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U-97775作为克隆大鼠GABAA受体亚型中具有双重功能的GABAA受体配体的特性研究。

Characterization of U-97775 as a GABAA receptor ligand of dual functionality in cloned rat GABAA receptor subtypes.

作者信息

Im H K, Im W B, Pregenzer J F, Carter D B, Jacobsen E J, Hamilton B J

机构信息

Upjohn Company, CNS Diseases Research, Kalamazoo, Michigan 49001, USA.

出版信息

Br J Pharmacol. 1995 May;115(1):19-24. doi: 10.1111/j.1476-5381.1995.tb16314.x.

Abstract
  1. U-97775 (tert-butyl 7-chloro-4,5-dihydro-5-[(1-(3,4,5-trimethyl)piperazino)carbonyl]- imidazo[1,5-a])quinoxaline-3-carboxylate) is a novel GABAA receptor ligand of dual functionality and was characterized for its interactions with cloned rat GABAA receptors expressed in human embryonic kidney cells. 2. The drug produced a bell-shaped dose-response profile in the alpha 1 beta 2 gamma 2 receptor subtype as monitored with GABA-induced Cl- currents in the whole cell patch-clamp technique. At low concentrations (< 0.5 microM), U-97775 enhanced the currents with a maximal increase of 120% as normalized to 5 microM GABA response (control). An agonist interaction of U-97775 with the benzodiazepine site is suggested, because Ro 15-1788 (an antagonist at the benzodiazepine site) abolished the current increase and [3H]-flunitrazepam binding was inhibited by U-97775 with a Ki of 1.2 nM. 3. The enhancement of GABA currents progressively disappeared as the U-97775 concentration was raised above 1 microM, and the current amplitude was reduced to 40% below the control at 10 microM U-97775. The current inhibition by U-97775 (10 microM) was not affected by Ro 15-1788. It appears that U-97775 interacts with a second site on GABA receptors, distinct from the benzodiazepine site, to reverse its agonistic activity on the benzodiazepine site and also to inhibit GABA currents. 4. U-97775 at low concentrations reduced and at high concentrations enhanced [35S]-TBPS binding. Ro 15-1788 selectively blocked the effect of U-97775 at low concentrations. Analysis of the binding data in the presence of Ro 15-1788 yielded a single low affinity site with an estimated Kd of 407 nM.5. In other alpha beta upsilon receptor subtypes, U-97775 at low concentrations enhanced Cl- currents in the alpha 3 beta 2 upsilon 2,but not in the alpha 6 beta 2 upsilon 2 subtype. On the other hand, U-97775 at high concentrations reduced Cl- currents in all the receptor subtypes we examined, including those of two subunits, alpha 1 beta 2, beta 2 upsilon 2 and alpha 1 upsilon 2 subtypes.6. Therapeutically, U-97775 could be unique among benzodiazepine ligands because of its ability to limit its own agonistic activity such that, at high doses the appearance of agonistic activity would be delayed until occupancy of its second site wanes. This property should make the total agonistic activity of U-97775 relatively constant over a wide range of drug doses, and may minimize its liability to abuse.
摘要
  1. U - 97775(7 - 氯 - 4,5 - 二氢 - 5 - [(1 - (3,4,5 - 三甲基)哌嗪基)羰基] - 咪唑并[1,5 - a]喹喔啉 - 3 - 羧酸叔丁酯)是一种具有双重功能的新型GABAA受体配体,其对在人胚肾细胞中表达的克隆大鼠GABAA受体的相互作用进行了表征。2. 在全细胞膜片钳技术中,用GABA诱导的Cl - 电流监测,该药物在α1β2γ2受体亚型中产生了钟形剂量 - 反应曲线。在低浓度(<0.5微摩尔)时,U - 97775增强了电流,相对于5微摩尔GABA反应(对照)最大增加了120%。提示U - 97775与苯二氮䓬位点存在激动剂相互作用,因为Ro 15 - 1788(苯二氮䓬位点拮抗剂)消除了电流增加,且U - 97775抑制了[3H] - 氟硝西泮结合,其Ki为1.2纳摩尔。3. 当U - 97775浓度升至1微摩尔以上时,GABA电流的增强逐渐消失,在10微摩尔U - 97775时电流幅度降至对照值以下甚至40%。U - 97775(10微摩尔)对电流的抑制不受Ro 15 - 1788影响。似乎U - 97775与GABA受体上不同于苯二氮䓬位点的第二个位点相互作用,以逆转其在苯二氮䓬位点的激动活性并抑制GABA电流。4. 低浓度的U - 97775降低而高浓度时增强[35S] - TBPS结合。Ro 15 - 1788选择性地阻断了低浓度下U - 97775的作用。在Ro 15 - 1788存在下对结合数据的分析产生了一个单一的低亲和力位点,估计Kd为407纳摩尔。5. 在其他αβυ受体亚型中,低浓度的U - 97775增强了α3β2υ2亚型中的Cl - 电流,但在α6β2υ2亚型中未增强。另一方面,高浓度的U - 97775降低了我们所检测的所有受体亚型中的Cl - 电流,包括α1β2、β2υ2和α1υ2两个亚基的亚型。6. 在治疗方面,U - 97775在苯二氮䓬配体中可能是独特的,因为它有能力限制自身的激动活性,使得在高剂量时激动活性的出现会延迟,直到其第二个位点的占据减弱。这一特性应使U - 97775的总激动活性在很宽的药物剂量范围内相对恒定,并可能使其滥用倾向最小化。

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