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Synaptic vesicle recycling studied in transgenic mice expressing synaptopHluorin

机译:在表达synaptopHluorin的转基因小鼠中研究突触小泡循环

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摘要

Synaptic vesicles are recycled locally within presynaptic specializations. We examined how vesicles are reused after endocytosis, using transgenic mice expressing the genetically encoded fluorescent indicator synaptopHluorin in subsets of neurons. At both excitatory and inhibitory synapses in cultured hippocampal neurons, newly endocytosed vesicles did not preferentially enter the releasable pool of vesicles. Rather, they entered the reserve pool first and subsequently the readily releasable pool over a period of several minutes. All vesicles in the recycling pool could be accessed by spaced stimuli, arguing against preferential local reuse of the readily releasable vesicles. Interestingly, nearly half the vesicles at excitatory synapses, and a third at inhibitory synapses, could not be recruited for release even by sustained stimuli. We conclude that, at presynaptic terminals in the hippocampus, most vesicles vacate release sites after exocytosis and are replaced by existing vesicles from the reserve pool, placing constraints on kiss-and-run recycling.
机译:突触小泡在突触前的专业领域内本地回收。我们使用表达在神经元子集中遗传编码的荧光指示剂synaptopHluorin的转基因小鼠,检查了内吞后如何再利用囊泡。在培养的海马神经元的兴奋性突触和抑制性突触中,新内吞的囊泡均不会优先进入可释放的囊泡池。相反,他们先进入了备用池,然后又进入了几分钟的可释放池。回收池中的所有囊泡都可以通过间隔开的刺激物进入,这与易于释放的囊泡在局部优先使用有关。有趣的是,即使受到持续刺激,兴奋性突触中近一半的囊泡和抑制性突触中也有三分之一无法被释放。我们得出的结论是,在海马突触前末端,大多数囊泡在胞吐作用后会腾出释放位点,并被储备池中现有的囊泡所取代,从而限制了接吻运行循环。

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