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通过分子动力学模拟研究人白细胞弹性蛋白酶的动力学和配体特异性相互作用。

Characterizing the dynamics and ligand-specific interactions in the human leukocyte elastase through molecular dynamics simulations.

机构信息

Research Institute for Medicines and Pharmaceutical Sciences (iMed.UL), Faculty of Pharmacy, University of Lisbon, Av. Prof. Gama Pinto, 1649-003 Lisbon, Portugal.

出版信息

J Chem Inf Model. 2011 Jul 25;51(7):1690-702. doi: 10.1021/ci200076k. Epub 2011 Jun 23.

Abstract

The human leukocyte elastase (HLE), a neutrophil serine protease of the chymotrypsin superfamily, is a major therapeutic target for a number of inflammatory diseases, such as chronic obstructive pulmonary disease (COPD). In this work, we present a comparative explicit water molecular dynamics (MD) study on the free and inhibitor-bound HLE. Knowledge of the flexibility and conformational changes induced by this irreversible inhibitor, whether in a prebound stage or covalently bound at the enzyme binding site, encases fundamental biological interest and is particularly relevant to ongoing structure-based drug design studies. Our results suggest that HLE operates by an induced-fit mechanism with direct intervention of a surface loop which is open toward the solvent in the free enzyme and closed while in the presence of the ligand. MM-PBSA free energy calculations furthermore elucidate the energetic contributions to the distinct conformations adopted by this loop. Additionally, a survey of the major contributions to the inhibitor binding free energies was attained. Our findings enforce the need to account for HLE flexibility, whether through the use of MD-generated ensembles of HLE conformations as targets for molecular docking or via sophisticated flexible-docking algorithms. We anticipate that inclusion of the observed HLE dynamic behavior into future drug design methodologies will have a relevant impact in the development of novel, more efficient, inhibitors.

摘要

人白细胞弹性蛋白酶(HLE)是糜蛋白酶超家族的中性粒细胞丝氨酸蛋白酶,是许多炎症性疾病(如慢性阻塞性肺疾病(COPD))的重要治疗靶点。在这项工作中,我们对游离和抑制剂结合的 HLE 进行了比较明确的水相分子动力学(MD)研究。了解这种不可逆抑制剂诱导的柔韧性和构象变化,无论是在预结合阶段还是在酶结合部位共价结合,都包含了基本的生物学兴趣,特别是与正在进行的基于结构的药物设计研究相关。我们的结果表明,HLE 通过诱导契合机制起作用,直接干预表面环,在游离酶中,该表面环朝向溶剂开放,而在存在配体时则关闭。MM-PBSA 自由能计算进一步阐明了该环采用不同构象的能量贡献。此外,还对抑制剂结合自由能的主要贡献进行了调查。我们的发现强调了需要考虑 HLE 的柔韧性,无论是通过使用 MD 生成的 HLE 构象集合作为分子对接的靶标,还是通过复杂的柔性对接算法。我们预计,将观察到的 HLE 动态行为纳入未来的药物设计方法中,将对开发新型、更有效的抑制剂产生相关影响。

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