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托烷司琼的分子剖析,一种α7烟碱型乙酰胆碱受体选择性部分激动剂。

Molecular dissection of tropisetron, an alpha7 nicotinic acetylcholine receptor-selective partial agonist.

作者信息

Papke Roger L, Schiff Hillary C, Jack Brian A, Horenstein Nicole A

机构信息

University of Florida College of Medicine, Department of Pharmacology and Therapeutics, Gainesville, FL 32610-0267, USA.

出版信息

Neurosci Lett. 2005 Apr 22;378(3):140-4. doi: 10.1016/j.neulet.2004.12.025. Epub 2005 Jan 5.

Abstract

The alpha7 nicotinic acetylcholine receptor (nAChR)-selective partial agonist tropisetron is a conjugate of an indole and a tropane group. We tested compounds structurally related to either the indole or tropane domains of tropisetron on oocytes expressing human alpha7. alpha4beta2, or alpha3beta4 nAChR or rat 5HT(3A) receptors. The simple compounds tropane and tropinone had alpha7-selective agonist activity comparable to that of tropisetron. Tropinone was more efficacious than tropisetron but 100-fold less potent. Some tropane compounds had antagonist activity on alpha3beta4 nAChR but no effect on alpha4beta2 nAChR. Some tropanes also affected the responses of 5HT3 receptors to serotonin. Tropisetron was more potent at inhibiting alpha3beta4 receptors (IC(50)=1.8+/-0.6) than was tropane or tropinone, suggesting that the presence of the indole group has a large impact on the potency of tropisetron, both as an alpha7 agonist and as an alpha3beta4 antagonist. The further reduced structures of dimethyl piperidinium and 1-methylpyrrolidine also had agonist activity on alpha7 receptors, suggesting that the minimal activating pharmacophore of these compounds, as with tetramethylammonium, may simply be the charged nitrogen, while additional structure elements impact subtype selectivity, potency, and efficacy. It has previously been reported that 5-hydroxyindole (5HI) can potentiate alpha7 receptor responses to acetylcholine (ACh). However, the site where 5HI binds to the receptor is not known. We tested the hypothesis that the tropisetron binding site might overlap the 5HI site and thereby produce a block of 5HI potentiation. Our results indicate that the indole portion of tropisetron is not likely to be binding to the same site where 5HI binds to potentiate alpha7 receptor responses since 5HI can greatly potentiate responses of tropisetron, tropinone, and other partial agonists such as 4OH-GTS-21.

摘要

α7烟碱型乙酰胆碱受体(nAChR)选择性部分激动剂托烷司琼是吲哚与托烷基团的共轭物。我们在表达人α7、α4β2或α3β4 nAChR或大鼠5HT(3A)受体的卵母细胞上测试了与托烷司琼的吲哚或托烷结构域相关的化合物。简单化合物托烷和托品酮具有与托烷司琼相当的α7选择性激动剂活性。托品酮比托烷司琼更有效,但效力低100倍。一些托烷化合物对α3β4 nAChR具有拮抗活性,但对α4β2 nAChR无影响。一些托烷还影响5HT3受体对5-羟色胺的反应。托烷司琼在抑制α3β4受体方面(IC(50)=1.8±0.6)比托烷或托品酮更有效,这表明吲哚基团的存在对托烷司琼作为α7激动剂和α3β4拮抗剂的效力有很大影响。二甲基哌啶鎓和1-甲基吡咯烷进一步简化的结构对α7受体也具有激动剂活性,这表明这些化合物与四甲基铵一样,最小的激活药效团可能仅仅是带电荷的氮,而其他结构元素影响亚型选择性、效力和功效。此前有报道称,5-羟基吲哚(5HI)可增强α7受体对乙酰胆碱(ACh)的反应。然而,5HI与受体结合的位点尚不清楚。我们测试了这样一个假设,即托烷司琼的结合位点可能与5HI位点重叠,从而阻断5HI的增强作用。我们的结果表明,托烷司琼的吲哚部分不太可能与5HI增强α7受体反应的结合位点相同,因为5HI可极大地增强托烷司琼、托品酮和其他部分激动剂(如4OH-GTS-21)的反应。

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