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重新定义 MAO-A 在多巴胺降解中的差异作用和 MAO-B 在紧张性 GABA 合成中的差异作用。

Redefining differential roles of MAO-A in dopamine degradation and MAO-B in tonic GABA synthesis.

机构信息

Department of Biomedical Engineering, Hanyang University, Seoul, Korea.

KU-KIST Graduate School of Converging Science and Technology, Korea University, Seoul, Korea.

出版信息

Exp Mol Med. 2021 Jul;53(7):1148-1158. doi: 10.1038/s12276-021-00646-3. Epub 2021 Jul 9.

Abstract

Monoamine oxidase (MAO) is believed to mediate the degradation of monoamine neurotransmitters, including dopamine, in the brain. Between the two types of MAO, MAO-B has been believed to be involved in dopamine degradation, which supports the idea that the therapeutic efficacy of MAO-B inhibitors in Parkinson's disease can be attributed to an increase in extracellular dopamine concentration. However, this belief has been controversial. Here, by utilizing in vivo phasic and basal electrochemical monitoring of extracellular dopamine with fast-scan cyclic voltammetry and multiple-cyclic square wave voltammetry and ex vivo fluorescence imaging of dopamine with GRAB, we demonstrate that MAO-A, but not MAO-B, mainly contributes to striatal dopamine degradation. In contrast, our whole-cell patch-clamp results demonstrated that MAO-B, but not MAO-A, was responsible for astrocytic GABA-mediated tonic inhibitory currents in the rat striatum. We conclude that, in contrast to the traditional belief, MAO-A and MAO-B have profoundly different roles: MAO-A regulates dopamine levels, whereas MAO-B controls tonic GABA levels.

摘要

单胺氧化酶(MAO)被认为介导单胺神经递质,包括多巴胺,在大脑中的降解。在两种 MAO 中,MAO-B 被认为参与多巴胺的降解,这支持了 MAO-B 抑制剂在帕金森病中的治疗效果可以归因于细胞外多巴胺浓度的增加的观点。然而,这种观点一直存在争议。在这里,我们利用快速扫描循环伏安法和多次循环方波伏安法对活体细胞外多巴胺的相位和基础电化学进行监测,并利用 GRAB 对多巴胺进行荧光成像,证明 MAO-A 而不是 MAO-B 主要导致纹状体多巴胺的降解。相比之下,我们的全细胞膜片钳结果表明,MAO-B 而不是 MAO-A 负责大鼠纹状体星形胶质细胞 GABA 介导的紧张性抑制电流。我们得出结论,与传统观点相反,MAO-A 和 MAO-B 具有截然不同的作用:MAO-A 调节多巴胺水平,而 MAO-B 控制紧张性 GABA 水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae50/8333267/67fe5b778b02/12276_2021_646_Fig1_HTML.jpg

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