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α4(+) / (-)β2 激动剂结合位点对不同亚型间及亚型内 α4β2 烟碱型乙酰胆碱受体功能的差异贡献

Differential α4(+)/(-)β2 Agonist-binding Site Contributions to α4β2 Nicotinic Acetylcholine Receptor Function within and between Isoforms.

作者信息

Lucero Linda M, Weltzin Maegan M, Eaton J Brek, Cooper John F, Lindstrom Jon M, Lukas Ronald J, Whiteaker Paul

机构信息

From the Division of Neurobiology, Barrow Neurological Institute, Phoenix, Arizona 85013 and.

the Department of Neuroscience, University of Pennsylvania Medical School, Philadelphia, Pennsylvania 19104.

出版信息

J Biol Chem. 2016 Jan 29;291(5):2444-59. doi: 10.1074/jbc.M115.684373. Epub 2015 Dec 7.

Abstract

Two α4β2 nicotinic acetylcholine receptor (α4β2-nAChR) isoforms exist with (α4)2(β2)3 and (α4)3(β2)2 subunit stoichiometries and high versus low agonist sensitivities (HS and LS), respectively. Both isoforms contain a pair of α4(+)/(-)β2 agonist-binding sites. The LS isoform also contains a unique α4(+)/(-)α4 site with lower agonist affinity than the α4(+)/(-)β2 sites. However, the relative roles of the conserved α4(+)/(-)β2 agonist-binding sites in and between the isoforms have not been studied. We used a fully linked subunit concatemeric nAChR approach to express pure populations of HS or LS isoform α4β2*-nAChR. This approach also allowed us to mutate individual subunit interfaces, or combinations thereof, on each isoform background. We used this approach to systematically mutate a triplet of β2 subunit (-)-face E-loop residues to their non-conserved α4 subunit counterparts or vice versa (β2HQT and α4VFL, respectively). Mutant-nAChR constructs (and unmodified controls) were expressed in Xenopus oocytes. Acetylcholine concentration-response curves and maximum function were measured using two-electrode voltage clamp electrophysiology. Surface expression was measured with (125)I-mAb 295 binding and was used to define function/nAChR. If the α4(+)/(-)β2 sites contribute equally to function, making identical β2HQT substitutions at either site should produce similar functional outcomes. Instead, highly differential outcomes within the HS isoform, and between the two isoforms, were observed. In contrast, α4VFL mutation effects were very similar in all positions of both isoforms. Our results indicate that the identity of subunits neighboring the otherwise equivalent α4(+)/(-)β2 agonist sites modifies their contributions to nAChR activation and that E-loop residues are an important contributor to this neighbor effect.

摘要

存在两种α4β2烟碱型乙酰胆碱受体(α4β2-nAChR)亚型,其亚基化学计量分别为(α4)2(β2)3和(α4)3(β2)2,激动剂敏感性分别为高敏(HS)和低敏(LS)。两种亚型均包含一对α4(+)/(-)β2激动剂结合位点。低敏亚型还包含一个独特的α4(+)/(-)α4位点,其激动剂亲和力低于α4(+)/(-)β2位点。然而,保守的α4(+)/(-)β2激动剂结合位点在亚型内及亚型间的相对作用尚未得到研究。我们采用完全连接的亚基串联nAChR方法来表达HS或LS亚型α4β2*-nAChR的纯群体。这种方法还使我们能够在每种亚型背景上对单个亚基界面或其组合进行突变。我们使用这种方法将β2亚基(-)面E环的三个残基系统地突变为其非保守的α4亚基对应残基,反之亦然(分别为β2HQT和α4VFL)。突变型nAChR构建体(以及未修饰的对照)在非洲爪蟾卵母细胞中表达。使用双电极电压钳电生理学测量乙酰胆碱浓度-反应曲线和最大功能。用(125)I-单克隆抗体295结合测量表面表达,并用于定义功能/nAChR。如果α4(+)/(-)β2位点对功能的贡献相等,那么在任一位点进行相同的β2HQT替换应产生相似的功能结果。相反,在高敏亚型内以及两种亚型之间观察到了高度不同的结果。相比之下,α4VFL突变效应在两种亚型的所有位置都非常相似。我们的结果表明,与其他等效的α4(+)/(-)β2激动剂位点相邻的亚基身份会改变它们对nAChR激活的贡献,并且E环残基是这种邻近效应的重要贡献者。

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