Key Laboratory of Resource Biology and Biotechnology in Western China, Ministry of Education, College of Life Sciences, Northwest University, Xi'an 710069, China.
Int J Mol Sci. 2023 Apr 12;24(8):7171. doi: 10.3390/ijms24087171.
Despite its increasing application in pursing potential ligands, the capacity of receptor affinity chromatography is greatly challenged as most current research studies lack a comprehensive characterization of the ligand-receptor interaction, particularly when simultaneously determining their binding thermodynamics and kinetics. This work developed an immobilized M3 muscarinic receptor (M3R) affinity column by fixing M3R on amino polystyrene microspheres via the interaction of a 6-chlorohexanoic acid linker with haloalkane dehalogenase. The efficiency of the immobilized M3R was tested by characterizing the binding thermodynamics and kinetics of three known drugs to immobilized M3R using a frontal analysis and the peak profiling method, as well as by analyzing the bioactive compounds in (DF) extract. The data showed that the immobilized M3R demonstrated good specificity, stability, and competence for analyzing drug-protein interactions. The association constants of (-)-scopolamine hydrochloride, atropine sulfate, and pilocarpine to M3R were determined to be (2.39 ± 0.03) × 10, (3.71 ± 0.03) × 10, and (2.73 ± 0.04) × 10 M, respectively, with dissociation rate constants of 27.47 ± 0.65, 14.28 ± 0.17, and 10.70 ± 0.35 min, respectively. Hyoscyamine and scopolamine were verified as the bioactive compounds that bind to M3R in the DF extract. Our results suggest that the immobilized M3R method was capable of determining drug-protein binding parameters and probing specific ligands in a natural plant, thus enhancing the effectiveness of receptor affinity chromatography in diverse stages of drug discovery.
尽管受体亲和色谱在寻找潜在配体方面的应用越来越广泛,但由于大多数当前的研究缺乏对配体-受体相互作用的全面表征,特别是在同时确定其结合热力学和动力学时,其容量受到了极大的挑战。本工作通过将 6-氯己酸连接子与卤代烷脱卤酶相互作用将 M3 毒蕈碱受体 (M3R) 固定在氨基聚苯乙烯微球上,开发了一种固定化 M3R 亲和柱。通过使用前沿分析和峰形分析方法,以及分析 DF 提取物中的生物活性化合物,测试了固定化 M3R 的效率。数据表明,固定化 M3R 表现出良好的特异性、稳定性和分析药物-蛋白质相互作用的能力。(-)-莨菪碱盐酸盐、硫酸阿托品和毛果芸香碱与 M3R 的结合常数分别确定为 (2.39 ± 0.03) × 10、(3.71 ± 0.03) × 10 和 (2.73 ± 0.04) × 10 M,解离速率常数分别为 27.47 ± 0.65、14.28 ± 0.17 和 10.70 ± 0.35 min。验证了天仙子胺和东莨菪碱是 DF 提取物中与 M3R 结合的生物活性化合物。我们的结果表明,固定化 M3R 方法能够确定药物-蛋白质结合参数并探测天然植物中的特异性配体,从而提高受体亲和色谱在药物发现的不同阶段的有效性。