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多巴胺神经元通过闪烁融合孔释放神经递质。

Dopamine neurons release transmitter via a flickering fusion pore.

作者信息

Staal Roland G W, Mosharov Eugene V, Sulzer David

机构信息

Department of Neurology, Black 305, 650 West 168th St, Columbia University, New York, New York 10032, USA.

出版信息

Nat Neurosci. 2004 Apr;7(4):341-6. doi: 10.1038/nn1205. Epub 2004 Feb 29.

Abstract

A key question in understanding mechanisms of neurotransmitter release is whether the fusion pore of a synaptic vesicle regulates the amount of transmitter released during exocytosis. We measured dopamine release from small synaptic vesicles of rat cultured ventral midbrain neurons using carbon fiber amperometry. Our data indicate that small synaptic vesicle fusion pores flicker either once or multiple times in rapid succession, with each flicker releasing approximately 25-30% of vesicular dopamine. The incidence of events with multiple flickers was reciprocally regulated by phorbol esters and staurosporine. Thus, dopamine neurons regulate the amount of neurotransmitter released by small synaptic vesicles by controlling the number of fusion pore flickers per exocytotic event. This mode of exocytosis is a potential mechanism whereby neurons can rapidly reuse vesicles without undergoing the comparatively slow process of recycling.

摘要

理解神经递质释放机制的一个关键问题是,突触小泡的融合孔是否会在胞吐过程中调节递质的释放量。我们使用碳纤维安培法测量了大鼠培养的腹侧中脑神经元小突触小泡释放的多巴胺。我们的数据表明,小突触小泡融合孔会快速连续闪烁一次或多次,每次闪烁释放约25% - 30%的囊泡多巴胺。多次闪烁事件的发生率受到佛波酯和星形孢菌素的相互调节。因此,多巴胺能神经元通过控制每个胞吐事件中融合孔闪烁的次数来调节小突触小泡释放的神经递质数量。这种胞吐模式是一种潜在机制,通过该机制神经元可以快速重新利用小泡,而无需经历相对缓慢的回收过程。

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