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Fusion pore regulation of transmitter release.

机译:融合孔调节发射器的释放。

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During the last decade a wealth of new information about the properties of the exocytotic fusion pore is changing our current view of exocytosis. The exocytotic fusion pore, a necessary stage before the full merging of the vesicle membrane with the plasma membrane, is becoming a key cellular structure that might critically control the amount of neurotransmitter released into the synaptic cleft and that can be subjected to control by second messengers and phosphorylated proteins. Fusion pores form, expand to fully merge membranes, or can close leaving an intact and identical synaptic vesicle in place for a new round of exocytosis. Transient formation of fusion pores is the mechanistic representation of the kiss-and-run alternatives for synaptic vesicle recycling besides to the classical mechanism mediated by clathrin coat endocytosis. For vesicle recycling transient fusion pores ensures a fast mechanism for maintaining an active pool of synaptic vesicles. The size reached by transient fusion pores and the time spent on the open state can determine the release of subquantal synaptic transmission, which could be a mechanism of synaptic potentiation. In this review we will described the electrophysiological and fluorescence methods that contribute to further explore the biophysical properties of the exocytotic fusion pore and the relevant experiments obtained by these methods.
机译:在过去的十年中,有关胞吐融合孔特性的大量新信息正在改变我们目前对胞吐的看法。细胞外融合孔是囊泡膜与质膜完全融合之前的必经阶段,它正在成为关键的细胞结构,可能会严重控制释放到突触间隙中的神经递质的数量,并且可以通过第二信使进行控制。和磷酸化的蛋白质。融合孔形成,扩展以完全融合膜,或者可以闭合,留下完整且相同的突触小泡,以进行新一轮的胞吐作用。融合孔的瞬时形成是突触小泡循环的吻合运行替代方案的机械表示,除了网格蛋白外套内吞作用介导的经典机理外。对于囊泡再循环,瞬时融合孔确保了维持突触囊泡活性池的快速机制。瞬时融合孔达到的大小和在开放状态上花费的时间可以确定亚量子突触传递的释放,这可能是突触增强的机制。在这篇综述中,我们将描述有助于进一步探索胞吐融合孔的生物物理特性的电生理和荧光方法,以及通过这些方法获得的相关实验。

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