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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Applying conformational selection theory to improve crossdocking efficiency in 3-phosphoinositide dependent protein kinase-1
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Applying conformational selection theory to improve crossdocking efficiency in 3-phosphoinositide dependent protein kinase-1

机译:应用构象选择理论提高3-磷酸肌醇依赖性蛋白激酶-1的跨接效率

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The emerging picture of biomolecular recognition is that of conformational selection followed by induced-fit. Conformational selection theory states that binding partners exist in various conformations in solution, with binding involving a "selection" between complementary conformers. In this study, we devise a docking protocol that mimics conformational selection in protein-ligand binding and demonstrate that it significantly enhances crossdocking accuracy over Glide's flexible docking protocol, which is widely used in the pharmaceutical industry. Our protocol uses a pregenerated conformational ensemble to simulate ligand flexibility. The ensemble was generated by thorough conformational sampling coupled with conformer minimization. The generated conformers were then rigidly docked in the active site of the protein along with a postdocking minimization step that allows limited induced fit effects to be modeled for the ligand. We illustrate the improved performance of our protocol through crossdocking of 31 ligands to cocomplexed proteins of the kinase 3-phosphoinositide dependent protein kinase-1 extracted from the crystal structures 1H1W (ATP bound), 1OKY (staurosporine bound) and 3QD0 (bound to a potent inhibitor). Consistent with conformational selection theory, the performance of our protocol was the best for crossdocking to the cognate protein bound to the natural ligand, ATP. Proteins 2014; 82:436-451.
机译:生物分子识别的新趋势是构象选择,然后是诱导拟合。构象选择理论指出,结合配偶体以各种构象存在于溶液中,结合涉及互补构象子之间的“选择”。在这项研究中,我们设计了一种对接方案,该方案可模拟蛋白质-配体结合中的构象选择,并证明与Glide的灵活对接方案(其在制药行业中广泛使用)相比,它可以大大提高交叉对接的准确性。我们的协议使用预生成的构象集合来模拟配体的柔性。该集合是通过彻底的构象采样以及构象异构体最小化生成的。然后将产生的构象异构体与停靠后的最小化步骤牢固地对接在蛋白质的活性位点上,从而使配体的有限诱导拟合效应得以建模。我们举例说明了我们的协议的改进性能,该方法通过将31个配体交叉对接至从晶体结构1H1W(ATP结合),1OKY(与星形孢菌素结合)和3QD0(结合到强抑制剂)。与构象选择理论一致,我们的实验方案对于与天然配体ATP结合的同源蛋白质的交叉入库而言,性能最佳。蛋白质2014; 82:436-451。

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