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首页> 外文期刊>The Journal of Chemical Physics >Solvent and conformation dependence of amide i vibrations in peptides and proteins containing proline
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Solvent and conformation dependence of amide i vibrations in peptides and proteins containing proline

机译:含脯氨酸的肽和蛋白质中酰胺i振动的溶剂和构象依赖性

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We present a mixed quantum-classical model for studying the amide I vibrational dynamics (predominantly CO stretching) in peptides and proteins containing proline. There are existing models developed for determining frequencies of and couplings between the secondary amide units. However, these are not applicable to proline because this amino acid has a tertiary amide unit. Therefore, a new parametrization is required for infrared-spectroscopic studies of proteins that contain proline, such as collagen, the most abundant protein in humans and animals. Here, we construct the electrostatic and dihedral maps accounting for solvent and conformation effects on frequency and coupling for the proline unit. We examine the quality and the applicability of these maps by carrying out spectral simulations of a number of peptides with proline in D _2O and compare with experimental observations.
机译:我们提出了一种混合量子经典模型,用于研究含有脯氨酸的肽和蛋白质中酰胺I的振动动力学(主要是CO拉伸)。已经开发了用于确定仲酰胺单元的频率和它们之间的偶合的模型。然而,这些不适用于脯氨酸,因为该氨基酸具有叔酰胺单元。因此,红外光谱研究含脯氨酸的蛋白质(例如胶原蛋白)是人类和动物中最丰富的蛋白质,需要进行新的参数化。在这里,我们构建了静电和二面图,说明了脯氨酸单元的溶剂和构象对频率和耦合的影响。我们通过对D _2O中脯氨酸的许多肽段进行光谱模拟,检查这些图谱的质量和适用性,并与实验观察结果进行比较。

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