Ziegler Dana R, Cullinan William E, Herman James P
Department of Psychiatry, University of Cincinnati, 231 Albert Sabin Way, Cincinnati, OH 45267-0559, USA.
J Comp Neurol. 2002 Jul 1;448(3):217-29. doi: 10.1002/cne.10257.
Two isoforms of the vesicular glutamate transporter, VGLUT1 and VGLUT2, were recently cloned and biophysically characterized. Both VGLUT1 and VGLUT2 specifically transport glutamate into synaptic vesicles, making them definitive markers for neurons using glutamate as a neurotransmitter. The present study takes advantage of the specificity of the vesicular transporters to afford the first detailed map of putative glutamatergic neurons in the rat hypothalamus. In situ hybridization analysis was used to map hypothalamic distributions of VGLUT1 and VGLUT2 mRNAs. VGLUT2 is clearly the predominant vesicular transporter mRNA found in the hypothalamus; rich expression can be documented in regions regulating energy balance (ventromedial hypothalamus), neuroendocrine function (preoptic nuclei), autonomic tone (posterior hypothalamus), and behavioral/homeostatic integration (lateral hypothalamus, mammillary nuclei). Expression of VGLUT1 is decidedly more circumspect and is confined to relatively weak labeling in lateral hypothalamic regions, neuroendocrine nuclei, and the suprachiasmatic nucleus. Importantly, dual-label analysis revealed no incidence of colocalization of VGLUT1 or VGLUT2 mRNAs in glutamic acid decarboxylase (GAD) 65-positive neurons, indicating that GABA neurons do not express either transporter. Our data support a major role for hypothalamic glutamatergic neurons in regulation of all aspects of hypothalamic function.
囊泡谷氨酸转运体的两种亚型,即VGLUT1和VGLUT2,最近被克隆并进行了生物物理特性鉴定。VGLUT1和VGLUT2都特异性地将谷氨酸转运到突触小泡中,使其成为以谷氨酸作为神经递质的神经元的明确标志物。本研究利用囊泡转运体的特异性,绘制了大鼠下丘脑假定谷氨酸能神经元的首张详细图谱。采用原位杂交分析来绘制下丘脑VGLUT1和VGLUT2 mRNA的分布图。VGLUT2显然是下丘脑中发现的主要囊泡转运体mRNA;在调节能量平衡的区域(腹内侧下丘脑)、神经内分泌功能(视前核)、自主神经张力(下丘脑后部)以及行为/稳态整合(外侧下丘脑、乳头体核)中都有丰富的表达记录。VGLUT1的表达则明显更为谨慎,局限于外侧下丘脑区域、神经内分泌核团和视交叉上核中的相对较弱标记。重要的是,双重标记分析显示,VGLUT1或VGLUT2 mRNA在谷氨酸脱羧酶(GAD)65阳性神经元中没有共定位现象,这表明GABA能神经元不表达这两种转运体。我们的数据支持下丘脑谷氨酸能神经元在调节下丘脑功能的各个方面发挥主要作用。