el Tayar N, Carrupt P A, Van de Waterbeemd H, Testa B
School of Pharmacy, University of Lausanne, Switzerland.
J Med Chem. 1988 Nov;31(11):2072-81. doi: 10.1021/jm00119a004.
The molecular electrostatic potential (MEP) of 32 beta-adrenoceptor ligands, mainly antagonists, was calculated by the STO-3G ab initio quantum mechanical method. The MEP of phenylethanolamines (PEAs) features a negative minimum in the meta region (designated M1) which is topographically equivalent to a minimum (designated M2) found in the vicinity of the aromatic ring in all (aryloxy)propanolamines (AOPAs). In these compounds, a second negative zone located beyond the meta position and designated M3 is found in all beta 1-selective antagonists and in some nonselective and beta 2-selective antagonists. The beta 1-selective antagonists feature in the para position an additional zone which is positive (P4) in the full antagonists and negative (M4) in the antagonists displaying intrinsic sympathomimetic activity (ISA). The MEP-based pharmacophoric models of PEAs, AOPAs, and oxime ethers show common elements and lead to a proposed general model for beta-adrenoceptor ligands.
采用STO - 3G从头算量子力学方法计算了32种β - 肾上腺素能受体配体(主要是拮抗剂)的分子静电势(MEP)。苯乙醇胺(PEA)的MEP在间位区域有一个负最小值(称为M1),其拓扑结构与所有(芳氧基)丙醇胺(AOPA)中芳环附近发现的最小值(称为M2)相当。在这些化合物中,在所有β1选择性拮抗剂以及一些非选择性和β2选择性拮抗剂中,发现了位于间位之外的第二个负区,称为M3。β1选择性拮抗剂在对位有一个额外区域,在完全拮抗剂中为正(P4),在表现出内在拟交感活性(ISA)的拮抗剂中为负(M4)。基于MEP的PEA、AOPA和肟醚的药效团模型显示出共同元素,并导致了一个提出的β - 肾上腺素能受体配体通用模型。