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黄曲霉尿酸氧化酶与黄嘌呤阴离子复合物中氧气的渗透:氧气途径及水溶液中分子动力学模拟的酶腔图谱

On the Permeation by Dioxygen of Urate Oxidase from Aspergillus flavus in Complex with Xanthine Anion: Dioxygen Pathways and a Portrait of the Enzyme Cavities from Molecular Dynamics Simulations in Water Solution.

作者信息

Pietra Francesco

机构信息

Accademia Lucchese di Scienze, Lettere e Arti, Classe di Scienze, Palazzo Ducale, Lucca, I-55100.

出版信息

Chem Biodivers. 2016 Jun;13(6):798-806. doi: 10.1002/cbdv.201500293. Epub 2016 May 25.

Abstract

This work describes molecular dynamics (MD) simulations in aqueous media for the complex of the homotetrameric urate oxidase (UOX) from Aspergillus flavus with xanthine anion (5) in the presence of dioxygen (O2 ). After 196.6 ns of trajectory from unrestrained MD, a O2 molecule was observed leaving the bulk solvent to penetrate the enzyme between two subunits, A/C. From here, the same O2 molecule was observed migrating, across subunit C, to the hydrophobic cavity that shares residue V227 with the active site. The latter was finally attained, after 378.3 ns of trajectory, with O2 at a bonding distance from 5. The reverse same O2 pathway, from 5 to the bulk solvent, was observed as preferred pathway under random acceleration MD (RAMD), where an external, randomly oriented force was acting on O2 . Both MD and RAMD simulations revealed several cavities populated by O2 during its migration from the bulk solvent to the active site or backwards. Paying attention to the last hydrophobic cavity that apparently serves as O2 reservoir for the active site, it was noticed that its volume undergoes ample fluctuations during the MD simulation, as expected from the thermal motion of a flexible protein, independently from the particular subunit and no matter whether the cavity is filled or not by O2 .

摘要

这项工作描述了在水介质中对来自黄曲霉的同四聚体尿酸氧化酶(UOX)与黄嘌呤阴离子(5)在氧气(O₂)存在下形成的复合物进行的分子动力学(MD)模拟。在无约束MD的196.6纳秒轨迹后,观察到一个O₂分子离开本体溶剂,穿透两个亚基A/C之间的酶。从这里开始,观察到同一个O₂分子穿过亚基C,迁移到与活性位点共享残基V227的疏水腔。在378.3纳秒轨迹后,最终到达后者,此时O₂与5处于键合距离。在随机加速MD(RAMD)下,观察到从5到本体溶剂的相同O₂反向路径是首选路径,其中一个外部的、随机取向的力作用于O₂。MD和RAMD模拟都揭示了O₂在从本体溶剂迁移到活性位点或反向迁移过程中占据的几个腔。关注最后一个显然作为活性位点O₂储存库的疏水腔,注意到其体积在MD模拟期间经历了大量波动,这是柔性蛋白质热运动所预期的,与特定亚基无关,且无论该腔是否被O₂填充。

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