Arias Hugo R, Rosenberg Avraham, Feuerbach Dominik, Targowska-Duda Katarzyna M, Maciejewski Ryszard, Jozwiak Krzysztof, Moaddel Ruin, Glick Stanley D, Wainer Irving W
Department of Pharmaceutical Sciences, College of Pharmacy, Midwestern University, Glendale, Arizona, USA.
Biochim Biophys Acta. 2010 Jun;1798(6):1153-63. doi: 10.1016/j.bbamem.2010.03.013. Epub 2010 Mar 19.
The interaction of 18-methoxycoronaridine (18-MC) with nicotinic acetylcholine receptors (AChRs) was compared with that for ibogaine and phencyclidine (PCP). The results established that 18-MC: (a) is more potent than ibogaine and PCP inhibiting (+/-)-epibatidine-induced AChR Ca(2+) influx. The potency of 18-MC is increased after longer pre-incubation periods, which is in agreement with the enhancement of [(3)H]cytisine binding to resting but activatable Torpedo AChRs, (b) binds to a single site in the Torpedo AChR with high affinity and inhibits [(3)H]TCP binding to desensitized AChRs in a steric fashion, suggesting the existence of overlapping sites. This is supported by our docking results indicating that 18-MC interacts with a domain located between the serine (position 6') and valine (position 13') rings, and (c) inhibits [(3)H]TCP, [(3)H]ibogaine, and [(3)H]18-MC binding to desensitized AChRs with higher affinity compared to resting AChRs. This can be partially attributed to a slower dissociation rate from the desensitized AChR compared to that from the resting AChR. The enthalpic contribution is more important than the entropic contribution when 18-MC binds to the desensitized AChR compared to that for the resting AChR, and vice versa. Ibogaine analogs inhibit the AChR by interacting with a luminal domain that is shared with PCP, and by inducing desensitization.
将18 - 甲氧基冠狗牙花定碱(18 - MC)与烟碱型乙酰胆碱受体(AChRs)的相互作用与伊博格碱和苯环己哌啶(PCP)进行了比较。结果表明,18 - MC:(a)在抑制(±) - 埃博霉素诱导的AChR Ca(2+)内流方面比伊博格碱和PCP更有效。预孵育时间延长后,18 - MC的效力增加,这与[(3)H]胞嘧啶与静息但可激活的电鳐AChRs结合增强一致,(b)以高亲和力结合到电鳐AChR的单个位点,并以空间位阻方式抑制[(3)H]TCP与脱敏AChRs的结合,表明存在重叠位点。我们的对接结果支持了这一点,表明18 - MC与位于丝氨酸(第6'位)和缬氨酸(第13'位)环之间的结构域相互作用,并且(c)与静息AChRs相比,18 - MC以更高的亲和力抑制[(3)H]TCP、[(3)H]伊博格碱和[(3)H]18 - MC与脱敏AChRs的结合。这部分可归因于与静息AChR相比,18 - MC从脱敏AChR解离的速率较慢。与静息AChR相比,18 - MC与脱敏AChR结合时,焓的贡献比熵的贡献更重要,反之亦然。伊博格碱类似物通过与PCP共有的腔内结构域相互作用并诱导脱敏来抑制AChR。