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通过钼酸盐在体外重建脱钼亚硫酸盐氧化酶

In vitro reconstitution of demolybdosulfite oxidase by molybdate.

作者信息

Jones H P, Johnson J L, Rajagopalan K V

出版信息

J Biol Chem. 1977 Jul 25;252(14):4988-93.

PMID:17611
Abstract

Reconstitution of purified demolybdosulfite oxidase from rat liver has been achieved using inorganic molybdate as the source of molybdenum. The activation process has a pH optimum of 7.4 and is dependent on concentrations of molybdate and demolybdoenzyme. The reaction is inhibited by high concentrations of anions and by reduction of the demolybdoenzyme and requires incubation temperatures higher than 30 degrees. A reconstitution mechanism involving loss of tungsten and concomitant replacement with molybdenum in those demolybdo molecules which contain tungsten is supported by the following observations: (a) the extent of activation achieved by molybdate corresponds to the proportion of molecules in the preparation which contain tungsten. (b) Incubation of the demolybdoenzyme preparation at 37 degrees in the absence of molybdate results in progressive and concentration-dependent loss of ability to be reconstituted by molybdate and a corresponding but more rapid loss of tungsten from the enzyme. The reconstituted enzyme displays the molybdenum EPR signal characteristic of native enzyme and is inactivated by incubation at 42 degrees in a manner identical to native sulfite oxidase.

摘要

利用无机钼酸盐作为钼源,已成功实现从大鼠肝脏中纯化脱钼亚硫酸盐氧化酶的重组。激活过程的最适pH值为7.4,且依赖于钼酸盐和脱钼酶的浓度。该反应受到高浓度阴离子以及脱钼酶还原的抑制,并且需要高于30摄氏度的孵育温度。以下观察结果支持了一种重组机制,即在那些含有钨的脱钼分子中,钨会丢失并同时被钼取代:(a)钼酸盐实现的激活程度与制剂中含有钨的分子比例相对应。(b)在无钼酸盐的情况下,将脱钼酶制剂在37摄氏度孵育会导致其被钼酸盐重组的能力逐渐且浓度依赖性地丧失,以及相应但更快速地从酶中丢失钨。重组后的酶呈现出天然酶特有的钼电子顺磁共振信号,并且在42摄氏度孵育时以与天然亚硫酸盐氧化酶相同的方式失活。

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