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小鼠海马苔藓纤维-CA3突触前终末的突触小泡动力学

Synaptic vesicle dynamics in the mossy fiber-CA3 presynaptic terminals of mouse hippocampus.

作者信息

Suyama Shigetomo, Hikima Takuya, Sakagami Hiroyuki, Ishizuka Toru, Yawo Hiromu

机构信息

Division of Integrative Physiology, Department of Physiology, Jichi Medical University, Tochigi, Japan.

出版信息

Neurosci Res. 2007 Dec;59(4):481-90. doi: 10.1016/j.neures.2007.08.019. Epub 2007 Sep 12.

Abstract

The mossy fiber (MF)-CA3 synapse in the hippocampus is unique in the CNS because of its wide dynamic range of transmitter release during short- and long-term plasticity. The presynaptic mechanisms underlying the fidelity of transmission were investigated for the MF-CA3 synapses. The relative size of readily releasable pool (RRP) of vesicles was estimated by counting the number of docked vesicles at an active zone (AZ) on the transmission electron microscopy (TEM) image. The size of the releasable pool and the exo-endocytosis kinetics were directly measured from individual large MF boutons in hippocampal slices of transgenic mice that selectively express synaptopHluorin (SpH), a pH-sensitive GFP fused to the lumenal aspect of one of the vesicular membrane proteins, VAMP-2, in these boutons. Here we found (1) there are distinct two vesicle pools, the resting pool which is resistant to exocytosis, and the releasable pool, (2) the initially docked vesicles are easily depleted and the RRP is maintained by refilling from the reserve subpopulation of releasable pool ("reserve" releasable pool), and (3) the contribution of rapid reuse of recycled vesicles is relatively small. Therefore, the fidelity of transmission is suggested to be ensured by the rapid refilling rate of RRP.

摘要

海马体中的苔藓纤维(MF)-CA3突触在中枢神经系统中独具特色,因为其在短期和长期可塑性过程中递质释放具有广泛的动态范围。研究了MF-CA3突触传递保真度的突触前机制。通过计算透射电子显微镜(TEM)图像上活性区(AZ)对接囊泡的数量,估算了囊泡易释放池(RRP)的相对大小。从选择性表达突触pH荧光蛋白(SpH)的转基因小鼠海马切片中的单个大型MF终扣直接测量可释放池的大小和胞吐-内吞动力学,SpH是一种与这些终扣中囊泡膜蛋白之一VAMP-2的腔面融合的pH敏感型绿色荧光蛋白。在此我们发现:(1)存在两个不同的囊泡池,即抗胞吐作用的静息池和可释放池;(2)最初对接的囊泡很容易耗尽,RRP通过从可释放池的储备亚群(“储备”可释放池)重新填充来维持;(3)回收囊泡快速再利用的贡献相对较小。因此,提示RRP的快速重新填充率可确保传递的保真度。

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