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首页> 外文期刊>Biophysical Journal >Spectral signatures of heterogeneous protein ensembles revealed by MD Simulations of 2DIR spectra.
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Spectral signatures of heterogeneous protein ensembles revealed by MD Simulations of 2DIR spectra.

机译:通过2DIR光谱的MD模拟揭示了异质蛋白质集合的光谱特征。

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摘要

A model for the calculation of amide I FTIR and 2DIR spectra taking into account fluctuations in hydrogen bonding and structure from molecular dynamics (MD) simulations is tested on three systems. It is found that although the homogeneous lineshape approximation yields satisfactory FTIR spectra, 2DIR spectra are sensitive to the inhomogeneity naturally present in any solvated protein and the common approximations of a static structure and averaged-effect solvent are invalid. By building on the local amide Hamiltonian and incorporating site energy variation with electrostatic-based models and disorder from MD trajectories, good agreement is obtained between calculated and measured 2DIR spectra. The largest contribution to the observed inhomogeneity is found to be the fluctuating site energies, which in turn are most sensitive to the water solvent. With the ability to accurately predict 2DIR spectra from atomistic simulations, new opportunities to test force fields and mechanistic predictions from MD arerevealed.
机译:在三个系统上测试了用于计算酰胺I FTIR和2DIR光谱的模型,该模型考虑了氢键和分子动力学(MD)模拟结构的波动。发现尽管均匀线形近似产生令人满意的FTIR光谱,但是2DIR光谱对任何溶剂化蛋白质中天然存在的不均一性敏感,并且静态结构和平均效果溶剂的通用近似是无效的。通过建立局部酰胺哈密顿量,并结合基于静电的模型和MD轨迹的无序性,结合位能变化,可以在计算和测量的2DIR光谱之间获得良好的一致性。发现对观察到的不均匀性的最大贡献是波动的位点能量,而位点能量又对水溶剂最敏感。通过从原子模拟中准确预测2DIR光谱的能力,揭示了测试力场的新机会和来自MD的机械预测。

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