Miles Andrew J, Whitmore Lee, Wallace B A
Department of Crystallography, Birkbeck College, University of London, London, UK.
Protein Sci. 2005 Feb;14(2):368-74. doi: 10.1110/ps.041019905.
The effects of spectral magnitude on the calculated secondary structures derived from circular dichroism (CD) spectra were examined for a number of the most commonly used algorithms and reference databases. Proteins with different secondary structures, ranging from mostly helical to mostly beta-sheet, but which were not components of existing reference databases, were used as test systems. These proteins had known crystal structures, so it was possible to ascertain the effects of magnitude on both the accuracy of determining the secondary structure and the goodness-of-fit of the calculated structures to the experimental data. It was found that most algorithms are highly sensitive to spectral magnitude, and that the goodness-of-fit parameter may be a useful tool in assessing the correct scaling of the data. This means that parameters that affect magnitude, including calibration of the instrument, the spectral cell pathlength, and the protein concentration, must be accurately determined to obtain correct secondary structural analyses of proteins from CD data using empirical methods.
对于许多最常用的算法和参考数据库,研究了光谱强度对从圆二色性(CD)光谱推导的计算二级结构的影响。具有不同二级结构的蛋白质,从主要是螺旋结构到主要是β折叠结构,但不是现有参考数据库的组成部分,被用作测试系统。这些蛋白质具有已知的晶体结构,因此可以确定强度对确定二级结构的准确性以及计算结构与实验数据的拟合优度的影响。结果发现,大多数算法对光谱强度高度敏感,并且拟合优度参数可能是评估数据正确缩放的有用工具。这意味着必须准确确定影响强度的参数,包括仪器校准、光谱池光程长度和蛋白质浓度,以便使用经验方法从CD数据中获得蛋白质正确的二级结构分析。