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利用光线投射增强系统的蛋白质-蛋白质对接方法:在 ATTRACT 中的应用。

Enhancing systematic protein-protein docking methods using ray casting: application to ATTRACT.

机构信息

CNRS, Toulouse, France.

出版信息

Proteins. 2011 Nov;79(11):3037-49. doi: 10.1002/prot.23127. Epub 2011 Sep 17.

Abstract

Systematic protein-protein docking methods need to evaluate a huge number of different probe configurations, thus leading to high computational cost. We present an efficient filter-ray casting filter (RCF)-that enables a notable speed-up of systematic protein-protein docking. The high efficiency of RCF is the outcome of the following factors: (i) extracting of pockets and protrusions on the surfaces of the proteins using visibilities; (ii) a ray casting method that finds aligned receptor pocket/probe protrusion pairs without explicit similarity computations. The RCF method enables the integration of systematic methods and local shape feature matching methods. To verify the efficiency and the accuracy of RCF, we integrated it with a systematic protein-protein docking approach (ATTRACT) based on a reduced protein representation. The test results show that the integrated docking approach is much faster. At the same time, it ranks the lowest ligand root-mean-square deviation (RMSD) (L_rms) solutions higher when docking enzyme-enzyme inhibitor complexes. Consequently, RCF not only enables much faster execution of systematic docking runs but also improves the qualities of docking predictions.

摘要

系统的蛋白质-蛋白质对接方法需要评估大量不同的探针构象,从而导致计算成本高。我们提出了一种高效的过滤射线投射过滤(RCF)-能够显著加快系统蛋白质-蛋白质对接的速度。RCF 的高效率是以下因素的结果:(i)使用可见性提取蛋白质表面上的口袋和突出物;(ii)一种射线投射方法,无需显式相似性计算即可找到对齐的受体口袋/探针突出物对。RCF 方法能够实现系统方法和局部形状特征匹配方法的集成。为了验证 RCF 的效率和准确性,我们将其与基于简化蛋白质表示的系统蛋白质-蛋白质对接方法(ATTRACT)集成。测试结果表明,集成的对接方法速度快得多。同时,在对接酶-酶抑制剂复合物时,它将最低配体均方根偏差(L_rms)解决方案的排名提高。因此,RCF 不仅能够大大加快系统对接运行的速度,而且还能提高对接预测的质量。

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