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首页> 外文期刊>Molecular pharmacology. >Reciprocal regulation of agonist and inverse agonist signaling efficacy upon short-term treatment of the human delta-opioid receptor with an inverse agonist.
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Reciprocal regulation of agonist and inverse agonist signaling efficacy upon short-term treatment of the human delta-opioid receptor with an inverse agonist.

机译:在用反向激动剂短期治疗人δ-阿片样物质受体时激动剂和反向激动剂信号传导功效的相互调节。

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摘要

Rapid regulation of receptor signaling by agonist ligands is widely accepted, whereas short-term adaptation to inverse agonists has been little documented. In the present study, guanosine 5'-O-(3-[(35)S]thio)triphosphate ([(35)S]GTPgammaS) binding and cAMP accumulation assays were used to assess the consequences of 30-min exposure to the inverse agonist N,N-diallyl-Tyr-Aib-Aib-Phe-Leu-OH (ICI174864) (1 microM) on delta-opioid receptor signaling efficacy. ICI174864 pretreatment increased maximal effect (E(max)) for the partial agonist Tyr-1,2,3,4-tetrahydroisoquinoline-Phe-Phe-OH (TIPP) at the two levels of the signaling cascade, whereas E(max) values for more efficacious agonists like (+)-4-[(alphaR)-alpha-((2S,5R)-4-allyl-2,5-dimethyl-1-piperazinyl)-3-metho xybenzyl]-N,N-diethylbenzamide (SNC-80) and bremazocine were increased in [(35)S]GTPgammaS binding but not in cAMP accumulation assays. Pre-exposure to ICI174864 also induced a shift to the left in dose-response curves for bremazocine and TIPP. On the other hand, E(max) for the inverse agonist H-Tyr-TicPsi[CH(2)NH]Cha-Phe-OH was reduced in both assays, but no changes in potency were observed. For the weaker inverse agonist naloxone, E(max) in [(35)S]GTPgammaS binding was drastically modified because the drug turned from inverse agonist to agonist after ICI174864 pretreatment. Likewise, ICI174864 turned from inverse agonist to agonist when tested in cAMP accumulation assays. In both cases, inversion of efficacy was concomitant with marked increase in potency for agonist effects. Together with functional changes, short-term treatment with ICI174864 reduced basal receptor phosphorylation and increased immunoreactivity for Galpha(i3) in membrane preparations. Functional consequences of ICI174864 pretreatment were simulated in the cubic ternary complex model by increasing receptor/G protein coupling or G protein amount available for interaction with the receptor. Taken together, these data show that inverse agonists may induce rapid regulation in receptor signaling efficacy.
机译:激动剂配体对受体信号传导的快速调节已被广泛接受,而对反向激动剂的短期适应则几乎没有文献记载。在本研究中,鸟嘌呤5'-O-(3-[((35)S]硫代)三磷酸([(35)S] GTPgammaS)结合和cAMP积累测定用于评估暴露30分钟的结果。反向激动剂N,N-二烯丙基-Tyr-Aib-Aib-Phe-Leu-OH(ICI174864)(1 microM)对δ-阿片受体信号传导功效的影响。 ICI174864预处理在信号级联的两个水平上增加了部分激动剂Tyr-1,2,3,4-四氢异喹啉-Phe-Phe-OH(TIPP)的最大作用(E(max)),而E(max)值为更有效的激动剂,例如(+)-4-[(alphaR)-alpha-(((2S,5R)-4-烯丙基-2,5-二甲基-1-哌嗪基)-3-甲基邻苄基] -N,N- [[35)S] GTPgammaS结合中增加了二乙基苯甲酰胺(SNC-80)和溴代咪嗪的含量,但在cAMP积累测定中没有增加。预暴露于ICI174864还会引起溴代咪唑嗪和TIPP的剂量反应曲线向左移动。另一方面,反向激动剂H-Tyr-TicPsi [CH(2)NH] Cha-Phe-OH的E(max)在两种测定中均降低,但未观察到效价变化。对于较弱的反向激动剂纳洛酮,由于药物在ICI174864预处理后从反向激动剂变为激动剂,因此[(35)S] GTPgammaS结合中的E(max)进行了大幅修饰。同样,在cAMP累积分析中进行测试时,ICI174864也从反向激动剂转变为激动剂。在这两种情况下,效力倒置伴随激动剂效力的显着增加。连同功能更改,ICI174864的短期治疗减少了膜制剂中基础受体的磷酸化,并增加了Galpha(i3)的免疫反应性。通过增加受体/ G蛋白偶联或可用于与受体相互作用的G蛋白量,在三次三元复合物模型中模拟了ICI174864预处理的功能后果。综上所述,这些数据表明,反向激动剂可以诱导受体信号传导功效的快速调节。

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