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青蛙神经肌肉接头处的突触小泡池。

Synaptic vesicle pools at the frog neuromuscular junction.

作者信息

Richards David A, Guatimosim Cristina, Rizzoli Silvio O, Betz William J

机构信息

Department of Physiology and Biophysics/C-240, University of Colorado Medical School, 4200 East Ninth Avenue, Denver, Colorado 80262, USA.

出版信息

Neuron. 2003 Jul 31;39(3):529-41. doi: 10.1016/s0896-6273(03)00405-7.

Abstract

We have characterized the morphological and functional properties of the readily releasable pool (RRP) and the reserve pool of synaptic vesicles in frog motor nerve terminals using fluorescence microscopy, electron microscopy, and electrophysiology. At rest, about 20% of vesicles reside in the RRP, which is depleted in about 10 s by high-frequency nerve stimulation (30 Hz); the RRP refills in about 1 min, and surprisingly, refilling occurs almost entirely by recycling, not mobilization from the reserve pool. The reserve pool is depleted during 30 Hz stimulation with a time constant of about 40 s, and it refills slowly (half-time about 8 min) as nascent vesicles bud from randomly distributed cisternae and surface membrane infoldings and enter vesicle clusters spaced at regular intervals along the terminal. Transmitter output during low-frequency stimulation (2-5 Hz) is maintained entirely by RRP recycling; few if any vesicles are mobilized from the reserve pool.

摘要

我们利用荧光显微镜、电子显微镜和电生理学方法,对青蛙运动神经末梢中易于释放的囊泡池(RRP)和突触囊泡储备池的形态和功能特性进行了表征。静息时,约20%的囊泡存在于RRP中,高频神经刺激(30Hz)可在约10秒内耗尽该池;RRP在约1分钟内重新填充,令人惊讶的是,重新填充几乎完全通过循环进行,而非从储备池中动员。储备池在30Hz刺激下以约40秒的时间常数耗尽,随着新生囊泡从随机分布的池和表面膜褶皱中芽生并进入沿末梢以规则间隔排列的囊泡簇,储备池缓慢重新填充(半衰期约8分钟)。低频刺激(2-5Hz)期间的递质输出完全由RRP循环维持;储备池中极少有囊泡被动员。

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