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Efficient Unbound Docking of Rigid Molecules

机译:高效未结合刚性分子对接

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We present a new algorithm for unbound (real life) docking of molecules, whether protein-protein or protein-drug. The algorithm carries out rigid docking, with surface variability/flexibility implicitly addressed through liberal intermolecular penetration. The high efficiency of the algorithm is the outcome of several factors: (i) focusing initial molecular surface fitting on localized, curvature based surface patches; (ii) use of Geometric Hashing and Pose Clustering for initial transformation detection; (iii) accurate computation of shape complementarity utilizing the Distance Transform; (iv) efficient steric clash detection and geometric fit scoring based on a multi-resolution shape representation; and (v) utilization of biological information by focusing on hot spot rich surface patches. The algorithm has been implemented and applied to a large number of cases.
机译:我们提出了一种用于分子的未结合(现实生活)对接的新算法,无论是蛋白质 - 蛋白质还是蛋白质 - 药物。该算法通过自由分子间渗透进行刚性对接,表面可变性/灵活性地解决。算法的高效率是若干因素的结果:(i)将初始分子表面配合聚焦在局部,曲率的基础表面贴片上; (ii)使用几何散列和姿势聚类进行初始变换检测; (iii)利用距离变换精确计算形状互补性; (iv)基于多分辨率形状表示的高效空间冲突检测和几何配合评分; (v)通过专注于热点富含表面贴片来利用生物信息。该算法已经实现并应用于大量情况。

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