首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Hybrid QM/MM Simulations Confirm Zn(II) Coordination Sphere That Includes Four Cysteines from the P2 × 4R Head Domain
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Hybrid QM/MM Simulations Confirm Zn(II) Coordination Sphere That Includes Four Cysteines from the P2 × 4R Head Domain

机译:混合QM / MM模拟确认Zn(II)协调球体其包括来自P2×4R头部域的四个半胱氨酸

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摘要

To ascertain the role of Zn(II) as an allosteric modulator on P2X4R, QM/MM molecular dynamic simulations were performed on the WT and two P2X4R mutants suggested by previous electrophysiological data to affect Zn(II) binding. The Gibbs free energy for the reduction of the putative P2X4R Zn(II) binding site by glutathione was estimated at −22 kcal/mol. Simulations of the WT P2X4R head domain revealed a flexible coordination sphere dominated by an octahedral geometry encompassing C126, N127, C132, C149, C159 and a water molecule. The C132A mutation disrupted the metal binding site, leading to a coordination sphere with a majority of water ligands, and a displacement of the metal ion towards the solvent. The C132A/C159A mutant exhibited a tendency towards WT-like stability by incorporating the R148 backbone to the coordination sphere. Thus, the computational findings agree with previous experimental data showing Zn(II) modulation for the WT and C132A/C159A variants, but not for the C132A mutant. The results provide molecular insights into the nature of the Zn(II) modulation in P2X4R, and the effect of the C132A and C132A/C159A mutations, accounting for an elusive modulation mechanism possibly occurring in other extracellular or membrane protein.
机译:为了确定Zn(II)作为P2X4R上的变形调节剂的作用,对WT和两种通过先前电生理数据建议的P2X4R突变体进行QM / MM分子动态模拟以影响Zn(II)结合。用于减少谷胱甘肽的推定P2X4R Zn(II)结合位点的Gibbs自由能量在-22kcal / mol下估计。 WT P2X4R头部结构域的模拟揭示了由包含C126,N127,C132,C149,C159和水分子的八面体几何形状主导的柔性配位球。 C132A突变破坏了金属结合位点,导致具有大多数水配体的配位球,以及金属离子朝向溶剂的位移。 C132A / C159A突变体通过将R148骨架掺入配位球体来表现出WT样稳定性的趋势。因此,计算结果与先前的实验数据一致,显示WT和C132A / C159A变体的Zn(II)调节,但不适用于C132A突变体。结果提供了P2X4R中Zn(II)调节的性质的分子见解,以及C132A和C132A / C159A突变的效果,占可能在其他细胞外或膜蛋白中发生的难以捉摸的调制机制。

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