Yang Xiaohua, Zhang Min, Lu Zhihong, Zhi Linping, Xue Huan, Liu Tao, Liu Mengmeng, Cui Lijuan, Liu Zhihong, He Peifeng, Liu Yunfeng, Zhang Yi
Department of Pharmacology, Shanxi Medical University, Taiyuan, China.
Department of Pharmacy, Shanxi Medical University, Taiyuan, China.
Front Pharmacol. 2021 Apr 29;12:664802. doi: 10.3389/fphar.2021.664802. eCollection 2021.
Glucagon-like peptide-1 receptor (GLP-1R) agonist-based therapeutics for type 2 diabetes mellitus have attracted worldwide attention. However, there are challenges in the development of small molecule GLP-1R agonists owing to the complexity of ligand recognition and signal induction mechanisms. Here, we attained S6 using virtual screening and fluorescent imaging plate reader (FLIPR)-based calcium assays. The purpose of this study was to identify and characterize S6, a novel small molecule GLP-1R agonist. Data from cellular thermal shift assay (CETSA) and Bio-Layer Interferometry (BLI) indicated that S6 could bind potently with GLP-1R. Radioimmunoassay data showed that S6 potentiated insulin secretion in a glucose-dependent manner and the insulinotropic effect was mediated by GLP-1R. Calcium imaging techniques suggested that S6 elevated the intracellular calcium concentration [(Ca)] by activating GLP-1R. In patch-clamp experiments, we demonstrated that S6 inhibited voltage-dependent K (Kv) channels in a GLP-1R-dependent fashion. Besides, S6 significantly prolonged action potential duration but had no effect on voltage-dependent Ca channels. In summary, these findings indicate that S6 stimulates glucose-dependent insulin secretion mainly by acting on GLP-1R, inhibiting Kv channels, increasing (Ca). This study will provide direction for the screening and development of novel small-molecule agents targeting GLP-1R in the future.
基于胰高血糖素样肽-1受体(GLP-1R)激动剂的2型糖尿病治疗药物已引起全球关注。然而,由于配体识别和信号诱导机制的复杂性,小分子GLP-1R激动剂的开发面临挑战。在此,我们通过虚拟筛选和基于荧光成像读板器(FLIPR)的钙测定法获得了S6。本研究的目的是鉴定和表征一种新型小分子GLP-1R激动剂S6。细胞热位移分析(CETSA)和生物层干涉术(BLI)的数据表明,S6能与GLP-1R强效结合。放射免疫分析数据显示,S6以葡萄糖依赖的方式增强胰岛素分泌,且促胰岛素作用由GLP-1R介导。钙成像技术表明,S6通过激活GLP-1R提高细胞内钙浓度[(Ca)]。在膜片钳实验中,我们证明S6以GLP-1R依赖的方式抑制电压依赖性钾(Kv)通道。此外,S6显著延长动作电位持续时间,但对电压依赖性钙通道无影响。总之,这些发现表明,S6主要通过作用于GLP-1R、抑制Kv通道、增加(Ca)来刺激葡萄糖依赖的胰岛素分泌。本研究将为未来筛选和开发靶向GLP-1R的新型小分子药物提供方向。