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Empirical modeling of the peptide amide I band IR intensity in water solution

机译:水溶液中酰胺酰胺Ⅰ带红外强度的经验模型

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摘要

An emirical correction to amide group vacuum force fields is proposed in order to account for the influence of the aqueous environment on the C=O stretching vibration (amide I).The dependence of the vibrational absorption spectral intensities on the geometry is studied with density functional theory methods at the BPW91/6-31G~** level for N-methyl acetamide interacting with a variety of of water molecule clusters hydrogen bonded to it.These cluster results are then generalized to form an empirical correction for the force field and dipole intensity of the amide I (C=O stretch) mode.As an example of its extension,the method is applied to a larger (beta-turn model) peptide molecule jand its IR spectrum is simulated.The method provides realistic bandwidths for the amide I bands if the spectra are generated from the ab initio force field corrected by perturbation from an ensemble of solvent geometries obtained using molecular dynamic simulations.
机译:为了解决水性环境对C = O拉伸振动(酰胺I)的影响,提出了对酰胺基真空力场的电子校正。利用密度泛函研究了振动吸收光谱强度对几何形状的依赖性BPW91 / 6-31G〜**级的理论方法用于N-甲基乙酰胺与氢键结合的各种水分子簇相互作用,然后将这些簇结果推广以形成对力场和偶极强度的经验校正作为酰胺I(C = O拉伸)模式的扩展。作为扩展实例,该方法适用于较大的(β-转弯模型)肽分子,并模拟了其红外光谱。该方法为酰胺I提供了实际的带宽如果光谱是由从头算力场生成的,则该谱带是通过使用分子动力学模拟获得的溶剂几何形状整体的扰动校正后的从头算力场产生的。

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