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Modern drug design: the implication of using artificial neuronal networks and multiple molecular dynamic simulations

机译:现代药物设计:使用人工神经元网络和多种分子动力学模拟的含义

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摘要

We report the implementation of molecular modeling approaches developed as a part of the 2016 Grand Challenge 2, the blinded competition of computer aided drug design technologies held by the D3R Drug Design Data Resource (). The challenge was focused on the ligands of the farnesoid X receptor (FXR), a highly flexible nuclear receptor of the cholesterol derivative chenodeoxycholic acid. FXR is considered an important therapeutic target for metabolic, inflammatory, bowel and obesity related diseases (Expert Opin Drug Metab Toxicol 4:523-532, 2015), but in the context of this competition it is also interesting due to the significant ligand-induced conformational changes displayed by the protein. To deal with these conformational changes we employed multiple simulations of molecular dynamics (MD). Our MD-based protocols were top-ranked in estimating the free energy of binding of the ligands and FXR protein. Our approach was ranked second in the prediction of the binding poses where we also combined MD with molecular docking and artificial neural networks. Our approach showed mediocre results for high-throughput scoring of interactions.
机译:我们报告了分子建模方法的实施情况,该方法是作为2016年大挑战2(D3R药物设计数据资源()所持有的计算机辅助药物设计技术的盲目竞争)的一部分开发的。挑战集中在法尼醇X​​受体(FXR)的配体上,该受体是胆固醇衍生物鹅脱氧胆酸的高度灵活的核受体。 FXR被认为是代谢,炎性,肠病和肥胖症相关疾病的重要治疗靶标(Expert Opin Drug Metab Toxicol 4:523-532,2015),但在这场竞争中,由于明显的配体诱导,这一点也很有趣蛋白质显示的构象变化。为了应对这些构象变化,我们采用了分子动力学(MD)的多种模拟。我们的基于MD的方案在估算配体与FXR蛋白结合的自由能方面排名最高。我们的方法在结合姿势的预测中排名第二,我们还将MD与分子对接和人工神经网络相结合。我们的方法在交互的高通量评分方面显示出中等的结果。

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