变构调节
大麻素受体
功能选择性
信号转导
兴奋剂
神经科学
大麻素
受体
生物
内大麻素系统
G蛋白偶联受体
细胞生物学
药理学
化学
生物化学
作者
Luciana M. Leo,Mary E. Abood
出处
期刊:Molecules
[Multidisciplinary Digital Publishing Institute]
日期:2021-09-06
卷期号:26 (17): 5413-5413
被引量:112
标识
DOI:10.3390/molecules26175413
摘要
The CB1 cannabinoid receptor is a G-protein coupled receptor highly expressed throughout the central nervous system that is a promising target for the treatment of various disorders, including anxiety, pain, and neurodegeneration. Despite the wide therapeutic potential of CB1, the development of drug candidates is hindered by adverse effects, rapid tolerance development, and abuse potential. Ligands that produce biased signaling-the preferential activation of a signaling transducer in detriment of another-have been proposed as a strategy to dissociate therapeutic and adverse effects for a variety of G-protein coupled receptors. However, biased signaling at the CB1 receptor is poorly understood due to a lack of strongly biased agonists. Here, we review studies that have investigated the biased signaling profile of classical cannabinoid agonists and allosteric ligands, searching for a potential therapeutic advantage of CB1 biased signaling in different pathological states. Agonist and antagonist bound structures of CB1 and proposed mechanisms of action of biased allosteric modulators are used to discuss a putative molecular mechanism for CB1 receptor activation and biased signaling. Current studies suggest that allosteric binding sites on CB1 can be explored to yield biased ligands that favor or hinder conformational changes important for biased signaling.
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