Department of Pharmacy and Research Institute of Life Pharmaceutical Sciences, Sunchon National University, Suncheon 57922, Republic of Korea.
Department of Predictive Toxicology, Korea Institute of Toxicology, Daejeon 34114, Republic of Korea.
Bioorg Med Chem Lett. 2019 Mar 15;29(6):839-843. doi: 10.1016/j.bmcl.2019.01.016. Epub 2019 Jan 18.
Osthenol (6), a prenylated coumarin isolated from the dried roots of Angelica pubescens, potently and selectively inhibited recombinant human monoamine oxidase-A (hMAO-A) with an IC value of 0.74 µM and showed a high selectivity index (SI > 81.1) for hMAO-A versus hMAO-B. Compound 6 was a reversible competitive hMAO-A inhibitor (K = 0.26 µM) with a potency greater than toloxatone (IC = 0.93 µM), a marketed drug. Isopsoralen (3) and bakuchicin (1), furanocoumarin derivatives isolated from Psoralea corylifolia L., showed slightly higher IC values (0.88 and 1.78 µM, respectively) for hMAO-A than 6, but had low SI values (3.1 for both). Other coumarins tested did not effectively inhibit hMAO-A or hMAO-B. A structural comparison suggested that the 8-(3,3-dimethylallyl) group of 6 increased its inhibitory activity against hMAO-A compared with the 6-methoxy group of scopoletin (4). Molecular docking simulations revealed that the binding affinity of 6 for hMAO-A (-8.5 kcal/mol) was greater than that for hMAO-B (-5.6 kcal/mol) and that of 4 for hMAO-A (-7.3 kcal/mol). Docking simulations also implied that 6 interacted with hMAO-A at Phe208 and with hMAO-B at Ile199 by carbon hydrogen bondings. Our findings suggest that osthenol, derived from natural products, is a selective and potent reversible inhibitor of MAO-A, and can be regarded a potential lead compound for the design of novel reversible MAO-A inhibitors.
奥斯特诺醇(6)是一种从当归干燥根部分离得到的烯丙基香豆素,对重组人单胺氧化酶-A(hMAO-A)具有强大且选择性的抑制作用,IC 值为 0.74 µM,对 hMAO-A 与 hMAO-B 的选择性指数(SI>81.1)较高。化合物 6 是一种可逆竞争性 hMAO-A 抑制剂(K=0.26 µM),其效力大于托洛沙酮(IC=0.93 µM),托洛沙酮是一种上市药物。香柑内酯(3)和补骨脂素(1)是从补骨脂中分离得到的呋喃香豆素衍生物,对 hMAO-A 的 IC 值略高于 6(分别为 0.88 和 1.78 µM),但 SI 值较低(两者均为 3.1)。其他测试的香豆素对 hMAO-A 或 hMAO-B 没有有效抑制作用。结构比较表明,与 7-甲氧基花椒毒素(4)相比,6 中 8-(3,3-二甲基烯丙基)取代基增加了其对 hMAO-A 的抑制活性。分子对接模拟表明,6 与 hMAO-A 的结合亲和力(-8.5 kcal/mol)大于与 hMAO-B 的结合亲和力(-5.6 kcal/mol),4 与 hMAO-A 的结合亲和力(-7.3 kcal/mol)。对接模拟还表明,6 通过碳氢键与 hMAO-A 相互作用于 Phe208 与 hMAO-B 相互作用于 Ile199。我们的研究结果表明,奥斯特诺醇来源于天然产物,是一种选择性和有效的 MAO-A 可逆抑制剂,可以被视为设计新型可逆 MAO-A 抑制剂的潜在先导化合物。