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首页> 外文期刊>Angewandte Chemie >Specific Ion Effects on an Oligopeptide: Bidentate Binding Matters for the Guanidinium Cation
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Specific Ion Effects on an Oligopeptide: Bidentate Binding Matters for the Guanidinium Cation

机译:对寡肽的特异性离子效应:胍酰胺阳离子的二齿结合物质

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摘要

Ion-protein interactions are important for protein function, yet challenging to rationalize owing to the multitude of possible ion-protein interactions. To explore specific ion effects on protein binding sites, we investigate the interaction of different salts with the zwitterionic peptide triglycine in solution. Dielectric spectroscopy shows that salts affect the peptide's reorientational dynamics, with a more pronounced effect for denaturing cations (Li+, guanidinium (Gdm(+))) and anions (I-, SCN-) than for weakly denaturing ones (K+, Cl-). The effects of Gdm(+) and Li+ were found to be comparable. Molecular dynamics simulations confirm the enhanced binding of Gdm(+) and Li+ to triglycine, yet with a different binding geometry: While Li+ predominantly binds to the C-terminal carboxylate group, bidentate binding to the terminus and the nearest amide is particularly important for Gdm(+). This bidentate binding markedly affects peptide conformation, and may help to explain the high denaturation activity of Gdm(+) salts.
机译:离子蛋白相互作用对于蛋白质功能很重要,但由于多种可能的离子蛋白质相互作用而挑战性能。为了探索对蛋白质结合位点的特异性离子效应,我们研究不同盐与溶液中两性离子肽三甘甘油的相互作用。介电光谱表明,盐影响肽的重新定位动态,对变性阳离子(Li +,胍(Gdm(+)))和阴离子(I-,ScN-)具有比弱变性(K +,Cl-)更明显的效果。发现GDM(+)和Li +的影响是可比的。分子动力学模拟证实了GDM(+)和Li +的增强结合,但仍然具有不同的结合几何形状:而Li +主要与C末端羧酸甲酸盐基团结合,与末端的双齿结合,最接近的酰胺对于GDM尤为重要(+)。这种双齿结合显着影响肽构象,并且可以有助于解释GDM(+)盐的高变性活性。

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