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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Computational insight into the catalytic implication of head/tail-first orientation of arachidonic acid in human 5-lipoxygenase: consequences for the positional specificity of oxygenation
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Computational insight into the catalytic implication of head/tail-first orientation of arachidonic acid in human 5-lipoxygenase: consequences for the positional specificity of oxygenation

机译:关于人类5-脂氧合酶中花生四烯酸头/尾先取向的催化作用的计算洞察力:氧合位置特异性的后果

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In the present work we have combined homology modeling, protein-ligand dockings, quantum mechanics/molecular mechanics calculations and molecular dynamics simulations to generate human 5-lipoxygenase (5-LOX): arachidonic acid (AA) complexes consistent with the 5-lipoxygenating activity (which implies hydrogen abstraction at the C-7 position). Our results suggest that both the holo and the apo forms of human Stable 5-LOX could accommodate AA in a productive form for 5-lipoxygenation. The former, in a tail-first orientation, with the AA carboxylate end interacting with Lys409, gives the desired structures with C-7 close to the Fe-OH- cofactor and suitable barrier heights for H-7 abstraction. Only when using the apo form structure, a head-first orientation with the AA carboxylate close to His600 (a residue recently proposed as essential for AA positioning) is obtained in the docking calculations. However, the calculated barrier heights for this head-first orientation are in principle consistent with 5-LOX specificity, but also with 12/8 regioselectivity. Finally, long MD simulations give support to the recent hypothesis that the Phe177 + Tyr181 pair needs to close the active site access during the chemical reaction, and suggest that in the case of a head-first orientation Phe177 may be the residue interacting with the AA carboxylate.
机译:在目前的工作中,我们已将同源性建模,蛋白质-配体对接,量子力学/分子力学计算和分子动力学模拟相结合,以生成与5-脂氧合活性一致的人5-脂氧合酶(5-LOX):花生四烯酸(AA)复合物(这意味着在C-7位置有氢被提取)。我们的结果表明,人类稳定5-LOX的全环和脱辅基形式都可以以生产性形式容纳5-脂氧合的AA。前者在尾端优先的方向上,AA羧酸盐的末端与Lys409相互作用,给出所需的C-7结构,靠近Fe-OH-辅因子,并具有适合H-7提取的阻隔高度。仅当使用脱辅基形式结构时,在对接计算中才能获得具有接近于His600的AA羧酸盐(最近提出的对AA定位必不可少的残基)的头部优先方向。但是,计算出的该头朝上取向的势垒高度原则上与5-LOX特异性一致,但也与12/8区域选择性一致。最后,长时间的MD模拟为最近的假说提供了支持,即Phe177 + Tyr181对在化学反应过程中需要关闭活性位点进入,并建议在头向取向的情况下,Phe177可能是残基与AA相互作用羧酸盐。

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