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Force field design and molecular dynamics simulations of factor-inhibiting HIF-1 and its complex with known inhibitors: Implications for rational inhibitor design

机译:抑制因子的HIF-1及其与已知抑制剂的复合物的力场设计和分子动力学模拟:合理抑制剂设计的意义

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摘要

Based on molecular dynamics simulations in aqueous solution, we investigate the dynamic properties of factor-inhibiting HIF-1 (FIH1) and its complexes with the substrate 2-oxoglutarate (2OG) and the two known inhibitors, N-oxalylglycine (NOG) and N-oxalyl-. d-phenylalanine (NODP). The results obtained with the newly developed force field parameters for the coordination environment of the active-site ferrous ion show that FIH1 undergoes a significant conformational stabilization with a decrease in motional amplitude upon binding of the substrate or the inhibitors. Two loop structures around the active-site reveal a high flexibility in the resting form of FIH1 with the high B-factor values. These high-amplitude motions of the flexible loops are found to be weakened significantly in the presence of the substrate or a weak inhibitor (NOG), and damped out upon binding of a potent and selective inhibitor (NODP) in the active site. A characteristic feature that discriminates the coordination structures of the active-site ferrous ion in complex with 2OG and NOG in solution from those in the X-ray crystal structures lies in the presence of a structural water molecule from bulk solvent at the sixth coordination position, which leads to the formation of a stable octahedral coordination geometry. However, the approach of such a structural water molecule to the active-site ferrous ion is prohibited in the FIH1-NODP complex, which should be attributed to the formation of hydrophobic contacts between the phenyl ring of the inhibitor and the side chains of Tyr102, Leu186, and Trp296 at the entrance of the active site. This indicates that the d-enantiomeric side-chain phenyl group of NODP should play an essential role in potent and selective inhibition of FIH1.
机译:基于水溶液中的分子动力学模拟,我们研究了抑制因子的HIF-1(FIH1)及其与底物2-草酰戊二酸酯(2OG)和两种已知抑制剂N-草酰甘氨酸(NOG)和N的配合物的动力学性质。 -草酰- d-苯丙氨酸(NODP)。用新开发的用于活性位点亚铁离子配位环境的力场参数获得的结果表明,FIH1经历了显着的构象稳定,在结合底物或抑制剂后运动幅度降低。活性位点周围的两个环结构显示了FIH1静止形式的高灵活性,具有高B因子值。发现在存在底物或弱抑制剂(NOG)的情况下,柔性环的这些高振幅运动会显着减弱,并且在有效位点与选择性抑制剂(NODP)结合后会减弱。与溶液中的2OG和NOG形成络合物的活性位亚铁离子的配位结构与X射线晶体结构中的配位结构区别开来的一个特征是,在第六个配位位置存在着来自本体溶剂的结构水分子,导致形成稳定的八面体配位几何。但是,FIH1-NODP配合物禁止将这种结构性水分子与活性位亚铁离子接触,这应归因于抑制剂的苯环与Tyr102侧链之间形成疏水性接触,活动站点入口处的Leu186和Trp296。这表明NODP的d-对映体侧链苯基应在有效和选择性抑制FIH1中起重要作用。

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