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具有增强溶解性和配体结合特性的人α7烟碱型乙酰胆碱受体胞外域突变体的设计与表达

Design and expression of human alpha7 nicotinic acetylcholine receptor extracellular domain mutants with enhanced solubility and ligand-binding properties.

作者信息

Zouridakis Marios, Zisimopoulou Paraskevi, Eliopoulos Elias, Poulas Konstantinos, Tzartos Socrates J

机构信息

Department of Biochemistry, Hellenic Pasteur Institute, 127, GR11521, Athens, Greece.

出版信息

Biochim Biophys Acta. 2009 Feb;1794(2):355-66. doi: 10.1016/j.bbapap.2008.11.002. Epub 2008 Nov 19.

Abstract

In order to facilitate structural studies of the extracellular domain (ECD) of human alpha7 nicotinic acetylcholine receptor (nAChR), we designed several mutants, since the wild-type-ECD forms large oligomers and microaggregates, and expressed them in the yeast Pichia pastoris. Mutant design was based on a 3D model of human alpha7-nAChR-ECD, constructed using as templates the X-ray crystal structure of the homologous acetylcholine-binding protein (AChBP) and the electron microscopy structure of the Torpedo alpha-nAChR-ECD. At least one mutant, mut10, carrying six single-point mutations (Phe3Tyr, Val69Thr, Cys116Ser, Ile165Thr, Val177Thr, Phe187Tyr) and the replacement of its Cys-loop with the corresponding and more hydrophilic AChBP Cys-loop, was expressed with a 4-fold higher expression yield (1.2 mg/L) than the wild-type alpha7-ECD, existing exclusively as a soluble oligomeric, probably pentameric, form, at concentrations up to at least 10 mg/mL, as judged by gel filtration and dynamic light scattering. This mutant displayed a significantly improved (125)I-alpha-bungarotoxin-binding affinity (K(d)=24 nM) compared to the wild-type-ECD (K(d)=70 nM), the binding being inhibited by unlabelled alpha-bungarotoxin, d-tubocurarine or nicotine (K(i) of 21.5 nM, 127 microM and 17.5 mM, respectively). Circular dichroism studies of mut10 revealed (a) a similar secondary structure composition ( approximately 5% alpha-helix, approximately 45% beta-sheet) to that of the AChBP, Torpedo alpha-nAChR-ECD, and mouse alpha1-nAChR-ECD, (b) a well-defined tertiary structure and (c) binding of small cholinergic ligands at micromolar concentrations. Furthermore, electron microscopy showed well-assembled, probably pentameric, particles of mut10. Finally, since deglycosylation did not alter its solubility or ligand-binding properties, mut10, in either its glycosylated or deglycosylated form, is a promising alpha7-ECD mutant for structural studies, useful for the rational drug design to treat alpha7-nAChR-related diseases.

摘要

为了便于对人α7烟碱型乙酰胆碱受体(nAChR)的细胞外结构域(ECD)进行结构研究,我们设计了几种突变体,因为野生型ECD会形成大的寡聚体和微聚集体,并在毕赤酵母中进行表达。突变体设计基于人α7-nAChR-ECD的三维模型,该模型以同源乙酰胆碱结合蛋白(AChBP)的X射线晶体结构和电鳐α-nAChR-ECD的电子显微镜结构为模板构建。至少有一个突变体mut10,携带六个单点突变(Phe3Tyr、Val69Thr、Cys116Ser、Ile165Thr、Val177Thr、Phe187Tyr),并用相应的更具亲水性的AChBP半胱氨酸环取代其半胱氨酸环,其表达产量比野生型α7-ECD高4倍(1.2 mg/L),通过凝胶过滤和动态光散射判断,在浓度至少为10 mg/mL时,它仅以可溶性寡聚体(可能是五聚体)形式存在。与野生型ECD(K(d)=70 nM)相比,该突变体表现出显著提高的(125)I-α-银环蛇毒素结合亲和力(K(d)=24 nM),未标记的α-银环蛇毒素、d-筒箭毒碱或尼古丁可抑制其结合(K(i)分别为21.5 nM、127 μM和17.5 mM)。mut10的圆二色性研究表明:(a)其二级结构组成(约5%的α-螺旋,约45%的β-折叠)与AChBP、电鳐α-nAChR-ECD和小鼠α1-nAChR-ECD相似;(b)具有明确的三级结构;(c)能结合微摩尔浓度的小胆碱能配体。此外,电子显微镜显示mut10颗粒组装良好,可能为五聚体。最后,由于去糖基化不改变其溶解性或配体结合特性,mut10无论是糖基化形式还是去糖基化形式,都是用于结构研究的有前景的α7-ECD突变体,有助于治疗α7-nAChR相关疾病的合理药物设计。

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