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Amide I modes of tripeptides: Hessian matrix reconstruction and isotope effects

机译:三肽的酰胺I模式:Hessian矩阵重建和同位素效应

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摘要

For seven representative tripeptide conformations, we carried out ab initio geometry optimizations and vibrational analyses. By using the Hessian matrix reconstruction method developed in the present paper, both the diagonal and off-diagonal coupling force constants of a given tripeptide were calculated and the relationship between the three-dimensional conformation and local amide I mode frequency was discussed. Isotope labeling effects on both the amide I local and normal modes were elucidated. It was found that the C=O bond length of a given peptide, which represents the structural distortion induced by neighboring peptides, is linearly proportional to the local amide I mode frequency. A theoretical model for predicting the local amide I mode frequencies is discussed and compared with the ab initio calculation results. (C) 2003 American Institute of Physics. [References: 47]
机译:对于七个代表性的三肽构象,我们进行了从头算几何优化和振动分析。利用本文开发的Hessian矩阵重建方法,计算了给定三肽的对角和非对角偶合力常数,并探讨了三维构象与局部酰胺I模式频率之间的关系。阐明了同位素标记对酰胺I局部和正常模式的影响。发现给定肽的C = O键长度,其代表由相邻肽诱导的结构变形,与本地酰胺I模式频率成线性比例。讨论了预测局部酰胺I模式频率的理论模型,并将其与从头算计算结果进行了比较。 (C)2003美国物理研究所。 [参考:47]

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