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GAD2 表达定义了一类在小鼠中兴奋性外侧缰核神经元,它们投射到中缝核和脑桥被盖。

GAD2 Expression Defines a Class of Excitatory Lateral Habenula Neurons in Mice that Project to the Raphe and Pontine Tegmentum.

机构信息

Center for Integrative Brain Research, Seattle Children's Research Institute, Seattle, WA 98101.

Center for Integrative Brain Research, Seattle Children's Research Institute, Seattle, WA 98101

出版信息

eNeuro. 2020 May 20;7(3). doi: 10.1523/ENEURO.0527-19.2020. Print 2020 May/Jun.

Abstract

The lateral habenula (LHb) sends complex projections to several areas of the mesopontine tegmentum, the raphe, and the hypothalamus. However, few markers have been available to distinguish subsets of LHb neurons that may serve these pathways. In order to address this complexity, we examined the mouse and rat LHb for neurons that express the GABA biosynthesis enzymes glutamate decarboxylase 1 (GAD1) and GAD2, and the vesicular GABA transporter (VGAT). The mouse LHb contains a population of neurons that express GAD2, while the rat LHb contains discrete populations of neurons that express GAD1 and VGAT. However, we could not detect single neurons in either species that co-express a GABA synthetic enzyme and VGAT, suggesting that these LHb neurons do not use GABA for conventional synaptic transmission. Instead, all of the neuronal types expressing a GABAergic marker in both species showed co-expression of the glutamate transporter VGluT2. Anterograde tract-tracing of the projections of GAD2-expressing LHb neurons in mice, combined with retrograde tracing from selected downstream nuclei, show that LHb-GAD2 neurons project selectively to the midline structures in the mesopontine tegmentum, including the median raphe (MnR) and nucleus incertus (NI), and only sparsely innervate the hypothalamus, rostromedial tegmental nucleus (RMTg), and ventral tegmental area (VTA). Postsynaptic recording of LHb-GAD2 neuronal input to tegmental neurons confirms that glutamate, not GABA, is the fast neurotransmitter in this circuit. Thus, GAD2 expression can serve as a marker for functional studies of excitatory neurons serving specific LHb output pathways in mice.

摘要

外侧缰核 (LHb) 向中脑被盖的几个区域、中缝核和下丘脑发出复杂的投射。然而,很少有标记物可用于区分可能服务于这些途径的 LHb 神经元亚群。为了解决这个复杂性,我们检查了小鼠和大鼠 LHb 中表达 GABA 生物合成酶谷氨酸脱羧酶 1 (GAD1) 和 GAD2 以及囊泡 GABA 转运体 (VGAT) 的神经元。小鼠 LHb 包含一群表达 GAD2 的神经元,而大鼠 LHb 则包含离散的表达 GAD1 和 VGAT 的神经元群体。然而,我们无法在这两个物种中检测到单个同时表达 GABA 合成酶和 VGAT 的神经元,这表明这些 LHb 神经元不使用 GABA 进行传统的突触传递。相反,在这两个物种中表达 GABA 能标记物的所有神经元类型都显示出谷氨酸转运体 VGluT2 的共表达。在小鼠中,对表达 GAD2 的 LHb 神经元的投射进行顺行示踪,结合从选定的下游核进行逆行示踪,表明 LHb-GAD2 神经元选择性地投射到中脑被盖的中线结构,包括中缝核 (MnR) 和中间核 (NI),并且仅稀疏地投射到下丘脑、脑桥背内侧核 (RMTg) 和腹侧被盖区 (VTA)。对 LHb-GAD2 神经元输入到中脑神经元的突触后记录证实,谷氨酸而不是 GABA 是该回路中的快速神经递质。因此,GAD2 表达可以作为研究在小鼠中服务于特定 LHb 输出途径的兴奋性神经元的功能研究的标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb05/7240287/bfbf43a73f49/SN-ENUJ200108F001.jpg

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