首页> 外文期刊>Progress in Neuro-Psychopharmacology & Biological Psychiatry: An International Research, Review and News Journal >Cellular colocalization of dopamine D1 mRNA and D2 receptor in rat brain using a D2 dopamine receptor specific polyclonal antibody.
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Cellular colocalization of dopamine D1 mRNA and D2 receptor in rat brain using a D2 dopamine receptor specific polyclonal antibody.

机译:使用D2多巴胺受体特异性多克隆抗体对大鼠脑中多巴胺D1 mRNA和D2受体进行细胞共定位。

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1. The main objective of this work was to investigate the extent of cellular colocalization of dopamine D1 and D2 receptors in the rat brain. A double labeling technique, that combined immunocytochemical labeling of the D2 receptor using polyclonal antibodies raised against the third intracellular loop of the short isoform of the human D2 receptor in combination with in situ hybridization detecting D1 mRNA expression, was designed to accomplish this goal. 2. The specificity of the antisera obtained was confirmed by immunoprecipitation assay, Western blot analysis, and immunocytochemistry on D2R transfected cells and murine brain tissue. Western blot using the D2 receptor antibody revealed a specific broad band centered at 67 kDa in transfected cells and a major protein of 88 kDa corresponding to D2R expressed in the caudate-putamen, to a lesser extent in the cortex, and not at all detected in the hypothalamic region. 3. The content of neurons double-labeled for D1/D2 receptors was observed at in differing intensities in the dorsal endopiroform nucleus, the intercalated nucleus of amygdala, the anterior part of the cortical nucleus amygdala, the nucleus of the lateral olfactory tract, the piriform cortex, the parabrachial nucleus, the supraoptic nucleus and the parabigeminal nucleus. All other regions of the brain revealed neurons expressing either D1 or D2 dopamine receptors but not both at that same time. 4. These results clearly demonstrated that specific neurons expressed both receptors D1 and D2, and that this colocalization was restricted to particular regions of the rat brain.
机译:1.这项工作的主要目的是研究大鼠脑中多巴胺D1和D2受体在细胞中的共定位程度。为了实现这一目标,设计了一种双重标记技术,该技术结合使用针对人D2受体短同种型的第三个细胞内环的多克隆抗体对D2受体进行免疫细胞化学标记,并结合原位杂交检测D1 mRNA表达。 2.通过免疫沉淀测定,Western印迹分析和免疫细胞化学对D2R转染的细胞和鼠脑组织证实了获得的抗血清的特异性。使用D2受体抗体的Western印迹显示在转染的细胞中中心有一条67 kDa的特异性宽带,在尾状皮层中表达的D2R对应的主要蛋白为88 kDa,在皮层中的表达程度较小,而在皮质中未检测到。下丘脑区域。 3.观察到D1 / D2受体被双重标记的神经元的含量在不同强度的背侧内膜状核,杏仁核的插入核,杏仁核的前部,外侧嗅道核,梨状皮层,臂臂旁核,视上核和双生殖旁核。大脑的所有其他区域显示神经元表达D1或D2多巴胺受体,但不是同时表达两者。 4.这些结果清楚地表明,特定的神经元同时表达了受体D1和D2,并且这种共定位仅限于大鼠大脑的特定区域。

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