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Unveiling Prolyl Oligopeptidase Ligand Migration by Comprehensive Computational Techniques

机译:通过综合计算技术揭示脯氨酰寡肽酶配体的迁移

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摘要

Prolyl oligopeptidase (POP) is a large 80 kDa protease, which cleaves oligopeptides at the C-terminal side of proline residues and constitutes an important pharmaceutical target. Despite the existence of several crystallographic structures, there is an open debate about migration (entrance and exit) pathways for ligands, and their coupling with protein dynamics. Recent studies have shown the capabilities of molecular dynamics and classical force fields in describing spontaneous binding events and nonbiased ligand migration pathways. Due to POP’s size and to the buried nature of its active site, an exhaustive sampling by means of conventional long enough molecular dynamics trajectories is still a nearly impossible task. Such a level of sampling, however, is possible with the breakthrough protein energy landscape exploration technique. Here, we present an exhaustive sampling of POP with a known inhibitor, Z-pro-prolinal. In >3000 trajectories Z-pro-prolinal explores all the accessible surface area, showing multiple entrance events into the large internal cavity through the pore in the β-propeller domain. Moreover, we modeled a natural substrate binding and product release by predicting the entrance of an undecapeptide substrate, followed by manual active site cleavage and nonbiased exit of one of the products (a dipeptide). The product exit shows preference from a flexible 18-amino acid residues loop, pointing to an overall mechanism where entrance and exit occur in different sites.
机译:脯氨酰寡肽酶(POP)是一种80kDa的大蛋白酶,可在脯氨酸残基的C端切割寡肽,并构成重要的药物靶标。尽管存在几种晶体结构,但对于配体的迁移(进入和退出)途径及其与蛋白质动力学的耦合存在公开辩论。最近的研究显示了分子动力学和经典力场在描述自发结合事件和无偏配体迁移途径方面的能力。由于POP的大小及其活动地点的掩埋性质,通过常规的足够长的分子动力学轨迹进行详尽的采样仍然几乎是不可能的任务。但是,这种突破性的蛋白质水平可以通过突破性的蛋白质能量景观探索技术来实现。在这里,我们介绍了使用已知抑制剂Z-pro-pronalal的POP的详尽采样。在> 3000个轨迹中,Z-pro-pronalal探查所有可及的表面积,显示出多个进入事件,这些事件通过β-螺旋桨域的孔进入大内腔。此外,我们通过预测十一肽底物的进入,然后手动激活位点裂解和其中一种产物(二肽)的无偏出口,对天然底物结合和产物释放进行建模。产物出口显示出偏好于18个氨基酸残基的柔性环,这表明入口和出口发生在不同部位的总体机制。

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