Action of nicotine and analogs on acetylcholine receptors having mutations of transmitter-binding site residue αG153.

Snehal Jadey, Prasad Purohit, Anthony Auerbach
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引用次数: 20

Abstract

A primary target for nicotine is the acetylcholine receptor channel (AChR). Some of the ability of nicotine to activate differentially AChR subtypes has been traced to a transmitter-binding site amino acid that is glycine in lower affinity and lysine in higher affinity AChRs. We studied the effects of mutations of this residue (αG153) in neuromuscular AChRs activated by nicotine and eight other agonists including nornicotine and anabasine. All of the mutations increased the unliganded gating equilibrium constant. The affinity of the resting receptor (K(d)) and the net binding energy from the agonist for gating (ΔG(B)) were estimated by cross-concentration fitting of single-channel currents. In all but one of the agonist/mutant combinations there was a moderate decrease in K(d) and essentially no change in ΔG(B). The exceptional case was nicotine plus lysine, which showed a large, >8,000-fold decrease in K(d) but no change in ΔG(B). The extraordinary specificity of this combination leads us to speculate that AChRs with a lysine at position αG153 may be exposed to a nicotine-like compound in vivo.

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尼古丁及其类似物对递质结合位点αG153突变的乙酰胆碱受体的作用。
尼古丁的主要靶点是乙酰胆碱受体通道(AChR)。尼古丁激活不同AChR亚型的能力可以追溯到一种递质结合位点氨基酸,在低亲和力AChR中为甘氨酸,在高亲和力AChR中为赖氨酸。我们研究了该残基(αG153)在尼古丁和其他8种激动剂(包括去甲尼古丁和茴香碱)激活的神经肌肉achr中突变的影响。所有突变均增加了无配体门控平衡常数。静息受体的亲和力(K(d))和门控激动剂的净结合能(ΔG(B))通过单通道电流的交叉浓度拟合估计。除了一种激动剂/突变体组合外,所有激动剂/突变体组合中K(d)均有适度下降,ΔG(B)基本没有变化。例外情况是尼古丁加赖氨酸,K(d)大幅下降,> 8000倍,但ΔG(B)没有变化。这种组合的特殊特异性使我们推测在αG153位置具有赖氨酸的achr可能在体内暴露于尼古丁样化合物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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