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Distinct Modes of Dopamine and GABA Release in a Dual Transmitter Neuron

机译:双发射神经元中多巴胺和GABA释放的不同模式

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摘要

We now know of a surprising number of cases where single neurons contain multiple neurotransmitters. Neurons that contain a fast-acting neurotransmitter, such as glutamate or GABA, and a modulatory transmitter, such as dopamine, are a particularly interesting case because they presumably serve dual signaling functions. The olfactory bulb contains a large population of GABA- and dopamine-containing neurons that have been implicated in normal olfaction as well as in Parkinson's disease. Yet, they have been classified as nonexocytotic catecholamine neurons because of the apparent lack of vesicular monoamine transporters. Thus, we examined how dopamine is stored and released from tyrosine hydroxylase-positive GFP (TH+-GFP) mouse periglomerular neurons in vitro. TH+ cells expressed both VMAT2 (vesicular monoamine transporter 2) and VGAT (vesicular GABA transporter), consistent with vesicular storage of both dopamine and GABA. Carbon fiber amperometry revealed that release of dopamine was quantal and calcium-dependent, but quantal size was much less than expected for large dense core vesicles, suggesting that release originated from small clear vesicles identified by electron microscopy. A single action potential in a TH+ neuron evoked a brief GABA-mediated synaptic current, whereas evoked dopamine release was asynchronous, lasting for tens of seconds. Our data suggest that dopamine and GABA serve temporally distinct roles in these dual transmitter neurons.
机译:现在我们知道单个神经元包含多个神经递质的案例数量惊人。包含速效神经递质(例如谷氨酸或GABA)和调节性递质(例如多巴胺)的神经元是一种特别有趣的情况,因为它们可能具有双重信号传导功能。嗅球含有大量的含有GABA和多巴胺的神经元,这些神经元与正常嗅觉以及帕金森氏病有关。然而,由于明显缺乏水泡单胺转运蛋白,它们已被归类为非胞外儿茶酚胺神经元。因此,我们研究了多巴胺如何在体外从酪氨酸羟化酶阳性的GFP(TH + -GFP)小鼠肾小球周围神经元中存储和释放。 TH + 细胞同时表达VMAT2(水泡单胺转运蛋白2)和VGAT(水泡GABA转运蛋白),这与多巴胺和GABA的水泡贮存一致。碳纤维安培计显示,多巴胺的释放是数量和钙依赖性的,但数量的大小远小于大的密集核心囊泡的预期大小,这表明释放源自电子显微镜鉴定的小的透明囊泡。 TH + 神经元的单个动作电位引起短暂的GABA介导的突触电流,而诱发的多巴胺释放是异步的,持续数十秒。我们的数据表明,多巴胺和GABA在这些双重递质神经元中在时间上起着不同的作用。

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