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Assessing Spectral Simulation Protocols for the Amide I Band of Proteins

机译:评估蛋白质酰胺I带的光谱模拟方案

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We present a benchmark study of spectral simulation protocols for the amide I band of proteins. The amide I band is widely used in infrared spectroscopy of proteins due to the large signal intensity, high sensitivity to hydrogen bonding, and secondary structural motifs. This band has, thus, proven valuable in many studies of protein structure function relationships. We benchmark spectral simulation protocols using two common force fields in combination with several electrostatic mappings and coupling models. The results are validated against experimental linear absorption and two-dimensional infrared spectroscopy for three well-studied proteins. We find two-dimensional infrared spectroscopy to be much more sensitive to the simulation protocol than linear absorption and report on the best simulation protocols. The findings demonstrate that there is still room for ideas to improve the existing models for the amide I band of proteins.
机译:我们目前对蛋白质的酰胺I条带的光谱模拟协议进行基准研究。由于信号强度大,对氢键的敏感性高以及具有二级结构基序,酰胺I谱带被广泛用于蛋白质的红外光谱中。因此,该带在蛋白质结构功能关系的许多研究中被证明是有价值的。我们使用两个共同的力场以及几个静电映射和耦合模型对光谱模拟协议进行基准测试。相对于实验线性吸收和二维红外光谱对三种研究充分的蛋白质进行了验证。我们发现二维红外光谱比线性吸收对模拟协议更敏感,并报告了最佳模拟协议。研究结果表明,仍然有想法可以改进现有的蛋白质酰胺I带模型。

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