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首页> 外文期刊>The Journal of Chemical Physics >Multiscale weighted colored graphs for protein flexibility and rigidity analysis
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Multiscale weighted colored graphs for protein flexibility and rigidity analysis

机译:MultiScale加权彩色图表用于蛋白质柔性和刚性分析

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摘要

Protein structural fluctuation, measured by Debye-Waller factors or B-factors, is known to correlate to protein flexibility and function. A variety of methods has been developed for protein Debye-Waller factor prediction and related applications to domain separation, docking pose ranking, entropy calculation, hinge detection, stability analysis, etc. Nevertheless, none of the current methodologies are able to deliver an accuracy of 0.7 in terms of the Pearson correlation coefficients averaged over a large set of proteins. In this work, we introduce a paradigm-shifting geometric graph model, multi-scale weighted colored graph (MWCG), to provide a new generation of computational algorithms to significantly change the current status of protein structural fluctuation analysis. Our MWCG model divides a protein graph into multiple subgraphs based on interaction types between graph nodes and represents the protein rigidity by generalized centralities of subgraphs. MWCGs not only predict the B-factors of protein residues but also accurately analyze the flexibility of all atoms in a protein. The MWCG model is validated over a number of protein test sets and compared with many standard methods. An extensive numerical study indicates that the proposed MWCG offers an accuracy of over 0.8 and thus provides perhaps the first reliable method for estimating protein flexibility and B-factors. It also simultaneously predicts all-atom flexibility in a molecule. Published by AIP Publishing.
机译:已知通过Debye-Waller因子或B因子测量的蛋白质结构波动,与蛋白质柔性和功能相关。已经为蛋白质Debye-Waller因子预测和相关应用开发了各种方法,以域分离,对接姿势排序,熵计算,铰链检测,稳定性分析等。然而,目前的方法都没有能够提供准确性0.7就Pearson相关系数在大量蛋白质上平均而平均。在这项工作中,我们介绍了一种范式转换几何图模型,多尺度加权彩色图(MWCG),以提供新一代的计算算法,从而显着改变蛋白质结构波动分析的当前状态。我们的MWCG模型基于曲线节点之间的相互作用类型将蛋白质图分为多个子图,并表示通过子图的广义集合来表示蛋白质刚性。 MWCGs不仅预测蛋白质残基的B-因素,还准确分析的蛋白质的所有原子的灵活性。 MWCG模型在许多蛋白质测试组上验证并与许多标准方法进行了比较。广泛的数值研究表明,所提出的MWCG提供超过0.8的精度,因此提供了一种估算蛋白质柔性和B因子的第一可靠方法。它还同时预测分子中的全原子灵活性。通过AIP发布发布。

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