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织纹芋螺 LtlA 是一种新型的α3β2 型烟碱型乙酰胆碱受体别构调节剂

Atypical alpha-conotoxin LtIA from Conus litteratus targets a novel microsite of the alpha3beta2 nicotinic receptor.

机构信息

Key Laboratory of Tropical Biological Resources, Ministry of Education, Ocean College, College of Materials and Chemical Engineering, Center for Experimental Biotechnology, Hainan University, Haikou Hainan 570228, China.

出版信息

J Biol Chem. 2010 Apr 16;285(16):12355-66. doi: 10.1074/jbc.M109.079012. Epub 2010 Feb 9.

Abstract

Different nicotinic acetylcholine receptor (nAChR) subtypes are implicated in learning, pain sensation, and disease states, including Parkinson disease and nicotine addiction. alpha-Conotoxins are among the most selective nAChR ligands. Mechanistic insights into the structure, function, and receptor interaction of alpha-conotoxins may serve as a platform for development of new therapies. Previously characterized alpha-conotoxins have a highly conserved Ser-Xaa-Pro motif that is crucial for potent nAChR interaction. This study characterized the novel alpha-conotoxin LtIA, which lacks this highly conserved motif but potently blocked alpha3beta2 nAChRs with a 9.8 nm IC(50) value. The off-rate of LtIA was rapid relative to Ser-Xaa-Pro-containing alpha-conotoxin MII. Nevertheless, pre-block of alpha3beta2 nAChRs with LtIA prevented the slowly reversible block associated with MII, suggesting overlap in their binding sites. nAChR beta subunit ligand-binding interface mutations were used to examine the >1000-fold selectivity difference of LtIA for alpha3beta2 versus alpha3beta4 nAChRs. Unlike MII, LtIA had a >900-fold increased IC(50) value on alpha3beta2(F119Q) versus wild type nAChRs, whereas T59K and V111I beta2 mutants had little effect. Molecular docking simulations suggested that LtIA had a surprisingly shallow binding site on the alpha3beta2 nAChR that includes beta2 Lys-79. The K79A mutant disrupted LtIA binding but was without effect on an LtIA analog where the Ser-Xaa-Pro motif is present, consistent with distinct binding modes.

摘要

不同的烟碱型乙酰胆碱受体(nAChR)亚型与学习、疼痛感知和疾病状态有关,包括帕金森病和尼古丁成瘾。α-芋螺毒素是最具选择性的 nAChR 配体之一。对 α-芋螺毒素的结构、功能和受体相互作用的机制研究可以为开发新的治疗方法提供平台。以前表征的 α-芋螺毒素具有高度保守的 Ser-Xaa-Pro 基序,这对于有效的 nAChR 相互作用至关重要。本研究对缺乏该高度保守基序但能以 9.8nmIC50 值有效阻断 α3β2nAChR 的新型 α-芋螺毒素 LtIA 进行了表征。与含有 Ser-Xaa-Pro 的 α-芋螺毒素 MII 相比,LtIA 的脱靶速率较快。然而,LtIA 预先阻断 α3β2nAChR 可防止与 MII 相关的缓慢可逆阻断,表明其结合位点重叠。使用 nAChRβ亚基配体结合界面突变来研究 LtIA 对 α3β2 与 α3β4nAChR 的 >1000 倍选择性差异。与 MII 不同,LtIA 对 α3β2(F119Q) 与野生型 nAChR 的 IC50 值增加了 >900 倍,而 T59K 和 V111Iβ2 突变体影响较小。分子对接模拟表明,LtIA 在α3β2nAChR 上具有出乎意料的浅结合位点,包括β2Lys-79。K79A 突变体破坏了 LtIA 的结合,但对存在 Ser-Xaa-Pro 基序的 LtIA 类似物没有影响,这与不同的结合模式一致。

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