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伊维菌素,一种甘氨酸受体氯离子通道的非常规激动剂。

Ivermectin, an unconventional agonist of the glycine receptor chloride channel.

作者信息

Shan Q, Haddrill J L, Lynch J W

机构信息

Department of Physiology and Pharmacology, University of Queensland, Brisbane, Queensland 4072, Australia.

出版信息

J Biol Chem. 2001 Apr 20;276(16):12556-64. doi: 10.1074/jbc.M011264200. Epub 2001 Jan 18.

Abstract

The effects of the antihelmintic, ivermectin, were investigated in recombinantly expressed human alpha(1) homomeric and alpha(1)beta heteromeric glycine receptors (GlyRs). At low (0.03 microm) concentrations ivermectin potentiated the response to sub-saturating glycine concentrations, and at higher (> or =0.03 microm) concentrations it irreversibly activated both alpha(1) homomeric and alpha(1)beta heteromeric GlyRs. Relative to glycine-gated currents, ivermectin-gated currents exhibited a dramatically reduced sensitivity to inhibition by strychnine, picrotoxin, and zinc. The insensitivity to strychnine could not be explained by ivermectin preventing the access of strychnine to its binding site. Furthermore, the elimination of a known glycine- and strychnine-binding site by site-directed mutagenesis had little effect on ivermectin sensitivity, demonstrating that the ivermectin- and glycine-binding sites were not identical. Ivermectin strongly and irreversibly activated a fast-desensitizing mutant GlyR after it had been completely desensitized by a saturating concentration of glycine. Finally, a mutation known to impair dramatically the glycine signal transduction mechanism had little effect on the apparent affinity or efficacy of ivermectin. Together, these findings indicate that ivermectin activates the GlyR by a novel mechanism.

摘要

研究了抗寄生虫药伊维菌素对重组表达的人α(1)同聚体和α(1)β异聚体甘氨酸受体(GlyRs)的作用。在低浓度(0.03微摩尔)时,伊维菌素增强了对亚饱和甘氨酸浓度的反应,而在较高浓度(≥0.03微摩尔)时,它不可逆地激活了α(1)同聚体和α(1)β异聚体GlyRs。相对于甘氨酸门控电流,伊维菌素门控电流对士的宁、印防己毒素和锌抑制的敏感性显著降低。伊维菌素对士的宁不敏感不能用其阻止士的宁进入结合位点来解释。此外,通过定点诱变消除已知的甘氨酸和士的宁结合位点对伊维菌素敏感性影响很小,表明伊维菌素和甘氨酸结合位点并不相同。在被饱和浓度的甘氨酸完全脱敏后,伊维菌素强烈且不可逆地激活了一种快速脱敏的突变型GlyR。最后,已知显著损害甘氨酸信号转导机制的突变对伊维菌素的表观亲和力或效力影响很小。这些发现共同表明,伊维菌素通过一种新机制激活GlyR。

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