首页> 外文期刊>The Journal of biological chemistry >Distinct Roles of β-Arrestin 1 and β-Arrestin 2 in ORG27569-induced Biased Signaling and Internalization of the Cannabinoid Receptor 1 (CB1)
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Distinct Roles of β-Arrestin 1 and β-Arrestin 2 in ORG27569-induced Biased Signaling and Internalization of the Cannabinoid Receptor 1 (CB1)

机译:β-Arcketin 1和β-inscrectin 2在ORG27569诱导的偏置信号传导和大麻素受体的内化(CB1)中的明显作用

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The cannabinoid receptor 1 (CB1) is a G protein-coupled receptor primarily expressed in brain tissue that has been implicated in several disease states. CB1 allosteric compounds, such as ORG27569, offer enormous potential as drugs over orthosteric ligands, but their mechanistic, structural, and downstream effects upon receptor binding have not been established. Previously, we showed that ORG27569 enhances agonist binding affinity to CB1 but inhibits G protein-dependent agonist signaling efficacy in HEK293 cells and rat brain expressing the CB1 receptor (Ahn, K. H., Mahmoud, M. M., and Kendall, D. A. (2012) J. Biol. Chem. 287, 12070–12082). Here, we identify the mediators of CB1 receptor internalization and ORG27569-induced G protein-independent signaling. Using siRNA technology, we elucidate an ORG27569-induced signaling mechanism for CB1 wherein β-arrestin 1 mediates short term signaling to ERK1/2 with a peak at 5 min and other upstream kinase components including MEK1/2 and c-Src. Consistent with these findings, we demonstrate co-localization of CB1-GFP with red fluorescent protein-β-arrestin 1 upon ORG27569 treatment using confocal microscopy. In contrast, we show the critical role of β-arrestin 2 in CB1 receptor internalization upon treatment with CP55940 (agonist) or treatment with ORG27569. These results demonstrate for the first time the involvement of β-arrestin in CB1-biased signaling by a CB1 allosteric modulator and also define the differential role of the two β-arrestin isoforms in CB1 signaling and internalization.
机译:大麻素受体1(CB1)是G蛋白偶联受体,主要表达脑组织,其含有几种疾病状态。 CB1变构型化合物,如ORG27569,提供巨大的潜力,作为在近脑状配体上的药物,但它们的机制,结构和下游效应尚未建立。以前,我们表明,ORG27569增强了CB1的激动剂结合亲和力,但抑制了HEK293细胞和表达CB1受体(AHN,KH,Mahmoud,MM和KENDALL,DA(2012)J.BIOL的大鼠脑中。化学。287,12070-12082)。在这里,我们鉴定CB1受体内化和ORG27569诱导的G蛋白无关信号传导的介质。使用SiRNA技术,阐明CB1的ORG27569诱导的信号调节机制,其中β-arrardin1在5分钟和其他上游激酶组分的峰值和其他上游激酶组分中介导短术信号传递到ERK1 / 2。包括MEK1 / 2和C-SRC。与这些发现一致,我们通过共聚焦显微镜进行了在ORG27569治疗时向红色荧光蛋白-β-ARRESTIN的CB1-GFP的共定位。相比之下,我们展示了β-Arcrectin 2在用CP55940(激动剂)或用ORG27569治疗处理时在CB1受体内化中的关键作用。这些结果首次证明了CB1变构调制剂在CB1偏置信号传导中涉及β-inscrectin的涉及,并且还定义了CB1信号传导和内化中的两种β-arciestIs同种型的差异作用。

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