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首页> 外文期刊>The Journal of Chemical Physics >Discriminating trpzip2 and trpzip4 peptides' folding landscape using the two-dimensional infrared spectroscopy: A simulation study
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Discriminating trpzip2 and trpzip4 peptides' folding landscape using the two-dimensional infrared spectroscopy: A simulation study

机译:使用二维红外光谱法区分trpzip2和trpzip4肽的折叠态:模拟研究

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摘要

We analyzed, based on the theoretical spectroscopic modeling, how the differences in the folding landscapes of two β-hairpin peptides trpzip2 and trpzip4 are reflected in their thermal unfolding infrared measurements. The isotope-edited equilibrium FTIR and two dimensional infrared spectra of the two peptides were calculated, using the nonlinear exciton propagation method, at a series of temperatures. The spectra calculations were based on the configuration distributions generated using the GB~(OBC) implicit solvent MD simulation and the integrated tempering sampling technique. Conformational analysis revealed the different local thermal stabilities for these two peptides, which suggested the different folding landscapes. Our study further suggested that the ellipticities of the isotope peaks in the coherent IR signals are more sensitive to these local stability differences compared with other spectral features such as the peak intensities. Our technique can thus be combined with the relevant experimental measurements to achieve a better understanding of the peptide folding behaviors.
机译:我们基于理论光谱模型,分析了两个β-发夹肽trpzip2和trpzip4折叠态的差异如何在其红外热展开测量中得到反映。使用非线性激子传播方法,在一系列温度下,计算了两种肽的同位素编辑的平衡FTIR和二维红外光谱。光谱计算基于使用GB〜(OBC)隐式溶剂MD模拟和综合回火采样技术生成的构型分布。构象分析揭示了这两种肽的不同局部热稳定性,这表明了不同的折叠态。我们的研究进一步表明,相干红外信号中同位素峰的椭圆度比其他光谱特征(例如峰强度)对这些局部稳定性差异更敏感。因此,我们的技术可以与相关的实验测量相结合,以更好地理解肽折叠行为。

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