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首页> 外文期刊>The Journal of Chemical Physics >Assessment of amide I spectroscopic maps for a gas-phase peptide using IR-UV double-resonance spectroscopy and density functional theory calculations
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Assessment of amide I spectroscopic maps for a gas-phase peptide using IR-UV double-resonance spectroscopy and density functional theory calculations

机译:使用IR-UV双共振光谱和密度泛函理论计算评估气相肽的酰胺I光谱图

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摘要

The spectroscopy of amide I vibrations has become a powerful tool for exploring protein structure and dynamics. To help with spectral interpretation, it is often useful to perform molecular dynamics (MD) simulations. To connect spectroscopic experiments to simulations in an efficient manner, several researchers have proposed "maps," which relate observables in classical MD simulations to quantum spectroscopic variables. It can be difficult to discern whether errors in the theoretical results (compared to experiment) arise from inaccuracies in the MD trajectories or in the maps themselves. In this work, we evaluate spectroscopic maps independently from MD simulations by comparing experimental and theoretical spectra for a single conformation of the alpha-helical model peptide Ac-Phe-(Ala)(5)-Lys-H+ in the gas phase. Conformation-specific experimental spectra are obtained for the unlabeled peptide and for several singly and doubly C-13-labeled variants using infrared-ultraviolet double-resonance spectroscopy, and these spectra are found to be well-modeled by density functional theory (DFT) calculations at the B3LYP/6-31G** level. We then compare DFT results for the deuterated and (CO)-C-13-O-18-labeled peptide with those from spectroscopic maps developed and used previously by the Skinner group. We find that the maps are typically accurate to within a few cm(-1) for both frequencies and couplings, having larger errors only for the frequencies of terminal amides. (C) 2014 AIP Publishing LLC.
机译:酰胺I振动的光谱学已成为探索蛋白质结构和动力学的有力工具。为了帮助进行光谱解释,通常执行分子动力学(MD)模拟非常有用。为了有效地将光谱实验与模拟联系起来,一些研究人员提出了“映射”,将经典MD模拟中的可观测值与量子光谱变量相关联。很难辨别出理论结果(与实验相比)的错误是由于MD轨迹或地图本身的不准确引起的。在这项工作中,我们通过比较气相中α-螺旋模型肽Ac-Phe-(Ala)(5)-Lys-H +的单一构型的实验和理论光谱,独立于MD模拟评估光谱图。使用红外-紫外线双共振光谱法获得了未标记肽以及几个单双C-13标记变体的构象特异性实验光谱,发现这些光谱通过密度泛函理论(DFT)计算得到了很好的建模在B3LYP / 6-31G **级别。然后,我们将氘代和(CO)-C-13-O-18标记的肽的DFT结果与Skinner研究小组先前开发和使用的光谱图进行了比较。我们发现,对于频率和耦合,图谱通常都精确到几厘米(-1)以内,仅对于末端酰胺的频率具有较大的误差。 (C)2014 AIP Publishing LLC。

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