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多巴胺D2L受体对脱敏的抗性伴随着Sf9细胞表面受体的上调。

Resistance of the dopamine D2L receptor to desensitization accompanies the up-regulation of receptors on to the surface of Sf9 cells.

作者信息

Ng G Y, Varghese G, Chung H T, Trogadis J, Seeman P, O'Dowd B F, George S R

机构信息

Department of Psychiatry, University of Toronto, Ontario, Canada.

出版信息

Endocrinology. 1997 Oct;138(10):4199-206. doi: 10.1210/endo.138.10.5433.

Abstract

Dopamine D2 receptor agonists are commonly used in the control of PRL-secreting adenomas, and the sensitivity of dopamine agonists during long term therapy is exquisite. However, the molecular mechanisms responsible for the maintenance of this cellular sensitivity to dopamine agonists remain poorly understood. In the present study, we examined the agonist-induced regulation of the human D2L receptor expressed to a specific activity of approximately 1 pmol receptor/mg protein in Sf9 insect cells. Treatment of D2L receptor-expressing cells with dopamine for up to 3 h resulted in no detectable change in the ligand-binding properties of the receptor and a approximately 120-fold reduction in the potency, but not the efficacy, of D2L receptors to mediate dopamine inhibition of forskolin-stimulated adenylyl cyclase activity. This resistance of the D2L receptor to agonist-induced desensitization was accompanied by a approximately 28% translocation of intracellular D2L receptors to the cell surface, as quantified by cellular fractionation and radioligand binding and visualized by whole cell immunocytochemical staining and confocal microscopy. Immunoblot analysis of the P2 membrane fraction revealed that surface D2L receptors comprised monomers and dimers. Treatment of D2L receptor-expressing cells with the protein synthesis inhibitor cycloheximide significantly reduced the basal expression level of receptors, but did not block the agonist-induced up-regulation of receptors. Longer periods of dopamine exposure for 24 h brought about a small increase in surface receptor density. However, when these studies were conducted in the presence of cycloheximide, receptor density was marginally reduced, suggesting that receptor synthesis accounts for the maintenance of cellular receptor density under these conditions. We conclude that the resistance of the D2L receptor-coupled adenylyl cyclase system to agonist-induced desensitization is attributed to the up-regulation of surface receptors after the translocation of existing intracellular receptors and de novo receptor synthesis.

摘要

多巴胺D2受体激动剂常用于控制分泌催乳素的腺瘤,且多巴胺激动剂在长期治疗中的敏感性极高。然而,负责维持细胞对多巴胺激动剂这种敏感性的分子机制仍知之甚少。在本研究中,我们检测了在Sf9昆虫细胞中表达至比活性约为1 pmol受体/毫克蛋白的人D2L受体的激动剂诱导调节情况。用多巴胺处理表达D2L受体的细胞长达3小时,受体的配体结合特性未检测到变化,D2L受体介导多巴胺抑制福司可林刺激的腺苷酸环化酶活性的效能降低了约120倍,但效力未变。D2L受体对激动剂诱导的脱敏的这种抗性伴随着细胞内D2L受体向细胞表面的约28%易位,这通过细胞分级分离和放射性配体结合进行定量,并通过全细胞免疫细胞化学染色和共聚焦显微镜观察到。对P2膜部分的免疫印迹分析表明,表面D2L受体由单体和二聚体组成。用蛋白质合成抑制剂环己酰亚胺处理表达D2L受体的细胞显著降低了受体的基础表达水平,但未阻断激动剂诱导的受体上调。多巴胺暴露24小时的较长时间导致表面受体密度略有增加。然而,当在环己酰亚胺存在下进行这些研究时,受体密度略有降低,这表明受体合成在这些条件下维持细胞受体密度。我们得出结论,D2L受体偶联的腺苷酸环化酶系统对激动剂诱导的脱敏的抗性归因于现有细胞内受体易位和从头合成受体后表面受体的上调。

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