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Co-release of glutamate and GABA from single vesicles in GABAergic neurons exogenously expressing VGLUT3

机译:从外源性表达VGLUT3的GABA能神经元的单个囊泡中共释放谷氨酸和GABA

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The identity of the vesicle neurotransmitter transporter expressed by a neuron largely corresponds with the primary neurotransmitter that cell releases. However, the vesicular glutamate transporter subtype 3 (VGLUT3) is mainly expressed in non-glutamatergic neurons, including cholinergic, serotonergic, or GABAergic neurons. Though a functional role for glutamate release from these non-glutamatergic neurons has been demonstrated, the interplay between VGLUT3 and the neuron’s characteristic neurotransmitter transporter, particularly in the case of GABAergic neurons, at the synaptic and vesicular level is less clear. In this study, we explore how exogenous expression of VGLUT3 in striatal GABAergic neurons affects the packaging and release of glutamate and GABA in synaptic vesicles (SVs). We found that VGLUT3 expression in isolated, autaptic GABAergic neurons leads to action potential evoked release of glutamate. Under these conditions, glutamate and GABA could be packaged together in single vesicles release either spontaneously or asynchronously. However, the presence of glutamate in GABAergic vesicles did not affect uptake of GABA itself, suggesting a lack of synergy in vesicle filling for these transmitters. Finally, we found postsynaptic detection of glutamate released from GABAergic terminals difficult when bona fide glutamatergic synapses were present, suggesting that co-released glutamate cannot induce postsynaptic glutamate receptor clustering.
机译:神经元表达的囊泡神经递质转运蛋白的身份在很大程度上与细胞释放的主要神经递质相对应。但是,水泡谷氨酸转运蛋白亚型3(VGLUT3)主要在非谷氨酸能神经元中表达,包括胆碱能,血清素能或GABA能神经元。尽管已经证明了从这些非谷氨酸能神经元释放谷氨酸的功能,但VGLUT3与神经元的特征性神经递质转运蛋白之间的相互作用,特别是在GABA能神经元的情况下,在突触和囊泡水平尚不清楚。在这项研究中,我们探索纹状体GABA能神经元中VGLUT3的外源表达如何影响突触小泡(SVs)中谷氨酸和GABA的包装和释放。我们发现,VGLUT3在孤立的自闭性GABA能神经元中的表达导致动作电位诱发的谷氨酸释放。在这些条件下,谷氨酸和GABA可以包装在自发或异步释放的单个囊泡中。然而,GABA能囊泡中谷氨酸的存在并不影响GABA本身的摄取,表明这些递质在囊泡充盈中缺乏协同作用。最后,我们发现当存在真正的谷氨酸能突触时,很难从GABA能端释放出的谷氨酸进行突触后检测,这表明共释放的谷氨酸不能诱导突触后谷氨酸受体聚集。

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