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Nature of structural inhomogeneities on folding a helix and their influence on spectral measurements.

机译:折叠螺旋时结构不均匀的性质及其对光谱测量的影响。

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摘要

Extensive conformational sampling and calculations of vibrational coupling provide a quantitative basis for the structurally inhomogeneous spectra of the amide unit in aqueous solutions containing folded and unfolded state distributions of helices. Replica exchange molecular dynamics simulations of the capped helical peptide, AA(AAKAA)(3)AAY, is carried out over a range of temperatures, where the system populates the folded and unfolded states. This sampling defines a set of ensembles that characterizes the conformational variability for configurations identified by their fraction of helical content. The effects of hydrogen bonding, both internal and external (with water), and the coupling between amide-I modes are computed as a function of temperature and helical content. End-to-end distance and coupling distributions are also computed. The solvent H-bonding, which is present at all temperatures, shifts the amide-I band toward lower frequency compared with the unsolvated band. Upon thermal denaturation of the peptide, the amide-I band shifts to higher frequency because the increase in solvent H-bonding fails to compensate for the loss in internal (helical) H-bonds. The loss of uniformity of the mode coupling along the helix at higher temperatures accounts for the well-known thermal broadening of the amide IR spectrum. The calculated inhomogeneities of segments of the peptide predict experimental properties of isotope-edited helices.
机译:广泛的构象采样和振动耦合计算为含有折叠和未折叠螺旋分布的水溶液中酰胺单元的结构不均匀光谱提供了定量基础。在一定温度范围内进行封端螺旋肽AA(AAKAA)(3)AAY的仿制交换分子动力学模拟,在该温度范围内,系统填充折叠状态和未折叠状态。该采样定义了一组合奏,这些合奏表征了由其螺旋含量的分数所标识的构象的构象变异性。氢键的影响,包括内部和外部(与水),以及酰胺-I模式之间的偶联,都是作为温度和螺旋含量的函数进行计算的。还计算了端到端距离和耦合分布。在所有温度下均存在的溶剂H键使酰胺I谱带比未溶剂化的谱带向更低的频率移动。肽热变性后,由于溶剂氢键的增加无法补偿内部(螺旋)氢键的损失,酰胺-I谱带移至更高的频率。在较高温度下沿着螺旋的模式偶合的均匀性的损失解释了酰胺IR光谱的众所周知的热展宽。肽段的计算不均一性可预测同位素编辑的螺旋的实验性质。

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