Gamage Thomas F, Anderson Johnathon C, Abood Mary E
Center for Substance Abuse Research, Lewis Katz School of Medicine, Temple University, 3500 North Broad Street, Philadelphia, PA. 19140.
Department of Anatomy and Cell Biology, Lewis Katz School of Medicine, Temple University, 3500 North Broad Street, Philadelphia, PA. 19140.
Cannabis Cannabinoid Res. 2016 Dec;1(1):272-280. doi: 10.1089/can.2016.0028.
Allosteric modulation of cannabinoid type-1 receptors (CB) is a novel means through which signaling bias may be exerted. Org27569 remains the most-characterized CB allosteric modulator yet there are conflicting reports regarding its effects on extracellular signal-regulated kinase (ERK) signaling. We conducted a systematic evaluation of Org27569 signaling through ERK. We have found that Org27569 is an antagonist of human CB (hCB) mediated ERK signaling in HEK293 cells where it fully blocks CP55,940- but does not completely inhibit THC- and 2-AG-stimulated ERK1/2 activation. In hCB HEK293 cells, CP55,940 (1 μM) treatment produced a significant increase in puncta at 20, 40, 60, and 120 min, consistent with receptor internalization. Org27569 (10 μM) co-treatment prevented internalization at each time point and alone had no effect. These data demonstrate that Org27569 can block the CP55,940- induced internalization of CB receptors. Org27569 reduced basal ERK phosphorylation in hCB HEK293 cells but not in untransfected cells, demonstrating that Org27569 acts via the CB receptor to produce this effect. Furthermore, inverse agonism was through inhibition of G as overnight treatment with pertussis toxin abated this response. Finally, to delineate Org27569's effects on ERK1/2 in subcellular compartments, subcellular fractionation was performed; Org27569 produced a significant decrease in ERK phosphorylation in the nuclear-enriched and cytosolic fractions. Altogether, these data are consistent with previous studies demonstrating that CB-mediated ERK1/2 activation is G-dependent and that Org27569 is an inverse agonist of CB receptors. To our knowledge this is the first reported demonstration of inverse agonism of ERK signaling by Org27569.
1型大麻素受体(CB)的变构调节是一种可发挥信号偏向性的新途径。Org27569仍是特征最明确的CB变构调节剂,但关于其对细胞外信号调节激酶(ERK)信号传导的影响,存在相互矛盾的报道。我们对Org27569通过ERK的信号传导进行了系统评估。我们发现,Org27569在HEK293细胞中是人类CB(hCB)介导的ERK信号传导的拮抗剂,它能完全阻断CP55,940诱导的ERK信号,但不能完全抑制四氢大麻酚(THC)和2-花生四烯酸甘油(2-AG)刺激的ERK1/2激活。在hCB HEK293细胞中,CP55,940(1 μM)处理在20、40、60和120分钟时使点状结构显著增加,这与受体内化一致。Org27569(10 μM)共同处理在每个时间点都能防止内化,且其单独处理无此作用。这些数据表明,Org27569可阻断CP55,940诱导的CB受体内化。Org27569可降低hCB HEK293细胞中的基础ERK磷酸化水平,但在未转染细胞中则无此作用,这表明Org27569通过CB受体发挥此效应。此外,反向激动作用是通过抑制Gα实现的,因为百日咳毒素过夜处理可减弱此反应。最后,为了阐明Org27569对亚细胞区室中ERK1/2的影响,进行了亚细胞分级分离;Org27569使富含细胞核和细胞质的组分中的ERK磷酸化水平显著降低。总之,这些数据与先前的研究一致,表明CB介导的ERK1/2激活依赖于Gα,且Org27569是CB受体的反向激动剂。据我们所知,这是首次报道Org27569对ERK信号传导具有反向激动作用。