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Molecular Orbital Studies on the Structure-Activity Relationships of Catechol O-Methyltransferase Inhibitors

机译:邻苯二酚O-甲基转移酶抑制剂的构效关系的分子轨道研究

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References(25) Cited-By(3) -Quantum chemical studies were applied to analyze the activities of catechol O-methyltransferase (COMT) inhibitors. Molecular orbital calculations of inhibitor molecules were made by semi-empirical molecular orbital calculations, CNDO/2 (complete neglect of differential overlap) methods. Regression analysis among theoretical reaction indices based on the frontier electron theory and COMT inhibitory activities were carried out. The COMT inhibitory actions of two series of inhibitors, a series of 1, 5-substituted 3, 4-dihydroxy benzenes and a series of substituted 3-hydroxy-4-methoxy benzenes, were investigated. The resulting regression equations contain two common reaction indices as regression variables: the electron density on the oxygen atom of the hydroxyl group and the super-delocalizability on the 5th carbon atom of the benzene ring. These two atomic positions are considered to play an important role in the interaction of these inhibitors with COMT. The hydroxyl of atomic position 3 is probably indispensable to the COMT inhibitory action by these inhibitors.
机译:参考文献(25)被引用(3)-量子化学研究用于分析儿茶酚O-甲基转移酶(COMT)抑制剂的活性。抑制剂分子的分子轨道计算是通过半经验分子轨道计算,CNDO / 2(完全忽略微分重叠)方法进行的。基于前沿电子理论和COMT抑制活性,对理论反应指标之间进行了回归分析。研究了两个系列抑制剂(一系列1、5-取代的3、4-二羟基苯和一系列取代的3-羟基-4-甲氧基苯)的COMT抑制作用。所得的回归方程式包含两个常见的反应指数作为回归变量:羟基氧原子上的电子密度和苯环第5个碳原子上的超离域性。认为这两个原子位置在这些抑制剂与COMT的相互作用中起重要作用。这些抑制剂对COMT的抑制作用可能是原子位3上不可缺少的。

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