Takeuchi Yusuke, Fukunaga Kohji
Department of Pharmacology, Kumamoto University School of Medicine, Kumamoto, Japan.
J Neurochem. 2003 May;85(3):729-39. doi: 10.1046/j.1471-4159.2003.01711.x.
To investigate transcriptional regulation by dopamine receptors, we established NG108-15 cells stably expressing D1R, D2LR and D2SR (NGD1R, NGD2LR and NGD2SR) and evaluated the effects of these receptors on NF-kappaB, SRE and CRE activity using luciferase reporter constructs. Stimulation with quinpirole, a selective D2R agonist, increased NF-kappaB and SRE activity but decreased CRE activity in both NGD2R cell lines. By contrast, stimulation with SKF 38393, a selective D1R agonist, decreased NF-kappaB and SRE activity but increased CRE activity in NGD1R cells. Stimulation with forskolin and overexpression of constitutively active PKA suppressed NF-kappaB activity, likely due to D1R stimulation. D2R stimulation activated ERK, and treatment with U1026, a selective MEK inhibitor, eliminated D2R-induced NF-kappaB activation. D2R stimulation also activated the neural cell adhesion molecule (NCAM) promoter, which includes a potential NF-kappaB site. Furthermore, by transfecting constitutively active CaM KII and MEKK, and dominant negative p38 MAPK, we show that the NCAM promoter is positively regulated by CaM KII but negatively regulated by p38 MAPK. These results indicate that D2R-induced NF-kappaB activation through ERK may be involved in activation of the NCAM promoter, and additionally that other protein kinases such as CaM KII and p38 MAPK also regulate NCAM expression.
为了研究多巴胺受体的转录调控,我们建立了稳定表达D1R、D2LR和D2SR的NG108 - 15细胞系(NGD1R、NGD2LR和NGD2SR),并使用荧光素酶报告构建体评估这些受体对NF-κB、SRE和CRE活性的影响。用选择性D2R激动剂喹吡罗刺激,可增加两种NGD2R细胞系中的NF-κB和SRE活性,但降低CRE活性。相比之下,用选择性D1R激动剂SKF 38393刺激,可降低NGD1R细胞中的NF-κB和SRE活性,但增加CRE活性。用福司可林刺激和组成型活性PKA的过表达抑制了NF-κB活性,这可能是由于D1R刺激所致。D2R刺激激活了ERK,用选择性MEK抑制剂U1026处理可消除D2R诱导的NF-κB激活。D2R刺激还激活了神经细胞黏附分子(NCAM)启动子,该启动子包含一个潜在的NF-κB位点。此外,通过转染组成型活性CaM KII和MEKK以及显性负性p38 MAPK,我们发现NCAM启动子受CaM KII正调控,但受p38 MAPK负调控。这些结果表明,D2R通过ERK诱导的NF-κB激活可能参与了NCAM启动子的激活,此外,其他蛋白激酶如CaM KII和p38 MAPK也调节NCAM的表达。