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解决阿尔法-Conotoxin 折叠问题:高效硒导向的在树脂上生成更有效和稳定的烟碱型乙酰胆碱受体拮抗剂。

Solving the alpha-conotoxin folding problem: efficient selenium-directed on-resin generation of more potent and stable nicotinic acetylcholine receptor antagonists.

机构信息

Institute for Molecular Bioscience, Division of Chemistry and Structural Biology, The University of Queensland, Brisbane, Queensland 4072, Australia.

出版信息

J Am Chem Soc. 2010 Mar 17;132(10):3514-22. doi: 10.1021/ja910602h.

Abstract

Alpha-conotoxins are tightly folded miniproteins that antagonize nicotinic acetylcholine receptors (nAChR) with high specificity for diverse subtypes. Here we report the use of selenocysteine in a supported phase method to direct native folding and produce alpha-conotoxins efficiently with improved biophysical properties. By replacing complementary cysteine pairs with selenocysteine pairs on an amphiphilic resin, we were able to chemically direct all five structural subclasses of alpha-conotoxins exclusively into their native folds. X-ray analysis at 1.4 A resolution of alpha-selenoconotoxin PnIA confirmed the isosteric character of the diselenide bond and the integrity of the alpha-conotoxin fold. The alpha-selenoconotoxins exhibited similar or improved potency at rat diaphragm muscle and alpha3beta4, alpha7, and alpha1beta1 deltagamma nAChRs expressed in Xenopus oocytes plus improved disulfide bond scrambling stability in plasma. Together, these results underpin the development of more stable and potent nicotinic antagonists suitable for new drug therapies, and highlight the application of selenocysteine technology more broadly to disulfide-bonded peptides and proteins.

摘要

α-芋螺毒素是紧密折叠的小蛋白,对不同亚型的烟碱型乙酰胆碱受体 (nAChR) 具有高度特异性的拮抗作用。在这里,我们报告了在支持相方法中使用硒代半胱氨酸来指导天然折叠,并有效地生产具有改善的生物物理性质的α-芋螺毒素。通过在亲脂性树脂上将互补的半胱氨酸对替换为硒代半胱氨酸对,我们能够将所有五个结构亚类的α-芋螺毒素化学地专门引导到其天然折叠中。在 1.4 A 分辨率下对α-硒代芋螺毒素 PnIA 的 X 射线分析证实了二硒键的等电子性质和α-芋螺毒素折叠的完整性。α-硒代芋螺毒素在大鼠膈肌肌肉和表达于非洲爪蟾卵母细胞中的α3β4、α7 和α1β1 deltagamma nAChR 上表现出相似或改善的效力,并且在血浆中的二硫键错配稳定性得到改善。总之,这些结果为开发更稳定和有效的烟碱型拮抗剂奠定了基础,适用于新的药物治疗方法,并更广泛地强调了硒代半胱氨酸技术在二硫键结合肽和蛋白质中的应用。

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