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突触小泡在诱发融合和自发融合中具有共同的起源。

A common origin of synaptic vesicles undergoing evoked and spontaneous fusion.

机构信息

Department of Membrane Biophysics, Max Planck Institute for Biophysical Chemistry, Göttingen, Germany.

出版信息

Nat Neurosci. 2010 Dec;13(12):1451-3. doi: 10.1038/nn.2695.

Abstract

There is a longstanding controversy on the identity of synaptic vesicles undergoing spontaneous versus evoked release. A recent study, introducing a new genetic probe, suggested that spontaneous release is driven by a resting pool of synaptic vesicles refractory to stimulation. We found that cross-depletion of spontaneously or actively recycling synaptic vesicle pools occurred on stimulation in rat hippocampal neurons and identified the recycling pool as a major source of spontaneous release.

摘要

对于自发释放和诱发释放的突触囊泡的身份,一直存在争议。最近的一项研究引入了一种新的遗传探针,该研究表明,自发释放是由对刺激具有抗性的静止突触囊泡池驱动的。我们发现,在刺激大鼠海马神经元时,自发或主动回收的突触囊泡池会发生交叉耗竭,并确定回收池是自发释放的主要来源。

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