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Knowledge-Guided Docking of WW Domain Proteins and Flexible Ligands

机译:WW域蛋白质和柔性配体的知识指导对接

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摘要

Studies of interactions between protein domains and ligands are important in many aspects such as cellular signaling. We present a knowledge-guided approach for docking protein domains and flexible ligands. The approach is applied to the WW domain, a small protein module mediating signaling complexes which have been implicated in diseases such as muscular dystrophy and Liddle's syndrome. The first stage of the approach employs a substring search for two binding grooves of WW domains and possible binding motifs of peptide ligands based on known features. The second stage aligns the ligand's peptide backbone to the two binding grooves using a quasi-Newton constrained optimization algorithm. The backbone-aligned ligands produced serve as good starting points to the third stage which uses any flexible docking algorithm to perform the docking. The experimental results demonstrate that the backbone alignment method in the second stage performs better than conventional rigid superposition given two binding constraints. It is also shown that using the backbone-aligned ligands as initial configurations improves the flexible docking in the third stage. The presented approach can also be applied to other protein domains that involve binding of flexible ligand to two or more binding sites.
机译:蛋白质结构域与配体之间相互作用的研究在许多方面都非常重要,例如细胞信号传导。我们提出了一种知识指导的对接蛋白结构域和灵活的配体的方法。该方法应用于WW域,WW域是一种介导信号复合物的小蛋白质模块,该复合物与肌肉营养不良和Liddle综合征等疾病有关。该方法的第一阶段是基于已知特征,利用子串搜索WW域的两个结合槽和肽配体的可能结合基序。第二阶段使用准牛顿约束优化算法将配体的肽主链与两个结合槽对齐。产生的骨架对齐的配体可作为第三阶段的良好起点,该阶段使用任何灵活的对接算法进行对接。实验结果表明,在两个绑定约束条件下,第二阶段的主干对齐方法比传统的刚性叠加方法性能更好。还显示了使用骨架对齐的配体作为初始构型改善了第三阶段的柔性对接。提出的方法还可以应用于涉及柔性配体与两个或多个结合位点结合的其他蛋白质结构域。

著录项

  • 来源
  • 会议地点 Sheffield(GB);Sheffield(GB)
  • 作者单位

    Dept. of Computer Science, School of Computing, National University of Singapore, Singapore 117590;

    Dept. of Computer Science, School of Computing, National University of Singapore, Singapore 117590;

    Dept. of Computer Science, School of Computing, National University of Singapore, Singapore 117590;

    Dept. of Computer Science, School of Computing, National University of Singapore, Singapore 117590;

    Dept. of Biological Sciences, Faculty of Science, National University of Singapore, Singapore 117543;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物工程学(生物技术);
  • 关键词

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