首页> 外文会议>International Symposium on Advances in Visual Computing(ISVC 2007); 20071126-28; Lake Tahoe,NV(US) >Integrative Geometric-Hashing Approaches to Binding Site Modeling and Ligand-Protein Interaction Prediction
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Integrative Geometric-Hashing Approaches to Binding Site Modeling and Ligand-Protein Interaction Prediction

机译:结合位点建模和配体-蛋白质相互作用预测的综合几何哈希方法。

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摘要

The function of a protein is dependent on whether and how it can interact with various ligands. Therefore, an accurate prediction of protein-ligand interactions is paramount to understanding proteins' biological mechanisms and hence to the development of therapeutic agents. A ligand is most likely to bind in the largest pocket on the surface of the protein. Moreover, it requires that the pocket meets certain structural and geometric criteria that allow the ligand to "anchor" in place by forming stabilizing interactions with the protein. Based on this logic, many geometry-based algorithms have been developed to predict 'protein-ligand interactions. Here we investigate a geometric-hashing based algorithm - to see how well it distinguishes proteins that do and do not bind a ligand, and propose enhancements that improve its robustness. We also introduce an alternative way of integrating geometric and biochemical properties of multiple binding mechanisms into a single representation.
机译:蛋白质的功能取决于它是否以及如何与各种配体相互作用。因此,准确预测蛋白质与配体的相互作用对于理解蛋白质的生物学机制以及治疗剂的开发至关重要。配体最有可能在蛋白质表面的最大口袋中结合。而且,它要求口袋满足某些结构和几何标准,该标准允许配体通过与蛋白质形成稳定相互作用而“固定”在适当位置。基于这种逻辑,已经开发了许多基于几何的算法来预测“蛋白质-配体相互作用”。在这里,我们研究一种基于几何哈希的算法-看看它如何区分可结合和不结合配体的蛋白质,并提出增强其鲁棒性的增强方法。我们还介绍了将多种结合机制的几何和生化特性整合到单个表示中的另一种方法。

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