KYNURENIC ACID-DERIVATIVES - STRUCTURE-ACTIVITY-RELATIONSHIPS FOR EXCITATORY AMINO-ACID ANTAGONISM AND IDENTIFICATION OF POTENT AND SELECTIVE ANTAGONISTS AT THE GLYCINE SITE ON THE N-METHYL-D-ASPARTATE RECEPTOR

被引:161
作者
LEESON, PD
BAKER, R
CARLING, RW
CURTIS, NR
MOORE, KW
WILLIAMS, BJ
FOSTER, AC
DONALD, AE
KEMP, JA
MARSHALL, GR
机构
[1] MERCK SHARP & DOHME LTD, NEUROSCI RES CTR, DEPT BIOCHEM, HARLOW CM20 2QR, ESSEX, ENGLAND
[2] MERCK SHARP & DOHME LTD, NEUROSCI RES CTR, DEPT PHARMACOL, HARLOW CM20 2QR, ESSEX, ENGLAND
关键词
D O I
10.1021/jm00108a002
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Derivatives of the nonselective excitatory amino acid antagonist kynurenic acid (4-oxo-1,4-dihydroquinoline-2-carboxylic acid, 1) have been synthesized and evaluated for in vitro antagonist activity at the excitatory amino acid receptors sensitive to N-methyl-D-aspartic acid (NMDA), quisqualic acid (QUIS or AMPA), and kainic acid (KA). Introduction of substituents at the 5-, 7-, and 5,7-positions resulted in analogues having selective NMDA antagonist action, as a result of blockade of the glycine modulatory (or coagonist) site on the NMDA receptor. Regression analysis suggested a requirement for optimally sized, hydrophobic 5- and 7-substituents, with bulk tolerance being greater at the 5-position. Optimization led to the 5-iodo-7-chloro derivative (53), which is the most potent and selective glycine/NMDA antagonist to date (IC50 vs [H-3]glycine binding, 32 nM; IC50's for other excitatory amino acid receptor sites, > 100-mu-M). Substitution of 1 at the 6-position resulted in compounds having selective non-NMDA antagonism and 8-substituted compounds were inactive at all receptors. The retention of glycine/NMDA antagonist activity in heterocyclic ring modified analogues, such as the oxanilide 69 and the 2-carboxybenzimidazole 70, suggests that the 4-oxo tautomer of 1 and its derivatives is required for activity. Structurally related quinoxaline-2,3-diones are also glycine/NMDA antagonists, but are not selective and are less potent than the 1 derivatives, and additionally show different structure-activity requirements for aromatic ring substitution. On the basis of these results, a model accounting for glycine receptor binding of the 1 derived antagonists is proposed, comprising (a) size-limited, hydrophobic binding of the benzene ring, (b) hydrogen-bond acceptance by the 4-oxo group, (c) hydrogen-bond donation by the 1-amino group, and (d) a Coulombic attraction of the 2-carboxylate. The model can also account for the binding of quinoxaline-2,3-diones, quinoxalic acids, and 2-carboxybenzimidazoles.
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页码:1243 / 1252
页数:10
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