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A Method to Predict Amino Acids at Proximity of Beta-Sheet Axes from Protein Sequences

机译:一种从蛋白质序列预测接近β-Sheet氨基酸的方法

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A general and elementary protein folding step was described in a previous article. Energy conservation during this folding step yielded an equation with remarkable solutions over the field of rational numbers. Sets of sequences optimized for folding were derived. In this work, a geometrical analysis of protein beta-sheet backbone structures allows the definition of positions of topological interest. They correspond to amino acids’ alpha carbons located on a unique axis crossing all beta-sheet’s strands or at proximity of this axis defined here. These positions of topological interest are shown to be highly correlated with the absence of sequences optimized for folding. Applications in protein structure prediction for the quality assessment of structural models are envisioned.
机译:常规和基本的蛋白质折叠步骤在先前的文章中进行了描述。在此折叠步骤中的能量节省产生了一个在有​​理数域上具有显着解的方程。推导了为折叠而优化的序列集。在这项工作中,蛋白质β-sheet骨架结构的几何分析允许定义拓扑感兴趣的位置。它们对应于氨基酸的α碳原子,该碳原子位于横穿所有β-折叠片的链的唯一轴上或此处定义的该轴附近。这些拓扑感兴趣的位置显示与不存在针对折叠优化的序列高度相关。设想了在蛋白质结构预测中用于结构模型质量评估的应用。

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