Institute of Computer Science, Silesian University of Technology, Akademicka 16, 44-100 Gliwice, Poland.
Department of Bioinformatics and Telemedicine, Jagiellonian University-Medical College, Łazarza 16, 31-530 Kraków, Poland.
Int J Mol Sci. 2019 Sep 9;20(18):4436. doi: 10.3390/ijms20184436.
Protein structure is the result of the high synergy of all amino acids present in the protein. This synergy is the result of an overall strategy for adapting a specific protein structure. It is a compromise between two trends: The optimization of non-binding interactions and the directing of the folding process by an external force field, whose source is the water environment. The geometric parameters of the structural form of the polypeptide chain in the form of a local radius of curvature that is dependent on the orientation of adjacent peptide bond planes (result of the respective Phi and Psi rotation) allow for a comparative analysis of protein structures. Certain levels of their geometry are the criteria for comparison. In particular, they can be used to assess the differences between the structural form of biologically active proteins and their amyloid forms. On the other hand, the application of the fuzzy oil drop model allows the assessment of the role of amino acids in the construction of tertiary structure through their participation in the construction of a hydrophobic core. The combination of these two models-the geometric structure of the backbone and the determining of the participation in the construction of the tertiary structure that is applied for the comparative analysis of biologically active and amyloid forms-is presented.
蛋白质结构是所有存在于蛋白质中的氨基酸高度协同的结果。这种协同作用是适应特定蛋白质结构的整体策略的结果。它是两种趋势之间的妥协:非结合相互作用的优化和由外部力场引导折叠过程,其来源是水环境。多肽链结构形式的几何参数以局部曲率半径的形式存在,该半径取决于相邻肽键平面的方向(各自的 Phi 和 Psi 旋转的结果),这使得对蛋白质结构进行比较分析成为可能。某些层次的几何形状是比较的标准。特别是,它们可以用于评估生物活性蛋白质与其淀粉样形式的结构形式之间的差异。另一方面,模糊油滴模型的应用允许通过它们参与构建疏水性核心来评估氨基酸在构建三级结构中的作用。这两种模型——骨架的几何结构和用于比较分析生物活性和淀粉样形式的三级结构构建中的参与度——的结合被提出。