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突触小泡循环

The synaptic vesicle cycle.

作者信息

Betz W J, Angleson J K

机构信息

Department of Physiology and Biophysics, University of Colorado Medical School, Denver 80262, USA.

出版信息

Annu Rev Physiol. 1998;60:347-63. doi: 10.1146/annurev.physiol.60.1.347.

Abstract

The ins and outs of the synaptic vesicle cycle are being examined in increasing detail with diverse investigative tools in a variety of cell types, particularly those with large granules. The cycle begins with the opening of a fusion pore that connects the vesicle lumen to the extracellular fluid. Sensitive electrophysiological techniques reveal the often-stuttering behavior of single pores in non-neuronal cells, through which small molecules trickle until the fusion pore expands and the remaining contents erupt from the vesicle. The granule membranes are then retrieved by multiple processes that appear to act in parallel and that are distinguished from each other kinetically and ultrastructurally. Following endocytosis, synaptic vesicles are then shuttled back into the vesicle pool, where they briefly mix with other vesicles, become immobilized, and remain gelled with their neighbors, even while moving en masse again to the presynaptic membrane as a prelude for another round of exocytosis.

摘要

借助各种研究工具,在多种细胞类型中,尤其是那些具有大颗粒的细胞中,人们对突触小泡循环的来龙去脉进行了越来越详细的研究。这个循环始于一个融合孔的打开,该融合孔将小泡腔与细胞外液连接起来。灵敏的电生理技术揭示了非神经元细胞中单个孔常常断断续续的行为,小分子通过这些孔缓慢渗漏,直到融合孔扩大,小泡中剩余的内容物喷发出来。然后,颗粒膜通过多个似乎并行起作用的过程被回收,这些过程在动力学和超微结构上彼此有区别。内吞作用之后,突触小泡接着被运回小泡池,在那里它们会与其他小泡短暂混合,变得固定不动,并与相邻小泡粘连在一起,即使在再次集体移动到突触前膜作为另一轮胞吐作用的前奏时也是如此。

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