EXPLORATION OF N-PHOSPHONOALKYL-SPACED, N-PHOSPHONOALKENYL-SPACED, AND N-(PHOSPHONOALKYL)PHENYL-SPACED ALPHA-AMINO-ACIDS AS COMPETITIVE N-METHYL-D-ASPARTIC ACID ANTAGONISTS

被引:61
作者
BIGGE, CF
JOHNSON, G
ORTWINE, DF
DRUMMOND, JT
RETZ, DM
BRAHCE, LJ
COUGHENOUR, LL
MARCOUX, FW
PROBERT, AW
机构
[1] Department of Chemistry, Parke-Davis Pharmaceutical Research Division, Warner-Lambert Company, Ann Arbor
[2] Neuroscience Pharmacology, Parke-Davis Pharmaceutical Research Division, Warner-Lambert Company, Ann Arbor
关键词
D O I
10.1021/jm00086a005
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
A series of N-substituted alpha-amino acids containing terminal phosphonic acid groups has been synthesized as potential N-methyl-D-aspartate (NMDA) receptor antagonists. NMDA receptor affinity was determined by displacement of a known ligand ([H-3]CPP) from crude rat brain synaptic membranes; an antagonist action was demonstrated by the inhibition of glutamate-induced accumulation of [Ca-45(2+)] in cultured rat cortical neurons. Receptor affinity was significantly correlated with antagonist activity (Figure 1). Moderate affinity (IC50 = 1-2-mu-M) was retained for analogues (31 and 32, Table 1; and 59 and 66, Table II) with reduced flexibility in their phosphonate side chains and is consistent with entropy playing a role in determining receptor affinity. Modeling studies suggest a folded conformation that brings the distal phosphonic acid group into close proximity with the alpha-carboxylate is required for binding. Each of the active analogues possess entropy-limiting features (double bonds, phenyl rings) in their side chains that allows the superposition of their key NH2, alpha-COOH, and distal PO3H2 groups with those of known competitive antagonists. Affinity decreased for analogues with alpha-carbon substitution, presumably because the alpha-substituent inhibits the folding of these structures into a bioactive conformation and occupies receptor-excluded volume. A complete description of the NMDA antagonist pharmacophore model is provided in a companion paper. 1
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页码:1371 / 1384
页数:14
相关论文
共 38 条
[1]   SYNTHESIS AND NMDA ANTAGONISTIC PROPERTIES OF THE ENANTIOMERS OF 4-(3-PHOSPHONOPROPYL)PIPERAZINE-2-CARBOXYLIC ACID (CPP) AND OF THE UNSATURATED ANALOG (E)-4-(3-PHOSPHONOPROP-2-ENYL)PIPERAZINE-2-CARBOXYLIC ACID (CPP-ENE) [J].
AEBISCHER, B ;
FREY, P ;
HAERTER, HP ;
HERRLING, PL ;
MUELLER, W ;
OLVERMAN, HJ ;
WATKINS, JC .
HELVETICA CHIMICA ACTA, 1989, 72 (05) :1043-1051
[2]   EXPLORATION OF PHENYL-SPACED 2-AMINO-(5-9)-PHOSPHONOALKANOIC ACIDS AS COMPETITIVE N-METHYL-D-ASPARTIC ACID ANTAGONISTS [J].
BIGGE, CF ;
DRUMMOND, JT ;
JOHNSON, G ;
MALONE, T ;
PROBERT, AW ;
MARCOUX, FW ;
COUGHENOUR, LL ;
BRAHCE, LJ .
JOURNAL OF MEDICINAL CHEMISTRY, 1989, 32 (07) :1580-1590
[3]   NEW PREPARATIONS OF THE N-METHYL-D-ASPARTATE RECEPTOR ANTAGONIST, 4-(3-PHOSPHONOPROPYL)-2-PIPERAZINECARBOXYLIC ACID (CPP) [J].
BIGGE, CF ;
HAYS, SJ ;
NOVAK, PM ;
DRUMMOND, JT ;
JOHNSON, G ;
BOBOVSKI, TP .
TETRAHEDRON LETTERS, 1989, 30 (39) :5193-5196
[4]  
CHOI DW, 1988, J NEUROSCI, V8, P185
[5]   CPP, A NEW POTENT AND SELECTIVE NMDA ANTAGONIST - DEPRESSION OF CENTRAL NEURON RESPONSES, AFFINITY FOR [H-3] D-AP5 BINDING-SITES ON BRAIN MEMBRANES AND ANTICONVULSANT ACTIVITY [J].
DAVIES, J ;
EVANS, RH ;
HERRLING, PL ;
JONES, AW ;
OLVERMAN, HJ ;
POOK, P ;
WATKINS, JC .
BRAIN RESEARCH, 1986, 382 (01) :169-173
[6]   2-AMINO-5-PHOSPHONOVALERATE(2APV), A POTENT AND SELECTIVE ANTAGONIST OF AMINO ACID-INDUCED AND SYNAPTIC EXCITATION [J].
DAVIES, J ;
FRANCIS, AA ;
JONES, AW ;
WATKINS, JC .
NEUROSCIENCE LETTERS, 1981, 21 (01) :77-81
[7]  
ENGELSEN B, 1986, ACTA NEUROL SCAND, V74, P337
[8]   CGP-37849 AND CGP-39551 - NOVEL AND POTENT COMPETITIVE N-METHYL-D-ASPARTATE RECEPTOR ANTAGONISTS WITH ORAL ACTIVITY [J].
FAGG, GE ;
OLPE, HR ;
POZZA, MF ;
BAUD, J ;
STEINMANN, M ;
SCHMUTZ, M ;
PORTET, C ;
BAUMANN, P ;
THEDINGA, K ;
BITTIGER, H ;
ALLGEIER, H ;
HECKENDORN, R ;
ANGST, C ;
BRUNDISH, D ;
DINGWALL, JG .
BRITISH JOURNAL OF PHARMACOLOGY, 1990, 99 (04) :791-797
[9]  
FAGG GE, CGP37849
[10]  
FAGG GE, CGP39551