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Flexibility and conformational entropy in protein-protein binding

机译:蛋白质与蛋白质结合的柔韧性和构象熵

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摘要

To better understand the interplay between protein-protein binding and protein dynamics, we analyzed molecular dynamics simulations of 17 protein-protein complexes and their unbound components. Complex formation does not restrict the conformational freedom of the partner proteins as a whole, but, rather, it leads to a redistribution of dynamics. We calculate the change in conformational entropy for seven complexes with quasilharmonic analysis. We see significant loss, but also increased or unchanged conformational entropy. Where comparison is possible, the results are consistent with experimental data. However, stringent error estimates based on multiple independent simulations reveal large uncertainties that are usually overlooked. We observe substantial gains of pseudo entropy in individual partner proteins, and we observe that all complexes retain residual stabilizing intermolecular motions. Consequently, protein flexibility has an important influence on the thermodynamics of binding and may disfavor as well as favor association. These results support a recently proposed unified model for flexible protein-protein association.
机译:为了更好地理解蛋白质-蛋白质结合与蛋白质动力学之间的相互作用,我们分析了17种蛋白质-蛋白质复合物及其未结合成分的分子动力学模拟。复杂的形成并不限制伴侣蛋白整体的构象自由,而是导致动力学的重新分布。我们用准谐波分析计算了七个配合物的构象熵的变化。我们看到了明显的损失,但是构象熵也增加了或保持不变。如果可以进行比较,则结果与实验数据一致。但是,基于多个独立模拟的严格误差估计显示出通常被忽略的巨大不确定性。我们观察到单个伙伴蛋白中假熵的大量增加,并且我们观察到所有复合物都保留了残留的稳定分子间运动。因此,蛋白质的柔韧性对结合的热力学具有重要影响,并且可能不利于结合。这些结果支持了最近提出的灵活的蛋白质-蛋白质结合的统一模型。

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