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胃饥饿素通过涉及生长激素促分泌素受体/多巴胺受体1型异二聚体形成的串扰作用来增强多巴胺信号传导。

Ghrelin amplifies dopamine signaling by cross talk involving formation of growth hormone secretagogue receptor/dopamine receptor subtype 1 heterodimers.

作者信息

Jiang Hong, Betancourt Lorena, Smith Roy G

机构信息

Huffington Center of Aging, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

Mol Endocrinol. 2006 Aug;20(8):1772-85. doi: 10.1210/me.2005-0084. Epub 2006 Apr 6.

Abstract

Our objective is to determine the neuromodulatory role of ghrelin in the brain. To identify neurons that express the ghrelin receptor [GH secretagogue receptor (GHS-R)], we generated GHS-R-IRES-tauGFP mice by gene targeting. Neurons expressing the GHS-R exhibit green fluorescence and are clearly evident in the hypothalamus, hippocampus, cortex, and midbrain. Using immunohistochemistry in combination with green fluorescent protein fluorescence, we identified neurons that coexpress the dopamine receptor subtype 1 (D1R) and GHS-R. The potential physiological relevance of coexpression of these two receptors and the direct effect of ghrelin on dopamine signaling was investigated in vitro. Activation of GHS-R by ghrelin amplifies dopamine/D1R-induced cAMP accumulation. Intriguingly, amplification involves a switch in G protein coupling of the GHS-R from Galpha(11/q) to Galpha(i/o) by a mechanism consistent with agonist-dependent formation of GHS-R/D1R heterodimers. Most importantly, these results indicate that ghrelin has the potential to amplify dopamine signaling selectively in neurons that coexpress D1R and GHS-R.

摘要

我们的目标是确定胃饥饿素在大脑中的神经调节作用。为了识别表达胃饥饿素受体[生长激素释放肽受体(GHS-R)]的神经元,我们通过基因靶向技术构建了GHS-R-IRES-tauGFP小鼠。表达GHS-R的神经元呈现绿色荧光,在下丘脑、海马体、皮层和中脑清晰可见。我们利用免疫组织化学结合绿色荧光蛋白荧光,鉴定出共表达多巴胺受体1型(D1R)和GHS-R的神经元。在体外研究了这两种受体共表达的潜在生理相关性以及胃饥饿素对多巴胺信号传导的直接影响。胃饥饿素激活GHS-R可增强多巴胺/D1R诱导的环磷酸腺苷(cAMP)积累。有趣的是,这种增强涉及GHS-R的G蛋白偶联从Gα(11/q)转换为Gα(i/o),其机制与激动剂依赖性形成GHS-R/D1R异二聚体一致。最重要的是,这些结果表明胃饥饿素有可能在共表达D1R和GHS-R的神经元中选择性地增强多巴胺信号传导。

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