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选择性A3腺苷受体激动剂的比较分子场分析

Comparative molecular field analysis of selective A3 adenosine receptor agonists.

作者信息

Siddiqi S M, Pearlstein R A, Sanders L H, Jacobson K A

机构信息

Molecular Recognition Section, National Institute of Diabetes, Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

Bioorg Med Chem. 1995 Oct;3(10):1331-43. doi: 10.1016/0968-0896(95)00116-x.

Abstract

A series of 48 N6-benzyladenosine 5'-uronamide derivatives has been described recently as moderately selective A3 adenosine receptor agonists of nanomolar potency (Gallo-Rodriguez, C. et al. J. Med. Chem. 1994, 37, 636). Quantitative structure activity relationships in this series, including some novel derivatives, have been investigated using a Comparative Molecular Field Analysis (CoMFA), with emphasis on the N6-substituent. The resulting three dimensional pharmacophore model defines the steric and electronic factors which modulate in vitro affinities in binding to rat brain A3 adenosine receptors. The model indicates a positive correlation of affinity with the steric characteristics of the compounds (major factor), particularly toward the 3-position of the benzyl ring of N6-benzyl NECA, and a weak correlation with the electrostatic effects of the N6-substituent. A comparison of active and inactive compounds using volume maps showed that bulk at the 3-position of the benzyl ring of the molecule is conducive to high affinity at A3 receptors, while steric bulk at other positions of the benzyl ring leads to poor binding. t-Boc-amino acid conjugates of a 3-aminobenzyl derivative were synthesized to probe the steric and hydrophobic limitations at that position. We have discovered a subregion of the N6-benzyl binding pocket occupied by a 3-(L-prolylamino) group that is sterically disallowed at A3 receptors and allowed in A1 and A2a receptors. 6-N-Phenylhydrazino and 6-O-phenylhydroxylamino derivatives, incorporating major changes in electrostatic character of the ligand proximal to the purine, were predicted by the CoMFA model to have high A3 affinity. Such analogs were synthesized and found to be well tolerated at the A3 receptor binding site.

摘要

最近报道了一系列48种N6-苄基腺苷5'-脲酰胺衍生物,它们是具有纳摩尔效力的中等选择性A3腺苷受体激动剂(加洛-罗德里格斯,C.等人,《药物化学杂志》,1994年,37卷,636页)。已使用比较分子场分析(CoMFA)研究了该系列中的定量构效关系,包括一些新型衍生物,重点是N6-取代基。所得的三维药效团模型定义了调节与大鼠脑A3腺苷受体结合的体外亲和力的空间和电子因素。该模型表明亲和力与化合物的空间特征(主要因素)呈正相关,特别是与N6-苄基NECA苄基环的3-位相关,并且与N6-取代基的静电效应呈弱相关。使用体积图对活性和非活性化合物进行比较表明,分子苄基环3-位的体积有利于与A3受体的高亲和力,而苄基环其他位置的空间体积则导致结合不佳。合成了一种3-氨基苄基衍生物的叔丁氧羰基氨基酸缀合物,以探究该位置的空间和疏水限制。我们发现了N6-苄基结合口袋的一个亚区域,该区域被一个3-(L-脯氨酰胺基)基团占据,该基团在A3受体处空间位阻不允许,而在A1和A2a受体中允许。CoMFA模型预测,嘌呤附近配体静电特性发生重大变化的6-N-苯肼基和6-O-苯羟氨基衍生物具有高A3亲和力。合成了此类类似物,发现它们在A3受体结合位点具有良好的耐受性。

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