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寻找毒蕈碱受体双吡啶型变构调节剂的药效团。

Search for the pharmacophore of bispyridinium-type allosteric modulators of muscarinic receptors.

作者信息

Botero Cid M H, Holzgrabe U, Kostenis E, Mohr K, Tränkle C

机构信息

Institute of Pharmacy, University of Bonn, FRG.

出版信息

J Med Chem. 1994 May 13;37(10):1439-45. doi: 10.1021/jm00036a008.

Abstract

The bis(dichlorobenzyl) ether of the bispyridinium oxime TMB 4 stabilizes antagonist binding to M2-cholinoceptors which is indicative of an allosteric action. More than 10 derivatives of the lead compound were synthesized to investigate structure-activity relationships. The allosteric potency of the compounds was indicated by the concentrations which retarded the rate of dissociation of [3H]N-methylscopolamine from porcine cardiac cholinoceptors by a factor of 2 (EC50). Compared with TMB 4, the bis(dichlorobenzyl) derivative 4a displayed a more than 200-fold higher potency (EC50 = 4.7 microM). One of the dichlorobenzyl groups could be replaced by a methyl group without loss of activity (EC50 = 4.5 microM). Further shortening of this end of the molecule was accompanied by a moderate decline in potency to a minimum of EC50 = 26 microM. The second quaternary nitrogen was not a prerequisite for an allosteric activity. It is concluded that one half of the lead compound is pivotal for an interaction with the allosteric site of the M2-cholinoceptor, whereas the opposite end of the molecule modulates the allosteric activity.

摘要

双吡啶肟TMB 4的双(二氯苄基)醚可稳定拮抗剂与M2胆碱受体的结合,这表明存在变构作用。合成了10多种先导化合物的衍生物以研究构效关系。化合物的变构效力由使[3H]N-甲基东莨菪碱从猪心脏胆碱受体解离速率减慢2倍的浓度(EC50)表示。与TMB 4相比,双(二氯苄基)衍生物4a的效力高出200多倍(EC50 = 4.7 microM)。其中一个二氯苄基可被甲基取代而不丧失活性(EC50 = 4.5 microM)。分子该末端的进一步缩短伴随着效力适度下降至最低EC50 = 26 microM。第二个季铵氮并非变构活性的必要条件。得出的结论是,先导化合物的一半对于与M2胆碱受体变构位点的相互作用至关重要,而分子的另一端则调节变构活性。

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