Department of Pain Medicine, Juntendo University Graduate School of Medicine, 2-1-1, Hongo, Bunkyo-ku, Tokyo 113-8421, Japan.
Department of Pain Control Research, The Jikei University School of Medicine, 3-25-8, Nishi-Shimbashi, Minato-ku, Tokyo 105-8461, Japan.
Molecules. 2021 Oct 8;26(19):6079. doi: 10.3390/molecules26196079.
Activated opioid receptors transmit internal signals through two major pathways: the G-protein-mediated pathway, which exerts analgesia, and the β-arrestin-mediated pathway, which leads to unfavorable side effects. Hence, G-protein-biased opioid agonists are preferable as opioid analgesics. Rubiscolins, the spinach-derived naturally occurring opioid peptides, are selective δ opioid receptor agonists, and their p.o. administration exhibits antinociceptive effects. Although the potency and effect of rubiscolins as G-protein-biased molecules are partially confirmed, their in vitro profiles remain unclear. We, therefore, evaluated the properties of rubiscolins, in detail, through several analyses, including the CellKey assay, cADDis cAMP assay, and PathHunter β-arrestin recruitment assay, using cells stably expressing µ, δ, κ, or µ/δ heteromer opioid receptors. In the CellKey assay, rubiscolins showed selective agonistic effects for δ opioid receptor and little agonistic or antagonistic effects for µ and κ opioid receptors. Furthermore, rubiscolins were found to be G-protein-biased δ opioid receptor agonists based on the results obtained in cADDis cAMP and PathHunter β-arrestin recruitment assays. Finally, we found, for the first time, that they are also partially agonistic for the µ/δ dimers. In conclusion, rubiscolins could serve as attractive seeds, as δ opioid receptor-specific agonists, for the development of novel opioid analgesics with reduced side effects.
G 蛋白介导的途径,发挥镇痛作用;β-arrestin 介导的途径,导致不利的副作用。因此,G 蛋白偏向性阿片受体激动剂作为阿片类镇痛药是优选的。菠菜衍生的天然存在的阿片肽rubiscolins 是选择性 δ 阿片受体激动剂,其口服给药具有抗伤害感受作用。尽管 rubiscolins 作为 G 蛋白偏向性分子的效力和作用在一定程度上得到了证实,但它们的体外特征仍不清楚。因此,我们通过包括 CellKey 测定、cADDis cAMP 测定和 PathHunter β-arrestin 募集测定在内的几种分析,详细评估了 rubiscolins 的特性,这些分析使用稳定表达 µ、δ、κ 或 µ/δ 异源二聚体阿片受体的细胞进行。在 CellKey 测定中,rubiscolins 对 δ 阿片受体表现出选择性激动作用,对 µ 和 κ 阿片受体表现出微弱的激动或拮抗作用。此外,根据 cADDis cAMP 和 PathHunter β-arrestin 募集测定的结果,发现 rubiscolins 是 G 蛋白偏向性 δ 阿片受体激动剂。最后,我们首次发现它们对 µ/δ 二聚体也具有部分激动作用。总之,rubiscolins 可作为有吸引力的种子,作为特异性 δ 阿片受体激动剂,用于开发具有减少副作用的新型阿片类镇痛药。