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氢键介导的甘氨酸二聚体阴离子盐桥结构的稳定作用。

Hydrogen bond mediated stabilization of the salt bridge structure for the glycine dimer anion.

作者信息

Heiles S, Cooper Richard J, Berden Giel, Oomens Jos, Williams Evan R

机构信息

Department of Chemistry, University of California, B42 Hildebrand Hall, Berkeley, CA 94720, USA.

Radboud University Nijmegen, Institute for Molecules and Materials, FELIX Laboratory, Toernooiveld 7c, 6525 ED Nijmegen, The Netherlands.

出版信息

Phys Chem Chem Phys. 2015 Nov 11;17(45):30642-7. doi: 10.1039/c5cp06120b.

Abstract

The formation of a salt bridge in deprotonated glycine dimer anions in a solvent-free environment is investigated using both infrared multiple photon dissociation spectroscopy between 600 and 1800 cm(-1) and theory. The zwitterionic and nonzwitterionic forms of glycine in this complex are computed to be nearly iso-energetic, yet predominantly the zwitterionic form is observed experimentally. The zwitterion stability is attributed to both the Coulombic attraction and the high stabilization from intramolecular hydrogen bonding that drives the energetic cost of proton transfer in a solvent free environment. These results show that there is a fine balance between the stabilities of these two forms of the anion. Elucidating the role of intrinsic factors, such as hydrogen bonding, can lead to a better understanding of the stabilities of salt bridges in the interiors of large proteins or at protein interfaces.

摘要

在无溶剂环境中,利用600至1800厘米⁻¹之间的红外多光子解离光谱和理论,对去质子化甘氨酸二聚体阴离子中盐桥的形成进行了研究。计算得出该复合物中甘氨酸的两性离子形式和非两性离子形式能量几乎相等,但实验观察到主要是两性离子形式。两性离子的稳定性归因于库仑吸引力以及分子内氢键的高度稳定作用,这种氢键作用在无溶剂环境中推动了质子转移的能量消耗。这些结果表明,这两种阴离子形式的稳定性之间存在微妙的平衡。阐明诸如氢键等内在因素的作用,有助于更好地理解大蛋白质内部或蛋白质界面处盐桥的稳定性。

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