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对花生四烯酸与哺乳动物 15-脂氧合酶结合机制的深入了解。

Insights into the mechanism of binding of arachidonic acid to mammalian 15-lipoxygenases.

机构信息

Departament de Química, Universitat Autònoma de Barcelona, 08193 Bellaterra, Barcelona, Spain.

出版信息

J Phys Chem B. 2010 May 27;114(20):7037-46. doi: 10.1021/jp912120n.

Abstract

Mammalian 15-lipoxygenases (15-LOs) are key pharmaceutical targets under strong investigation because of their implication in atherosclerosis and cancer. Here, we present an atomic-level study of the binding modes of arachidonic acid (AA) to rabbit reticulocyte 15-LO, with a particular insight into the 15-LO:AA complexes consistent with known catalytic activity. We take into account both ligand and protein flexibility, by combining protein-ligand docking techniques and molecular dynamics simulations. We have also performed in silico mutagenesis. Our results are in agreement with previous mutagenesis data, in particular with the importance of Arg403 on AA binding. Interestingly, our results also reveal a central role of Arg403 in the conformational change of the alpha2-helix observed upon ligand binding. That induced-fit effect could give a possible framework for the molecular explanation of the known allosteric effect and questions the suitability of the inhibitor-bound crystal structure for accepting AA. Accounting for these dynamical considerations might improve the drug design process.

摘要

哺乳动物 15-脂氧合酶(15-LOs)是一个受到强烈关注的重要制药靶点,因为它们与动脉粥样硬化和癌症有关。在这里,我们通过结合蛋白-配体对接技术和分子动力学模拟,对兔网织红细胞 15-LO 与花生四烯酸(AA)的结合模式进行了原子水平的研究,特别关注了与已知催化活性一致的 15-LO:AA 复合物。我们还进行了计算机诱变。我们的结果与以前的诱变数据一致,特别是与 Arg403 对 AA 结合的重要性一致。有趣的是,我们的结果还揭示了 Arg403 在配体结合时观察到的α2-螺旋构象变化中的中心作用。这种诱导契合效应可能为已知变构效应的分子解释提供了一个可能的框架,并质疑了抑制剂结合晶体结构接受 AA 的适宜性。考虑到这些动态因素可能会改善药物设计过程。

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