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首页> 外文期刊>The biochemical journal >Oxygen-17 splitting of the very rapid molybdenum(V) e.p.r. signal from xanthine oxidase. Rate of exchange with water of the coupled oxygen atom
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Oxygen-17 splitting of the very rapid molybdenum(V) e.p.r. signal from xanthine oxidase. Rate of exchange with water of the coupled oxygen atom

机译:极快钼(V)e.p.r.的氧气17裂解黄嘌呤氧化酶的信号偶合氧原子与水的交换速率

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pStudies have been carried out of effects of 17O substitution on a Mo(V) e.p.r. signal from xanthine oxidase, known as Very Rapid. This transient signal is believed to represent an intermediate in enzymic turnover. When Very Rapid was developed from enzyme equilibrate with 17O-enriched water, strong coupling of Mo(V) to a single oxygen atom was observed, with A(17O)1,2,3 1.34, 1.40, 1.36 mT. The isotropic character of the splittings is interpreted as favouring a structure of the type Mo–O–C. The rate of exchange with water of the oxygen atom detected in the signal was studied. In oxidized enzyme, which contains a terminal oxygen ligand, the exchange rate constant was 2–4 h-1 (pH 5.9–7.8 and about 20 degrees C). However, if the exchange was allowed to take place whilst the enzyme was turning over a substrate, then the process occurred within a few seconds. The present and previous results are interpreted as favouring an enzymic mechanism in which a terminal oxygen ligand reacts, as a nucleophile, with a substrate carbonium ion. To complete the reaction, product liberation, by hydrolysis of the enzyme-bound species, occurs in such a way as to cleave the Mo–O bond, thus explaining the fast oxygen exchange in the presence of the substrate./p
机译:对17 O取代对Mo(V)e.p.r的影响进行了研究。黄嘌呤氧化酶的信号,称为非常快。该瞬时信号被认为代表酶转换的中间产物。当从富含17O的水平衡的酶中开发出Very Rapid时,观察到Mo(V)与单个氧原子的强耦合,A(17O)1,2,3 1.34、1.40、1.36 mT。裂隙的各向同性特征被解释为有利于Mo–O–C类型的结构。研究了信号中检测到的氧原子与水的交换速率。在含有末端氧配体的氧化酶中,交换常数为2–4 h-1(pH 5.9–7.8和约20摄氏度)。但是,如果在酶翻转底物的同时允许进行交换,则该过程会在几秒钟内发生。当前和先前的结果被解释为有利于酶机制,其中末端氧配体作为亲核体与底物碳离子反应。为了完成反应,通过酶结合物质的水解,产物释放以裂解Mo-O键的方式发生,从而解释了在存在底物的情况下氧的快速交换。

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