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Modeling Binding with Large Conformational Changes: Key Points in Ensemble-Docking Approaches

机译:建模绑定与大构象变化:合奏对接方法中的关键点

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Protein dynamics play a critical role in ligand binding, and different models have been proposed to explain the relationships between protein, motion and molecular recognition. Here, we present a study of ligand-binding processes associated with large conformational changes of a protein to elucidate the critical choices in ensemble-docking approaches for effective prediction of the binding geometry. Two study cases were selected in which binding involves different protein motions and intermolecular interactions and, accordingly, conformational selection and induced-fit mechanisms play different roles: binding of multiple ligands to the acetylcholine binding protein and highly specific binding of D-allose to the allose binding protein. Our results indicated that the ensemble-docking technique can provide reliable predictions of the structure of ligand protein complexes, starting from simulations of the apo systems, when suitable methodological choices are made according to the different mechanistic scenarios. In particular, accelerated molecular dynamics simulations are suitable for conformational sampling when the unbound and bound states are separated by high energy barriers, provided that the acceleration parameters are carefully set to extensively sample the relevant conformations. A strategy specifically developed for geometric clustering of the binding site proved to be effective for selecting a set of conformations relevant to binding from the MD trajectory. Specific strategies have to be selected to incorporate different degrees of ligand-induced protein flexibility into the docking or pose-refinement steps.
机译:蛋白质动力学在配体结合中发挥着关键作用,已经提出了不同的模型来解释蛋白质,运动和分子识别之间的关系。在这里,我们介绍了与蛋白质的大构象变化相关的配体结合过程的研究,以阐明集合对接方法中的关键选择,以便有效预测结合几何形状。选择两种研究病例,其中结合涉及不同的蛋白质运动和分子间相互作用,因此,构象选择和诱导的机制起不同的作用:多个配体与乙酰胆碱结合蛋白的结合和D- allose对偶联的高度特异性结合结合蛋白。我们的结果表明,当合适的方法学选择根据不同的机械情景,可以提供从APO系统的模拟开始提供配体蛋白复合物结构的可靠预测。特别地,当通过高能量屏障分离未结合和结合状态时,加速分子动力学模拟适用于构象采样,只要仔细地设置加速度参数以广泛地对相关构象进行广泛采样。专门为结合位点的几何聚类开发的策略被证明是为了选择与来自MD轨迹的结合相关的一组构象有效。必须选择具体的策略以将不同程度的配体诱导的蛋白质柔韧性掺入对接或姿势细化步骤。

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