首页> 外文期刊>Journal of chemical information and modeling >Docking-based comparative intermolecular contacts analysis as new 3-D QSAR concept for validating docking studies and in silico screening: NMT and GP inhibitors as case studies
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Docking-based comparative intermolecular contacts analysis as new 3-D QSAR concept for validating docking studies and in silico screening: NMT and GP inhibitors as case studies

机译:基于对接的比较分子间接触分析作为新的3-D QSAR概念,用于验证对接研究和计算机筛选:以NMT和GP抑制剂为案例研究

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摘要

The significant role played by docking algorithms in drug discovery combined with their serious pitfalls prompted us to envisage a novel concept for validating docking solutions, namely, docking-based comparative intermolecular contacts analysis (dbCICA). This novel approach is based on the number and quality of contacts between docked ligands and amino acid residues within the binding pocket. It assesses a particular docking configuration on the basis of its ability to align a set of ligands within a corresponding binding pocket in such a way that potent ligands come into contact with binding site spots distinct from those approached by low-affinity ligands and vice versa. In other words, dbCICA evaluates the consistency of docking by assessing the correlation between ligands' affinities and their contacts with binding site spots. Optimal dbCICA models can be translated into valid pharmacophore models that can be used as 3-D search queries to mine structural databases for new bioactive compounds. dbCICA was implemented to search for new inhibitors of candida N-myristoyl transferase as potential antifungal agents and glycogen phosphorylase (GP) inhibitors as potential antidiabetic agents. The process culminated in five selective micromolar antifungal leads and nine GP inhibitory leads.
机译:对接算法在药物发现中的重要作用及其严重的缺陷促使我们提出了一种验证对接解决方案的新颖概念,即基于对接的比较分子间接触分析(dbCICA)。这种新颖的方法基于对接配体与结合袋中氨基酸残基之间接触的数量和质量。它基于其在对应的结合袋内排列一组配体的能力来评估特定的对接构型,以使有效的配体与不同于低亲和力配体所接近的结合位点相接触,反之亦然。换句话说,dbCICA通过评估配体亲和力及其与结合位点的接触之间的相关性来评估对接的一致性。最佳dbCICA模型可以转换为有效的药效团模型,可以用作3-D搜索查询来挖掘结构数据库中的新生物活性化合物。使用dbCICA来寻找念珠菌N-肉豆蔻酰基转移酶的新抑制剂作为潜在的抗真菌药,并寻找糖原磷酸化酶(GP)抑制剂作为潜在的抗糖尿病药。该过程最终产生了五种选择性微摩尔抗真菌引线和九种GP抑制引线。

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