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芋螺毒素的分子工程:环大小对α-芋螺毒素结构和功能的重要性。

Molecular engineering of conotoxins: the importance of loop size to alpha-conotoxin structure and function.

作者信息

Jin Ai-Hua, Daly Norelle L, Nevin Simon T, Wang Ching-I A, Dutertre Sebastien, Lewis Richard J, Adams David J, Craik David J, Alewood Paul F

机构信息

Institute for Molecular Bioscience, University of Queensland, Brisbane, QLD 4072 Australia.

出版信息

J Med Chem. 2008 Sep 25;51(18):5575-84. doi: 10.1021/jm800278k.

Abstract

Alpha-conotoxins are competitive antagonists of nicotinic acetylcholine receptors (nAChRs). The majority of currently characterized alpha-conotoxins have a 4/7 loop size, and the major features of neuronal alpha-conotoxins include a globular disulfide connectivity and a helical structure centered around the third of their four cysteine residues. In this study, a novel "molecular pruning" approach was undertaken to define the relationship between loop size, structure, and function of alpha-conotoxins. This involved the systematic truncation of the second loop in the alpha-conotoxin [A10L]PnIA [4/7], a potent antagonist of the alpha7 nAChR. The penalty for truncation was found to be decreased conformational stability and increased susceptibility to disulfide bond scrambling. Truncation down to 4/4[A10L]PnIA maintained helicity and did not significantly reduce electrophysiological activity at alpha7 nAChRs, whereas 4/3[A10L]PnIA lost both alpha7 nAChR activity and helicity. In contrast, all truncated analogues lost approximately 100-fold affinity at the AChBP, a model protein for the extracellular domain of the nAChR. Docking simulations identified several hydrogen bonds lost upon truncation that provide an explanation for the reduced affinities observed at the alpha7 nAChR and AChBP.

摘要

α-芋螺毒素是烟碱型乙酰胆碱受体(nAChRs)的竞争性拮抗剂。目前已鉴定的大多数α-芋螺毒素具有4/7环大小,神经元α-芋螺毒素的主要特征包括球状二硫键连接和以其四个半胱氨酸残基中的第三个为中心的螺旋结构。在本研究中,采用了一种新颖的“分子修剪”方法来确定α-芋螺毒素的环大小、结构和功能之间的关系。这涉及对α-芋螺毒素[A10L]PnIA [4/7](α7 nAChR的强效拮抗剂)的第二个环进行系统截短。发现截短的代价是构象稳定性降低和对二硫键重排的敏感性增加。截短至4/4[A10L]PnIA可保持螺旋性,并且不会显著降低α7 nAChRs的电生理活性,而4/3[A10L]PnIA则同时丧失了α7 nAChR活性和螺旋性。相比之下,所有截短的类似物在AChBP(nAChR细胞外结构域的模型蛋白)上的亲和力都降低了约100倍。对接模拟确定了截短后失去的几个氢键,这为在α7 nAChR和AChBP上观察到的亲和力降低提供了解释。

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