首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Steered molecular dynamics simulations for uncovering the molecular mechanisms of drug dissociation and for drug screening: A test on the focal adhesion kinase
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Steered molecular dynamics simulations for uncovering the molecular mechanisms of drug dissociation and for drug screening: A test on the focal adhesion kinase

机译:用于揭示药物解离分子机制和药物筛选的转向分子动力学模拟:对局灶性粘附激酶的试验

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摘要

Drug-binding kinetics could play important roles in determining the efficacy of drugs and has caught the attention of more drug designers. Using the dissociation of 1H-pyrrolo[2,3-b]-pyridines from the focal adhesion kinase as an example, this work finds that steered molecular dynamics simulations could help screen compounds with long-residence times. It also reveals a two-step mechanism of ligand dissociation resembling the release of ADP from protein kinase A reported earlier. A phenyl group attaching to the pyrrole prolongs residence time by creating a large activation barrier for transition from the bound to the intermediate state when it becomes exposed to the solvent. Principal component analysis shows that ligand dissociation does not couple with large-scale collective motions of the protein involving many of its amino acids. Rather, a small subset of amino acids dominates. Some of these amino acids do not contact the ligands directly along the dissociation pathways and could exert long-range allosteric effects. (c) 2018 Wiley Periodicals, Inc.
机译:药物结合动力学可能在确定药物的功效方面发挥重要作用,并引起了更多的药物设计师的注意。使用来自局灶性粘附激酶的1H-吡咯的解离[2,3-B]作为示例,该工作发现,转向分子动力学模拟可以帮助筛选具有长停留时间的筛选化合物。它还揭示了一种类似于蛋白激酶A之前的蛋白激酶A的释放ADP的配体解离的两步机制。通过在暴露于溶剂时从与中间状态产生大的激活屏障,将与吡咯的苯基延长停留时间。主成分分析表明,配体解离不与涉及许多氨基酸的蛋白质的大规模集体运动相结合。相反,氨基酸的小亚族族占主导地位。这些氨基酸中的一些不会沿解离途径直接与配体接触,并且可以发挥远程变形效果。 (c)2018 Wiley期刊,Inc。

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