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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >The conformational behavior and H-bond structure of asparagine: A theoretical and experimental matrix-isolation FT-IR study
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The conformational behavior and H-bond structure of asparagine: A theoretical and experimental matrix-isolation FT-IR study

机译:天冬酰胺的构象行为和H键结构:理论和实验基质分离FT-IR研究

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摘要

Due to the high importance of the structural properties of peptides, the conformational behavior of one of their elementary building blocks, asparagine, has been investigated in this work. Matrix-isolation FT-IR spectroscopy is a suitable technique to investigate the intrinsic properties of small molecules. Asparagine has been subjected to matrix-isolation FT-IR spectroscopy supported with DFT and MP2 calculations. DFT optimization of asparagine resulted in 10 stable conformations with AE_DFR<10 kj.mol. Compared to a previous study, one new conformation has been revealed. Further optimization at the MP2/6-31~+~+G** level resulted in seven conformations with AE_MP<10 kj.mol. A conformation containing the three intramolecular H-bonds, i.e. C=O~SC...HN~BB, C = O~BB...HN~SC and OH~BB...N~BB appeared to be the most stable one at both levels despite the large negative entropy contribution due to these 3 H-bonds. At the sublimation temperature of 353 K, the DFT method predicts four and the MP2 method six conformations to be present in the experimental matrix-isolation spectrum. These conformations have different intramolecular H-bonds, which has allowed to identify at least 4 low energy conformations in the FT-IR spectrum. Detailed comparison between theory and experiment resulted in a mean frequency deviation of 7.6 cm.
机译:由于肽的结构特性的重要性,在这项工作中已研究了其基本组成部分之一天冬酰胺的构象行为。基质分离FT-IR光谱是研究小分子固有性质的合适技术。天冬酰胺已经过DFT和MP2计算支持的基质分离FT-IR光谱分析。天冬酰胺的DFT优化产生了AE_DFR <10 kj.mol的10种稳定构象。与以前的研究相比,已经揭示了一种新的构象。在MP2 / 6-31〜+〜+ G **水平上的进一步优化导致AE_MP <10 kj.mol的七个构象。包含三个分子内H键的构象似乎是最稳定的,即C = O〜SC ... HN〜BB,C = O〜BB ... HN〜SC和OH〜BB ... N〜BB尽管由于这3个H键而产生了巨大的负熵贡献,但在两个水平上均存在一个。在353 K的升华温度下,DFT方法预测出4种构象,而MP2方法预测出6种构象存在于实验基质分离光谱中。这些构象具有不同的分子内氢键,这允许在FT-IR光谱中鉴定至少4个低能构象。理论和实验之间的详细比较导致平均频率偏差为7.6 cm。

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