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首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis, biochemical evaluation, and classical and three-dimensional quantitative structure-activity relationship studies of 7-substituted-1,2,3,4-tetrahydroisoquinolines and their relative affinities toward phenylethanolamine N-methyltransferase a
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Synthesis, biochemical evaluation, and classical and three-dimensional quantitative structure-activity relationship studies of 7-substituted-1,2,3,4-tetrahydroisoquinolines and their relative affinities toward phenylethanolamine N-methyltransferase a

机译:7-取代的1,2,3,4-四氢异喹啉及其对苯乙醇胺N-甲基转移酶的亲和力的合成,生化评估以及经典和三维定量构效关系研究

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摘要

7-Substituted-1,2,3,4-tetrahydroisoquinolines (7-substituted-THIQs) are potent inhibitors of phenylethanolamine N-methyltransferase (PNMT, EC 2.1.1.28), the enzyme involved in the biosynthesis of epinephrine. Unfortunately, most of these compounds also exhibit strong affinity for the alpha2-adrenoceptor. To design a selective (PNMT vs alpha2-adrenoceptor affinity) inhibitor of PNMT, the steric and electrostatic factors responsible for PNMT inhibitory activity and alpha2-adrenoceptor affinity were investigated by evaluating a number of 7-substituted-THIQs. A classical quantitative structure-activity relationship (QSAR) study resulted in a three-parameter equation for PNMT (PNMT pKi = 0.599pi - 0.0725MR + 1. 55sigmam + 5.80; n = 27, r = 0.885, s = 0.573) and a three-parameter equation for the alpha2-adrenoceptor (alpha2 pKi = 0.599pi - 0. 0542MR - 0.951sigmam + 6.45; n = 27, r = 0.917, s = 0.397). These equations indicated that steric effects and lipophilicity play a similar role at either active site but that electronic effects play opposite roles at either active site. Two binding orientations for the THIQs were postulated such that lipophilic and hydrophilic 7-substituents would not occupy the same region of space at either binding site. Using these two binding orientations, based on the lipophilicity of the 7-substituent, comparative molecular field analysis (CoMFA) models were developed that showed that the steric and electrostatic interactions at both sites were similar to those previously elaborated in the QSAR analyses. Both the QSAR and the CoMFA analyses showed that the steric interactions are similar at the PNMT active site and at the alpha2-adrenoceptor and that the electrostatic interactions were different at the two sites. This difference in electrostatic interactions might be responsible for the selectivity of THIQs bearing a nonlipophilic electron-withdrawing group at the 7-position. These QSAR and CoMFA results will be useful in the design of potent and selective (PNMT vs alpha2-adrenoceptor affinity) inhibitors of PNMT.
机译:7-取代的1,2,3,4-四氢异喹啉(7-取代的THIQs)是苯基乙醇胺N-甲基转移酶(PNMT,EC 2.1.1.28)的有效抑制剂,该酶参与肾上腺素的生物合成。不幸的是,大多数这些化合物还对α2-肾上腺素受体表现出很强的亲和力。为了设计PNMT的选择性(PNMT与α2-肾上腺素受体亲和力)抑制剂,通过评估许多7个取代的THIQ,研究了负责PNMT抑制活性和α2-肾上腺素受体亲和力的空间和静电因子。经典的定量构效关系(QSAR)研究得出了PNMT的三参数方程式(PNMT pKi = 0.599pi-0.0725MR + 1.55sigmam + 5.80; n = 27,r = 0.885,s = 0.573)和a α2-肾上腺素受体的三参数方程式(alpha2 pKi = 0.599pi-0. 0542MR-0.951sigmam + 6.45; n = 27,r = 0.917,s = 0.397)。这些等式表明,空间效应和亲脂性在任一活性位点起相似作用,但电子效应在任一活性位点起相反作用。假设THIQ的两个结合方向使得亲脂性和亲水性7-取代基在两个结合位点都不会占据相同的空间区域。使用这两个结合方向,基于7位取代基的亲脂性,开发了比较分子场分析(CoMFA)模型,该模型显示两个位点的空间和静电相互作用与先前在QSAR分析中阐述的相似。 QSAR和CoMFA分析均显示,PNMT活性位点和α2-肾上腺素能受体的空间相互作用相似,并且两个位点的静电相互作用不同。静电相互作用的这种差异可能是造成在7位带有非亲电子吸电子基团的THIQ选择性的原因。这些QSAR和CoMFA结果将有助于设计PNMT的有效和选择性(PNMT与α2-肾上腺素受体亲和力)抑制剂。

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