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Dopamine Receptors in Human Lymphocytes: Radioligand Binding and Quantitative RT-PCR Assays

机译:人淋巴细胞中的多巴胺受体:放射性配体结合和定量RT-PCR分析

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摘要

Analysis of dopamine receptors (DR) in lymphocytes of the human peripheral blood mononuclear cell (PBMC) fraction is an attractive tool for evaluation of functional properties of dopaminergic function underlying variation in complex psychological/psychopathological traits. Receptor binding assays (RBA) with selective radioligands, which are widely used in CNS studies, have not produced consistent results when applied to isolated PBMC. We tested the assay conditions that could be essential for detection of DR in human PBMC and their membrane preparations. Using [3H], a dopamine D1-like receptor antagonist, we demonstrated the presence of two binding sites in PBMC-derived membrane fraction. One of them is characterized by the Kd value consistent with that reported for D5 dopamine receptors in human lymphocytes, whereas the other Kd value possibly corresponds to serotonin receptor(s). Although D5 receptor binding sites in PBMC membranes could be characterized by binding assays, the low protein expression and the large volume of blood needed for membrane preparation render the binding method impracticable for individual phenotyping. In contrast, real-time RT-PCR may be used for this purpose, contingent on the relationship between DR expression in the brain and in lymphocytes. The expression of the DRD2-DRD5 genes, as detected by this method, varied widely among samples, whereas the DRD1 expression was not detected. The expression levels were comparable with those in the brain for DRD3 and DRD4, and were significantly lower for DRD2 and DRD5.
机译:分析人外周血单核细胞(PBMC)级分的淋巴细胞中的多巴胺受体(DR)是一种有吸引力的工具,可用来评估基于复杂心理/心理病理特征变异的多巴胺能功能的功能特性。在中枢神经系统研究中广泛使用的具有选择性放射性配体的受体结合测定(RBA)在应用于分离的PBMC时未产生一致的结果。我们测试了可能对检测人PBMC及其膜制剂中的DR必不可少的测定条件。使用多巴胺D1样受体拮抗剂[ 3 H],我们证明了PBMC衍生的膜组分中存在两个结合位点。其中一个的特征在于与人淋巴细胞中D5多巴胺受体报道的Kd值一致,而另一个Kd值可能与血清素受体相对应。尽管PBMC膜中的D5受体结合位点可以通过结合测定来表征,但膜制备所需的低蛋白表达和大量血液使结合方法无法用于个体表型分析。相反,实时RT-PCR可用于此目的,这取决于脑和淋巴细胞中DR表达之间的关系。通过这种方法检测到的DRD2-DRD5基因的表达在样品中差异很大,而未检测到DRD1的表达。 DRD3和DRD4的表达水平与脑中的表达水平相当,而DRD2和DRD5的表达水平则明显较低。

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