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The mechanism of action of xanthine oxidase. The relationship between the rapid and very rapid molybdenum electron-paramagnetic-resonance signals.

机译:黄嘌呤氧化酶的作用机理。快速和非常快的钼电子-顺磁共振信号之间的关系。

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摘要

On the basis of the work of Gutteridge, Tanner & Bray [Biochem. J. (1978) 175, 887-897] and of other data in the literature, a mechanism for the reaction of xanthine oxidase with reducing substrates is proposed. In the Michaelis complex, xanthine is bound to molybdenum via the N-9 nitrogen atom. Coupled transfer of two electrons to molybdenum and the C-8 proton to the enzyme yields (Enzyme)-Mo-SH. Concerted with this process, reaction of the xanthine residue with a nucleophile in the active centre yields a covalent intermediate that breaks down to give the product by alternative pathways at high and at low pH values.
机译:根据Gutteridge,Tanner和Bray [Biochem。 J.(1978)175,887-897]和文献中的其他数据,提出了黄嘌呤氧化酶与还原性底物反应的机理。在Michaelis络合物中,黄嘌呤通过N-9氮原子与钼结合。耦合两个电子转移到钼和C-8质子转移到酶产生(酶)-Mo-SH。与该过程一致,黄嘌呤残基与活性中心中的亲核试剂反应生成共价中间体,该中间体分解成在高和低pH值下通过其他途径产生的产物。

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