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阳离子如何改变肽结构。

How cations change peptide structure.

机构信息

Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, 14195 Berlin-Dahlem, Germany.

出版信息

Chemistry. 2013 Aug 19;19(34):11224-34. doi: 10.1002/chem.201204554. Epub 2013 Jul 12.

Abstract

Specific interactions between cations and proteins have a strong impact on peptide and protein structure. Herein, we shed light on the nature of the underlying interactions, especially regarding effects on the polyamide backbone structure. This was done by comparing the conformational ensembles of model peptides in isolation and in the presence of either Li(+) or Na(+) by using state-of-the-art density-functional theory (including van der Waals effects) and gas-phase infrared spectroscopy. These monovalent cations have a drastic effect on the local backbone conformation of turn-forming peptides, by disruption of the hydrogen-bonding networks, thus resulting in severe distortion of the backbone conformations. In fact, Li(+) and Na(+) can even have different conformational effects on the same peptide. We also assess the predictive power of current approximate density functionals for peptide-cation systems and compare to results with those of established protein force fields as well as high-level quantum chemistry calculations (CCSD(T)).

摘要

阳离子与蛋白质之间的特定相互作用对肽和蛋白质结构有很强的影响。在此,我们揭示了潜在相互作用的本质,特别是关于对聚酰胺主链结构影响的本质。这是通过使用最先进的密度泛函理论(包括范德华相互作用)和气相红外光谱,比较模型肽在隔离状态和存在 Li(+)或 Na(+) 时的构象系综来实现的。这些单价阳离子通过破坏氢键网络,对形成转角的肽的局部主链构象产生剧烈影响,从而导致主链构象的严重扭曲。事实上,Li(+) 和 Na(+) 甚至对同一肽可能具有不同的构象影响。我们还评估了当前近似密度泛函在肽-阳离子体系中的预测能力,并将其与成熟的蛋白质力场以及高精度量子化学计算(CCSD(T))的结果进行了比较。

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