Topiol S, Sabio M
Preclinical Research, Sandoz Research Institute, East Hanover, NJ 07936.
J Comput Aided Mol Des. 1991 Jun;5(3):263-72. doi: 10.1007/BF00124342.
The previously proposed models for the recognition and activation of 5-HT and histamine-H2 receptors, which were employed to explain the antagonist activity of LSD at both of these receptors, as well as the selective antagonism for H2 receptors by SKF-10856 and 9,10-dihydro-LSD, are used herein to design a compound to test the H2-receptor model. The design strategy attempts to construct a compound with potentially selective H2 agonism. The design scheme maintains features which were previously used to explain selective recognition of SKF-10856 and 9,10-dihydro-LSD as well as reintroduces the chemical features proposed to be responsible for H2 activation. The existence of the H2 recognition and activation features in the proposed compound is verified, in a previously proposed model, by computational studies of the molecular electrostatic potentials and shifts in the tautomeric preference.
先前提出的用于识别和激活5-羟色胺(5-HT)和组胺H2受体的模型,曾被用于解释麦角酸二乙酰胺(LSD)对这两种受体的拮抗活性,以及SKF-10856和9,10-二氢-LSD对H2受体的选择性拮抗作用,本文利用这些模型设计一种化合物来测试H2受体模型。设计策略试图构建一种具有潜在选择性H2激动作用的化合物。设计方案保留了先前用于解释SKF-10856和9,10-二氢-LSD选择性识别的特征,并重新引入了被认为是H2激活原因的化学特征。在所提出的化合物中,H2识别和激活特征的存在,在先前提出的模型中,通过分子静电势的计算研究和互变异构偏好的变化得到了验证。