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α-银环蛇毒素及其与神经元烟碱型乙酰胆碱受体α7亚基上主要α-神经毒素结合序列复合物的核磁共振结构分析。

NMR structural analysis of alpha-bungarotoxin and its complex with the principal alpha-neurotoxin-binding sequence on the alpha 7 subunit of a neuronal nicotinic acetylcholine receptor.

作者信息

Moise Leonard, Piserchio Andrea, Basus Vladimir J, Hawrot Edward

机构信息

Department of Molecular Pharmacology, Brown University, Providence, Rhode Island 02912, USA.

出版信息

J Biol Chem. 2002 Apr 5;277(14):12406-17. doi: 10.1074/jbc.M110320200. Epub 2002 Jan 14.

Abstract

We report a new, higher resolution NMR structure of alpha-bungarotoxin that defines the structure-determining disulfide core and beta-sheet regions. We further report the NMR structure of the stoichiometric complex formed between alpha-bungarotoxin and a recombinantly expressed 19-mer peptide ((178)IPGKRTESFYECCKEPYPD(196)) derived from the alpha7 subunit of the chick neuronal nicotinic acetylcholine receptor. A comparison of these two structures reveals binding-induced stabilization of the flexible tip of finger II in alpha-bungarotoxin. The conformational rearrangements in the toxin create an extensive binding surface involving both sides of the alpha7 19-mer hairpin-like structure. At the contact zone, Ala(7), Ser(9), and Ile(11) in finger I and Arg(36), Lys(38), Val(39), and Val(40) in finger II of alpha-bungarotoxin interface with Phe(186), Tyr(187), Glu(188), and Tyr(194) in the alpha7 19-mer underscoring the importance of receptor aromatic residues as critical neurotoxin-binding determinants. Superimposing the structure of the complex onto that of the acetylcholine-binding protein (1I9B), a soluble homologue of the extracellular domain of the alpha7 receptor, places alpha-bungarotoxin at the peripheral surface of the inter-subunit interface occluding the agonist-binding site. The disulfide-rich core of alpha-bungarotoxin is suggested to be tilted in the direction of the membrane surface with finger II extending into the proposed ligand-binding cavity.

摘要

我们报道了一种新的、分辨率更高的α-银环蛇毒素核磁共振结构,该结构确定了决定结构的二硫键核心和β-折叠区域。我们还报道了α-银环蛇毒素与源自鸡神经元烟碱型乙酰胆碱受体α7亚基的重组表达19肽((178)IPGKRTESFYECCKEPYPD(196))形成的化学计量复合物的核磁共振结构。这两种结构的比较揭示了α-银环蛇毒素中手指II柔性末端的结合诱导稳定性。毒素中的构象重排产生了一个广泛的结合表面涉及α7 19肽发夹样结构的两侧区域。在接触区域α-银环蛇毒素手指I中的Ala(7)、Ser(9)和Ile(11)以及手指II中的Arg(36)、Lys(38)、Val(39)和Val(40)与α7 19肽中的Phe(186)、Tyr(187)、Glu(188)和Tyr(第194位)相互作用,突出了受体芳香族残基作为关键神经毒素结合决定因素的重要性。将复合物的结构与乙酰胆碱结合蛋白(1I9B)(α7受体细胞外结构域的可溶性同源物)的结构叠加,α-银环蛇毒素位于亚基间界面的外周表面,封闭了激动剂结合位点。α-银环蛇毒素富含二硫键的核心被认为向膜表面方向倾斜,手指II延伸到拟议的配体结合腔中。

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