Medvedev A E, Ivanov A S, Kamyshanskaya N S, Kirkel A Z, Moskvitina T A, Gorkin V Z, Li N Y
Institute of Biomedical Chemistry, Russian Academy of Medical Sciences.
Biochem Mol Biol Int. 1995 May;36(1):113-22.
Indole and isatin (2,3-dioxindole) analogues were studied as inhibitors of MAO-A and B. They exhibited reversible and competitive MAO inhibition. Three dimensional structures of the compounds tested were constructed and minimized using PC-based molecular graphic software. The QSAR analysis revealed the requirement of co-planar structure of substituents at C2 and C3 of indole ring for selective MAO-A inhibition, whilst type of bond was less essential. The presence of hydroxy group at C5 of isatin increased selectivity of MAO-A inhibition, however simultaneous insertion of substituents into both positions of indole ring (5-hydroxy-2-phenylindole) led to a decrease of MAO-A inhibition. The planar molecules demonstrating potent MAO-A inhibition have the average sizes 7 A in length and 6 A in width. The MAO B inhibition also depended on the sizes of planar molecules however distribution of electron density in the molecules was another precondition for the selective inhibition of the enzyme.
吲哚和异吲哚酮(2,3-二氧代吲哚)类似物作为单胺氧化酶A和B的抑制剂进行了研究。它们表现出可逆性和竞争性单胺氧化酶抑制作用。使用基于个人电脑的分子图形软件构建并最小化了所测试化合物的三维结构。定量构效关系分析表明,吲哚环C2和C3处取代基的共平面结构是选择性抑制单胺氧化酶A所必需的,而键的类型则不太重要。异吲哚酮C5处羟基的存在增加了单胺氧化酶A抑制的选择性,然而,在吲哚环的两个位置同时插入取代基(5-羟基-2-苯基吲哚)会导致单胺氧化酶A抑制作用的降低。表现出强效单胺氧化酶A抑制作用的平面分子平均长度为7埃,宽度为6埃。单胺氧化酶B的抑制作用也取决于平面分子的大小,然而分子中电子密度的分布是选择性抑制该酶的另一个前提条件。