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首页> 外文期刊>The Journal of Chemical Physics >Modeling the amide I bands of small peptides
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Modeling the amide I bands of small peptides

机译:模拟小肽的酰胺I条带

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In this paper different floating oscillator models for describing the amide I band of peptides and proteins are compared with density functional theory (DFT) calculations. Models for the variation of the frequency shifts of the oscillators and the nearest-neighbor coupling between them with respect to conformation are constructed from DFT normal mode calculations on N-acetyl-glycine-N-'-methylamide. The calculated frequencies are compared with those obtained from existing electrostatic models. Furthermore, a new transition charge coupling model is presented. We suggest a model which combines the nearest-neighbor maps with long-range interactions accounted for using the new transition charge model and an existing electrostatic map for long-range interaction frequency shifts. This model and others, which account for the frequency shifts by electrostatic maps exclusively, are tested by comparing the predicted IR spectra with those from DFT calculations on the pentapeptide [Leu]-enkephalin. The new model described above gives the best agreement and, after a systematic blueshift is accounted for, reproduces the DFT frequencies to within 3.5 cm(-1). The correlation of the intensities for this model with intensities from DFT calculations is 0.94. (c) 2006 American Institute of Physics.
机译:在本文中,用于描述肽和蛋白质的酰胺I条带的不同浮动振荡器模型与密度泛函理论(DFT)计算进行了比较。根据对N-乙酰基-甘氨酸-N -'-甲基酰胺的DFT正模计算,构造了振荡器的频移变化以及它们之间的构象之间的最邻近耦合的模型。将计算出的频率与从现有静电模型获得的频率进行比较。此外,提出了一种新的过渡电荷耦合模型。我们建议一个模型,该模型将使用最近的跃迁电荷模型和现有的静电图进行的远距离相互作用与最近邻图和长距离相互作用结合起来,以进行长距离相互作用的频移。通过比较预测的红外光谱与五肽[Leu]-脑啡肽的DFT计算得出的红外光谱,来测试该模型和其他模型(仅通过静电图解决频移)。上述新模型给出了最佳的协议,并且在考虑了系统的蓝移之后,将DFT频率重现到3.5 cm(-1)之内。该模型的强度与DFT计算得出的强度之间的相关性为0.94。 (c)2006年美国物理研究所。

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