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新型药物占诺美林与M1毒蕈碱型乙酰胆碱受体相互作用模式的药理学分析

Pharmacological analysis of the novel mode of interaction between xanomeline and the M1 muscarinic acetylcholine receptor.

作者信息

Christopoulos A, Parsons A M, El-Fakahany E E

机构信息

Department of Psychiatry, University of Minnesota Medical School, Minneapolis, Minnesota.

出版信息

J Pharmacol Exp Ther. 1999 Jun;289(3):1220-8.

Abstract

Previous findings in our laboratory suggested that the M1 muscarinic acetylcholine receptor (mAChR) agonist xanomeline exhibits a novel mode of interaction that involves persistent binding to and activation of the M1 mAChR, subsequent to extensive washout, as well as a possible insurmountable element. In the present study, we examined this interaction in greater detail, using Chinese hamster ovary cells transfected with the genes for the M1 mAChR and neuronal nitric oxide synthase. Pretreatment of cells with xanomeline, followed by extensive washout, resulted in elevated basal levels of neuronal nitric oxide synthase activity that were suppressed by the antagonists atropine or pirenzepine in a concentration-dependent manner. Analysis of the data yielded estimates of Schild slope factors and pKB values for the antagonists that were consistent with a model of simple competition between these latter agents and the persistently bound form of xanomeline. The ability of the antagonists to produce parallel dextral shifts of the concentration-response curves to carbachol and xanomeline was also investigated. The interaction between xanomeline and pirenzepine appeared to be insurmountable, but this may have been due to an equilibrium artifact. In contrast, the interaction between xanomeline and atropine conformed to a model of competition, indicating that the mode of interaction of free xanomeline at the M1 mAChR is pharmacologically identical with that of the persistently bound form. Radioligand binding studies also showed that the presence of various concentrations of xanomeline had no significant effect on the calculated affinity of atropine or pirenzepine in inhibiting the binding of [3H]N-methylscopolamine. Overall, these findings suggest that the persistent attachment of xanomeline to the M1 mAChR does not prevent this agonist from interacting with the classic binding site in a competitive fashion.

摘要

我们实验室之前的研究结果表明,M1毒蕈碱型乙酰胆碱受体(mAChR)激动剂占诺美林表现出一种新的相互作用模式,即在大量洗脱后,它会持续结合并激活M1 mAChR,且可能存在不可逾越的因素。在本研究中,我们使用转染了M1 mAChR和神经元型一氧化氮合酶基因的中国仓鼠卵巢细胞,更详细地研究了这种相互作用。用占诺美林预处理细胞,然后进行大量洗脱,导致神经元型一氧化氮合酶活性的基础水平升高,而拮抗剂阿托品或哌仑西平以浓度依赖的方式抑制了这种升高。对数据的分析得出了拮抗剂的Schild斜率因子和pKB值的估计值,这些值与这些拮抗剂与持续结合形式的占诺美林之间的简单竞争模型一致。还研究了拮抗剂使卡巴胆碱和占诺美林浓度 - 反应曲线平行右旋移动的能力。占诺美林与哌仑西平之间的相互作用似乎是不可逾越的,但这可能是由于平衡假象所致。相比之下,占诺美林与阿托品之间的相互作用符合竞争模型,表明游离占诺美林在M1 mAChR上的相互作用模式在药理学上与持续结合形式相同。放射性配体结合研究还表明,各种浓度的占诺美林的存在对计算得出的阿托品或哌仑西平抑制[3H]N - 甲基东莨菪碱结合的亲和力没有显著影响。总体而言,这些发现表明占诺美林与M1 mAChR的持续结合并不妨碍该激动剂以竞争方式与经典结合位点相互作用。

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