Chimenti Franco, Fioravanti Rossella, Bolasco Adriana, Chimenti Paola, Secci Daniela, Rossi Francesca, Yáñez Matilde, Orallo Francisco, Ortuso Francesco, Alcaro Stefano
Dipartimento di Chimica e Tecnologie del Farmaco, Università degli Studi di Roma La Sapienza, P. le A. Moro 5, 00185 Roma, Italy.
J Med Chem. 2009 May 14;52(9):2818-24. doi: 10.1021/jm801590u.
A large series of substituted chalcones have been synthesized and tested in vitro for their ability to inhibit human monoamine oxidases A and B (hMAO-A and hMAO-B). While all the compounds showed hMAO-B selective activity in the micro- and nanomolar ranges, the best results were obtained in the presence of chlorine and hydroxyl or methoxyl substituents. To better understand the enzyme-inhibitor interaction and to explain the selectivity of the most active compounds toward hMAO-B, molecular modeling studies were carried out on new, high resolution, hMAO-B crystallographic structures. For the only compound that also showed activity against hMAO-A as well as low selectivity, the molecular modeling study was also performed on the hMAO-A crystallographic structure. The docking technique provided new insight on the inhibition mechanism and the rational drug design of more potent/selective hMAO inhibitors based on the chalcone scaffold.
已合成了一系列取代查尔酮,并在体外测试了它们抑制人单胺氧化酶A和B(hMAO - A和hMAO - B)的能力。虽然所有化合物在微摩尔和纳摩尔范围内均显示出hMAO - B选择性活性,但在存在氯以及羟基或甲氧基取代基的情况下获得了最佳结果。为了更好地理解酶 - 抑制剂相互作用,并解释最具活性的化合物对hMAO - B的选择性,对新的高分辨率hMAO - B晶体结构进行了分子建模研究。对于唯一一种对hMAO - A也有活性且选择性较低的化合物,也对hMAO - A晶体结构进行了分子建模研究。对接技术为基于查尔酮支架的更有效/选择性hMAO抑制剂的抑制机制和合理药物设计提供了新的见解。