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FoldX accurate structural protein-DNA binding prediction using PADA1 (Protein Assisted DNA Assembly 1)

机译:使用PADA1(蛋白质辅助DNA组件1)的COLDX精确结构蛋白-DNA结合预测

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摘要

The speed at which new genomes are being sequenced highlights the need for genome-wide methods capable of predicting protein-DNA interactions. Here, we present PADA1, a generic algorithm that accurately models structural complexes and predicts the DNA-binding regions of resolved protein structures. PADA1 relies on a library of protein and double-stranded DNA fragment pairs obtained from a training set of 2103 DNA-protein complexes. It includes a fast statistical force field computed from atom-atom distances, to evaluate and filter the 3D docking models. Using published benchmark validation sets and 212 DNA-protein structures published after 2016 we predicted the DNA-binding regions with an RMSD of & 1.8 angstrom $#x212B; per residue in & 95% of the cases. We show that the quality of the docked templates is compatible with FoldX protein design tool suite to identify the crystallized DNA molecule sequence as the most energetically favorable in 80% of the cases. We high-lighted the biological potential of PADA1 by reconstituting DNA and protein conformational changes upon protein mutagenesis of a meganuclease and its variants, and by predicting DNA-binding regions and nucleotide sequences in proteins crystallized without DNA. These results opens up new perspectives for the engineering of DNA-protein interfaces.
机译:测序新基因组的速度突出了能够预测蛋白质DNA相互作用的基因组方法的需要。这里,我们呈现PADA1,一种准确地模型结构复合物并预测分辨蛋白质结构的DNA结合区域的通用算法。 PADA1依赖于由2103个DNA蛋白复合物的训练组中获得的蛋白质和双链DNA片段对。它包括从原子原子距离计算的快速统计力场,以评估和过滤3D对接模型。 2016年后发表的已发表的基准验证集和212个DNA-蛋白质结构我们预测了具有&amp的RMSD的DNA结合区域; LT; 1.8 angstrom $#x212b; &amp的每个残留物; 95%的病例。我们表明,对接模板的质量与Foldx蛋白设计工具套件兼容,以识别结晶的DNA分子序列,以80%的病例中最有力地有利。通过重构Meganuclease及其变体的蛋白质诱变对蛋白质诱变的DNA和蛋白质构象变化来高亮PADA1的生物潜力,并通过预测蛋白质中的DNA结合区域和蛋白质中的核苷酸序列而没有DNA。这些结果为DNA-蛋白质界面的工程开辟了新的视角。

著录项

  • 来源
    《Nucleic Acids Research》 |2018年第8期|共12页
  • 作者单位

    Barcelona Inst Sci &

    Technol Ctr Genom Regulat CRG Dr Aiguader 88 Barcelona 08003 Spain;

    Barcelona Inst Sci &

    Technol Ctr Genom Regulat CRG Dr Aiguader 88 Barcelona 08003 Spain;

    Barcelona Inst Sci &

    Technol Ctr Genom Regulat CRG Dr Aiguader 88 Barcelona 08003 Spain;

    Barcelona Inst Sci &

    Technol Ctr Genom Regulat CRG Dr Aiguader 88 Barcelona 08003 Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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