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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Empirical entropic contributions in computational docking: Evaluation in APS reductase complexes
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Empirical entropic contributions in computational docking: Evaluation in APS reductase complexes

机译:在计算对接中的经验熵贡献:APS还原酶复合物的评估

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The results from reiterated clocking experiments may be used to evaluate an empirical vibrational entropy of binding in ligand-protein complexes. We have tested several methods for evaluating the vibrational contribution to binding of 22 nucleotide analogues to the enzyme APS reductase. These include two cluster size methods that measure the probability of finding a particular conformation, a method that estimates the extent of the local energetic well by looking at the scatter of conformations within clustered results, and an RMSD-based method that uses the overall scatter and clustering of all conformations. We have also directly characterized the local energy landscape by randomly sampling around docked conformations. The simple cluster size method shows the best performance, improving the identification of correct conformations in multiple docking experiments. (c) 2008 Wiley Periodicals, Inc.
机译:重复计时实验的结果可用于评估配体-蛋白质复合物中结合的经验振动熵。我们已经测试了几种方法来评估振动对22种核苷酸类似物与APS还原酶结合的影响。其中包括两种用于衡量发现特定构象概率的簇大小方法,一种通过查看聚类结果内构象散布来估计局部高能井程度的方法以及一种基于RMSD的方法,该方法使用总体散布和所有构象的聚类。我们还通过在对接构象周围随机采样来直接表征本地能源格局。简单的簇大小方法显示出最佳性能,从而改进了多次对接实验中正确构象的识别。 (c)2008年Wiley Periodicals,Inc.

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