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首页> 外文期刊>The biochemical journal >Comparison of the molybdenum centres of native and desulpho xanthine oxidase. The nature of the cyanide-labile sulphur atom and the nature of the proton-accepting group
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Comparison of the molybdenum centres of native and desulpho xanthine oxidase. The nature of the cyanide-labile sulphur atom and the nature of the proton-accepting group

机译:天然和脱硫黄嘌呤氧化酶的钼中心的比较。氰化物不稳定的硫原子的性质和质子接受基团的性质

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pThe non-functional form of xanthine oxidase known as the desulpho enzyme was compared with the functional enzyme in various ways, to obtain information on the structure of the molybdenum centre and the mechanism of the catalytic reaction. The desulpho enzyme, like the functional one, possesses a site for the binding of anions, presumably as ligands of molybdenum. Evidence is presented that in the Mo(V) e.p.r. signal from the desulpho-enzyme, as in that from the functional enzyme, a weakly coupled proton, in addition to a strongly coupled proton, interacts with the metal. Measurements were carried out by e.p.r. on the rate at which the proton strongly coupled to molybdenum exchanged, on diluting enzyme samples with 2H2O. For the desulpho enzyme the exchange rate constant was 0.40s-1, at pH 8.2 and 12 degrees C, and for the functional enzyme it was 85 s-1. It is shown that the great majority of reported differences between the enzyme forms are consistent with functional enzyme containing an (Enzyme)-Mo=S grouping, replaced in the desulpho form by (Enzyme)-Mo=O. Protonation of these groups, with pK values of about 8 and 10 respectively, would give (Enzyme)-Mo-SH and (Enzyme)-Mo-OH, these being the forms observed by e.p.r. The accepting group in the functional enzyme, for the proton transferred from the substrate while molybdenum is reduced in the catalytic reaction [Gutteridge, Tanner & Bray (1978) Biochem J. 175 869-878], is thus taken to be Mo=S./p
机译:>以各种方式将称为脱硫酶的黄嘌呤氧化酶的非功能形式与功能酶进行比较,以获得有关钼中心结构和催化反应机理的信息。像功能性酶一样,脱硫酶也具有一个与阴离子结合的位点,大概是作为钼的配体。证据表明在Mo(V)e.p.r.来自脱硫酶的信号,就像来自功能酶的信号一样,除强耦合质子外,弱耦合质子还与金属相互作用。通过e.p.r.进行测量。用2H2O稀释酶样品时,质子与钼强烈偶联的速率。对于脱硫酶,在pH 8.2和12摄氏度下,交换速率常数为0.40s-1,对于功能性酶,交换常数为85 s-1。结果表明,所报道的酶形式之间的绝大多数差异与含有(酶)-Mo = S分组的功能性酶一致,所述功能酶以(酶)-Mo = O的脱硫形式被取代。这些基团的质子化,其pK值分别为约8和10,将得到(酶)-Mo-SH和(酶)-Mo-OH,它们是e.p.r.观察到的形式。功能性酶中的接受基团,用于从底物转移的质子,同时钼在催化反应中被还原[Gutteridge,Tanner& Co.因此Bray(1978)Biochem J. 175 869-878]被认为是Mo = S。

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