Chambon J P, Feltz P, Heaulme M, Restle S, Schlichter R, Biziere K, Wermuth C G
Proc Natl Acad Sci U S A. 1985 Mar;82(6):1832-6. doi: 10.1073/pnas.82.6.1832.
In view of finding a new gamma-aminobutyric acid (GABA) receptor ligand we synthesized an arylaminopyridazine derivative of GABA, SR 95103 [2-(carboxy-3'-propyl)-3-amino-4-methyl-6-phenylpyridazinium chloride]. SR 95103 displaced [3H]GABA from rat brain membranes with an apparent Ki of 2.2 microM and a Hill number near 1.0. SR 95103 (1-100 microM) antagonized the GABA-mediated enhancement of [3H]diazepam binding in a concentration-dependent manner without affecting [3H]diazepam binding per se. SR 95103 competitively antagonized GABA-induced membrane depolarization in rat spinal ganglia. In all these experiments, the potency of SR 95103 was close to that of bicuculline. SR 95103 (100 microM) did not interact with a variety of central receptors--in particular the GABAB, the strychnine, and the glutamate receptors--did not inhibit Na+-dependent synaptosomal GABA uptake, and did not affect GABA-transaminase and glutamic acid decarboxylase activities. Intraperitoneally administered SR 95103 elicited clonicotonic seizures in mice (ED50 = 180 mg/kg). On the basis of these results it is postulated that St 95103 is a competitive antagonist of GABA at the GABAA receptor site. In addition to being an interesting lead structure for the search of GABA ligands, SR 95103 could also be a useful tool to investigate GABA receptor subtypes because it is freely soluble in water and chemically stable.
为了寻找一种新的γ-氨基丁酸(GABA)受体配体,我们合成了一种GABA的芳基氨基哒嗪衍生物,SR 95103 [2-(羧基-3'-丙基)-3-氨基-4-甲基-6-苯基哒嗪鎓氯化物]。SR 95103从大鼠脑膜上置换[3H]GABA,其表观解离常数(Ki)为2.2微摩尔,希尔系数接近1.0。SR 95103(1 - 100微摩尔)以浓度依赖性方式拮抗GABA介导的[3H]地西泮结合增强,而不影响[3H]地西泮本身的结合。SR 95103竞争性拮抗GABA诱导的大鼠脊髓神经节膜去极化。在所有这些实验中,SR 95103的效力与荷包牡丹碱相近。SR 95103(100微摩尔)不与多种中枢受体相互作用,特别是GABAB、士的宁和谷氨酸受体;不抑制依赖钠离子的突触体GABA摄取,也不影响GABA转氨酶和谷氨酸脱羧酶的活性。腹腔注射SR 95103可引起小鼠阵挛性强直发作(半数有效量 = 180毫克/千克)。基于这些结果,推测St 95103是GABAA受体位点上GABA的竞争性拮抗剂。除了是寻找GABA配体的一个有趣的先导结构外,SR 95103还可能是研究GABA受体亚型的有用工具,因为它可自由溶于水且化学性质稳定。