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液态水中N-乙酰脯氨酸酰胺的结构:实验测量与数值模拟的红外光谱和振动圆二色光谱

Structure of N-acetylproline amide in liquid water: experimentally measured and numerically simulated infrared and vibrational circular dichroism spectra.

作者信息

Lee Kyung-Koo, Hahn Seungsoo, Oh Kwang-Im, Choi Jin Seok, Joo Cheonik, Lee Hochan, Han Hogyu, Cho Minhaeng

机构信息

Department of Chemistry and Center for Multidimensional Spectroscopy, Division of Chemistry and Molecular Engineering, Korea University, Seoul 136-701, Korea.

出版信息

J Phys Chem B. 2006 Sep 28;110(38):18834-43. doi: 10.1021/jp055846+.

Abstract

A few experimental and theoretical studies on the molecular structure of N-acetylproline amide (AP) in D2O solution have been reported recently. However, there is no consensus of the precise structure of AP in D2O because spectroscopically determined structures and a theoretically simulated one have been found to be different from one another. To determine its aqueous solution structure, IR and vibrational circular dichroism spectra of both L- and D-form AP solutions were measured. Molecular dynamics simulations with two different force fields and density functional theory calculations for the trans and cis rotamers of AP were performed to numerically simulate those spectra. Comparisons between experimentally measured and computationally simulated spectra directly suggest that the AP in water adopts a polyproline II-like conformation and that the force field parameter ff03 in the AMBER 8 suite of programs is more realistic and reliable in predicting molecular structure of AP in water than the ff99 in AMBER 7.

摘要

最近有一些关于D2O溶液中N-乙酰脯氨酸酰胺(AP)分子结构的实验和理论研究报道。然而,对于D2O中AP的精确结构尚无定论,因为通过光谱测定的结构与理论模拟的结构互不相同。为了确定其水溶液结构,测量了L型和D型AP溶液的红外光谱和振动圆二色光谱。利用两种不同的力场进行了分子动力学模拟,并对AP的反式和顺式旋转异构体进行了密度泛函理论计算,以数值模拟这些光谱。实验测量光谱与计算模拟光谱之间的比较直接表明,水中的AP采用类多聚脯氨酸II构象,并且与AMBER 7中的ff99相比,AMBER 8程序套件中的力场参数ff03在预测水中AP的分子结构方面更真实可靠。

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