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(-)-洛贝林与人α4β2和α4β4烟碱型乙酰胆碱受体亚型的功能和结构相互作用。

Functional and structural interaction of (-)-lobeline with human α4β2 and α4β4 nicotinic acetylcholine receptor subtypes.

作者信息

Arias Hugo R, Feuerbach Dominik, Ortells Marcelo

机构信息

Department of Medical Education, California Northstate University College of Medicine, Elk Grove, CA, USA.

Neuroscience Research, Novartis Institutes for Biomedical Research, Basel, Switzerland.

出版信息

Int J Biochem Cell Biol. 2015 Jul;64:15-24. doi: 10.1016/j.biocel.2015.03.003. Epub 2015 Mar 18.

Abstract

To determine the pharmacologic activity of (-)-lobeline between human (h)α4β2 and hα4β4 nicotinic acetylcholine receptors (AChRs), functional and structural experiments were performed. The Ca(2+) influx results established that (-)-lobeline neither actives nor enhances the function of the studied AChR subtypes, but competitively inhibits hα4β4 AChRs with potency ∼10-fold higher than that for hα4β2 AChRs. This difference is due to a higher binding affinity for the [(3)H]cytisine sites at hα4β4 compared to hα4β2 AChRs, which, in turn, can be explained by our molecular dynamics (MD) results: (1) higher stability of (-)-lobeline and its hydrogen bonds within the α4β4 pocket compared to the α4β2 pocket, (2) (-)-lobeline promotes Loop C to cap the binding site at the α4β4 pocket, but forces Loop C to get apart from the α4β2 pocket, precluding the gating process elicited by agonists, and (3) the orientation of (-)-lobeline within the α4β4, but not the α4β2, subpocket, promoted by the t- (or t+) rotameric state of α4-Tyr98, remains unchanged during the whole MD simulation. This study gives a detailed view of the molecular and dynamics events evoked by (-)-lobeline supporting the differential binding affinity and subsequent inhibitory potency between hα4β2 and hα4β4 AChRs, and supports the possibility that the latter subtype is also involved in its activity.

摘要

为了确定(-)-洛贝林在人(h)α4β2和hα4β4烟碱型乙酰胆碱受体(AChRs)之间的药理活性,进行了功能和结构实验。Ca(2+)内流结果表明,(-)-洛贝林既不激活也不增强所研究的AChR亚型的功能,但竞争性抑制hα4β4 AChRs,其效力比hα4β2 AChRs高约10倍。这种差异是由于与hα4β2 AChRs相比,hα4β4对[(3)H]金雀花碱位点具有更高的结合亲和力,这反过来又可以用我们的分子动力学(MD)结果来解释:(1)与α4β2口袋相比,(-)-洛贝林及其在α4β4口袋内的氢键具有更高的稳定性;(2)(-)-洛贝林促进环C封闭α4β4口袋的结合位点,但迫使环C与α4β2口袋分离,从而排除了激动剂引发的门控过程;(3)在整个MD模拟过程中,由α4-Tyr98的t-(或t+)旋转异构体状态促进的(-)-洛贝林在α4β4亚口袋而非α4β2亚口袋内的取向保持不变。这项研究详细阐述了(-)-洛贝林引发的分子和动力学事件,支持了hα4β2和hα4β4 AChRs之间的差异结合亲和力和随后的抑制效力,并支持了后一种亚型也参与其活性的可能性。

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