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A method to predict edge strands in beta-sheets from protein sequences

机译:一种从蛋白质序列预测β-折叠中边缘链的方法

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摘要

There is a need for rules allowing three-dimensional structure information to be derived from protein sequences. In this work, consideration of an elementary protein folding step allows protein sub-sequences which optimize folding to be derived for any given protein sequence. Classical mechanics applied to this system and the energy conservation law during the elementary folding step yields an equation whose solutions are taken over the field of rational numbers. This formalism is applied to beta-sheets containing two edge strands and at least two central strands. The number of protein sub-sequences optimized for folding per amino acid in beta-strands is shown in particular to predict edge strands from protein sequences. Topological information on beta-strands and loops connecting them is derived for protein sequences with a prediction accuracy of 75%. The statistical significance of the finding is given. Applications in protein structure prediction are envisioned such as for the quality assessment of protein structure models.
机译:需要规则以允许从蛋白质序列获得三维结构信息。在这项工作中,考虑基本的蛋白质折叠步骤,可以针对任何给定的蛋白质序列推导优化折叠的蛋白质子序列。应用于该系统的经典力学和基本折叠步骤中的能量守恒定律产生了一个方程,该方程的解适用于有理数领域。这种形式主义适用于包含两个边缘链和至少两个中心链的β-折叠。特别示出了针对β链中的每个氨基酸折叠而优化的蛋白质亚序列的数目,其特别用于预测来自蛋白质序列的边缘链。有关β链和连接它们的环的拓扑信息是针对蛋白质序列而得出的,预测精度为75%。给出了该发现的统计意义。设想了在蛋白质结构预测中的应用,例如用于蛋白质结构模型的质量评估。

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