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Improved data visualization techniques for analyzing macromolecule structural changes

机译:改进的数据可视化技术,用于分析高分子结构变化

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The empirical phase diagram (EPD) is a colored representation of overall structural integrity and conformational stability of macromolecules in response to various environmental perturbations. Numerous proteins and macromolecular complexes have been analyzed by EPDs to summarize results from large data sets from multiple biophysical techniques. The current EPD method suffers from a number of deficiencies including lack of a meaningful relationship between color and actual molecular features, difficulties in identifying contributions from individual techniques, and a limited ability to be interpreted by color-blind individuals. In this work, three improved data visualization approaches are proposed as techniques complementary to the EPD. The secondary, tertiary, and quaternary structural changes of multiple proteins as a function of environmental stress were first measured using circular dichroism, intrinsic fluorescence spectroscopy, and static light scattering, respectively. Data sets were then visualized as (1) RGB colors using three-index EPDs, (2) equiangular polygons using radar charts, and (3) human facial features using Chernoff face diagrams. Data as a function of temperature and pH for bovine serum albumin, aldolase, and chymotrypsin as well as candidate protein vaccine antigens including a serine threonine kinase protein (SP1732) and surface antigen A (SP1650) from S. pneumoniae and hemagglutinin from an H1N1 influenza virus are used to illustrate the advantages and disadvantages of each type of data visualization technique.
机译:经验相图(EPD)是大分子对各种环境扰动的总体结构完整性和构象稳定性的彩色表示。 EPD已对众多蛋白质和高分子复合物进行了分析,以总结来自多种生物物理技术的大型数据集的结果。当前的EPD方法遭受许多缺陷,包括在颜色和实际分子特征之间缺乏有意义的关系,难以识别来自个体技术的贡献以及由色盲个体解释的能力有限。在这项工作中,提出了三种改进的数据可视化方法,作为对EPD的补充技术。首先分别使用圆二色性,固有荧光光谱和静态光散射测量了多种蛋白质作为环境胁迫的功能的二级,三级和四级结构变化。然后将数据集可视化为(1)使用三指数EPD的RGB颜色;(2)使用雷达图的等角多边形;以及(3)使用Chernoff面部图的人脸特征。牛血清白蛋白,醛缩酶和胰凝乳蛋白酶以及候选蛋白疫苗抗原(包括肺炎链球菌的丝氨酸苏氨酸激酶蛋白(SP1732)和表面抗原A(SP1650)和H1N1流感的血凝素)的温度和pH值的函数数据病毒用于说明每种类型的数据可视化技术的优缺点。

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