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HIV-1 Protease Substrate Binding and Product Release Pathways Explored with Coarse-Grained Molecular Dynamics

机译:粗粒分子动力学探索的HIV-1蛋白酶底物结合和产品释放途径。

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摘要

We analyze the encounter of a peptide substrate with the native HIV-1 protease, the mechanism of substrate incorporation in the binding cleft, and the dissociation of products after substrate hydrolysis. To account for the substrate, we extend a coarse-grained model force field, which we previously developed to study the flap opening dynamics of HIV-1 protease on a microsecond timescale. Molecular and Langevin dynamics simulations show that the flaps need to open for the peptide to bind and that the protease interaction with the substrate influences the flap opening frequency and interval. On the other hand, release of the products does not require flap opening because they can slide out from the binding cleft to the sides of the enzyme. Our data show that in the protease-substrate complex the highest fluctuations correspond to the 17- and 39-turns and the substrate motion is anticorrelated with the 39-turn. Moreover, the active site residues and the flap tips move in phase with the peptide. We suggest some mechanistic principles for how the flexibility of the protein may be involved in ligand binding and release.
机译:我们分析了与天然HIV-1蛋白酶的肽底物的相遇,底物结合在结合裂隙中的机制以及底物水解后产物的解离。为了说明底物,我们扩展了一个粗粒度的模型力场,该力场我们以前已经开发出来,可以在微秒的时间尺度上研究HIV-1蛋白酶的襟翼打开动力学。分子和Langevin动力学模拟表明,皮瓣需要打开才能与肽结合,蛋白酶与底物的相互作用会影响皮瓣的打开频率和间隔。另一方面,产物的释放不需要盖打开,因为它们可以从结合裂隙滑出到酶的侧面。我们的数据表明,在蛋白酶-底物复合物中,最大的波动对应于17和39转,底物运动与39转是反相关的。而且,活性位点残基和襟翼尖端与肽同相移动。我们提出了一些有关蛋白质柔韧性如何参与配体结合和释放的机械原理。

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