首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Correlation between the hydrogen-bond structures and the C=O stretching frequencies of carboxylic acids as studied by density functional theory calculations: Theoretical basis for interpretation of infrared bands of carboxylic groups in proteins
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Correlation between the hydrogen-bond structures and the C=O stretching frequencies of carboxylic acids as studied by density functional theory calculations: Theoretical basis for interpretation of infrared bands of carboxylic groups in proteins

机译:通过密度泛函理论计算研究的氢键结构与羧酸的C = O拉伸频率之间的相关性:解释蛋白质中羧基红外波段的理论基础

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摘要

Carboxylic groups (COOH) of Asp and Glu side chains often function as key components in enzymatic reactions, and identifying their H-bond structures in the active sites is essential for understanding the reaction mechanisms. In this study, the correlation between the H-bond structures and the C=O stretching (vC=O) frequencies of COOH groups was studied using density functional theory calculations. The vC=O frequencies and their shifts upon OH deuteration were calculated. for model complexes of acetic acid and propionic acid H bonded at different sites with various compounds. Calculation results together with some experimental data showed that, upon direct H bonding at the C=O group, the vC=O frequencies downshift from the free value (1770-1780 cm(-1) in an Ar matrix) to 1745-1760 cm(-1), while H bonding at the OH hydrogen induce even larger downshifts to provide the frequencies at 1720-1745 cm(-1). In contrast, when the COH oxygen is H-bonded, the vC=O frequencies upshift to 1785-1800 cm(-1). In double and multiple H-bond forms, H-bonding effects at individual sites are basically additive, and complexes in which the C=O and the OH hydrogen are simultaneously H bonded exhibit significantly low vC=O frequencies at 1725-1700 cm(-1), while complexes H bonded at the oxygen of the COH in addition to either at the C=O or the OH hydrogen exhibit medium frequencies of 1740-1765 cm(-1). The vC=O frequencies linearly correlate with the C=O lengths, which are changed by H bonding at different sites. Upon OH deuteration, all the complexes showed vC=O downshifts mostly by similar to 10 cm(-1) and in some cases as large as similar to 20 cm(-1), and hence deuteration-induced downshifts can be a good indicator, irrespective of H-bond forms, for assignments of the vC=O bands of carboxylic groups. The results in this study provide the criteria for determining the H-bond structures of Asp and Glu side chains in proteins using their vC=O bands in Fourier transform infrared spectra.
机译:Asp和Glu侧链的羧基(COOH)通常在酶促反应中起关键作用,识别活性位点的H键结构对于理解反应机理至关重要。在这项研究中,使用密度泛函理论计算研究了CO键基团的H键结构与C = O拉伸(vC = O)频率之间的相关性。计算了vC = O频率及其在OH氘化时的位移。用于乙酸和丙酸H在不同位点与各种化合物键合的模型配合物。计算结果和一些实验数据表明,在C = O组进行直接氢键键合后,vC = O频率从自由值(在Ar矩阵中为1770-1780 cm(-1))下降到1745-1760 cm (-1),而在氢氢键处的氢键会引起更大的降档,从而提供1720-1745 cm(-1)处的频率。相反,当COH氧与H键合时,vC = O频率会上升到1785-1800 cm(-1)。在双氢键和多氢键形式中,单个位点的氢键作用基本上是加和的,其中C = O和OH氢同时氢键的配合物在1725-1700 cm(-)处具有很低的vC = O频率1),而除了在C = O或OH氢以外,在COH的氧上键合的配合物H的中频为1740-1765 cm(-1)。 vC = O频率与C = O长度线性相关,而C = O长度则通过在不同位置进行H键结合而改变。在OH氘化后,所有复合物均显示vC = O下移主要类似于10 cm(-1),在某些情况下最大类似于20 cm(-1),因此,氘诱导的下移可以是一个很好的指标,不管氢键的形式如何,羧基的vC = O谱带的分配。这项研究的结果提供了使用傅立叶变换红外光谱中的vC = O谱带确定蛋白质中Asp和Glu侧链的H键结构的标准。

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