitude of the total vesicle pool, but its average size is small (~45 vesicles), highly variable, and regulated by CDK5/calcineurin activity. Spatial analysis demonstrates that recycling vesicles are preferentially arranged near the active zone and this segregation is abolished by actin stabilization, slowing the rate of activity-driven exocytosis. Our approach reveals a similarly biased recycling pool distribution at synapses in visual cortex activated by sensory stimulation in vivo. We suggest that in small native central synapses, efficient release of a limited pool of vesicles relies on their favored spatial positioning within the terminal. Using a functional-ultrastructural approach, Marra et al. demonstrate that recycling vesicles in native synapses form a small subset of the total vesicle population. The spatial bias of this functional pool toward the release site helps to support efficient neurotransmission.
机译:在小型中央突触中,有效的囊泡周转对于刺激驱动的传递至关重要,但是该回收池的结构与其功能作用之间的关系尚不清楚。在这里,我们表征天然海马突触功能囊泡的组织原理与纳米级分辨率使用荧光染料标记和电子显微镜。我们发现,回收池的大小与总囊泡的大小成比例,但其平均大小很小(〜45个囊泡),高度可变,并受CDK5 /钙调神经磷酸酶活性的调节。空间分析表明,回收囊泡优先布置在活性区附近,肌动蛋白稳定化消除了这种分离,减慢了活性驱动的胞吐作用的速度。我们的方法揭示了由体内感觉刺激激活的视觉皮层突触中类似的有偏见的回收池分布。我们建议在小的本地中央突触,有限的囊泡池的有效释放依赖于其在终端内的有利空间定位。 Marra等使用功能性超结构方法。证明天然突触中的回收囊泡占囊泡总数的一小部分。该功能库对释放部位的空间偏向有助于支持有效的神经传递。

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