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首页> 外文期刊>The Journal of general physiology >Fusion pores and their control of neurotransmitter and hormone release
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Fusion pores and their control of neurotransmitter and hormone release

机译:融合孔及其对神经递质和激素释放的控制

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Ca2+-triggered exocytosis functions broadly in the secretion of chemical signals, enabling neurons to release neurotransmitters and endocrine cells to release hormones. The biological demands on this process can vary enormously. Although synapses often release neurotransmitter in a small fraction of a millisecond, hormone release can be orders of magnitude slower. Vesicles usually contain multiple signaling molecules that can be released selectively and conditionally. Cells are able to control the speed, concentration profile, and content selectivity of release by tuning and tailoring exocytosis to meet different biological demands. Much of this regulation depends on the fusion pore—the aqueous pathway by which molecules leave a vesicle and move out into the surrounding extracellular space. Studies of fusion pores have illuminated how cells regulate secretion. Furthermore, the formation and growth of fusion pores serve as a readout for the progress of exocytosis, thus revealing key kinetic stages that provide clues about the underlying mechanisms. Herein, we review the structure, composition, and dynamics of fusion pores and discuss the implications for molecular mechanisms as well as for the cellular regulation of neurotransmitter and hormone release.
机译:Ca2 +触发的胞吐作用广泛作用于化学信号的分泌,使神经元释放神经递质,使内分泌细胞释放激素。对这一过程的生物学要求可能相差很大。尽管突触通常会在一毫秒的时间内释放神经递质,但激素释放可能会慢几个数量级。囊泡通常包含可以选择性和有条件地释放的多种信号分子。细胞能够通过调节和调整胞吐作用来满足不同的生物学需求,从而控制释放的速度,浓度分布和含量选择性。这种调节在很大程度上取决于融合孔,即分子离开囊泡并移至周围细胞外空间的水性途径。融合孔的研究阐明了细胞如何调节分泌。此外,融合孔的形成和生长可作为胞吐作用进展的读数,从而揭示了关键的动力学阶段,这些阶段提供了有关潜在机制的线索。本文中,我们综述了融合孔的结构,组成和动力学,并讨论了其对神经递质和激素释放的分子机制以及细胞调节的影响。

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