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激动剂诱导的河豚乙酰胆碱受体固有荧光变化动力学。

Kinetics of agonist-induced intrinsic fluorescence changes in the Torpedo acetylcholine receptor.

机构信息

Department of Pharmacology, University of Minnesota Medical School, Minneapolis, MN 55455, USA.

出版信息

J Biochem. 2010 May;147(5):743-9. doi: 10.1093/jb/mvq007. Epub 2010 Jan 31.

Abstract

The nicotinic acetylcholine receptor from Torpedo electric organs is a ligand-gated ion channel that undergoes conformational transitions for activation and/or desensitization. Earlier work suggested that intrinsic fluorescence changes of the receptor monitors kinetic transitions toward the high-affinity, desensitized state. Here, using highly purified membrane preparations to minimize contaminating fluorescence, we examined kinetic mechanisms of the receptor as monitored by its intrinsic fluorescence. Fluorescence changes were specific to the receptor as they were blocked by alpha-bungarotoxin and were induced by agonists, but not by the antagonist hexamethonium. Acetylcholine, carbamylcholine and suberyldicholine showed only one kinetic phase with relatively fast rates (t(1/2) = 0.2-1.2 s). Effective dissociation constants were at least an order of magnitude higher than the high affinity, equilibrium binding constants for these agonists. A semirigid agonist isoarecolone-methiodide, whose activation constant was approximately 3-fold lower than acetylcholine, induced an additional slow phase (t(1/2) = 4.5-9 s) with apparent rates that increased and then decreased in a concentration dependent manner, revealing a branched mechanism for conformational transitions. We propose that the intrinsic fluorescence changes of the receptor describe a process(es) toward a fast desensitization state prior to the formation of the high affinity state.

摘要

来自电鳐电器官的烟碱型乙酰胆碱受体是一种配体门控离子通道,它经历构象转变以实现激活和/或脱敏。早期的工作表明,受体的固有荧光变化监测向高亲和力、脱敏状态的动力学转变。在这里,使用高度纯化的膜制剂来最小化污染荧光,我们通过其固有荧光检查了受体的动力学机制。荧光变化是特异性的,因为它们被α-银环蛇毒素阻断,并且被激动剂诱导,但不受拮抗剂六烃季铵的影响。乙酰胆碱、氨甲酰胆碱和丁二酰二胆碱仅显示一个具有相对较快速率(t(1/2)=0.2-1.2s)的动力学相。有效解离常数至少比这些激动剂的高亲和力平衡结合常数高一个数量级。半刚性激动剂异樟柳碱-甲碘化物的激活常数比乙酰胆碱低约 3 倍,它诱导了一个额外的缓慢相(t(1/2)=4.5-9s),其表观速率以浓度依赖的方式增加然后减少,揭示了构象转变的分支机制。我们提出,受体的固有荧光变化描述了在形成高亲和力状态之前向快速脱敏状态的转变过程。

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