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钙对多巴胺D2S和D2L自身受体信号传导的独特调节作用

Distinct regulation of dopamine D2S and D2L autoreceptor signaling by calcium.

作者信息

Gantz Stephanie C, Robinson Brooks G, Buck David C, Bunzow James R, Neve Rachael L, Williams John T, Neve Kim A

机构信息

Vollum Institute, Oregon Health & Science University, Portland, United States.

Research Service, VA Portland Health Care System, United States Department of Veterans Affairs, Portland, United States.

出版信息

Elife. 2015 Aug 26;4:e09358. doi: 10.7554/eLife.09358.

Abstract

D2 autoreceptors regulate dopamine release throughout the brain. Two isoforms of the D2 receptor, D2S and D2L, are expressed in midbrain dopamine neurons. Differential roles of these isoforms as autoreceptors are poorly understood. By virally expressing the isoforms in dopamine neurons of D2 receptor knockout mice, this study assessed the calcium-dependence and drug-induced plasticity of D2S and D2L receptor-dependent G protein-coupled inwardly rectifying potassium (GIRK) currents. The results reveal that D2S, but not D2L receptors, exhibited calcium-dependent desensitization similar to that exhibited by endogenous autoreceptors. Two pathways of calcium signaling that regulated D2 autoreceptor-dependent GIRK signaling were identified, which distinctly affected desensitization and the magnitude of D2S and D2L receptor-dependent GIRK currents. Previous in vivo cocaine exposure removed calcium-dependent D2 autoreceptor desensitization in wild type, but not D2S-only mice. Thus, expression of D2S as the exclusive autoreceptor was insufficient for cocaine-induced plasticity, implying a functional role for the co-expression of D2S and D2L autoreceptors.

摘要

D2自身受体调节全脑的多巴胺释放。D2受体有两种亚型,即D2S和D2L,在中脑多巴胺神经元中表达。人们对这些亚型作为自身受体的不同作用了解甚少。通过在D2受体基因敲除小鼠的多巴胺神经元中病毒表达这些亚型,本研究评估了D2S和D2L受体依赖性G蛋白偶联内向整流钾通道(GIRK)电流的钙依赖性和药物诱导的可塑性。结果显示,D2S受体而非D2L受体表现出与内源性自身受体相似的钙依赖性脱敏。确定了两条调节D2自身受体依赖性GIRK信号传导的钙信号通路,它们对D2S和D2L受体依赖性GIRK电流的脱敏和幅度有明显不同的影响。先前在体内暴露于可卡因消除了野生型小鼠中钙依赖性D2自身受体脱敏,但在仅表达D2S的小鼠中则没有。因此,仅将D2S表达为唯一的自身受体不足以产生可卡因诱导的可塑性,这意味着D2S和D2L自身受体共表达具有功能性作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fddf/4575989/0b5506319ec9/elife09358f001.jpg

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