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疏水的成对相互作用使α-芋螺毒素MI稳定于肌肉型乙酰胆碱受体结合位点。

Hydrophobic pairwise interactions stabilize alpha-conotoxin MI in the muscle acetylcholine receptor binding site.

作者信息

Bren N, Sine S M

机构信息

Receptor Biology Laboratory, Department of Physiology and Biophysics, Mayo Foundation, Rochester, Minnesota 55905, USA.

出版信息

J Biol Chem. 2000 Apr 28;275(17):12692-700. doi: 10.1074/jbc.275.17.12692.

Abstract

The present work delineates pairwise interactions underlying the nanomolar affinity of alpha-conotoxin MI (CTx MI) for the alpha-delta site of the muscle acetylcholine receptor (AChR). We mutated all non-cysteine residues in CTx MI, expressed the alpha(2)betadelta(2) pentameric form of the AChR in 293 human embryonic kidney cells, and measured binding of the mutant toxins by competition against the initial rate of (125)I-alpha-bungarotoxin binding. The CTx MI mutations P6G, A7V, G9S, and Y12T all decrease affinity for alpha(2)betadelta(2) pentamers by 10,000-fold. Side chains at these four positions localize to a restricted region of the known three-dimensional structure of CTx MI. Mutations of the AChR reveal major contributions to CTx MI affinity by Tyr-198 in the alpha subunit and by the selectivity determinants Ser-36, Tyr-113, and Ile-178 in the delta subunit. By using double mutant cycles analysis, we find that Tyr-12 of CTx MI interacts strongly with all three selectivity determinants in the delta subunit and that deltaSer-36 and deltaIle-178 are interdependent in stabilizing Tyr-12. We find additional strong interactions between Gly-9 and Pro-6 in CTx MI and selectivity determinants in the delta subunit, and between Ala-7 and Pro-6 and Tyr-198 in the alpha subunit. The overall results reveal the orientation of CTx MI when bound to the alpha-delta interface and show that primarily hydrophobic interactions stabilize the complex.

摘要

本研究阐述了α-芋螺毒素MI(CTx MI)对肌肉乙酰胆碱受体(AChR)α-δ位点具有纳摩尔亲和力的成对相互作用。我们对CTx MI中所有非半胱氨酸残基进行了突变,在293人胚肾细胞中表达AChR的α(2)βδ(2)五聚体形式,并通过与(125)I-α-银环蛇毒素结合的初始速率竞争来测量突变毒素的结合情况。CTx MI的突变P6G、A7V、G9S和Y12T均使对α(2)βδ(2)五聚体的亲和力降低了10000倍。这四个位置的侧链定位于CTx MI已知三维结构的一个受限区域。AChR的突变揭示了α亚基中的Tyr-198以及δ亚基中的选择性决定簇Ser-36、Tyr-113和Ile-178对CTx MI亲和力的主要贡献。通过双突变循环分析,我们发现CTx MI的Tyr-12与δ亚基中的所有三个选择性决定簇强烈相互作用,并且δSer-36和δIle-178在稳定Tyr-12方面相互依赖。我们还发现CTx MI中的Gly-9与δ亚基中的选择性决定簇之间,以及Ala-7与α亚基中的Pro-6和Tyr-198之间存在额外的强相互作用。总体结果揭示了CTx MI与α-δ界面结合时的取向,并表明主要是疏水相互作用稳定了该复合物。

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