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Genetic evidence for an equilibrium between docked and undocked vesicles

机译:停靠和未停靠的囊泡之间平衡的遗传证据

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By using the shibire mutation to block endocytosis in a temperature-dependent fashion, we have manipulated the number of synaptic vesicles in a nerve terminal and have observed a remarkable proportionality of the number of quanta released to the size of the total vesicle pool. In the experiments described below we determine that approximately 0.3% of the vesicle pool is released per stimulus. The data suggest that the pool of readily releasable docked vesicles does not represent the saturation of a limiting number of release sites, but instead represents a subset of vesicles that is in equilibrium with the larger pool of vesicles. Before presenting this data and the significance of the finding for the regulation of neurotransmission, we will briefly review the use of Drosophila genetics as a tool for dissecting synaptic transmission.
机译:通过使用Shibire突变以依赖温度的方式阻止内吞作用,我们已经操纵了神经末梢中突触小泡的数量,并观察到释放的量子数量与总小泡池的大小有显着的比例关系。在下面描述的实验中,我们确定每个刺激释放大约0.3%的囊泡池。数据表明,易于释放的对接囊泡池并不代表一定数量的释放位点饱和,而是代表了与较大囊泡池处于平衡状态的囊泡子集。在介绍这些数据以及该发现对调节神经传递的意义之前,我们将简要回顾果蝇遗传学作为解剖突触传递的工具的用途。

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