Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10958180 | Neurochemistry International | 2013 | 9 Pages |
Abstract
The interaction of (â)-reboxetine, a non-tricyclic norepinephrine selective reuptake inhibitor, with muscle-type nicotinic acetylcholine receptors (AChRs) in different conformational states was studied by functional and structural approaches. The results established that (â)-reboxetine: (a) inhibits (±)-epibatidine-induced Ca2+ influx in human (h) muscle embryonic (hα1β1γδ) and adult (hα1β1εδ) AChRs in a non-competitive manner and with potencies IC50 = 3.86 ± 0.49 and 1.92 ± 0.48 μM, respectively, (b) binds to the [3H]TCP site with â¼13-fold higher affinity when the Torpedo AChR is in the desensitized state compared to the resting state, (c) enhances [3H]cytisine binding to the resting but activatableTorpedo AChR but not to the desensitized AChR, suggesting desensitizing properties, (d) overlaps the PCP luminal site located between rings 6â² and 13â² in the Torpedo but not human muscle AChRs. In silico mutation results indicate that ring 9â² is the minimum structural component for (â)-reboxetine binding, and (e) interacts to non-luminal sites located within the transmembrane segments from the Torpedo AChR γ subunit, and at the α1/ε transmembrane interface from the adult muscle AChR. In conclusion, (â)-reboxetine non-competitively inhibits muscle AChRs by binding to the TCP luminal site and by inducing receptor desensitization (maybe by interacting with non-luminal sites), a mechanism that is shared by tricyclic antidepressants.
Keywords
FBS[3H]TCPNCAReboxetineTCAsCCHα-BTXα-bungarotoxinAChREC50PCPDMEMRMSDIC50Dulbecco’s modified Eagle mediumNon-competitive antagonistAntidepressantstricyclic antidepressantsRoom temperatureConformational statesfetal bovine serumHill coefficientPhencyclidineinhibition constantroot mean square deviationCarbamylcholinenicotinic acetylcholine receptornicotinic acetylcholine receptors
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Authors
Hugo R. Arias, Marcelo O. Ortells, Dominik Feuerbach,