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黄嘌呤氧化酶的QM/MM 研究:辅因子、底物和活性位点 Glu802 的变化。

QM/MM studies of xanthine oxidase: variations of cofactor, substrate, and active-site Glu802.

机构信息

Max-Planck-Institut für Kohlenforschung, D-45470 Mülheim an der Ruhr, Germany.

出版信息

J Phys Chem B. 2010 Jan 28;114(3):1506-17. doi: 10.1021/jp909999s.

Abstract

In continuation of our previous QM/MM study on the reductive half-reaction of wild-type xanthine oxidase, we consider the effects of variations in the cofactor, the substrate, and the active-site Glu802 residue on the reaction mechanism. Replacement of the sulfido ligand in the natural cofactor by an oxo ligand leads to a substantial increase in the computed barriers, consistent with the experimentally observed inactivity of this modified cofactor, whereas the selenido form is predicted to have lower barriers and hence higher activity. For the substrate 2-oxo-6-methylpurine, the calculated pathways for three different tautomers show great similarity to those found previously for xanthine, contrary to claims in the literature that the mechanisms for these two substrates are different. Compared with the wild-type enzyme, the conversion of xanthine to uric acid follows a somewhat different pathway in the Glu802 --> Gln mutant which exhibits a lower overall activity, in agreement with recently published kinetic data. The present results confirm the basic stepwise reaction mechanism and the orientation of the substrate that has been proposed in our previous QM/MM work on aldehyde oxidoreductase and xanthine oxidase.

摘要

在我们之前对黄嘌呤氧化酶野生型还原半反应的 QM/MM 研究的基础上,我们考虑了辅因子、底物和活性位点 Glu802 残基的变化对反应机制的影响。天然辅因子中的硫代配体被氧代配体取代会导致计算出的势垒大大增加,这与实验观察到的这种修饰辅因子失活的情况一致,而硒代形式则预计具有较低的势垒和较高的活性。对于底物 2-氧代-6-甲基嘌呤,三种不同互变异构体的计算途径与之前在黄嘌呤中发现的途径非常相似,与文献中声称这两种底物的机制不同的说法相反。与野生型酶相比,在 Glu802 --> Gln 突变体中,黄嘌呤转化为尿酸的转化遵循略有不同的途径,其整体活性较低,与最近发表的动力学数据一致。本研究结果证实了我们之前在醛氧化还原酶和黄嘌呤氧化酶的 QM/MM 研究中提出的基本逐步反应机制和底物取向。

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