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氯化胍水溶液的结构。

The structure of aqueous guanidinium chloride solutions.

作者信息

Mason Philip E, Neilson George W, Enderby John E, Saboungi Marie-Louise, Dempsey Christopher E, MacKerell Alexander D, Brady John W

机构信息

Contribution from the Department of Food Science, Stocking Hall, Cornell University, Ithaca, NY 14853, USA.

出版信息

J Am Chem Soc. 2004 Sep 22;126(37):11462-70. doi: 10.1021/ja040034x.

Abstract

The combination of neutron diffraction with isotopic substitution (NDIS) experiments and molecular dynamics (MD) simulations to characterize the structuring in an aqueous solution of the denaturant guanidinium chloride is described. The simulations and experiments were carried out at a concentration of 3 m at room temperature, allowing for an examination of any propensity for ion association in a realistic solution environment. The simulations satisfactorily reproduced the principal features of the neutron scattering and indicate a bimodal hydration of the guanidinium ions, with the N-H groups making well-ordered hydrogen bonds in the molecular plane, but with the planar faces relatively deficient in interactions with water. The most striking feature of these solutions is the rich ion-ion ordering observed around the guanidinium ion in the simulations. The marked tendency of the guanidinium ions to stack parallel to their water-deficient surfaces indicates that the efficiency of this ion as a denaturant is due to its ability to simultaneously interact favorably with both water and hydrophobic side chains of proteins.

摘要

描述了结合中子衍射与同位素取代(NDIS)实验以及分子动力学(MD)模拟来表征变性剂氯化胍水溶液中的结构。模拟和实验在室温下3 m的浓度下进行,以便在实际溶液环境中检查离子缔合的任何倾向。模拟结果令人满意地再现了中子散射的主要特征,并表明胍离子存在双峰水合作用,其中N-H基团在分子平面内形成有序的氢键,但平面表面与水的相互作用相对较少。这些溶液最显著的特征是在模拟中观察到胍离子周围丰富的离子-离子有序排列。胍离子明显倾向于平行于其缺水表面堆叠,这表明该离子作为变性剂的效率归因于其能够同时与蛋白质的水和疏水侧链进行有利的相互作用。

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