National Center for Toxicological Research, US Food and Drug Administration, Jefferson, AR 72079, USA.
Center for Drug Evaluation and Research, US Food and Drug Administration, Silver Spring, MD 20903, USA.
Int J Mol Sci. 2023 Apr 11;24(8):7042. doi: 10.3390/ijms24087042.
The United States is experiencing the most profound and devastating opioid crisis in history, with the number of deaths involving opioids, including prescription and illegal opioids, continuing to climb over the past two decades. This severe public health issue is difficult to combat as opioids remain a crucial treatment for pain, and at the same time, they are also highly addictive. Opioids act on the opioid receptor, which in turn activates its downstream signaling pathway that eventually leads to an analgesic effect. Among the four types of opioid receptors, the µ subtype is primarily responsible for the analgesic cascade. This review describes available 3D structures of the µ opioid receptor in the protein data bank and provides structural insights for the binding of agonists and antagonists to the receptor. Comparative analysis on the atomic details of the binding site in these structures was conducted and distinct binding interactions for agonists, partial agonists, and antagonists were observed. The findings in this article deepen our understanding of the ligand binding activity and shed some light on the development of novel opioid analgesics which may improve the risk benefit balance of existing opioids.
美国正经历历史上最深刻、最具破坏性的阿片类药物危机,过去二十年来,涉及阿片类药物(包括处方和非法阿片类药物)的死亡人数持续攀升。由于阿片类药物仍然是治疗疼痛的重要药物,同时也极易上瘾,因此,解决这一严重的公共卫生问题颇具难度。阿片类药物作用于阿片受体,进而激活其下游信号通路,最终产生镇痛效果。在四种阿片受体中,µ 亚型主要负责镇痛级联反应。本文综述了阿片受体在蛋白数据库中的三维结构,并提供了激动剂和拮抗剂与受体结合的结构见解。对这些结构中结合位点的原子细节进行了比较分析,观察到了激动剂、部分激动剂和拮抗剂的不同结合相互作用。本文的研究结果加深了我们对配体结合活性的理解,并为新型阿片类镇痛药的开发提供了一些启示,这可能会改善现有阿片类药物的风险效益平衡。