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火鸡肝脏黄嘌呤脱氢酶。硫化物和硒化物对氰化物失活酶的重新激活作用。

Turkey liver xanthine dehydrogenase. Reactivation of the cyanide-inactivated enxyme by sulphide and by selenide.

作者信息

Cleere W F, Coughlan M P

出版信息

Biochem J. 1974 Nov;143(2):331-40. doi: 10.1042/bj1430331.

Abstract
  1. Turkey liver xanthine dehydrogenase engaged in catalysing the oxidation of xanthine by dichlorophenol-indophenol was progressively inactivated by methanol. This inactivation was reversible by NAD(+). 2. Reaction with arsenite and with cyanide, in each case first-order with respect to enzyme, resulted in characteristic alterations in the visible absorption spectrum of the enzyme. The rate of spectral change on reaction with either agent paralleled the rate of loss of enzyme activity. 3. Cyanide inactivation was accompanied by elimination from the enzyme of sulphur as thiocyanate. Partial restoration of activity was effected by incubation with sulphide or with selenide. The results suggest that turkey liver xanthine dehydrogenase, like milk xanthine oxidase (Massey & Edmonson, 1970), contains at the active centre a cyanolysable persulphide group essential to catalytic activity and that selenium may replace sulphur in this group to give an active enzyme. 4. Incubation of the native enzyme with sulphide or with selenide resulted in the rapid loss of half of the xanthine-oxidizing activity, apparently by disrupting the molybdenum and (Fe/S)II loci. This may indicate non-equivalence of the intramolecular electron-transfer systems.
摘要
  1. 火鸡肝脏中的黄嘌呤脱氢酶催化二氯酚靛酚对黄嘌呤的氧化反应,该酶会被甲醇逐渐失活。这种失活可被NAD(+)逆转。2. 与亚砷酸盐和氰化物反应时,每种情况对酶而言都是一级反应,会导致酶的可见吸收光谱发生特征性变化。与这两种试剂反应时光谱变化的速率与酶活性丧失的速率平行。3. 氰化物使酶失活的同时,会使硫以硫氰酸盐的形式从酶中消除。通过与硫化物或硒化物孵育可部分恢复活性。结果表明,火鸡肝脏黄嘌呤脱氢酶与牛奶黄嘌呤氧化酶(梅西和埃德蒙森,1970年)一样,在活性中心含有一个对催化活性至关重要的可被氰化物裂解氢过硫化物基团,并且硒可能会取代该基团中的硫以产生有活性的酶。4. 将天然酶与硫化物或硒化物孵育会导致黄嘌呤氧化活性迅速丧失一半,显然是通过破坏钼和(铁/硫)II位点。这可能表明分子内电子传递系统不等价。

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Preparation and properties of immobilised xanthine oxidase.
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Reaction of formaldehyde and of methanol with xanthine oxidase.甲醛和甲醇与黄嘌呤氧化酶的反应。
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