Department of Pharmacy and Research Institute of Life Pharmaceutical Sciences, Sunchon National University, Suncheon 57922, Republic of Korea.
Natural Medicine Research Center, Korea Research Institute of Bioscience and Biotechnology, Cheong-ju si, Chungcheongbuk-do, 28116, Republic of Korea.
Bioorg Chem. 2019 Mar;83:317-325. doi: 10.1016/j.bioorg.2018.10.051. Epub 2018 Oct 28.
Three flavanones and two flavones were isolated from the leaves of Prunus padus var. seoulensis by the activity-guided screening for new monoamine oxidase (MAO) inhibitors. Among the compounds isolated, rhamnocitrin (5) was found to potently and selectively inhibit human MAO-A (hMAO-A, IC = 0.051 µM) and effectively inhibit hMAO-B (IC = 2.97 µM). The IC value of 5 for hMAO-A was the lowest amongst all natural flavonoids reported to date, and the potency was 20.2 times higher than that of toloxatone (1.03 µM), a marketed drug. In addition, 5 reversibly and competitively inhibited hMAO-A and hMAO-B with K values of 0.030 and 0.91 µM, respectively. Genkwanin (4) was also observed to strongly inhibit hMAO-A and hMAO-B (IC = 0.14 and 0.35 µM, respectively), and competitively inhibit hMAO-A and hMAO-B (K = 0.097 and 0.12 µM, respectively). Molecular docking simulation reveals that the binding affinity of 5 with hMAO-A (-18.49 kcal/mol) is higher than that observed with hMAO-B (0.19 kcal/mol). Compound 5 interacts with hMAO-A at four possible residues (Asn181, Gln215, Thr336, and Tyr444), while hMAO-B forms a single hydrogen bond at Glu84. These findings suggest that compound 5 as well as 4 can be considered as novel potent and reversible hMAO-A and/or hMAO-B inhibitors or useful lead compounds for future development of hMAO inhibitors in neurological disorder therapies.
从 Prunus padus var. seoulensis 的叶子中,通过活性导向筛选新的单胺氧化酶 (MAO) 抑制剂,分离得到三种黄烷酮和两种黄酮。在所分离的化合物中,鼠李柠檬素 (5) 被发现能够强烈且选择性地抑制人 MAO-A(hMAO-A,IC = 0.051 µM),并有效抑制 hMAO-B(IC = 2.97 µM)。5 对 hMAO-A 的 IC 值是迄今为止报道的所有天然类黄酮中最低的,其效力比市售药物托洛沙酮(1.03 µM)高 20.2 倍。此外,5 可逆且竞争性地抑制 hMAO-A 和 hMAO-B,K 值分别为 0.030 和 0.91 µM。根皮苷(4)也被观察到强烈抑制 hMAO-A 和 hMAO-B(IC = 0.14 和 0.35 µM,分别),并竞争性地抑制 hMAO-A 和 hMAO-B(K = 0.097 和 0.12 µM,分别)。分子对接模拟表明,5 与 hMAO-A 的结合亲和力(-18.49 kcal/mol)高于与 hMAO-B 的结合亲和力(0.19 kcal/mol)。化合物 5 与 hMAO-A 在四个可能的残基(Asn181、Gln215、Thr336 和 Tyr444)相互作用,而 hMAO-B 在 Glu84 处形成单个氢键。这些发现表明,化合物 5 以及 4 可以被认为是新型有效的、可逆的 hMAO-A 和/或 hMAO-B 抑制剂,或在神经紊乱治疗中用于未来开发 hMAO 抑制剂的有用先导化合物。