Petrongolo C, Macchia B, Macchia F, Martinelli A
J Med Chem. 1977 Dec;20(12):1645-53. doi: 10.1021/jm00222a021.
The role of the aromatic moiety of beta-adrenergic drugs in the interaction with the receptor was investigated using the quantum mechanical ab initio SCF-MO-LCAO method. The structure-activity relationship was essentially discussed by analyzing the electrostatic molecular potential of three compounds which constitute meaningful portions of isoproterenol, INPEA, and doberol, the first drug having a stimulating activity and the others a blocking one. The results obtained point out the different roles played in the drug-receptor interaction by the various regions of the drugs and they also show that the aromatic moiety influences both the affinity and the intrinsic activity of the drugs. Indeed, the spatial correspondence among zones with negative potentials, which are localized on the phenyl substitutents of isoproterenol and INPEA and on the phenyl ring of doberol, could contribute to the affinity. On the other hand, the intrinsic activity of isoproterenol might be associated both with the proton-donor tendency of one phenolic OH group and with the wide zone of negative potential which spreads on a large part of the aromati moiety.
使用量子力学从头算SCF - MO - LCAO方法研究了β - 肾上腺素能药物的芳香部分在与受体相互作用中的作用。通过分析构成异丙肾上腺素、INPEA和多贝醇有意义部分的三种化合物的静电分子势,对构效关系进行了基本讨论。第一种药物具有刺激活性,其他药物具有阻断活性。所得结果指出了药物不同区域在药物 - 受体相互作用中所起的不同作用,并且还表明芳香部分影响药物的亲和力和内在活性。实际上,异丙肾上腺素和INPEA的苯基取代基以及多贝醇的苯环上具有负电位区域之间的空间对应关系可能有助于亲和力。另一方面,异丙肾上腺素的内在活性可能既与一个酚羟基的质子供体倾向有关,又与在芳香部分大部分区域扩展的宽负电位区域有关。