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γ-氨基丁酸(GABA)对囊泡单胺转运体VMAT2的低亲和力证据——对多巴胺能神经元递质共释放的影响

Evidence for low affinity of GABA at the vesicular monoamine transporter VMAT2 - Implications for transmitter co-release from dopamine neurons.

作者信息

Srinivasan Sivakumar, Limani Fabian, Hanzlova Michaela, La Batide-Alanore Ségolène, Klotz Sigrid, Hnasko Thomas S, Steinkellner Thomas

机构信息

Institute of Pharmacology, Center for Physiology and Pharmacology, Medical University of Vienna, Austria.

Division of Neuropathology and Neurochemistry, Department of Neurology, Medical University of Vienna, Austria.

出版信息

Neuropharmacology. 2025 Jun 1;270:110367. doi: 10.1016/j.neuropharm.2025.110367. Epub 2025 Feb 15.

Abstract

Midbrain dopamine (DA) neurons comprise a heterogeneous population of cells. For instance, some DA neurons express the vesicular glutamate transporter VGLUT2 allowing these cells to co-release DA and glutamate. Additionally, GABA may be co-released from DA neurons. However, most cells do not express the canonical machinery to synthesize GABA or the vesicular GABA transporter VGAT. Instead, GABA seems to be taken up into DA neurons by a plasmalemmal GABA transporter (GAT1) and stored in synaptic vesicles via the vesicular monoamine transporter VMAT2. Yet, it remains unclear whether GABA indeed interacts with VMAT2. Here, we used radiotracer flux measurements in VMAT2 expressing HEK-293 cells and synaptic vesicles from male and female mice to determine whether GABA qualifies as substrate at VMAT2. We found that GABA reduced uptake of VMAT2 substrates in mouse synaptic vesicle preparations from striatum and cerebellum at millimolar concentrations but had no effect in VMAT2-expressing HEK-293 cells. Interestingly, while the closely related amino acid glycine did not affect substrate uptake at VMAT2 in mouse synaptic vesicles, the amino sulfonic acid taurine reduced uptake similar to GABA. Lastly, we discovered that the majority of mouse and human midbrain DA neurons in the substantia nigra of either sex expressed VMAT2 and GAT1 suggesting that most of them could be capable of co-releasing DA and GABA. Together, our findings suggest that GABA is a low-affinity substrate at VMAT2 with potential implications for basal ganglia physiology and disease.

摘要

中脑多巴胺(DA)神经元由异质性细胞群体组成。例如,一些DA神经元表达囊泡型谷氨酸转运体VGLUT2,使这些细胞能够共同释放DA和谷氨酸。此外,GABA可能从DA神经元共同释放。然而,大多数细胞不表达合成GABA的经典机制或囊泡型GABA转运体VGAT。相反,GABA似乎通过质膜GABA转运体(GAT1)被摄取到DA神经元中,并通过囊泡单胺转运体VMAT2储存在突触小泡中。然而,GABA是否确实与VMAT2相互作用仍不清楚。在这里,我们使用放射性示踪剂通量测量方法,在表达VMAT2的HEK-293细胞和来自雄性和雌性小鼠的突触小泡中,来确定GABA是否符合VMAT2底物的条件。我们发现,GABA在毫摩尔浓度下可降低纹状体和小脑中来自小鼠突触小泡制剂中VMAT2底物的摄取,但对表达VMAT2的HEK-293细胞没有影响。有趣的是,虽然密切相关的氨基酸甘氨酸不影响小鼠突触小泡中VMAT2的底物摄取,但氨基磺酸牛磺酸与GABA类似地降低了摄取。最后,我们发现,两性黑质中大多数小鼠和人类中脑DA神经元表达VMAT2和GAT1,这表明它们中的大多数可能能够共同释放DA和GABA。总之,我们的研究结果表明,GABA是VMAT2的低亲和力底物,对基底神经节生理学和疾病可能具有潜在影响。

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