Zell Lukas, Bretl Alina, Temml Veronika, Schuster Daniela
Department of Pharmaceutical and Medicinal Chemistry, Institute of Pharmacy, Paracelsus Medical University, 5020 Salzburg, Austria.
Biomedicines. 2023 May 17;11(5):1468. doi: 10.3390/biomedicines11051468.
Different dopamine receptor (DR) subtypes are involved in pathophysiological conditions such as Parkinson's Disease (PD), schizophrenia and depression. While many DR-targeting drugs have been approved by the U.S. Food and Drug Administration (FDA), only a very small number are truly selective for one of the DR subtypes. Additionally, most of them show promiscuous activity at related G-protein coupled receptors, thus suffering from diverse side-effect profiles. Multiple studies have shown that combined in silico/in vitro approaches are a valuable contribution to drug discovery processes. They can also be applied to divulge the mechanisms behind ligand selectivity. In this study, novel DR ligands were investigated in vitro to assess binding affinities at different DR subtypes. Thus, nine DR/DR-selective ligands (micro- to nanomolar binding affinities, DR-selective profile) were successfully identified. The most promising ligand exerted nanomolar DR activity (Ki = 2.3 nM) with 263.7-fold DR/DR selectivity. Subsequently, ligand selectivity was rationalized in silico based on ligand interaction with a secondary binding pocket, supporting the selectivity data determined in vitro. The developed workflow and identified ligands could aid in the further understanding of the structural motifs responsible for DR subtype selectivity, thus benefitting drug development in DR/DR-associated pathologies such as PD.
不同的多巴胺受体(DR)亚型参与帕金森病(PD)、精神分裂症和抑郁症等病理生理状况。虽然许多靶向DR的药物已获美国食品药品监督管理局(FDA)批准,但真正对其中一种DR亚型具有选择性的药物却非常少。此外,它们中的大多数在相关的G蛋白偶联受体上表现出混杂的活性,因此存在多种副作用。多项研究表明,计算机模拟与体外实验相结合的方法对药物发现过程有重要贡献。它们还可用于揭示配体选择性背后的机制。在本研究中,对新型DR配体进行了体外研究,以评估其在不同DR亚型上的结合亲和力。因此,成功鉴定出9种DR/DR选择性配体(微摩尔至纳摩尔结合亲和力,DR选择性特征)。最有前景的配体具有纳摩尔级的DR活性(Ki = 2.3 nM),DR/DR选择性为263.7倍。随后,基于配体与二级结合口袋的相互作用,通过计算机模拟对配体选择性进行了合理解释,支持了体外测定的选择性数据。所开发的工作流程和鉴定出的配体有助于进一步理解负责DR亚型选择性的结构基序,从而有益于DR/DR相关疾病(如PD)的药物开发。