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Simultaneous Fitting of Absorption Spectra and Their Second Derivatives for an Improved Analysis of Protein Infrared Spectra

机译:同时拟合吸收光谱和其二阶导数以改进蛋白质红外光谱的分析

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摘要

Infrared spectroscopy is a powerful tool in protein science due to its sensitivity to changes in secondary structure or conformation. In order to take advantage of the full power of infrared spectroscopy in structural studies of proteins, complex band contours, such as the amide I band, have to be decomposed into their main component bands, a process referred to as curve fitting. In this paper, we report on an improved curve fitting approach in which absorption spectra and second derivative spectra are fitted simultaneously. Our approach, which we name co-fitting, leads to a more reliable modelling of the experimental data because it uses more spectral information than the standard approach of fitting only the absorption spectrum. It also avoids that the fitting routine becomes trapped in local minima. We have tested the proposed approach using infrared absorption spectra of three mixed α/β proteins with different degrees of spectral overlap in the amide I region: ribonuclease A, pyruvate kinase, and aconitase.
机译:由于红外光谱对二级结构或构象的变化敏感,因此是蛋白质科学中的强大工具。为了在蛋白质的结构研究中利用红外光谱的全部功能,必须将复杂的谱带轮廓(例如酰胺I谱带)分解为它们的主要成分谱带,这一过程称为曲线拟合。在本文中,我们报告了一种改进的曲线拟合方法,其中同时拟合了吸收光谱和二阶导数光谱。我们的方法(我们称为共同拟合)可导致对实验数据进行更可靠的建模,因为与仅拟合吸收光谱的标准方法相比,它使用的光谱信息更多。这也避免了拟合例程陷入局部最小值中。我们使用三种混合的α/β蛋白的红外吸收光谱对酰胺I区具有不同光谱重叠度的红外吸收光谱进行了测试,该方法是核糖核酸酶A,丙酮酸激酶和乌头酸酶。

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