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乙醇对D(1)多巴胺受体信号传导的调节是以一种同工酶特异性方式由蛋白激酶C介导的。

Ethanol regulation of D(1) dopamine receptor signaling is mediated by protein kinase C in an isozyme-specific manner.

作者信息

Rex Elizabeth B, Rankin Michele L, Ariano Marjorie A, Sibley David R

机构信息

Molecular Neuropharmacology Section, National Institute on Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD, USA.

出版信息

Neuropsychopharmacology. 2008 Nov;33(12):2900-11. doi: 10.1038/npp.2008.16. Epub 2008 Feb 20.

Abstract

Ethanol consumption potentiates dopaminergic signaling that is partially mediated by the D(1) dopamine receptor; however, the mechanism(s) underlying ethanol-dependent modulation of D(1) signaling is unclear. We now show that ethanol treatment of D(1) receptor-expressing cells decreases D(1) receptor phosphorylation and concurrently potentiates dopamine-stimulated cAMP accumulation. Protein kinase C (PKC) inhibitors mimic the effects of ethanol on D(1) receptor phosphorylation and dopamine-stimulated cAMP levels in a manner that is non-additive with ethanol treatment. Ethanol was also found to modulate specific PKC activities as demonstrated using in vitro kinase assays where ethanol treatment attenuated the activities of lipid-stimulated PKCgamma and PKCdelta in membrane fractions, but did not affect the activities of PKCalpha, PKCbeta(1), or PKCvarepsilon. Importantly, ethanol treatment potentiated D(1) receptor-mediated DARPP-32 phosphorylation in rat striatal slices, supporting the notion that ethanol enhances D(1) receptor signaling in vivo. These findings suggest that ethanol inhibits the activities of specific PKC isozymes, resulting in decreased D(1) receptor phosphorylation and enhanced dopaminergic signaling.

摘要

乙醇的摄入会增强多巴胺能信号传导,这种信号传导部分由D(1)多巴胺受体介导;然而,乙醇依赖性调节D(1)信号传导的潜在机制尚不清楚。我们现在表明,用乙醇处理表达D(1)受体的细胞会降低D(1)受体的磷酸化水平,同时增强多巴胺刺激的cAMP积累。蛋白激酶C(PKC)抑制剂模拟了乙醇对D(1)受体磷酸化和多巴胺刺激的cAMP水平的影响,其方式与乙醇处理不存在累加效应。通过体外激酶分析发现,乙醇还能调节特定的PKC活性,其中乙醇处理减弱了膜组分中脂质刺激的PKCγ和PKCδ的活性,但不影响PKCα、PKCβ(1)或PKCε的活性。重要的是,乙醇处理增强了大鼠纹状体切片中D(1)受体介导的DARPP - 32磷酸化,支持了乙醇在体内增强D(1)受体信号传导的观点。这些发现表明,乙醇抑制特定PKC同工酶的活性,导致D(1)受体磷酸化水平降低,多巴胺能信号传导增强。

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